#Irrigation Machinery Market in Netherlands
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The Agricultural Equipment Market in the Netherlands: Innovations and Trends
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The agricultural equipment market in the Netherlands is projected to experience a Compound Annual Growth Rate (CAGR) of ~6.5% by the year 2027. Let's delve into the various factors that contribute to this growth.
STORY OUTLINE
Dutch farming embraces GPS tractors, precision methods for optimal planting, harvesting, increasing yield, and productivity.
Leading in horticulture, Netherlands' high-tech greenhouses contribute to exports and innovative crop growth under controlled environments.
Dutch Agri-market innovates to minimize chemicals, conserve water, adopting precision systems for eco-friendly practices.
Challenges met with research and tech-driven solutions, as automation, data, and sustainability pave Dutch Agri-equipment market's future.
The Netherlands, a country renowned for its picturesque tulip fields and windmills, is also a powerhouse in the agricultural sector. With its technologically advanced approach to farming and horticulture, the Dutch agricultural equipment market has seen remarkable growth and innovation. Let's delve into the key trends and statistics shaping this dynamic market.
1.Technological Advancements and Modernization

One of the standouts features of the Dutch agricultural landscape is its embrace of cutting-edge technology. Precision farming techniques have become the norm, with Global Positioning System (GPS)-guided tractors leading the charge.
These intelligent machines allow farmers to optimize planting, irrigation, and harvesting, resulting in increased efficiency and yield.
2.Greenhouse Horticulture Excellence
The Netherlands is a global leader in greenhouse horticulture, a practice that involves growing crops in controlled environments. These high-tech greenhouses incorporate climate control systems, artificial lighting, and advanced hydroponic or aquaponic setups.
According to recent statistics, nearly 10% of the country's agricultural production takes place within greenhouses, contributing significantly to its export revenues.
3.Sustainable Agriculture and Environmental Awareness

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Environmental concerns and sustainability are at the forefront of Dutch agricultural practices. The Netherlands' agricultural equipment market has responded by offering innovative solutions that reduce chemical usage, conserve water, and minimize environmental impact.
This commitment is evident in the increasing adoption of precision application systems that limit the use of fertilizers and pesticides.
4.Challenges and Future Outlook
Despite its impressive achievements, the Dutch agricultural equipment market faces certain challenges. Rising land prices, labor shortages, and stringent environmental regulations pose hurdles that the industry must navigate. However, the Dutch government's commitment to research and innovation ensures that these challenges are met with inventive solutions.

With a blend of tradition and innovation, the Netherlands' agricultural sector stands as a beacon of modern agricultural practices, inspiring the world with its commitment to efficient and eco-friendly farming.
In conclusion, the Netherlands' agricultural equipment market exemplifies the marriage of technology and agriculture. From precision farming to advanced greenhouse horticulture and automation in dairy farming, the country's approach serves as a model for sustainable and efficient agriculture. As global demands for food production and resource efficiency increase, the Dutch agricultural equipment market is poised to play a pivotal role in shaping the future of farming.
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Variable Rate Technology (VRT) Market Size, Share, Demand, Rising Trends, Growth and Competitors Analysis
Global Variable Rate Technology (VRT) Market' - Size, Share, Demand, Industry Trends and Opportunities
Global Variable Rate Technology (VRT) Market, By Product (Soil Sensing VRT, Fertilizer VRT, Seeding VRT, Crop Protection Chemical VRT, Yield Monitor VRT, Irrigation VRT, Other), Crop Type (Cereals and Grains, Oilseeds and Pulses, Fruits and Vegetables, Others), Farm Size (Large Farms, Small Farms, Mid-Size Farms), Offering (Hardware, VRT Service, VRT Software), Country (U.S., Canada, Mexico, Germany, Poland, Ireland, Italy, U.K., France, Spain, Netherland, Belgium, Switzerland, Turkey, Russia, Rest of Europe, Japan, China, India, South Korea, New Zealand, Vietnam, Australia, Singapore, Malaysia, Thailand, Indonesia, Philippines, Rest of Asia-Pacific, Brazil, Argentina, Chile, Rest of South America, UAE, Saudi Arabia, Egypt, Kuwait, South Africa, Rest of Middle East and Africa) Industry Trends
Variable rate technology (VRT) market size is valued at USD 3.10 billion by 2028 and is expected to expand at a compound annual growth rate of 9.50% over the forecast period of 2021 to 2028. The favorable government initiative is the factor for the variable rate technology (VRT) market in the forecast period of 2021 to 2028.
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**Segments**
- Based on technology, the Variable Rate Technology (VRT) market can be segmented into a variety of subcategories such as GPS (Global Positioning System), GIS (Geographic Information System), Remote Sensing, and Variable Rate Application Equipment. Advancements in GPS technology have significantly enhanced the accuracy and effectiveness of VRT, allowing for precise application of resources based on real-time location data. GIS integration offers farmers the ability to analyze field data and make informed decisions regarding variable rate applications. Remote sensing technologies, like drones and satellites, provide valuable insights into crop health, soil moisture levels, and other essential factors that influence variable rate applications. Variable Rate Application Equipment includes machinery and tools that enable the precise application of inputs such as fertilizers, pesticides, and water, based on field variability and crop requirements.
- Geographically, the VRT market can be segmented into regions such as North America, Europe, Asia Pacific, Latin America, and Middle East & Africa. The adoption of VRT solutions varies across these regions due to factors such as technological awareness, farming practices, government regulations, and overall economic development. North America has shown significant growth in VRT adoption due to the presence of large-scale farms, advanced farming techniques, and high-tech equipment investments. Europe is also a key market for VRT, driven by the focus on sustainable agriculture practices and precision farming technologies. Asia Pacific shows immense growth potential for VRT adoption, as emerging economies invest in modernizing their agricultural practices to ensure food security and improve productivity.
**Market Players**
- The Variable Rate Technology (VRT) market is highly competitive, with several key players leading the industry towards innovation and technological advancement. Some of the major market players include Trimble Inc., Deere & Company, AGCO Corporation, Topcon Positioning Systems, Raven Industries, Inc., Lindsay Corporation, Ag Leader Technology, Yara International ASA, Kubota Corporation, and TeeJet Technologies. These companies are actively involved in research and development activities to enhance their VThe Variable Rate Technology (VRT) market is experiencing significant growth, driven by advancements in technology and the increasing adoption of precision farming practices worldwide. The segmentation of the VRT market based on technology showcases the diverse range of solutions available to farmers to optimize resource usage and improve crop yields. GPS technology has played a vital role in enhancing the precision of variable rate applications, allowing for accurate data collection and analysis. GIS integration provides farmers with valuable insights into field data, enabling informed decision-making for variable rate applications. Remote sensing technologies, including drones and satellites, offer real-time monitoring of crop health and soil conditions, further enhancing the efficiency of VRT implementation. Variable Rate Application Equipment ensures precise application of inputs based on field variability, contributing to improved crop health and productivity.
Geographically, the VRT market is segmented into key regions that exhibit varying levels of adoption and growth potential. North America leads the market in terms of VRT adoption, driven by the presence of large-scale farms and high-tech farming equipment investments. The region's technological awareness and advanced farming practices have propelled the uptake of VRT solutions, further supported by government regulations promoting sustainable agriculture. Europe is also a significant market for VRT, characterized by a focus on precision farming technologies and the implementation of sustainable agricultural practices. In the Asia Pacific region, emerging economies are investing in modernizing their agricultural practices to ensure food security and increase productivity, offering immense growth opportunities for VRT adoption.
