[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"item-3058":3,"related-3058":54},{"id":4,"title":5,"url":6,"summary":7,"summary_zh":8,"content":9,"source_name":10,"source_url":6,"published_at":11,"category":12,"cover_url":9,"hotness":13,"is_selected":14,"score":15,"score_detail":16,"sources":24,"tags":26,"search_phrases":32,"slug":35,"view_count":36,"doi":37,"paper":38,"created_at":53},3058,"Climate Change and Crop Production Vulnerability in Somalia: A VECM Analysis for Sustainable Agriculture","https:\u002F\u002Fdoi.org\u002F10.22004\u002Fag.econ.412749","Somali crop production is vulnerable to climate change, as agriculture is heavily reliant on rainfall. Increased temperatures, sporadic rainfall, and higher levels of CO2 emissions threaten food security as well as the livelihoods in rural areas. While global studies discuss these issues, there is a lack of empirical research on Somalia. This research attempts to study the gap created by the absence of research regarding the vulnerability of crop production to climate change and its sustainable agriculture aspects. The study uses a vector error correction model (VECM) to evaluate how climate factors, including temperature, rainfall, CO2 emissions, land designated for agriculture, and labour, affect crop production in the short and long term. The study found that CO₂, temperature, and rainfall lead to boosted crop production in the short term because of the traditional adaptation strategies employed by farmers. In the long term, a 1% increase in CO2 emissions leads to a 57% reduction in crop production, and a similar rise in temperature causes production levels to fall over 100%. Rainfall, agricultural land, and labour continue to positively influence production levels in both periods. These results strongly indicate the necessity of climate-resilient strategies, better irrigation systems, and new forms of farming. The promotion of climate-smart agriculture will help mitigate the negative effects of climate change on the agricultural sector of Somalia while simultaneously catering to the issue of food security.","索马里作物生产易受气候变化影响，因为农业高度依赖降雨。气温升高、降雨不稳定以及二氧化碳排放量增加，威胁着粮食安全以及农村地区的生计。尽管全球研究讨论了这些问题，但缺乏关于索马里的实证研究。本研究试图填补因缺乏关于作物生产对气候变化的脆弱性及其可持续农业方面的研究而造成的空白。该研究采用向量误差修正模型（VECM），评估气候因素（包括气温、降雨、二氧化碳排放、农业用地和劳动力）在短期和长期内如何影响作物生产。研究发现，由于农民采用传统适应策略，二氧化碳、气温和降雨在短期内会促进作物生产。从长期来看，二氧化碳排放量增加1%会导致作物生产减少57%，气温类似上升会导致生产水平下降超过100%。降雨、农业用地和劳动力在两个时期都持续对生产水平产生积极影响。这些结果强烈表明，有必要采取气候韧性策略、改善灌溉系统并采用新型耕作方式。推广气候智能型农业将有助于减轻气候变化对索马里农业部门的负面影响，同时兼顾粮食安全问题。",null,"AgEcon Search (University of Minnesota, USA)","2026-09-20T00:00:00Z","论文",10,false,71,{"impact":17,"substance":18,"depth":19,"authority":20,"freshness":21,"relevant":22,"comment":23},12,21,17,13,8,1,"以VECM量化索马里气候因子对作物生产的短长期影响，结论具政策参考价值，但属区域国别研究，公共影响有限。",[25],{"name":10,"url":6},[27,28,29,30,31],"农业遥感","粮食安全","气候智慧农业","灌溉系统","索马里农业",[33,34],"索马里 作物生产 气候变化","VECM 气候智慧农业","索马里作物生产气候变化-3058",0,"10.22004\u002Fag.econ.412749",{"doi":37,"openalex_id":39,"authors":40,"venue":10,"cited_by_count":36,"oa_url":6,"card":45,"direction":51,"ingested_from":52},"W7213772032",[41,43],{"name":42,"orcid":9},"Mohamed Nur Abdulkadir",{"name":44,"orcid":9},"Yassin Sheikh Ali Ali",{"tldr":46,"method":47,"finding":48,"direction":49,"opportunity":50},"用VECM分析索马里气候变化对作物生产的短期与长期影响。","VECM模型，变量含温度、降雨、CO2、农地、劳动力。","短期CO2、温度、降雨促产，长期CO2增1%减产57%，温度增1%减产超100%。","农业绿色发展与碳","可结合气候智慧型农业与灌溉技术，研究小农户适应策略的长期有效性。","智慧农业 \u002F 