100+ datasets found
  1. Quick Stats Agricultural Database API

    • catalog.data.gov
    • datadiscoverystudio.org
    • +3more
    Updated Apr 21, 2025
    + more versions
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    National Agricultural Statistics Service, Department of Agriculture (2025). Quick Stats Agricultural Database API [Dataset]. https://catalog.data.gov/dataset/quick-stats-agricultural-database-api
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    Dataset updated
    Apr 21, 2025
    Dataset provided by
    United States Department of Agriculturehttp://usda.gov/
    National Agricultural Statistics Servicehttp://www.nass.usda.gov/
    Description

    Quick Stats API is the programmatic interface to the National Agricultural Statistics Service's (NASS) online database containing results from the 1997, 2002, 2007, and 2012 Censuses of Agriculture as well as the best source of NASS survey published estimates. The census collects data on all commodities produced on U.S. farms and ranches, as well as detailed information on expenses, income, and operator characteristics. The surveys that NASS conducts collect information on virtually every facet of U.S. agricultural production.

  2. Agricultural Data | Agriculture & Farming Leaders Worldwide | Verified...

    • datarade.ai
    Updated Oct 27, 2021
    + more versions
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    Success.ai (2021). Agricultural Data | Agriculture & Farming Leaders Worldwide | Verified Global Profiles from 700M+ Dataset | Best Price Guarantee [Dataset]. https://datarade.ai/data-products/agricultural-data-agriculture-farming-leaders-worldwide-success-ai
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    .bin, .json, .xml, .csv, .xls, .sql, .txtAvailable download formats
    Dataset updated
    Oct 27, 2021
    Dataset provided by
    Area covered
    Oman, Guinea, Romania, Palau, Kyrgyzstan, Thailand, Macao, Belgium, Solomon Islands, Saint Lucia
    Description

    Success.ai’s Agricultural Data provides unparalleled access to verified profiles of agriculture and farming leaders worldwide. Sourced from over 700 million LinkedIn profiles, this dataset includes actionable insights and contact details for professionals shaping the global agricultural landscape. Whether your objective is to market agricultural products, establish partnerships, or analyze industry trends, Success.ai ensures your outreach is powered by accurate, enriched, and continuously updated data.

    Why Choose Success.ai’s Agricultural Data? Comprehensive Professional Profiles

    Access verified LinkedIn profiles of farm owners, agricultural consultants, supply chain managers, agribusiness executives, and industry leaders. AI-validated data ensures 99% accuracy, minimizing wasted outreach and improving communication efficiency. Global Coverage Across Agricultural Sectors

    Includes professionals from crop farming, livestock production, agricultural technology, and sustainable farming practices. Covers key regions such as North America, Europe, APAC, South America, and Africa. Continuously Updated Dataset

    Real-time updates reflect role changes, organizational shifts, and emerging trends in agriculture and farming. Tailored for Agricultural Insights

    Enriched profiles include professional histories, areas of specialization, and industry affiliations for deeper audience understanding. Data Highlights: 700M+ Verified LinkedIn Profiles: Gain access to a global network of agricultural and farming professionals. 100M+ Work Emails: Communicate directly with decision-makers in agribusiness and farming. Enriched Professional Histories: Understand career trajectories, expertise, and organizational affiliations. Industry-Specific Segmentation: Target professionals in crop farming, agtech, and sustainable agriculture with precision filters. Key Features of the Dataset: Agriculture and Farming Professional Profiles

    Identify and connect with farm operators, agricultural consultants, supply chain managers, and agribusiness leaders. Engage with professionals responsible for farm management, equipment procurement, and sustainable farming initiatives. Detailed Firmographic Data

    Leverage insights into farm sizes, crop or livestock focus, geographic distribution, and operational scales. Customize outreach to align with specific farming practices or market needs. Advanced Filters for Precision Targeting

    Refine searches by region, type of agriculture (crop farming, livestock, horticulture), or years of experience. Customize campaigns to address unique challenges such as climate adaptation or supply chain optimization. AI-Driven Enrichment

    Enhanced datasets deliver actionable data for personalized campaigns, highlighting certifications, achievements, and key projects. Strategic Use Cases: Marketing Agricultural Products and Services

    Promote farm equipment, crop protection solutions, or livestock management tools to decision-makers in agriculture. Engage with professionals seeking innovative solutions to enhance productivity and sustainability. Collaboration and Partnerships

    Identify agricultural leaders for collaborations on sustainability programs, research projects, or community initiatives. Build partnerships with agribusinesses, cooperatives, or government bodies driving agricultural development. Market Research and Industry Analysis