The competitive landscape of the Variable Rate Technology market is dominated by key players that are at the forefront of driving innovation and technological advancements in precision agriculture. Companies such as Trimble Inc., Deere & Company, AGCO Corporation, and Topcon Positioning Systems are leading the market with their cutting-edge VRT solutions. These market players are heavily invested in research and development activities to enhance their product offerings and cater to the evolving needs of the agricultural sector. Collaboration and strategic partnerships are also common trends among VRT market players to expand their market presence and offer comprehensive solutions to farmers**Global Variable Rate Technology (VRT) Market, By Product (Soil Sensing VRT, Fertilizer VRT, Seeding VRT, Crop Protection Chemical VRT, Yield Monitor VRT, Irrigation VRT, Other), Crop Type (Cereals and Grains, Oilseeds and Pulses, Fruits and Vegetables, Others), Farm Size (Large Farms, Small Farms, Mid-Size Farms), Offering (Hardware, VRT Service, VRT Software), Country (U.S., Canada, Mexico, Germany, Poland, Ireland, Italy, U.K., France, Spain, Netherland, Belgium, Switzerland, Turkey, Russia, Rest of Europe, Japan, China, India, South Korea, New Zealand, Vietnam, Australia, Singapore, Malaysia, Thailand, Indonesia, Philippines, Rest of Asia-Pacific, Brazil, Argentina, Chile, Rest of South America, UAE, Saudi Arabia, Egypt, Kuwait, South Africa, Rest of Middle East and Africa) Industry Trends and Forecast to 2028
- The Variable Rate Technology (VRT) market is witnessing significant growth globally, driven by the increasing adoption of precision agriculture practices and technological advancements. The market segmentation based on technology highlights the critical role of GPS, GIS, remote sensing, and variable rate application equipment in optimizing resource management and enhancing crop productivity.
Key points covered in the report: -
The pivotal aspect considered in the global Variable Rate Technology (VRT) Market report consists of the major competitors functioning in the global market.
The report includes profiles of companies with prominent positions in the global market.
The sales, corporate strategies and technical capabilities of key manufacturers are also mentioned in the report.
The driving factors for the growth of the global Variable Rate Technology (VRT) Market are thoroughly explained along with in-depth descriptions of the industry end users.
The report also elucidates important application segments of the global market to readers/users.
This report performs a SWOT analysis of the market. In the final section, the report recalls the sentiments and perspectives of industry-prepared and trained experts.
The experts also evaluate the export/import policies that might propel the growth of the Global Variable Rate Technology (VRT) Market.
The Global Variable Rate Technology (VRT) Market report provides valuable information for policymakers, investors, stakeholders, service providers, producers, suppliers, and organizations operating in the industry and looking to purchase this research document.
Table of Content:
Part 01: Executive Summary
Part 02: Scope of the Report
Part 03: Global Variable Rate Technology (VRT) Market Landscape
Part 04: Global Variable Rate Technology (VRT) Market Sizing
Part 05: Global Variable Rate Technology (VRT) Market Segmentation by Product
Part 06: Five Forces Analysis
Part 07: Customer Landscape
Part 08: Geographic Landscape
Part 09: Decision Framework
Part 10: Drivers and Challenges
Part 11: Market Trends
Part 12: Vendor Landscape
Part 13: Vendor Analysis
The investment made in the study would provide you access to information such as:
Variable Rate Technology (VRT) Market [Global – Broken-down into regions]
Regional level split [North America, Europe, Asia Pacific, South America, Middle East & Africa]
Country-wise Market Size Split [of important countries with major market share]
Market Share and Revenue/Sales by leading players
Market Trends – Emerging Technologies/products/start-ups, PESTEL Analysis, SWOT Analysis, Porter’s Five Forces, etc.
Market Size
Market Size by application/industry verticals
Market Projections/Forecast
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Regional Insights and Growth Projections for the Global Precision Farming Market
The global precision farming market is poised for significant growth, driven by technological advancements, sustainability efforts, and increasing demand for efficient farming practices. Precision farming involves the use of technology such as GPS, IoT sensors, artificial intelligence (AI), and robotics to optimize agricultural practices, ensuring higher yields, reduced waste, and more sustainable resource management. The market's expansion is primarily propelled by the increasing global population, climate change concerns, and the need for more productive, resource-efficient farming systems.

North America: The Dominant Region
North America leads the global precision farming market, with the United States and Canada at the forefront of adoption. The region benefits from well-established agricultural infrastructure, widespread use of advanced technologies, and strong governmental support for sustainable farming practices. Precision agriculture has seen widespread adoption in large-scale farms, where technologies like automated tractors, GPS-based precision planting, and real-time soil monitoring systems are used extensively. Furthermore, the U.S. Department of Agriculture (USDA) supports precision farming initiatives to improve productivity while minimizing environmental impact. The region is expected to maintain its dominant position in the market due to continued innovation and investments in smart farming technologies.
Europe: Driving Sustainable Farming
Europe is another key player in the precision farming market, with a strong focus on sustainability. European farmers are increasingly adopting precision farming techniques to meet stringent environmental regulations and enhance efficiency. Countries such as Germany, France, and the Netherlands are at the forefront of smart farming practices. In these nations, government policies and subsidies support the adoption of precision farming tools like variable-rate technology (VRT), drones, and automated irrigation systems. The European Union’s Common Agricultural Policy (CAP) promotes sustainable farming practices, further accelerating the growth of the market in this region. In addition to regulations, the demand for organic food and sustainable agricultural practices is driving the adoption of precision farming in Europe. As consumers become more conscious of the environmental impact of food production, farmers are turning to precision agriculture to optimize resource use and reduce chemical inputs.
Asia-Pacific: Fastest-Growing Market
The Asia-Pacific region is projected to be the fastest-growing market for precision farming, primarily driven by countries like China, India, Japan, and Australia. Rapid population growth, increasing food demand, and government initiatives to modernize agriculture are key factors driving market expansion in this region. Governments in countries like India and China are actively promoting digital farming techniques to enhance productivity, improve food security, and reduce rural poverty. For instance, India’s push for digital agriculture through its “Digital India” initiative has spurred the adoption of IoT devices, sensors, and satellite-based systems in farming.
Australia and Japan are also seeing increased use of precision farming technologies, particularly in large-scale agricultural operations. In these countries, advanced tools like GPS-guided machinery, soil sensors, and drones are widely used to optimize crop yields and manage large farmlands efficiently.
Latin America: Rising Adoption in Key Agricultural Countries
Latin America, particularly countries like Brazil and Argentina, is experiencing rising adoption of precision farming technologies. The region’s vast agricultural lands and export-driven economies make precision farming an attractive solution to increase productivity and sustainability. Brazil, one of the world’s largest producers of soybeans, sugarcane, and coffee, is investing heavily in precision agriculture to optimize land use and improve crop quality. Similarly, Argentina is leveraging advanced farming technologies to increase the efficiency of its agricultural sector, with a focus on data analytics and automation.
Latin American countries are also adopting technologies like satellite-based monitoring, automated machinery, and advanced irrigation systems. The region’s growth is supported by increasing investments in agricultural technology and collaboration with international tech companies to introduce modern solutions for large-scale farming.
Middle East and Africa: Emerging Markets with Growth Potential
While the Middle East and Africa are still emerging markets for precision farming, they hold significant growth potential. Water scarcity, poor soil conditions, and climate challenges make precision agriculture an attractive solution in these regions. Countries like Israel are leading the way with innovations in drip irrigation, water management systems, and automated greenhouses, which are highly suited to arid environments. South Africa is also witnessing increased adoption of precision farming tools, particularly in fruit and wine production.
Governments and international organizations in these regions are investing in modern agricultural practices to address food security challenges and improve farming sustainability. For instance, several African countries are receiving support from global initiatives and NGOs to adopt precision farming technologies that promote efficient use of limited water and land resources.