农业物联网","openalex","2026-09-21T23:30:09.204353Z",{"total":55,"page":22,"page_size":55,"items":56},6,[57,96,120,166,206,248],{"id":58,"title":59,"url":60,"summary":61,"summary_zh":62,"content":9,"source_name":63,"source_url":60,"published_at":11,"category":12,"cover_url":9,"hotness":13,"is_selected":14,"score":64,"score_detail":65,"sources":70,"tags":72,"search_phrases":76,"slug":79,"view_count":36,"doi":80,"paper":81,"created_at":95},3059,"Climate Smart Agriculture and Food Security among Rural Farmers in Nasarawa State, Nigeria","https:\u002F\u002Fdoi.org\u002F10.67317\u002Fijmsrt26sep046","Climate change continues to threaten agricultural productivity and household food security, particularly among rural farmers who depend on rain-fed agriculture. This study examined climate smart agriculture and food security among rural farmers in Nasarawa State, Nigeria. Specifically, it assessed the extent of adoption of climatesmart agricultural practices and examined their influence on household food security. A mixed-methods descriptive survey design was adopted. Data were collected from 372 rural farming households using structured questionnaires, while Key Informant Interviews were conducted with agricultural extension officers and community leaders. Secondary data were obtained from relevant journal articles, government publications, and reports. Quantitative data were analyzed using frequency tables and percentages and presented with bar charts, while qualitative data were transcribed, interpreted, and integrated with the quantitative findings. The study found that climate-smart agricultural practices significantly enhanced household food security, with 86% of the respondents indicating that the practices strengthened their resilience to climate change, while 85% reported improved household food availability. The study concludes that climate-smart agriculture is an effective approach for improving the livelihoods and food security of rural farming households in Nasarawa State. The study recommends that the Nasarawa State Agricultural Development Programme (NADP), in collaboration with the State Ministry of Agriculture and agricultural extension agencies, should strengthen extension services by providing regular farmer training, climate information, and access to climate-smart agricultural technologies to promote wider adoption and enhance household food security.","气候变化持续威胁农业生产力和家庭粮食安全，尤其是依赖雨养农业的农村农民。本研究考察了尼日利亚纳萨拉瓦州农村农民的气候智能型农业与粮食安全状况。具体而言，研究评估了气候智能型农业实践的采用程度，并考察了其对家庭粮食安全的影响。研究采用混合方法描述性调查设计。通过结构化问卷从372个农村农户收集数据，同时对农业推广官员和社区领袖进行了关键信息人访谈。二手数据来源于相关期刊文章、政府出版物和报告。定量数据采用频数表和百分比进行分析，并以柱状图呈现；定性数据经转录、解释后与定量研究结果进行整合。研究发现，气候智能型农业实践显著增强了家庭粮食安全，86%的受访者表示这些实践增强了其应对气候变化的能力，85%的受访者报告家庭粮食可获得性有所改善。研究结论认为，气候智能型农业是改善纳萨拉瓦州农村农户生计和粮食安全的有效途径。研究建议，纳萨拉瓦州农业发展计划（NADP）应与州农业部和农业推广机构合作，通过提供定期农民培训、气候信息和气候智能型农业技术获取渠道来加强推广服务，以促进更广泛的采用并增强家庭粮食安全。","International Journal of Modern Science and Research Technology",56,{"impact":21,"substance":66,"depth":67,"authority":55,"freshness":68,"relevant":22,"comment":69},18,15,9,"尼日利亚地方性实证研究，样本372户、结论明确，但影响范围限于区域，对国内三农信息化参考价值有限，不宜进入每日精选。",[71],{"name":63,"url":60},[28,73,29,74,75],"小农户","农业推广","尼日利亚",[77,78],"气候智慧农业 农业推广 尼日利亚 粮食安全","气候智慧农业 农业推广","气候智慧农业农业推广尼日利亚粮食安全-3059","10.67317\u002Fijmsrt26sep046",{"doi":80,"openalex_id":82,"authors":83,"venue":63,"cited_by_count":36,"oa_url":9,"card":90,"direction":51,"ingested_from":52},"W7213778728",[84,86,88],{"name":85,"orcid":9},"ABDULLAHI YUSUF AGWAI",{"name":87,"orcid":9},"Falalu Mohommed