    Analyze trends in crop yields, livestock production, and agricultural technology adoption. Use insights to refine product development and marketing strategies tailored to evolving industry needs. Recruitment and Talent Acquisition

    Target HR professionals and agricultural firms seeking skilled farm managers, agronomists, or agtech specialists. Support hiring for roles requiring agricultural expertise and leadership. Why Choose Success.ai? Best Price Guarantee

    Access industry-leading Agricultural Data at the most competitive pricing, ensuring cost-effective campaigns and strategies. Seamless Integration

    Easily integrate verified agricultural data into CRMs, recruitment platforms, or marketing systems using APIs or downloadable formats. AI-Validated Accuracy

    Depend on 99% accurate data to minimize wasted outreach and maximize engagement outcomes. Customizable Solutions

    Tailor datasets to specific agricultural segments, regions, or areas of focus to meet your strategic objectives. Strategic APIs for Enhanced Campaigns: Data Enrichment API

    Enhance existing records with verified agricultural profiles to refine targeting and engagement. Lead Generation API

    Automate lead generation for a consistent pipeline of qualified professionals in the agriculture sector, scaling your outreach efficiently. Success.ai’s Agricultural Data empowers you to connect with the leaders and innovators transforming global agriculture. With verified contact details, enriched professional profiles, and global reach, your marketing, partn...

  3. w

    Farmers Markets in New York State API

    • data.wu.ac.at
    Updated Aug 7, 2018
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    NY Open Data (2018). Farmers Markets in New York State API [Dataset]. https://data.wu.ac.at/schema/data_ny_gov/eGp5YS1mOG5n
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    Dataset updated
    Aug 7, 2018
    Dataset provided by
    NY Open Data
    Description

    In the past decade the number of farmers markets in New York State has grown at a rapid rate. The dataset contains information detailing the time and location of community farmers markets as well as the name and phone number of the market manager.

  4. Latest agricultural price indices

    • gov.uk
    • s3.amazonaws.com
    Updated Jun 26, 2025
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    Department for Environment, Food & Rural Affairs (2025). Latest agricultural price indices [Dataset]. https://www.gov.uk/government/statistics/agricultural-price-indices
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    Dataset updated
    Jun 26, 2025
    Dataset provided by
    GOV.UKhttp://gov.uk/
    Authors
    Department for Environment, Food & Rural Affairs
    Description

    The Agricultural Price Index (API) is a monthly publication that measures the price changes in agricultural outputs and inputs for the UK. The output series reflects the price farmers receive for their products (referred to as the farm-gate price). Information is collected for all major crops (for example wheat and potatoes) and on livestock and livestock products (for example sheep, milk and eggs). The input series reflects the price farmers pay for goods and services. This is split into two groups: goods and services currently consumed; and goods and services contributing to investment. Goods and services currently consumed refer to items that are used up in the production process, for example fertiliser, or seed. Goods and services contributing to investment relate to items that are required but not consumed in the production process, such as tractors or buildings.

    A price index is a way of measuring relative price changes compared to a reference point or base year which is given a value of 100. The year used as the base year needs to be updated over time to reflect changing market trends. The latest data are presented with a base year of 2020 = 100. To maintain continuity with the current API time series, the UK continues to use standardised methodology adopted across the EU. Details of this internationally recognised methodology are described in the https://ec.europa.eu/eurostat/web/products-manuals-and-guidelines/-/ks-bh-02-003" class="govuk-link">Handbook for EU agricultural price statistics.
    Please note: The historical time series with base years 2000 = 100, 2005 = 100, 2010 = 100 and 2015 = 100 are not updated monthly and presented for archive purposes only. Each file gives the date the series was last updated.

    For those commodities where farm-gate prices are currently unavailable we use the best proxy data that are available (for example wholesale prices). Similarly, calculations are based on UK prices where possible but sometimes we cannot obtain these. In such cases prices for Great Britain, England and Wales or England are used instead.

    Next update: see the statistics release calendar.

    Defra statistics: prices

    Email mailto:prices@defra.gov.uk">prices@defra.gov.uk

    <p class="govuk-body">You can also contact us via Twitter: <a href="https://twitter.com/DefraStats" class="govuk-link">https://twitter.com/DefraStats</a></p>
    

  5. w

    Farm Tour - API

    • data.wu.ac.at
    • data.montgomerycountymd.gov
    Updated Aug 8, 2016
    + more versions
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    MCG ESB Service (2016). Farm Tour - API [Dataset]. https://data.wu.ac.at/schema/data_montgomerycountymd_gov/YWc4ci0zcGZx
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    Dataset updated
    Aug 8, 2016
    Dataset provided by
    MCG ESB Service
    Description

    Tours of participating farms in the County for our farm tour July 23rd and 24th. Check out more information here: http://www.montgomerycountymd.gov/agservices/agfarmtour.html.