Growth Projections and Future Opportunities The global precision farming market is expected to experience rapid growth in the coming years. The global precision farming market size is expected to grow from USD 9.7 billion in 2023 to USD 21.9 billion by 2031, at a CAGR of 10.7%. Key drivers of this growth include increasing demand for food due to population growth, the need to reduce resource consumption and environmental impact, and advances in agricultural technology.
Moreover, opportunities in the precision farming market abound, particularly in emerging regions like Asia-Pacific, Latin America, and Africa. As governments in these regions invest in agricultural modernization and promote digital farming, precision agriculture will become a key component of sustainable food production systems. Companies that offer affordable, scalable solutions for small and medium-sized farms are expected to benefit greatly from this market expansion.
The precision farming market is set to grow significantly across the globe, with North America and Europe leading the adoption of advanced technologies. However, the Asia-Pacific region holds the greatest potential for future growth, as emerging markets embrace precision agriculture to meet food security challenges and enhance sustainability. Latin America and Africa are also poised to experience substantial market expansion as precision farming solutions are increasingly recognized as vital for addressing climate and resource constraints. The future of precision farming lies in its ability to balance productivity and sustainability, paving the way for a more efficient, tech-driven agricultural industry.
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India Vs. World Farm Mechanization and Technology
Indian agriculture is experiencing a quick change with expanded automation and the presentation of new agriculture innovations. When compared with nations like the USA, Canada, Brazil, France, Germany, Italy, Australia, Russia, South Korea, Japan, and China, be that as it may, we despite everything have an extensive approach in accomplishing food security through ranch mechanization. As per a report by the Indian Council of Food and Agriculture.
(http://icfa.org.in/resources/doc/reports/RTC_Farm_Mechanization.pdf), just 40% to 45% of Indian agriculture has been automated. Contrast this with mechanization rates in different nations – 95% of US farming, 90% of Australian agriculture, 99% of Japanese agriculture, 97% of South Korean farming, 75% of Brazilian agriculture, and 91% of Chinese agriculture. It should be noted, in any case, that these mechanization rates can shift as per various harvests. Cultivating for certain yields –, for example, rice, for example – is profoundly automated while cultivating for different harvests –, for example, cotton – might be nearly less mechanization. There can likewise be a distinction in mechanization rates for crop planting and yield reaping exercises.
All things considered, the high agricultural creation in these nations unmistakably exhibits the verifiable connection between the utilization of automated farm executes and a higher crop. In the event that India is to keep up in the worldwide food creation stakes and satisfy the needs of her own developing populace, a more profound mechanical entrance is basic. This can be supported with ideal government motivating forces, ecologically practical approaches, and an expanded creation of ranch apparatus by Indian farm gear makers.
India Vs. World
Other than the conspicuous contrasts in the atmosphere, crop species, and land sizes, there is a disparity difference between the utilization of farm apparatus in nations like the USA, Canada, Germany, France, Italy, Russia, South Korea, Japan, China, and Australia, and the remainder of the world. In numerous Asian and African nations – and this incorporates India, regardless of our present advancement – a great part of the farm work is as yet manual and provided by men, ladies, youngsters, and menial worker animals. This influences general profitability and proficiency and it is one of the main reasons why the Indian agricultural segment lags behind as far as agricultural output.
There is no doubt that utilizing various sorts of farm apparatus like tractors, harrows, turners, rotavators, consolidates, seed drills, harvesters, cultivators, sprayers, and irrigation system pumps would eliminate time and exertion, and redirect the work of farm laborers to other important yet less difficult farm chores. It would likewise resolve the developing issue of the work lack in rural territories. While 56.6 (http://censusindia.gov.in/Census_And_You/economic_activity.aspx) of the Indian populace is occupied with horticultural exercises – rather than 2.5% of the populace in the USA, 1.3% in the UK, 1.4% in Germany, 2.8% in France, 1.2% in the Netherlands, 4% in Italy, 3.6% in Australia, 5.3% in Argentina, 9.4% in Brazil, 9.4% in Russia, 27.7% in China, 2.9% in Japan, 11% in Malaysia, 32% in Indonesia, and 42.7% in Bangladesh – quick urban turn of events, development of other modern divisions, and government plans, for example, the Mahatma Gandhi Rural Employment Guaranteed Annual Work Scheme has opened up increasingly rewarding openings for work for the provincial youth and has prompted a consistent migration from country territories to urban regions.
There has been a climb in farm compensation so as to hold work, however, the occasional idea of farming work, just as the drudgery in question and an impression of the work as low status, are extra reasons that cause individuals to settle on other accessible business ways. The rural to urban relocation has likewise been influenced by an expanded utilization of manufacturing plant created devices instead of craftsman made devices. As indicated by the Indian Journal of Agricultural Economics, movement from rustic zones to urban zones has been happening at the pace of 3.15 percent every year and it is normal that by 2020, 35 percent of India's population will be living in urban territories.
The Indian Economic Survey of 2017-2018 appraisals that agrarian work will diminish by 25.7 percent by 2050. This will unfavorably influence work-intensive crop, for example, wheat, rice, sugarcane, groundnuts, and cotton.
With agricultural mechanization, just a couple of farm laborers would be expected to achieve a bigger measure of work. It would improve cultivating productivity, cut down on the reap and post-gather misfortunes, and produce a higher and better nature of crop yield. Whenever applied wisely, farm mechanization and innovation could likewise help with maintainable farming rehearses.
Farm Mechanization in India and Other Countries
Farm mechanization in India must be adjusted and changed in accordance with suit explicit regional conditions and necessities and must be associated with the more extensive rural approaches and the social and social structure of the Indian cultivating network. Applying such procedures to cultivating in Bangladesh and Indonesia has just exhibited positive outcomes. As per Bangladesh's Farm Machinery and Postharvest Process Engineering Division, farm motorization made it workable for the nation to raise the yearly agrarian yield from 11 million tons (1971) to 30 million tons (2007). Utilizing agricultural innovation, Indonesia is pushing towards independence in rice creation. The Indonesian government reported a national rice creation of 79 million tons in 2016, and increasingly across the board agricultural mechanization will permit them to put 200,000 hectares of extra farmland under rice development.
In contrast to the broad farmlands in the USA (444 acres average), Canada (820 acres average), Russia (10,000 acres average for corporate farms), and the European Union (620 acres average for bigger farms), and separated from some huge farm in Punjab, Haryana, Maharashtra and some different states, the normal land sizes of Indian farm are just around five to seven sections of land. This utilizes huge farm apparatus illogical and even outlandish now and again. A larger part of these little farmers are from financially ruined foundations and can't bear the cost of the extremely high buy and upkeep costs of the farm apparatus.
While the Indian government offers 25 percent to 50 percent sponsorships for purchasing the apparatus under the Sub-strategic Agricultural Mechanization (SMAM) plan of the National Mission on Agricultural Extension and Technology (NMAET) plan, a large number of the minor farmers would even now need to take out credits for the buy, and a considerable lot of them are probably going to be discovered ineligible for the advances since they can't outfit the insurance that most money related organizations require to embrace the advance hazard.
A potential answer for this would be the utilization of littler and nearly more affordable homestead apparatus, for example, power turners. Farmers can shape co-agents to purchase or recruit the farm actualizes and hardware and they can share these case by case for plowing, gathering, and post-collect activities. Under the SMAM plot, the Indian government is building up custom employing focuses in rural regions and offering impetuses to Indian business visionaries to do likewise. Research and development focus and Indian agricultural equipment producers are additionally being urged to think of increasingly imaginative farm advances to suit Indian conditions.