Mohammmed",{"name":89,"orcid":9},"A. S. Ogah",{"tldr":91,"method":92,"finding":93,"direction":49,"opportunity":94},"研究尼日利亚纳萨拉瓦州农户采用气候智慧型农业对家庭粮食安全的影响。","混合方法调查，372户问卷加关键知情人访谈，频数百分比分析。","86%受访者认为气候智慧型农业增强了气候韧性，85%报告家庭粮食供应改善。","可探索气候智慧型农业技术采纳的驱动因素与推广机制，或结合数字工具提升气候信息可达性。","2026-09-21T23:30:09.323035Z",{"id":97,"title":98,"url":99,"summary":100,"summary_zh":9,"content":9,"source_name":101,"source_url":9,"published_at":102,"category":103,"cover_url":9,"hotness":13,"is_selected":104,"score":105,"score_detail":106,"sources":109,"tags":111,"search_phrases":115,"slug":118,"view_count":36,"doi":9,"paper":9,"created_at":119},2841,"中国农科院资划所多因子监测实现小麦晚霜冻害大范围动态预警登European Journal of Agronomy","https:\u002F\u002Fwww.caas.cn\u002Fxwzx\u002Fmtxw\u002Fbe939456a5354c4da317420bf21577db.htm","近日,中国农业科学院农业资源与农业区划研究所农业遥感团队提出了多因子综合霜冻监测指数,提升小麦晚霜冻害监测精度。黄淮海平原是我国冬小麦核心产区,每年3至4月小麦拔节至抽穗期间频发的晚霜冻害严重威胁粮食安全。该指数综合高精度气象预报和冬小麦生长进程信息,兼顾低温强度、持续时间及不同生育期敏感性,并利用遥感土壤水分数据构建非线性调节系数,精准刻画湿润土壤对低温的缓冲效应,突破了气象站点的空间局限。","中国农业科学院 \u002F 中国科学报","2026-09-17T00:00:00Z","报道",true,87,{"impact":107,"substance":107,"depth":66,"authority":67,"freshness":13,"relevant":22,"comment":108},22,"国家级科研团队在核心期刊提出多因子霜冻监测指数，方法新颖、结论可靠，对黄淮海冬小麦防灾减灾有实质价值，值得进入每日精选。",[110],{"name":101,"url":99},[112,27,28,113,114],"智慧农业","小麦","农业气象",[116,117],"农业气象 农业遥感 智慧农业 粮食安全","农业气象 农业遥感","农业气象农业遥感智慧农业粮食安全-2841","2026-09-18T00:03:28.607700Z",{"id":121,"title":122,"url":123,"summary":124,"summary_zh":125,"content":9,"source_name":10,"source_url":123,"published_at":126,"category":12,"cover_url":9,"hotness":13,"is_selected":14,"score":127,"score_detail":128,"sources":132,"tags":134,"search_phrases":138,"slug":141,"view_count":36,"doi":142,"paper":143,"created_at":165},2772,"Analysis of Climate‑Smart Agriculture (CSA) Adoption Level on Tidal Land and Its Effect on Household Food Security","https:\u002F\u002Fdoi.org\u002F10.22004\u002Fag.econ.410358","Climate change is a universal challenge for all those natural resource-based sectors, including agriculture. The farming community should adapt to climate change effects through Climate Smart Agriculture (CSA) approaches to resolve the same. The objectives of the study are to analyze the level of technology adoption of CSA practices that have been implemented by rice farmers on tidal land, to analyze the level of household food security of rice farmers on tidal land, and to analyze the effect of the level of technology adoption of CSA practices towards household food security in Telang Jaya Village, Muara Telang District, Banyuasin Regency. Sixty farmers are used for the respondents number. A study method with a survey approach of visiting the research site directly is employed here. The outcomes of this study indicate an increased awareness of climate change among farmers; one way is by adopting CSA, which can optimize farm productivity and increase farmer income, thus positively impacting food security. The adoption rate of CSA technology, i.e., tractors, water pumps, drainage, direct seeding planting, and combined harvesters, positively influences food security.","气候变化是所有以自然资源为基础的部门（包括农业）面临的普遍挑战。农业社区应通过气候智能型农业（CSA）方法来适应气候变化的影响，以解决这一问题。本研究的目标是分析潮汐地稻农已实施的气候智能型农业实践的技术采纳水平，分析潮汐地稻农的家庭粮食安全水平，并分析气候智能型农业实践的技术采纳水平对Banyuasin县Muara Telang区Telang Jaya村家庭粮食安全的影响。研究选取60名农民作为受访者。本研究采用直接前往研究地点进行调查的研究方法。研究结果表明，农民对气候变化的意识有所提高；其中一种方式就是采纳气候智能型农业，这可以优化农业生产率并增加农民收入，从而对粮食安全产生积极影响。