  6. f

    Data from: Crop pollination by native honey bees (Apis cerana) at risk due...

    • figshare.com
    xlsx
    Updated Oct 29, 2024
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    Bounsanong Chouangthavy (2024). Crop pollination by native honey bees (Apis cerana) at risk due to agricultural intensification: Impact of farming systems [Dataset]. http://doi.org/10.6084/m9.figshare.26880280.v1
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    xlsxAvailable download formats
    Dataset updated
    Oct 29, 2024
    Dataset provided by
    figshare
    Authors
    Bounsanong Chouangthavy
    License

    Attribution 4.0 (CC BY 4.0)https://creativecommons.org/licenses/by/4.0/
    License information was derived automatically

    Description
    1. Agricultural intensification in Lao PDR has increased significantly each year, resulting in the conversion of vast natural habitats to various levels of agricultural intensification. However, there has been a longstanding knowledge gap regarding the impact of agricultural intensification on native fauna species in the country, which has been overlooked for centuries.2. The present study was conducted in two different agricultural systems (organic and conventional), which varied in land-use intensity, in central Lao PDR. Within each farming system, five sampling plots (30 x 50 m), spaced 100 m apart, and 900 m distance between organic and conventional farming systems were selected. In both farming systems, a diverse range of vegetables, crops and fruit orchards, comprising more than 50 flowering plant species throughout the year, was cultivated across a mean plot size of ≥ 15 ha.3. The farming system had the greatest influence on native honey bee abundance. Although honey bee abundance was higher in the organic, the diversity of flowering plant resources did not differ significantly between the two farming systems. Honey bee abundance was consistently related to the farming system throughout the study period, whereas the diversity of flowering plant resources was not. This suggests that the farming system has a more crucial impact on native honey bee populations than on the diversity of flowering plants.4. In organic farming, it was found that native honey bee populations could provide full pollination services, even for crops with high pollination demands (e.g., melon), both inside and outside greenhouses, without the need for other pollinators.5. All other sampling plots in the conventional farming system, however, showed a significant decline in native bee abundance, resulting in insufficient pollination services from native bees alone. This study found that diversity is crucial for sustaining these services, given the year-to-year variation in population levels. While organic farming can help sustain pollination services provided by generalist native honey bees in agricultural landscapes, additional measures are needed to conserve more specialized native honey bee species and other pollinators in both farming systems.
  7. P

    Pyraclostrobin API Report

    • datainsightsmarket.com
    doc, pdf, ppt
    Updated Feb 11, 2025
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    Data Insights Market (2025). Pyraclostrobin API Report [Dataset]. https://www.datainsightsmarket.com/reports/pyraclostrobin-api-1065806
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    doc, ppt, pdfAvailable download formats
    Dataset updated
    Feb 11, 2025
    Dataset authored and provided by
    Data Insights Market
    License

    https://www.datainsightsmarket.com/privacy-policyhttps://www.datainsightsmarket.com/privacy-policy

    Time period covered
    2025 - 2033
    Area covered
    Global
    Variables measured
    Market Size
    Description

    The global Pyraclostrobin API market is projected to reach USD XX million by 2033, growing at a CAGR of XX% during the forecast period of 2025-2033. Increasing demand for Pyraclostrobin API in the agricultural sector, particularly in fruit, lawn, and flower applications, is driving the market growth. Pyraclostrobin's effectiveness as a highly effective and broad-spectrum fungicide makes it an attractive choice for farmers seeking to protect their crops from diseases such as botrytis, powdery mildew, and rust. The market is segmented by type, application, and region. The 0.975 and 0.98 types hold the largest share in the market. The fruit application segment is expected to witness the highest growth due to the widespread use of Pyraclostrobin API in orchards and vineyards. The Asia Pacific region is the largest market for Pyraclostrobin API, followed by Europe and North America. The increasing adoption of modern farming practices and the growing awareness of crop protection in emerging economies are contributing to the growth of the market in these regions. However, factors such as stringent regulations and environmental concerns may restrain the market's growth to some extent.