Somewhat, European nations like Germany, France, and Italy face comparable issues as India does with regards to contracting farm measures also decrease in the general number of homesteads. In 1900, European farmers framed half of the population and by 1950, their numbers had tumbled to 30%. Fast urbanization is one reason for this. More youthful individuals incline toward the draws of the urban areas and maturing ranchers, with nobody to take over after them, may auction their agricultural land, either to another farmer, to a rural organization, or to a non-rural substance. The circumstance in the USA, Canada, Russia, and Australia isn't a lot of various. The Canadian and the Russian governments are offering different motivating forces for their residents to take up cultivating; in Russia, this incorporates free land for cultivating. They've additionally made their ways for horticultural migrants. Australia, as of late, has become a famous goal with Indian farmers, especially from Punjab; they sell their couple of sections of land in Punjab for 4 or 5 crores and use some portion of that cash to purchase a few thousand sections of land of agricultural land in Australia.
Movement isn't altogether an answer however, as working farmers keep on wrestling with an expanding absence of talented and experienced specialists. Most European farms are profoundly motorized, thanks to a limited extent to the budgetary help and sponsorships from the EU's Common Agricultural Policy, and agricultural machinery producers regularly refer to the presentation of the SMART farm apparatus as a practical answer for the issue of farm work lack. Be that as it may, over the long haul, the decrease in the homestead numbers means a diminished client base for ranch hardware, SMART, or something else.
In 2005, the EU corrected its agricultural machinery industry strategy to class tractors as cars and applied guidelines that neglect to consider the farm apparatus segment's particular specialized gauges and market requests. These guidelines may likewise be incompletely answerable for the general decrease in tractor deals in Europe.
In Germany, tractor deals fell from 100,000 out of 1951 to 34,611 of every 2013, and in Italy, tractor deals dropped from 42,000 out of 1987 to 12, 186 out of 2016. The farming business sector stayed down in 2016 in the UK, the Netherlands, and Belgium, while Spain, Austria, and Denmark demonstrated shockingly in good spirits results. The European agricultural market seemed to balance out in 2017 and a few examiners anticipate an upward swing in 2018, in spite of the fact that CEMA financial specialists keep on prompting alert.
For the agricultural machinery industry, this spells a requirement for higher interest in promoting and appropriation to arrive at the contracting client base. There will likewise be an expanded rivalry between the different tractor brands, for example, John Deere, AGCO, ARGO, Kubota, CLASS, and CNHi for a lot of the restricted market.
Indian Farm Technologies and Sustainable Farming
Indian agriculture is reliant generally on the Monsoon downpours. A progressively boundless utilization of water system innovations like dribble water system framework and water gathering could diminish this reliance. It should be noticed that these aren't actually 'new' advances for Indian farmers. They are just present-day renditions of the bamboo pipe, stone channels and tanks, and other water system frameworks that have been generally utilized in Indian agriculture.
India, it should be remembered, has a long history of agriculture and it was just unavoidable that Indian farmers thought of methods to manage the continuous floods and dry spell that happened throughout the hundreds of years; their endurance relied upon such advancement. These water protection procedures discover notice in Vedic writing, in Chanakya's Arthashastra, and different other Indian memorable and scholarly messages, and are bolstered by proof discovered during archeological excavations and by existing structures. Numerous conventional advance wells, water supplies, tanks, underground water pits, check dams, trenches, and embanked directs are as yet being used and are as effective now as they were in ancient times.
The Jaintia farmers of Meghalaya and the Adi farmers of Arunachal Pradesh have since a long time ago utilized bamboos to fabricate a system of water channels to set up drip irrigation system frameworks to irrigate areca nut, betel vines, dark pepper, and other manor crops. Since bamboo is accessible all over India, there is no motivation behind why this training can't be adjusted and actualized on a more extensive premise all through the nation.
Bench terrace irrigation system is another basic practice used to flood patio farmlands in uneven territories. This includes tapping common streams and directing the water with the goal that it streams persistently from the upper to the lower patios. Stone dividers are set up to forestall soil disintegration and hold run-off water to flood the fields.
The Indian government has likewise been empowering such customary practices as they are feasible and environment-friendly.
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Industrial Machinery - Market Growing Popularity and Emerging Trends in the Industry
Advance Market Analytics released a new market study on Global Industrial Machinery - Market Research report which presents a complete assessment of the Market and contains a future trend, current growth factors, attentive opinions, facts, and industry validated market data. The research study provides estimates for Global Industrial Machinery - Forecast till 2027*.
Manufacturers offer facilities like instalment loans and operating and financing leases, which offers the choice to have equipment under lease. The leasing are often done on a full pay-out basis or by selecting a construction equipment leasing option, which allows returning the equipment or buying the equipment at a predetermined rate. Companies still make use of multiple options like rentals, outright purchases, and leasing. Financing or leasing the equipment allows several contractors the benefit to remain on the leading edge of technology. there's emergence of latest tools within the industry, and leasing allows the users in utilizing the newest products available without bearing extravagant costs.
Key Players included in the Research Coverage of Industrial Machinery - Market are
Caterpillar Inc. .
Illinois Tool Works Inc.
AGCO Corporation
Deere & Company
Komastu
CNH Industrial
Kubota Corporation
AB Volvo
Doosan InfracoreCo. Ltd.
Ingersoll Rand
ESCO Corp.
Lincoln Electric Holdings Inc.
The Manitowoc Company Inc.
AstecIndustries Inc.
Challenges: Health & Safety Issues
Lack of Skilled Labor and Technicians
Market Growth Drivers: Rising Mechanization in Farming Operations
Increasing Infrastructure Spending
Globalization Triggering Food Processing Industry
The Global Industrial Machinery - Market segments and Market Data Break Down by Type (Mining, Quarries & Aggregates Machinery, - Crushing, Pulverizing, & Screening Machinery, - Mineral Processing Backhoe Loaders, - Surface Mining Machinery, - Underground Mining, - Others, Construction, Building & Utilities, - Earthmoving, - Material Handling, - Others, Forestry Machinery, - Skidders, - Forwarders, - Harvesters, - Others, Oil & Gas, - Heat Exchanger, - Drillers, - Others, Agriculture & Livestock, - Irrigation Machinery, - Harvesting Machinery, - Haying and Forage, Others), Sales Channel (Online, Offline), Operation (Fully-Automatic, Semi-Automatic, Manual) To comprehend Global Industrial Machinery - market dynamics in the world mainly, the worldwide Industrial Machinery - market is analyzed across major global regions. AMA also provides customized specific regional and country-level reports for the following areas. • North America: United States, Canada, and Mexico. • South & Central America: Argentina, Chile, Colombia and Brazil. • Middle East & Africa: Saudi Arabia, United Arab Emirates, Israel, Turkey, Egypt and South Africa. • Europe: United Kingdom, France, Italy, Germany, Spain, Belgium, Netherlands and Russia. • Asia-Pacific: India, China, Japan, South Korea, Indonesia, Malaysia, Singapore, and Australia. Presented By
AMA Research & Media LLP
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Irrigation Pivot Market Segmentation, Application, Technology & Market Analysis Research Report 2026
Global Irrigation Pivot Industry
New Study On “Irrigation Pivot Market 2020 Global Market Opportunities, Challenges, Strategies and Forecasts 2026” Added to Wise Guy Reports Database
Market Overview
The data presented in the Global Irrigation Pivot Market report is a compilation of data identified and collected from various sources. The scope of growth of the Global Irrigation Pivot Market during the forecast period is identified after analyzing different data sources. The data that is presented in the report is a vital source of guidance to both companies and individuals interested in the Global Irrigation Pivot Market and provides different information related to the Global Irrigation Pivot Market. The data presented in the report is from the year 2020 to the year 2026 that comprises the base period. The data for the forecast period from the year 2020 to the year 2026 has been predicted based on the collated data. Popular market trends during both the base period and the forecast period have been identified along with the market growth that they can achieve.