气候智能型农业技术的采纳率，即拖拉机、水泵、排水、直播种植和联合收割机，对粮食安全产生正向影响。","2026-09-16T00:00:00Z",60,{"impact":21,"substance":129,"depth":130,"authority":20,"freshness":68,"relevant":22,"comment":131},16,14,"基于60户农户调研的CSA技术采纳与粮食安全实证研究，结论明确但样本小、地域性强，属细分领域学术进展，可作为主题页聚合素材。",[133],{"name":10,"url":123},[28,29,135,136,137],"技术采纳","水稻种植","盐沼地",[139,140],"气候智慧农业 技术采纳 水稻种植 粮食安全","气候智慧农业 技术采纳","气候智慧农业技术采纳水稻种植粮食安全-2772","10.22004\u002Fag.econ.410358",{"doi":142,"openalex_id":144,"authors":145,"venue":10,"cited_by_count":36,"oa_url":123,"card":160,"direction":51,"ingested_from":52},"W7213409702",[146,148,150,152,154,156,158],{"name":147,"orcid":9},"Yamin M.",{"name":149,"orcid":9},"Wahyu Swasdiningrum Putri Trisna",{"name":151,"orcid":9},"Dwi Saputri Salsabilah",{"name":153,"orcid":9},"Firdha Tafarini Meitry",{"name":155,"orcid":9},"Ayu Sulastri Merna",{"name":157,"orcid":9},"Damayanthy Dini",{"name":159,"orcid":9},"Ramadani Andelia Siti",{"tldr":161,"method":162,"finding":163,"direction":49,"opportunity":164},"分析潮汐地稻农采用气候智慧型农业技术的程度及其对家庭粮食安全的影响。","对60户稻农进行实地问卷调查，分析CSA技术采用水平与粮食安全的关系。","采用拖拉机、水泵、排水、直播和联合收割机等CSA技术能正向影响家庭粮食安全。","可探究不同CSA技术组合对粮食安全的差异化贡献，并引入遥感或物联网监测采用动态。","2026-09-17T23:30:13.841443Z",{"id":167,"title":168,"url":169,"summary":170,"summary_zh":171,"content":9,"source_name":172,"source_url":169,"published_at":126,"category":12,"cover_url":9,"hotness":13,"is_selected":14,"score":173,"score_detail":174,"sources":177,"tags":179,"search_phrases":183,"slug":186,"view_count":36,"doi":187,"paper":188,"created_at":205},2769,"Climate change impacts and resilience pathways in somalia through a systematic review","https:\u002F\u002Fdoi.org\u002F10.1007\u002Fs42452-026-09538-5","Somalia is among the most climate-vulnerable countries worldwide, characterized by predominantly arid and semi-arid regions increasingly affected by recurrent droughts, irregular precipitation, rising temperatures, land degradation, and water scarcity, all of which compromise livelihoods, food security, and socio-economic stability. This study addresses the limited synthesis of recent, spatially explicit evidence on climate change impacts in Somalia by bringing together current literature and institutional reports to analyze the effects of climate change and identify adaptation and resilience strategies The review is entirely desk-based and utilizes 30 secondary data articles from reputable sources such as FAO-SWALIM, the World Bank, ICPAC, FSNAU, USAID, and peer-reviewed research articles from Scopus and web of science published from 2008 to 2025. The results showed that over 60% of Somalia’s territory is categorized as arid or hyper-arid, with the southern parts seeing the most acute soil erosion and environmental deterioration. Significant drought occurrences, especially in 2010–2011 and 2016–2017, were greatly impacted by extensive climatic factors including ENSO and the Indian Ocean Dipole. Climate variability has resulted in reduced crop yields, pasture degradation, livestock mortality, persistent water shortages, and extensive food insecurity, while inadequate governance, restricted climate financing, and deficient early-warning and monitoring systems hinder effective adaptation. The review emphasizes that climate change presents a systemic threat to Somalia’s environmental and livelihood systems, highlighting the necessity for integrated, spatially informed strategies that incorporate GIS-based environmental monitoring, sustainable land and water management, climate-smart agriculture, strengthened institutions, and enhanced access to climate finance to support long-term resilience and sustainable development.","索马里是全球最易受气候变化影响的国家之一，其国土以干旱和半干旱地区为主，日益受到反复出现的干旱、降水不规律、气温上升、土地退化及水资源短缺的影响，这些问题共同威胁着生计、粮食安全和社会经济稳定。本研究针对索马里气候变化影响近期空间明确证据综合不足的问题，汇集当前文献和机构报告，分析气候变化的影响并识别适应与韧性策略。本综述完全基于案头研究，使用了来自FAO-SWALIM、世界银行、ICPAC、FSNAU、USAID等知名来源的30篇二手数据文献，以及2008年至2025年间发表于Scopus和Web of Science的同行评审研究论文。