  8. C

    Connected Agriculture Market Report

    • archivemarketresearch.com
    doc, pdf, ppt
    Updated Feb 7, 2025
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    Archive Market Research (2025). Connected Agriculture Market Report [Dataset]. https://www.archivemarketresearch.com/reports/connected-agriculture-market-10050
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    ppt, pdf, docAvailable download formats
    Dataset updated
    Feb 7, 2025
    Dataset authored and provided by
    Archive Market Research
    License

    https://www.archivemarketresearch.com/privacy-policyhttps://www.archivemarketresearch.com/privacy-policy

    Time period covered
    2025 - 2033
    Area covered
    global
    Variables measured
    Market Size
    Description

    The global connected agriculture market size was valued at USD 5.70 billion in 2025 and is projected to expand at a CAGR of 16.9% during the forecast period, reaching USD 22.57 billion by 2033. The significant market growth is attributed to the increasing adoption of precision farming techniques, rising awareness about the benefits of connected agriculture, and government initiatives to promote sustainable farming practices. Key drivers of the connected agriculture market include the growing demand for food, the need to increase agricultural productivity, and the desire to reduce environmental impact. The increasing adoption of precision farming techniques is a major trend in the connected agriculture market, as farmers seek to improve yields and reduce costs. The rising awareness about the benefits of connected agriculture is also driving market growth, as farmers become more aware of the potential benefits of using data to improve their operations. Additionally, government initiatives to promote sustainable farming practices are expected to further drive the adoption of connected agriculture technologies. The global connected agriculture market is expected to reach $28.51 billion by 2027, growing at a CAGR of 12.2% during the forecast period. The market is driven by the increasing adoption of precision farming techniques, the rising demand for food, and the need for efficient and sustainable agriculture practices. Recent developments include: In August 2023, Trimble Inc. released a flexible API for its Trimble Agriculture Cloud. This API allows third-party agriculture applications to connect with Trimble Inc.'s equipment and data, streamlining farming operations. The API supports various workflows like farm setup, task records, materials management, and vehicle setup. , In September 2022, Deere & Company released a Request for Proposal (RFP) to the satellite industry, looking for satellite services and terminals that offer continuous connectivity for its agricultural machinery. This initiative is designed to facilitate real-time data analysis and autonomous farming, enhancing productivity for Deere & Company’s customers and boosting food and fuel production. .

  9. USDA Foreign Agricultural Service Production, Supply, and Distribution...

    • agdatacommons.nal.usda.gov
    bin
    Updated Feb 13, 2024
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    USDA Foreign Agricultural Service (2024). USDA Foreign Agricultural Service Production, Supply, and Distribution Database [Dataset]. https://agdatacommons.nal.usda.gov/articles/dataset/USDA_Foreign_Agricultural_Service_Production_Supply_and_Distribution_Database/24662481
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    binAvailable download formats
    Dataset updated
    Feb 13, 2024
    Dataset provided by
    United States Department of Agriculturehttp://usda.gov/
    Foreign Agricultural Service
    Authors
    USDA Foreign Agricultural Service
    License

    U.S. Government Workshttps://www.usa.gov/government-works
    License information was derived automatically

    Description

    FAS's PSD Online data for those commodities published in the WASDE Report are reviewed and updated monthly by an interagency committee chaired by USDA's World Agricultural Outlook Board (WAOB), and consisting of: the Foreign Agricultural Service (FAS), the Economic Research Service (ERS), the Farm Service Agency (FSA), and the Agricultural Marketing Service (AMS). The international portion of the data is updated with input from agricultural attachés stationed at U.S. embassies around the world, FAS commodity analysts, and country and commodity analysts with ERS. The U.S. domestic component is updated with input from analysts in FAS, ERS, the National Agricultural Statistical Service, and FSA. Interagency work on the database is carried out under the aegis of the WAOB. The official USDA supply and use data is published monthly in: WAOB, World Agricultural Supply and Demand Estimates (WASDE); in the foreign agricultural commodity circular series issued by FAS; and in the regional situation and outlook reports and monthly commodity newsletters of ERS (see keywords Crops and Animal Products) data for horticultural products are usually published twice a year. Resources in this dataset:Resource Title: PSD Web API. File Name: Web Page, url: https://apps.fas.usda.gov/psdonline/app/index.html#/app/about Programmatically access Production, Supply, and Distribution data via Web API.

  10. g

    LAPRO Wald Agriculture WFS – City Parkwaelder Condensing Room – OGC API...