This report focuses Global market, it covers details as following:
Major Companies 2IE INTERNATIONAL Alkhorayef Industries Co. BAUER Ges.m.b.H. Rohren- und Pumpenwerk Briggs Irrigation China Yulin Irrigation Equipment IRRIFRANCE IRRILAND Srl Lindsay Corporation Otech Rainfine Irrigation Company REINKE Irrigation RKD Irrigacion T-L Irrigation Company Valley Irrigation Zoomlion Heavy Machinery Co., Ltd.
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Main Regions North America United States Canada Latin America Mexico Brazil Argentina Others Europe Germany United Kingdom France Italy Spain Russia Netherland Others Asia & Pacific China Japan India Korea Australia Southeast Asia Indonesia Thailand Philippines Vietnam Singapore Malaysia Others Africa & Middle East South Africa Egypt Turkey Saudi Arabia Iran Others
Main Product Type Irrigation Pivot Market, by Mobility Mobile Irrigation Pivot Fixed Irrigation Pivot Irrigation Pivot Market, by
Main Applications Farm Greenhouse
Also Read: https://www.einpresswire.com/article/477485668/irrigation-pivot-market-global-industry-analysis-and-opportunity-assessment-2019-2023
Some Major Points from Table of content:
Global Irrigation Pivot Detailed Analysis Report 2018-2023 Chapter One Irrigation Pivot Market Overview 1.1 Global Irrigation Pivot Market Sales Volume Revenue and Price 2013-2023 1.2 Irrigation Pivot, by Mobility 2013-2023 1.2.1 Global Irrigation Pivot Sales Market Share by Mobility 2013-2023 1.2.2 Global Irrigation Pivot Revenue Market Share by Mobility 2013-2023 1.2.3 Global Irrigation Pivot Price by Mobility 2013-2023 1.2.4 Mobile Irrigation Pivot 1.2.5 Fixed Irrigation Pivot 1.3 Irrigation Pivot, by 2013-2023 1.3.1 Global Irrigation Pivot Sales Market Share by 2013-2023 1.3.2 Global Irrigation Pivot Revenue Market Share by 2013-2023 1.3.3 Global Irrigation Pivot Price by 2013-2023
Chapter Two Irrigation Pivot by Regions 2013-2018 2.1 Global Irrigation Pivot Sales Market Share by Regions 2013-2018 2.2 Global Irrigation Pivot Revenue Market Share by Regions 2013-2018 2.3 Global Irrigation Pivot Price by Regions 2013-2018 2.4 North America 2.4.1 United States 2.4.2 Canada 2.5 Latin America 2.5.1 Mexico 2.5.2 Brazil 2.5.3 Argentina 2.5.4 Others in Latin America 2.6 Europe 2.6.1 Germany 2.6.2 United Kingdom 2.6.3 France 2.6.4 Italy 2.6.5 Spain 2.6.6 Russia 2.6.7 Netherland 2.6.8 Others in Europe 2.7 Asia & Pacific 2.7.1 China 2.7.2 Japan 2.7.3 India 2.7.4 Korea 2.7.5 Australia 2.7.6 Southeast Asia 2.7.6.1 Indonesia 2.7.6.2 Thailand 2.7.6.3 Philippines 2.7.6.4 Vietnam 2.7.6.5 Singapore 2.7.6.6 Malaysia 2.7.6.7 Others in Southeast Asia 2.8 Africa & Middle East 2.8.1 South Africa 2.8.2 Egypt 2.8.3 Turkey 2.8.4 Saudi Arabia 2.8.5 Iran 2.8.6 Others in Africa & Middle East
Chapter Three Irrigation Pivot by Players 2013-2018 3.1 Global Irrigation Pivot Sales Volume Market Share by Players 2013-2018 3.2 Global Irrigation Pivot Revenue Share by Players 2013-2018 3.3 Global Top Players Irrigation Pivot Key Product Model and Market Performance 3.4 Global Top Players Irrigation Pivot Key Target Consumers and Market Performance
Chapter Four Irrigation Pivot by Consumer 2013-2018 4.1 Global Irrigation Pivot Sales Market Share by Consumer 2013-2018 4.2 Farm 4.3 Greenhouse 4.4 Consuming Habit and Preference
Chapter Five Global Top Players Profile 5.1 2IE INTERNATIONAL 5.1.1 2IE INTERNATIONAL Company Details and Competitors 5.1.2 2IE INTERNATIONAL Key Irrigation Pivot Models and Performance 5.1.3 2IE INTERNATIONAL Irrigation Pivot Business SWOT Analysis and Forecast 5.1.4 2IE INTERNATIONAL Irrigation Pivot Sales Volume Revenue Price Cost and Gross Margin 5.2 Alkhorayef Industries Co. 5.2.1 Alkhorayef Industries Co. Company Details and Competitors 5.2.2 Alkhorayef Industries Co. Key Irrigation Pivot Models and Performance 5.2.3 Alkhorayef Industries Co. Irrigation Pivot Business SWOT Analysis and Forecast 5.2.4 Alkhorayef Industries Co. Irrigation Pivot Sales Volume Revenue Price Cost and Gross Margin 5.3 BAUER Ges.m.b.H. Rohren- und Pumpenwerk 5.3.1 BAUER Ges.m.b.H. Rohren- und Pumpenwerk Company Details and Competitors 5.3.2 BAUER Ges.m.b.H. Rohren- und Pumpenwerk Key Irrigation Pivot Models and Performance 5.3.3 BAUER Ges.m.b.H. Rohren- und Pumpenwerk Irrigation Pivot Business SWOT Analysis and Forecast 5.3.4 BAUER Ges.m.b.H. Rohren- und Pumpenwerk Irrigation Pivot Sales Volume Revenue Price Cost and Gross Margin 5.4 Briggs Irrigation 5.4.1 Briggs Irrigation Company Details and Competitors 5.4.2 Briggs Irrigation Key Irrigation Pivot Models and Performance 5.4.3 Briggs Irrigation Irrigation Pivot Business SWOT Analysis and Forecast 5.4.4 Briggs Irrigation Irrigation Pivot Sales Volume Revenue Price Cost and Gross Margin 5.5 China Yulin Irrigation Equipment 5.5.1 China Yulin Irrigation Equipment Company Details and Competitors 5.5.2 China Yulin Irrigation Equipment Key Irrigation Pivot Models and Performance 5.5.3 China Yulin Irrigation Equipment Irrigation Pivot Business SWOT Analysis and Forecast 5.5.4 China Yulin Irrigation Equipment Irrigation Pivot Sales Volume Revenue Price Cost and Gross Margin 5.6 IRRIFRANCE 5.6.1 IRRIFRANCE Company Details and Competitors 5.6.2 IRRIFRANCE Key Irrigation Pivot Models and Performance 5.6.3 IRRIFRANCE Irrigation Pivot Business SWOT Analysis and Forecast 5.6.4 IRRIFRANCE Irrigation Pivot Sales Volume Revenue Price Cost and Gross Margin 5.7 IRRILAND Srl 5.7.1 IRRILAND Srl Company Details and Competitors 5.7.2 IRRILAND Srl Key Irrigation Pivot Models and Performance 5.7.3 IRRILAND Srl Irrigation Pivot Business SWOT Analysis and Forecast 5.7.4 IRRILAND Srl Irrigation Pivot Sales Volume Revenue Price Cost and Gross Margin 5.8 Lindsay Corporation 5.8.1 Lindsay Corporation Company Details and Competitors 5.8.2 Lindsay Corporation Key Irrigation Pivot Models and Performance 5.8.3 Lindsay Corporation Irrigation Pivot Business SWOT Analysis and Forecast 5.8.4 Lindsay Corporation Irrigation Pivot Sales Volume Revenue Price Cost and Gross Margin 5.9 Otech 5.9.1 Otech Company Details and Competitors 5.9.2 Otech Key Irrigation Pivot Models and Performance 5.9.3 Otech Irrigation Pivot Business SWOT Analysis and Forecast 5.9.4 Otech Irrigation Pivot Sales Volume Revenue Price Cost and Gross Margin 5.10 Rainfine Irrigation Company 5.10.1 Rainfine Irrigation Company Company Details and Competitors 5.10.2 Rainfine Irrigation Company Key Irrigation Pivot Models and Performance 5.10.3 Rainfine Irrigation Company Irrigation Pivot Business SWOT Analysis and Forecast 5.10.4 Rainfine Irrigation Company Irrigation Pivot Sales Volume Revenue Price Cost and Gross Margin 5.11 REINKE Irrigation 5.12 RKD Irrigacion 5.13 T-L Irrigation Company 5.14 Valley Irrigation 5.15 Zoomlion Heavy Machinery Co., Ltd.