    • gimi9.com
    + more versions
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    LAPRO Wald Agriculture WFS – City Parkwaelder Condensing Room – OGC API Features | gimi9.com [Dataset]. https://gimi9.com/dataset/eu_b8bddfd6-6797-a887-a43d-bf9780a52332
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    License

    CC0 1.0 Universal Public Domain Dedicationhttps://creativecommons.org/publicdomain/zero/1.0/
    License information was derived automatically

    Description

    The Map Service (WFS Group) presents the spatial data from the landscape program Saarland the theme map forest and agriculture.:LAPRO2009 – Urban and park forests in the densification area

  11. d

    2030 Agenda SDG - Ammonia emissions from agriculture (Identificador API:...

    • datos.gob.es
    Updated Jan 1, 2020
    + more versions
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    Instituto Nacional de Estadística (2020). 2030 Agenda SDG - Ammonia emissions from agriculture (Identificador API: 235:327) [Dataset]. https://datos.gob.es/en/catalogo/ea0010587-agenda-2030-ods-emisiones-de-amoniaco-de-la-agricultura-identificador-api-235-327
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    Dataset updated
    Jan 1, 2020
    Dataset authored and provided by
    Instituto Nacional de Estadística
    License

    http://www.ine.es/aviso_legalhttp://www.ine.es/aviso_legal

    Description

    ODS / Goals and targets (from the 2030 Agenda for Sustainable Development) / Goal 2. End hunger, achieve food security and improved nutrition and promote sustainable agriculture / Target 2.4. By 2030, ensure sustainable food production systems and implement resilient agricultural practices that increase productivity and production, that help maintain ecosystems, that strengthen capacity for adaptation to climate change, extreme weather, drought, flooding and other disasters and that progressively improve land and soil quality. / Indicator 2.4.1. Proportion of agricultural area under productive and sustainable agriculture

  12. e

    Eximpedia Export Import Trade

    • eximpedia.app
    Updated Feb 4, 2025
    + more versions
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    Seair Exim (2025). Eximpedia Export Import Trade [Dataset]. https://www.eximpedia.app/
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    .bin, .xml, .csv, .xlsAvailable download formats
    Dataset updated
    Feb 4, 2025
    Dataset provided by
    Eximpedia Export Import Trade Data
    Eximpedia PTE LTD
    Authors
    Seair Exim
    Area covered
    Marshall Islands, Tunisia, Malta, Nauru, Benin, Bhutan, Czech Republic, Estonia, Gibraltar, Guinea
    Description

    Eximpedia Export import trade data lets you search trade data and active Exporters, Importers, Buyers, Suppliers, manufacturers exporters from over 209 countries

  13. I

    Imazapyr API Report

    • promarketreports.com
    doc, pdf, ppt
    Updated Mar 28, 2025
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    Pro Market Reports (2025). Imazapyr API Report [Dataset]. https://www.promarketreports.com/reports/imazapyr-api-58511
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    ppt, doc, pdfAvailable download formats
    Dataset updated
    Mar 28, 2025
    Dataset authored and provided by
    Pro Market Reports
    License

    https://www.promarketreports.com/privacy-policyhttps://www.promarketreports.com/privacy-policy

    Time period covered
    2025 - 2033
    Area covered
    Global
    Variables measured
    Market Size
    Description

    The global Imazapyr API market is experiencing robust growth, driven by the increasing demand for effective and efficient weed control solutions in agriculture. While the exact market size for 2025 is not provided, we can reasonably estimate it based on the provided CAGR and market trends. Assuming a CAGR of, for example, 5% (a plausible rate given industry growth in similar agrochemicals), and a 2019 market size of approximately $200 million (a conservative estimate considering the significant usage of imazapyr), the 2025 market size could be estimated at approximately $260 million. This growth is further fueled by expanding farmland acreage globally, particularly in developing economies, along with the rising adoption of no-till farming practices, which necessitate more potent and targeted herbicides like imazapyr. The market is segmented by application (farmland weeding, non-arable weeding) and type (content purity levels). Key players like CYNDA, BASF, and Rainbow are actively involved in production and distribution, constantly striving to enhance product efficacy and address environmental concerns. However, the market faces certain restraints. Stringent regulatory frameworks surrounding herbicide usage, growing concerns regarding environmental impact, and the development of herbicide-resistant weeds present significant challenges. Furthermore, price volatility of raw materials and fluctuations in global agricultural commodity prices can influence the profitability of imazapyr API production. Nevertheless, the ongoing research and development efforts to improve the formulation and efficiency of imazapyr-based herbicides, coupled with increasing investments in precision agriculture technologies, are expected to offset these challenges and contribute to sustained market expansion. The market is projected to maintain a healthy growth trajectory throughout the forecast period (2025-2033), showcasing the continued importance of imazapyr in modern agricultural practices. This report provides a detailed analysis of the global Imazapyr API market, offering invaluable insights for stakeholders across the agricultural chemical and herbicide sectors. We delve into production volumes, market segmentation, key players, and future growth projections, incorporating data-driven analysis to provide actionable intelligence. High-search-volume keywords like "Imazapyr API market size," "Imazapyr herbicide production," and "Imazapyr API price trends" are strategically integrated throughout the report for enhanced online visibility.

  14. Time Series International Trade: Monthly U.S. Imports by Department of...

    • catalog.data.gov
    • datasets.ai
    Updated Sep 29, 2023
    + more versions
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    U.S. Census Bureau (2023). Time Series International Trade: Monthly U.S. Imports by Department of Agriculture Code [Dataset]. https://catalog.data.gov/dataset/time-series-international-trade-monthly-u-s-imports-by-department-of-agriculture-code
    Explore at:
    Dataset updated
    Sep 29, 2023
    Dataset provided by
    United States Census Bureauhttp://census.gov/
    Area covered
    United States
    Description

    The Census data API provides access to the most comprehensive set of data on current month and cumulative year-to-date imports broken down by agricultural and nonagricultural commodities. The USDA endpoint in the Census data API provides value, shipping weight, and method of transportation totals at the district level for all U.S. trading partners. The Census data API will help users research new markets for their products, establish pricing structures for potential export markets, and conduct economic planning. If you have any questions regarding U.S. international trade data, please call us at 1(800)549-0595 option #4 or email us at eid.international.trade.data@census.gov.

  15. Imazethapyr API Market Report | Global Forecast From 2025 To 2033

    • dataintelo.com
    csv, pdf, pptx
    Updated Sep 23, 2024
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    Dataintelo (2024). Imazethapyr API Market Report | Global Forecast From 2025 To 2033 [Dataset]. https://dataintelo.com/report/global-imazethapyr-api-market
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    csv, pptx, pdfAvailable download formats
    Dataset updated
    Sep 23, 2024
    Dataset authored and provided by
    Dataintelo
    License

    https://dataintelo.com/privacy-and-policyhttps://dataintelo.com/privacy-and-policy

    Time period covered
    2024 - 2032
    Area covered
    Global
    Description

    Imazethapyr API Market Outlook




    The global Imazethapyr API market size was valued at approximately USD 1.2 billion in 2023 and is expected to reach around USD 2.4 billion by 2032, growing at a compound annual growth rate (CAGR) of 7.5% during the forecast period. This growth is primarily driven by the increasing demand for herbicides and pesticides, advancements in agricultural practices, and the rising focus on sustainable farming solutions. The growing awareness about the advantages of Imazethapyr in controlling a wide range of weed species further bolsters its demand across various regions.




    One of the primary growth factors for the Imazethapyr API market is the escalating global population, which in turn increases the demand for food production. As the need for efficient agricultural practices intensifies, the usage of herbicides like Imazethapyr becomes crucial for maximizing crop yields. Additionally, the API’s ability to offer selective weed control without adversely affecting the crops ensures that farmers can maintain higher productivity levels. This is particularly important in regions with limited arable land where maximizing the output per hectare is essential.




    Another significant growth driver is the increasing adoption of technology and precision farming techniques. Modern farming practices leverage advanced tools and analytics to optimize the application of herbicides, ensuring that crops receive the right amount of protection against weeds. Imazethapyr’s effectiveness in various formulations makes it a preferred choice among farmers adopting these sophisticated agricultural practices. Moreover, the development of innovative application methods helps in reducing wastage and enhancing the efficacy of Imazethapyr, further driving its market growth.




    Environmental concerns and regulatory frameworks also play a crucial role in shaping the Imazethapyr API market. Governments and regulatory bodies across the globe are enforcing stricter guidelines to promote the use of environmentally friendly and safe agricultural products. Imazethapyr, known for its low toxicity and minimal environmental impact, aligns well with these regulations. As a result, its adoption is expected to rise as farmers and agricultural companies seek to comply with these standards and adopt sustainable farming practices.




    On a regional level, the Asia Pacific region is anticipated to witness the highest growth in the Imazethapyr API market. This can be attributed to the region’s large agricultural base, the growing population, and the increasing need for food security. Countries like China and India, with their extensive agricultural activities, are significant consumers of Imazethapyr. Additionally, the adoption of advanced farming techniques and government initiatives to support the agricultural sector further propel the market growth in this region.



    Product Type Analysis




    The Imazethapyr API market can be segmented based on product type into Technical Grade and Formulated Grade. The Technical Grade segment comprises the raw, unprocessed form of Imazethapyr, which is predominantly used by large-scale manufacturers and formulators of herbicides and pesticides. This segment holds a significant share of the market due to its direct application in producing a variety of herbicidal formulations. The need for bulk procurement by agrochemical companies is a primary driver for this segment's growth. Moreover, Technical Grade Imazethapyr is essential for research and development activities aimed at creating advanced formulations.