Continued….
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A Greenhouse Large Enough to Feed the Eastern Seaboard
MOREHEAD, Ky. — Proximity to big markets is crucial for the fresh produce business.
So when AppHarvest, a two-year-old start-up, was looking for a site for a greenhouse, it picked a 366-acre field in Rowan County just outside Morehead, a university town in eastern Kentucky.
The greenhouse, the largest in the United States, will be just a day’s drive from almost 70 percent of American consumers, including those who love fresh tomatoes.
Next summer, when AppHarvest begins production at its $97 million building, 285 employees will start shipping 45 million pounds of fresh produce annually, primarily tomatoes, to grocery stores from Atlanta to New York, and as far west as Chicago and St. Louis.
For the greenhouse to be cost-effective, size was as important as location. The 60-acre, 2.76-million-square-foot building will be big enough to lower costs on materials, production and distribution.
“I asked the engineers, ‘How big can we possibly be to operate efficiently and effectively?’” said Jonathan Webb, AppHarvest’s 34-year-old founder and chief executive. “We have to compete with produce coming from 2,000 miles away.”
The mammoth project will use Dutch greenhouse technology, which focuses on sustainable crop production, to meet the rising demand for American-grown tomatoes. The greenhouse uses digital monitoring, sun and LED lighting, recycled rainwater and nonchemical growing practices. It also responds to a host of cultural concerns about food safety, freshness, environmental quality and energy consumption.
Other food growers have the same idea. AppHarvest is part of a wave of new greenhouse construction changing vegetable production in the eastern United States.
Kentucky Fresh Harvest is building a 30-acre, $13.5 million greenhouse near Stanford, about 100 miles southeast of Morehead, to grow cherry tomatoes. Mucci Farms, a Canadian company, just opened the first of three large greenhouses for tomato production on a 75-acre farm in Huron, Ohio. Mastronardi Produce, another Canadian grower, last year finished a 20-acre greenhouse for vegetables in Wapakoneta, Ohio. The company owns six others in the United States.
AppHarvest is intent on meeting the rising demand for fresh tomatoes in a market increasingly supplied by imports from Mexico and Canada. The two countries account for more than half of the $3 billion American fresh tomato market.
But production in the United States is declining, according to the Department of Agriculture. Land devoted to fresh tomato production in Florida, a major producer, has fallen to around 30,000 acres, down from 39,400 acres at the start of the century, according to the agency. Similar reductions have occurred in California, North Carolina and other states.
Mr. Webb, the son of a Kentucky machinery dealer who was raised in nearby Lexington, said he always planned to build something big in Kentucky. Years of research, and the state’s abundance of land and water, drew him to agriculture.
This colossal plot in Morehead is only the first step in Mr. Webb’s ambitious plan. The next is to be so successful that other greenhouse growers follow AppHarvest to the state.
His hope, he said, is to rejuvenate the state’s economy, devastated by the collapse of the coal industry, with a “sustainable produce hub” that would turn Kentucky into “the agtech capital” of the United States. Mr. Webb also plans to build huge AppHarvest greenhouses in other eastern Kentucky communities.
That goal is achievable. Greenhouses provide a controlled environment that allows vegetables to be grown year-round. Tomatoes grown in greenhouses accounted for 32 percent of the domestic supply in 2017, the latest year for accurate figures, according to a report published in March by the Agriculture Department. The same year, Kentucky farmers grew tomatoes in 1.1 million square feet of greenhouses on more than 300 farms.
“It’s not going to be just AppHarvest,” Mr. Webb said. “The whole region will be lit up with vibrancy and excitement. The same thing you see in New York and San Francisco.”
The greenhouse was designed and built by Dalsem, a family-owned company founded in the Netherlands in 1932 that has supplied greenhouses for vegetable and flower production in 52 countries. The agreement to build AppHarvest’s facility, the largest greenhouse Dalsem ever manufactured, prompted top Dutch government officials to attend the signing ceremony earlier this year.
In July, AppHarvest signed a $15 million contract with Philips, the Dutch electronics company, for the LED system that will provide optimal lighting conditions for maximum plant growth. At night, AppHarvest’s 366-acre field, surrounded by Rowan County’s dark, forested landscape, will glow like a bright glass city. The company is negotiating with the Eastern Kentucky Power Cooperative to supply the greenhouse with solar power.
The greenhouse will also use advanced cultivation practices. All of its irrigation water — 360,000 gallons a day — will be supplied by rain collected from the greenhouse roof that drains into a 10-acre pond capable of storing almost 46 million gallons, or a three-month supply in case of drought, the company said. All of the water will be recycled, with no discharge into streams or groundwater. AppHarvest will add nutrients straight to the roots of plants raised in charcoal beds.
The company will control pests and diseases with nonchemical, biological methods. For instance, two species of tiny wasps, Encarsia formosa and Eretmocerus eremicus, will be introduced to control white flies, a nemesis of greenhouse production.
Mr. Webb’s vision, and his skill in selling it, attracted robust support from the state, venture capitalists, vegetable marketers and Dutch greenhouse and electronics manufacturers.
In May, Mr. Webb persuaded the managers of Equilibrium Capital’s Controlled Environment Foods Fund to invest nearly $100 million to build the greenhouse. He raised millions more from the ValueAct Spring Fund and from the venture capital firm Revolution’s Rise of the Rest Seed Fund to finance the company’s engineering, administration, staff and start-up operations. Rise of the Rest, a $150 million fund established in 2017 by Steve Case, co-founder of AOL and chairman of Revolution, typically invests $100,000 to $1 million in local start-ups through pitch competitions, according to its website.
“We just believed no matter what obstacles came up with AppHarvest, this is the guy who could get it done,” said J.D. Vance, author of “Hillbilly Elegy” and managing partner of Rise of the Rest. “You want to invest in people who won’t run away at the first sign of trouble.”
Kentucky invested $1.9 million in a new road and other infrastructure. “That area used to be tobacco,” said Ryan Quarles, commissioner of the State Department of Agriculture. “It’s an area now that’s eager for new technology. We like his vision.”
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Bale Wrapper Market Technology Trends and Forecasts to 2018-2026
Bale wrapper is a farm equipment used for wrapping bales in plastic in order to turn them into silage. Since the introduction of bale wrapping system in the 1980s, wrapping bale silage has provided superior quality, nutritious fodder. Further, it also provides added benefits such as low investment costs, reduced labor requirements, and increased feeding flexibility as compared to clamp silage.
Bale wrappers can be a benefit for any size of farmer. Bale wrappers are often known as low cost storage unit for long stem grasses, and hence, are widely preferred by farmers. Desired storage capacity can be obtained through bale wrappers when silo capacity is insufficient, preferably during the time of forage surplus. The wrapped bale silages are often placed in different convenient locations around the farm to provide small feeding units. Moreover, large bale silage provides a better and precise allocation of forages, based on their quality.