    Formulated Grade Imazethapyr, on the other hand, consists of the processed and refined form of the active ingredient, designed for direct application in the fields. This segment is particularly crucial for end-users, including farmers and horticulturists, who require ready-to-use products. The convenience and ease of application associated with Formulated Grade Imazethapyr make it highly popular. Additionally, the advancements in formulation technologies have led to the development of products that offer enhanced efficacy and safety, further boosting the demand for this segment.




    The growth of the Formulated Grade segment is also driven by the increasing trend of customized solutions tailored to specific crop needs and regional requirements. Companies are focusing on developing formulations that cater to specific climatic conditions and weed sp

  16. d

    2030 Agenda SDG - Wages in the agriculture (Identificador API: 235:358)

    • datos.gob.es
    Updated Jan 1, 2020
    + more versions
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    Instituto Nacional de Estadística (2020). 2030 Agenda SDG - Wages in the agriculture (Identificador API: 235:358) [Dataset]. https://datos.gob.es/en/catalogo/ea0010587-agenda-2030-ods-sueldos-en-la-agricultura-identificador-api-235-358
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    Dataset updated
    Jan 1, 2020
    Dataset authored and provided by
    Instituto Nacional de Estadística
    License

    http://www.ine.es/aviso_legalhttp://www.ine.es/aviso_legal

    Description

    ODS / Goals and targets (from the 2030 Agenda for Sustainable Development) / Goal 2. End hunger, achieve food security and improved nutrition and promote sustainable agriculture / Target 2.4. By 2030, ensure sustainable food production systems and implement resilient agricultural practices that increase productivity and production, that help maintain ecosystems, that strengthen capacity for adaptation to climate change, extreme weather, drought, flooding and other disasters and that progressively improve land and soil quality. / Indicator 2.4.1. Proportion of agricultural area under productive and sustainable agriculture

  17. I

    Imazethapyr API Report

    • archivemarketresearch.com
    doc, pdf, ppt
    Updated Mar 17, 2025
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    Archive Market Research (2025). Imazethapyr API Report [Dataset]. https://www.archivemarketresearch.com/reports/imazethapyr-api-62070
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    ppt, doc, pdfAvailable download formats
    Dataset updated
    Mar 17, 2025
    Dataset authored and provided by
    Archive Market Research
    License

    https://www.archivemarketresearch.com/privacy-policyhttps://www.archivemarketresearch.com/privacy-policy

    Time period covered
    2025 - 2033
    Area covered
    Global
    Variables measured
    Market Size
    Description

    The global Imazethapyr API market is experiencing steady growth, projected to reach a value of $215 million in 2025, exhibiting a Compound Annual Growth Rate (CAGR) of 5%. This growth is driven by the increasing demand for effective herbicides in the agricultural sector, particularly in soybean cultivation. The rising global population and the consequent need for increased food production are key factors fueling this demand. Furthermore, the development of innovative formulations and application methods for Imazethapyr is contributing to its wider adoption. The market is segmented by purity level (98% and 96%), reflecting different applications and price points. Major players like BASF and Adama, along with several significant Chinese manufacturers, dominate the supply chain, engaging in both domestic and international trade. While regional market share data is not specified, North America, Europe, and Asia-Pacific are expected to be the key contributors due to their extensive agricultural activities and adoption of modern farming techniques. Potential restraints could include the emergence of herbicide-resistant weeds and increasing regulatory scrutiny surrounding pesticide usage, necessitating the development of more sustainable and environmentally friendly alternatives. Looking ahead to 2033, the continued growth trajectory is anticipated, although the precise market size will depend on several factors. These include global economic conditions, agricultural policies, and advancements in herbicide technology. The market is likely to witness intensified competition amongst existing players and potentially new entrants. The development of bio-based herbicides and the increasing focus on precision agriculture could significantly shape the future landscape. Successful companies will be those that can adapt to these changing conditions, offering innovative solutions that meet the evolving needs of farmers while adhering to stricter environmental regulations. The market's segmentation by purity and application will continue to be a crucial aspect of market dynamics.

  18. g

    Inspire-WFS SL Soil Erosion Risk of Agricultural Land – Process – OGC API...

    • gimi9.com
    Updated May 19, 2024
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    (2024). Inspire-WFS SL Soil Erosion Risk of Agricultural Land – Process – OGC API Features | gimi9.com [Dataset]. https://gimi9.com/dataset/eu_c51ca12a-afe3-ee62-29e5-4dc979918680
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    Dataset updated
    May 19, 2024
    License

    CC0 1.0 Universal Public Domain Dedicationhttps://creativecommons.org/publicdomain/zero/1.0/
    License information was derived automatically

    Description

    This service provides data on the erosion risk of agricultural land for the INSPIRE topic of soil from the geospatial data.:Description of an observation process.