A key factor fueling the growth of the bale wrapper market is the shortened harvesting time. Wrapping of silage requires cutting crop to wilt only a few hours before baling. High-humidity and anticipated rainstorms posing immense risk when hay is involved, but these are less of a problem with silage. The moisture content reduces the rate of leaf loss during harvest in bale silage, which results in a high-quality source of protein than field cured hay.
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An essential element of the bale wrapping process is the choice of a high-quality bale wrapper in order to provide the best protection. Fundamental properties of a high-quality bale wrapper are UV radiation protection, superior strength, and effective tack properties. These properties provides protection from sunlight, good puncture resistance, and airtight seal. Good-quality bale wrapper resists the rigors of rapid wrapping equipment and of the burden placed upon it during wrapping and transportation. However, utilizing a low-quality bale wrapper can result in poor bale density, stoppages, air entrance, and inconsistent stretching. Further, usage of plastic bale wrappers is an environmental concern, which is restraining the growth of the bale wrapper market at the global level.
The global bale wrapper market can be segmented based on product, type, operation type, end-user industry, and geography. In terms of product, the bale wrapper market can be classified into platform, swinging arm, in-line, and bale spear. In-line wrappers place bales end-to-end in a row while wrapping. This type of wrapper uses less plastic because the ends of the bales are not covered. Based on type, the global bale wrapper market can be divided into round bale wrapper and square bale wrapper. Round bale wrappers are the primary choice of farmers and contractors who undertake bale wrapping at the storage site. Moreover, round bale wrappers are fairly simple to handle. In terms of operation type, the global bale wrapper market can be categorized into manual, automatic, and semi-automatic. Demand for automatic bale wrappers has increasing every year. Based on end-user industry, the bale wrapper market can be bifurcated into agricultural production, irrigation, lease, and others. In terms of geography, the global bale wrapper market can be divided into North America, Europe, Asia Pacific, Middle East & Africa, and South America.
Companies operating in the global bale wrapper market are focusing on efficient solutions to meet the rising demand for the product. Key players operating in the global bale wrapper market include Abbriata SRL, Anderson Group Co., APIESSE S.r.l., Caeb International Srl, Conor Engineering, ELHO Oy Ab, Enorossi, IHI STAR Machinery Corporation, John Deere, KUHN S.A., Kverneland Group Deutschland GmbH, MASCAR Spa, McHale Engineering Ltd., SITREX S.p.A., Stinger, Inc., Supertino Srl, Tanco Autowrap Ltd., URSUS S.A., Vermeer, and Vicon.
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The report offers a comprehensive evaluation of the market. It does so via in-depth qualitative insights, historical data, and verifiable projections about market size. The projections featured in the report have been derived using proven research methodologies and assumptions. By doing so, the research report serves as a repository of analysis and information for every facet of the market, including but not limited to: Regional markets, technology, types, and applications.
The study is a source of reliable data on:
Market segments and sub-segments
Market trends and dynamics
Supply and demand
Market size
Current trends/opportunities/challenges
Competitive landscape
Technological breakthroughs
Value chain and stakeholder analysis
The regional analysis covers:
North America (U.S. and Canada)
Latin America (Mexico, Brazil, Peru, Chile, and others)
Western Europe (Germany, U.K., France, Spain, Italy, Nordic countries, Belgium, Netherlands, and Luxembourg)
Eastern Europe (Poland and Russia)
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Rise In Adoption Of Technology-Driven Equipment And Machinery Will Game changer For Agriculture Equipment Market
San Francisco, 03 June 2019 - The global agriculture equipment market size is expected to reach USD 244.2 billion by 2025, expanding at a CAGR of 8.9% from 2019 to 2025, according to a study conducted by Grand View Research, Inc. Rising population has escalated demand for food and has pressurized the agriculture sector to be increasingly efficient and productive. Additionally, increased mechanization in the agriculture sector, rise in demand for agricultural products, and need for profitability and operational efficiency are some of the factors anticipated to drive the agricultural machinery market demand over the forecast period.
Rise in adoption of technology-driven equipment and machinery such as robotics is also anticipated to drive the farm machinery market demand over the forecast years. Farmers in developed regions are adopting modern technologies such as drones, moisture sensors, GPS enabled devices, self-driving tractors, smart irrigation, and terrain contour mapping to increase farm yield and address soaring food demand. Such technological advancements are fueling the espousal of farm equipment across the globe.
The farm machinery market is also estimated to be driven by increasing sales in developing nations such as India, China, and Brazil, as these countries continue to mechanize their agricultural sectors. Furthermore, strong economic growth and population expansion are expected to impose pressure on the agriculture sectors to be more competent, thus increasing sales.On the down side, high cost of agricultural machinery and financial crisis faced by farmers are some of the major challenges hindering market growth.
The agriculture equipment market is highly competitive and fragmented owing to the presence of few prominent players, along with several medium- and small-scale players accounting for the market share. The key players in the market include John Deere, AGCO, Mahindra & Mahindra, CNH Industrial N.V., Iseki & Co., Ltd., and Kubota.
Several leading vendors are investing in R&D in order to develop innovative equipment and maintain a strong foothold in the market. For instance, in April 2017, Mahindra & Mahindra Limited launched its 24hp 4WD small tractor. It has been available in the Indian market since April 2017. The tractor caters to row cropping and horticulture applications, is capable of lifting up to 750 kg, and is equipped with automatic depth & draft control (ADDC) features.
To request a sample copy or view summary of this report, click the link below: www.grandviewresearch.com/industry-analysis/agriculture-equipment-market
Further key findings from the study suggest:
The global agricultural equipment market is expected to register a CAGR of 8.9% from 2019 to 2025, due to technological advancements in agriculture automation and robotics as well as ever-increasing population
Growing number of government initiatives in developing countries, especially China and India, to enhance agricultural productivity is expected to further spur sale of farm equipment over the forecast period
By product, the tractors segment held the dominant share of over 25.0% in 2018, which is accredited to the fact that farmers are increasingly preferring tractors to increase production and restrict dependency on farm labor
On the basis of application, the harvesting and threshing segment is anticipated to witness significant growth over the forecast period and is expected to exceed a CAGR of 10.0% from 2019 to 2025
The Asia Pacific market is projected to expand at a CAGR of over 9.0%, owing to its existing and improving infrastructure levels, alternative sales channels, and government support
Key players in the market include John Deere, AGCO, Mahindra & Mahindra, CNH Industrial N.V., Iseki & Co., Ltd., and Kubota.
Grand View Research has segmented the global agriculture equipment market based on product, application, and region: Agriculture Equipment Product Outlook (Revenue, USD Billion, 2014 - 2025)
Tractors
Harvesters
Planting Equipment
Irrigation & Crop Processing Equipment
Spraying Equipment
Hay & Forage Equipment
Others
Row Crop Planters
Air Seeders
Grain Drills
Others
Agriculture Equipment Application Outlook (Revenue, USD Billion, 2014 - 2025)
Land Development & Seed Bed Preparation
Sowing & Planting
Weed Cultivation
Plant Protection
Harvesting & Threshing
Post-harvest & Agro Processing
Agriculture Equipment Regional Outlook (Revenue, USD Billion, 2014–2025)
North America
US.
Canada
Europe
UK.
Germany
France
Italy
Netherlands
Spain
Denmark
Russia
Asia Pacific
China
India
Japan
Singapore
South Korea
Taiwan
Australia
Latin America
Brazil
Mexico
Argentina
Middle East & Africa
UAE
Saudi Arabia
South Africa
Access Official Press Release Of This Report: www.grandviewresearch.com/press-release/agriculture-farm-equipment-machinery-market
About Grand View Research
Grand View Research, Inc. is a U.S. based market research and consulting company, registered in the State of California and headquartered in San Francisco. The company provides syndicated research reports, customized research reports, and consulting services. To help clients make informed business decisions, we offer market intelligence studies ensuring relevant and fact-based research across a range of industries, from technology to chemicals, materials and healthcare.