  19. e

    Eximpedia Export Import Trade

    • eximpedia.app
    Updated May 18, 2025
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    Seair Exim (2025). Eximpedia Export Import Trade [Dataset]. https://www.eximpedia.app/
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    .bin, .xml, .csv, .xlsAvailable download formats
    Dataset updated
    May 18, 2025
    Dataset provided by
    Eximpedia Export Import Trade Data
    Eximpedia PTE LTD
    Authors
    Seair Exim
    Area covered
    Jersey, Philippines, Virgin Islands (British), Algeria, French Guiana, Qatar, Mongolia, Bouvet Island, Curaçao, Turkey
    Description

    Farming Sa Company Export Import Records. Follow the Eximpedia platform for HS code, importer-exporter records, and customs shipment details.

  20. C

    Cyazofamid API Report

    • archivemarketresearch.com
    doc, pdf, ppt
    Updated Mar 20, 2025
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    Archive Market Research (2025). Cyazofamid API Report [Dataset]. https://www.archivemarketresearch.com/reports/cyazofamid-api-67797
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    ppt, doc, pdfAvailable download formats
    Dataset updated
    Mar 20, 2025
    Dataset authored and provided by
    Archive Market Research
    License

    https://www.archivemarketresearch.com/privacy-policyhttps://www.archivemarketresearch.com/privacy-policy

    Time period covered
    2025 - 2033
    Area covered
    Global
    Variables measured
    Market Size
    Description

    The global Cyazofamid API market, valued at $157 million in 2025, is projected to exhibit a Compound Annual Growth Rate (CAGR) of 2.2% from 2025 to 2033. This steady growth is driven by the increasing prevalence of downy mildew and other oomycete diseases affecting various crops, necessitating effective fungicide solutions. Cyazofamid's efficacy in controlling these diseases, coupled with its relatively low toxicity profile compared to some alternative fungicides, makes it an attractive option for farmers seeking to maximize yields and minimize environmental impact. Market expansion is further fueled by the growing adoption of integrated pest management (IPM) strategies and the rising demand for high-quality agricultural produce in both developed and developing economies. While the market faces certain restraints, such as the development of resistance in some pathogens and the potential for regulatory scrutiny, these are largely mitigated by ongoing research and development efforts focused on optimizing Cyazofamid formulations and exploring new application methods. The market is segmented by application (Downy Mildew, Oomycetes Diseases, Others) and type (0.95 purity, 0.94 purity, Others). Key players in the Cyazofamid API market include ISHIHARA SANGYO KAISHA, Rudong Zhongyi, Nutrichem, Jiabo, Suyan, Meibang, Hailir, and Heben, among others. These companies are strategically investing in expanding their production capacities and exploring new market opportunities to capitalize on the growing demand for Cyazofamid. The geographical distribution of the Cyazofamid API market is relatively diverse, with significant contributions from North America, Europe, and Asia Pacific. However, growth potential varies across regions, with emerging economies in Asia Pacific expected to witness more rapid expansion due to factors like increasing agricultural production and adoption of modern farming practices. Market growth is influenced by several factors such as government regulations on pesticide usage, agricultural practices, and climate change effects on crop diseases. Continuous innovation and development within the agricultural sector play a crucial role in shaping the market’s trajectory, ensuring sustainable and effective disease management practices in the years to come. Competition among manufacturers will likely intensify, with a focus on delivering high-quality products, competitive pricing, and robust supply chains to maintain market share.

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National Agricultural Statistics Service, Department of Agriculture (2025). Quick Stats Agricultural Database API [Dataset]. https://catalog.data.gov/dataset/quick-stats-agricultural-database-api
Organization logoOrganization logo

Quick Stats Agricultural Database API

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Dataset updated
Apr 21, 2025
Dataset provided by
United States Department of Agriculturehttp://usda.gov/
National Agricultural Statistics Servicehttp://www.nass.usda.gov/
Description

Quick Stats API is the programmatic interface to the National Agricultural Statistics Service's (NASS) online database containing results from the 1997, 2002, 2007, and 2012 Censuses of Agriculture as well as the best source of NASS survey published estimates. The census collects data on all commodities produced on U.S. farms and ranches, as well as detailed information on expenses, income, and operator characteristics. The surveys that NASS conducts collect information on virtually every facet of U.S. agricultural production.

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