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Global Pre-harvest Equipment market Share, Revenue, Demand and Forecast to 2025
Agricultural machinery is considered as imperative for farmers worldwide as they provide extensive support in cultivation of crops. The use of pre-harvest equipment is expected to help the farmers in improving their production capacities in order to reduce the gap between demand and supply of agricultural produce. Some of the key products of pre-harvest equipment are planting equipment, primary tillage equipment, irrigation equipment, secondary tillage equipment, and plant protection and fertilization equipment.
Global Pre-harvest Equipment Market: According to Statistics PBI, the Global Pre-harvest Equipment market is estimated at $ XX million in 201X and is expected to reach $XX million by 202X growing at a CAGR of X % from 201X to 2022. Increasing usage of pre-harvest equipment across the globe in order to increase production capacity and efficiency is fueling the market growth. Moreover, increasing awareness among farmers and several government initiatives especially in developing economies is anticipated to increase the demand for market in the coming few years.
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Pre-harvest Equipment Market: Drivers
Pre-harvest Equipment Market: Restraints
Increase in the agriculture farming due to rise in population around the world
High cost of equipment
Technological advancements such as development of the self-propelled pre-harvest equipment
Lack of awareness about pre-harvest equipment in underdeveloped countries
High adoption of mechanical pre-harvesting procedures in developed and developing countries
Presence of huge number of small and fragmented land holders around the world
Some of the players in the global pre-harvest equipment market include:
· Deere & Company (U.S.)
· AGCO Corp (U.S.)
· CNH Global (CNH Industrial) (Netherlands)
· Mahindra & Mahindra Ltd. (India)
· Valmont Industries Inc. (U.S.)
· Kubota Corporation (Japan)
· Yanmar Co., Ltd. (Japan)
· Bucher Industries (Switzerland)
Precision Business Insights (PBI) in its report titled “Pre-harvest Equipment Market”: Market Estimation, Dynamics, Regional Share, Trends, Competitor Analysis 20XX-20XX and Forecast 20XX-20XX” assesses the market performance over seven years forecast period over 2019-2025. The report analyses the market value forecast.
Market Scope: Pre-harvest Equipment Market
Global Pre-harvest equipment market is segmented on the basis of equipment type and region
Based on the equipment type, pre-harvest equipment market is segmented into the following:
· Primary Tillage Equipment
· Secondary Tillage Equipment
· Planting Equipment
· Irrigation Equipment
· Crop Protection and Fertilizers Equipment
· Others
Based on the region, pre-harvest equipment market is segmented into the following:
· North America
· Europe
· Asia Pacific
· Latin America
· Middle East and Africa
For more information: https://precisionbusinessinsights.com/market-reports/pre-harvest-equipment-market/
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Reesink enjoys first year success
Reesink Turfcare is marking its first year as Toro distributor following the acquisition last July by Royal Reesink N.V. of the turfcare activities of Lely in the UK, Ireland and Denmark – and it’s been a successful 12 months, built on a strong legacy.
That’s according to managing director, David Cole, who says: “Reesink Turfcare began life with a great legacy in place. Lely had an excellent record as distributor of Toro turf machinery and irrigation products in the UK for over 30 years, and Reesink brought with it 60 years’ unrivalled experience as Toro distributor in the Netherlands.
“While no guarantee of success, it provided a solid start; and when The Toro Company and St Andrews Links signed a long-term partnership agreement under our new watch it spoke volumes about the trust and commitment the ‘home of golf’ had in Reesink’s supply structure and the service and support we offered.”
David Cole says that, since the acquisition, Reesink has enjoyed healthy sales, while market and revenue performance have been good and client retention has been excellent. The business has been steered down a new path, with big changes put in place including a new name, structure, direction and systems, as well as new website; and customer reaction has been extremely favourable, he reports.
Tribute was paid to staff for the way in which they embraced change and stepped up to the plate to make things work smoothly for the new company and customers, headed by achieving the first phase of a necessary operating system changeover in only four months, instead of the routine 18 month expectations for such projects.
Investment in the business was said to have been an essential part of its growth in year one. A new Scotland service branch was opened to add value and build relationships with customers in Scotland; and the significant investment was made in the company’s IT infrastructure, projected to provide live data analysis to deliver a more proactive customer response.
Reesink believes this will result in a future business that’s healthier across all departments and product lines with everything including machinery, irrigation, tractors, aeration, parts and aftersales care synchronised to serve customers better.
As the company embarks on another year, the aim is for continuous improvement and development on all fronts to retain Reesink’s enviable position at the forefront of the professional turf maintenance machinery and irrigation market. This includes looking to add to its existing product portfolio comprising Toro, TYM tractors and Otterbine water aeration units with similar, complementary brands.
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Hose Reel Market Likely to Experience a Tremendous Growth in Near Future 2018-2026
A hose reel is a cylindrical spindle made of metal, glass, or plastic, used to store a hose. The reel can be conventionally rolled up in hose and provides protection to the reel against damage. The hose reel enhances productivity, as having the hose reel conveniently located will enable liquids and fluids to be quickly and easily dispensed.
The growing importance of agriculture to cater to the needs of an increasing population is expected to fuel the demand for hose reels during the forecast period. Hose reels help the farmers to increase the productivity on their agriculture land. Hose reel irrigation system provides better irrigation facilities to farmers. The system provides a portable mode of distributing water via overhead spraying, using a flexible hose in polyethylene. Water is wound out on a drum from the reel on a traveling trolley or cart. Hose reel is also used in the gardening industry to provide water to plants through a pipe rolled in a hose. A fire hose reel consists of pipes and pumps to provide water. Hose reels installed in a building ensures proper distribution of water to combat a fire. A fire hose reel is mostly used in commercial and industrial workplaces to provide better safety to workers. The reel is properly organized in a hose and can be used instantly in case of an emergency. Strict rules and regulations by governments for all commercial and industrial workplaces to provide safety against fire is expected to fuel the demand for hose reel during the forecast period. High maintenance cost of hose reels is expected to hamper the growth of the market during the forecast period.
The hose reel market can be segmented based on product type, drive type, hose diameter, and end-use. On the basis of product type, the hose reel market is categorized as stationary hose reels, mobile or portable hose reels, hose reel carts, decorative hose reels, and spring-loaded hose reels. Based on drive type, the hose reel market is segmented into turbine-drive, combustion engine, electric drive, and hydraulic drive. Among all, hydraulic drive hose reel is expected to dominate the market due to rapid growth of agricultural industries. Combustion drive hose reel is expected to dominate the market in terms of share due to strict government rules and regulations for all workplaces to have fire safety equipment. Based on hose diameter, the hose reel market is segmented into < 10 cm, 11-20 cm, 21-30 cm, 31-40 cm, and >40cm. In terms of end-use, the hose reel market is segmented into agriculture, construction, mining industry, etc.
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The hose reel market is segmented into five regions, namely, North America, Europe, Asia Pacific, Middle East & Africa, and South America. Asia Pacific is expected to dominate the market in terms of share due to vast agricultural land. Agricultural fields and construction sites have to be expanded in order to cater to the needs of an increasing population. These factors are expected to fuel the demand for hose reel during the forecast period. North America and Europe are expected to dominate the hose reel market in terms of growth rate due to increasing infrastructural activities within the regions. Presence of a number of heavy metal industries within these regions will drive the hose reel market during the forecast period.
The major players in the global hose reel market are Zoomlion Heavy Machinery Co., Ltd., Bauer Ges.m.b.H. Rohren- und Pumpenwerk, Casella Macchine Agricole Srl, Fasterholt Maskinfabrik A/S, HUDIG GmbH and Co. KG, Meier – Brakenberg GmbH and Co. KG, Storth Ltd. etc.
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