结果表明，索马里超过60%的领土被归类为干旱或极度干旱，南部地区土壤侵蚀和环境退化最为严重。重大干旱事件，尤其是2010—2011年和2016—2017年的干旱，受到包括厄尔尼诺-南方涛动（ENSO）和印度洋偶极子（IOD）在内的广泛气候因素的显著影响。气候变率导致作物减产、牧场退化、牲畜死亡、持续的水资源短缺和大范围的粮食不安全，而治理不足、气候融资受限以及预警和监测系统薄弱则阻碍了有效适应。本综述强调，气候变化对索马里的环境和生计系统构成系统性威胁，凸显了采取综合性、空间信息化策略的必要性，这些策略应包括基于GIS的环境监测、可持续土地和水资源管理、气候智慧型农业、强化制度以及增强气候融资渠道，以支持长期韧性和可持续发展。","Discover Applied Sciences",76,{"impact":66,"substance":175,"depth":19,"authority":20,"freshness":21,"relevant":22,"comment":176},20,"系统综述整合2008-2025年30篇文献，揭示索马里干旱与粮食安全影响并提出GIS监测与气候智慧农业等韧性路径，对干旱区农业信息化有参考价值。",[178],{"name":172,"url":169},[28,180,29,181,182],"气候变化","遥感监测","干旱监测",[184,185],"气候智慧农业 干旱监测 气候变化 粮食安全","气候智慧农业 干旱监测","气候智慧农业干旱监测气候变化粮食安全-2769","10.1007\u002Fs42452-026-09538-5",{"doi":187,"openalex_id":189,"authors":190,"venue":172,"cited_by_count":36,"oa_url":169,"card":200,"direction":51,"ingested_from":52},"W7213257664",[191,193,195,198],{"name":192,"orcid":9},"Abdiaziz Hassan Nur",{"name":194,"orcid":9},"Mohamed Osman Abdulkadir",{"name":196,"orcid":197},"Omar Ali","https:\u002F\u002Forcid.org\u002F0009-0001-3009-1850",{"name":199,"orcid":9},"Ahmed Sodal Asir",{"tldr":201,"method":202,"finding":203,"direction":49,"opportunity":204},"系统综述索马里气候变化影响与韧性路径，基于30篇文献与机构报告。","文献综述，采用FAO-SWALIM、世行等2008-2025年30篇二手数据。","超60%国土干旱，干旱致减产、缺水与粮食不安全，治理与预警不足阻碍适应。","可结合GIS与遥感构建索马里干旱预警和气候智慧型农业适应决策模型。","2026-09-17T23:30:10.557669Z",{"id":207,"title":208,"url":209,"summary":210,"summary_zh":211,"content":9,"source_name":212,"source_url":209,"published_at":102,"category":12,"cover_url":9,"hotness":13,"is_selected":14,"score":213,"score_detail":214,"sources":217,"tags":219,"search_phrases":223,"slug":226,"view_count":36,"doi":227,"paper":228,"created_at":247},2749,"Modeling cascading drought effects in a national food supply network using minimum cost flow","https:\u002F\u002Fdoi.org\u002F10.3389\u002Ffsufs.2026.1892770","Droughts increasingly threaten food security, yet assessments often overlook how local agricultural losses cascade through complex supply chains. We developed a spatially explicit network optimization model employing a minimum cost flow algorithm to simulate food distribution within a synthetic national-scale Swedish food supply network (a model network constructed from open geospatial data) of more than 830,000 nodes. To test the system's response to extreme hydro-climatic stress, we applied a severe drought scenario analogous to the conditions experienced in 2018. The model revealed a significant spatial disconnect: while agricultural yield losses were concentrated in southern farming regions, unmet consumer demand emerged predominantly in northern municipalities. Furthermore, network analysis showed that flow reconfiguration under drought stress created new critical bottlenecks, effectively shifting the system's overall vulnerabilities. While these specific geographic results are illustrative of the framework's diagnostic capability rather than empirically verified operational failures, they demonstrate that drought impacts propagate nonlinearly through supply networks. This underscores the critical importance of considering network topology in food security assessments. Ultimately, our approach offers a scalable framework for identifying hidden vulnerabilities and informing resilience strategies in national food supply infrastructures.","干旱日益威胁粮食安全，然而现有评估往往忽视了地方农业损失如何通过复杂供应链逐级传导。我们开发了一个空间显式网络优化模型，采用最小成本流算法，在超过83万个节点的合成全国尺度瑞典食品供应网络（基于开放地理空间数据构建的模型网络）中模拟食品分配。为检验系统对极端水文气候胁迫的响应，我们应用了一个与2018年所经历条件类似的严重干旱情景。模型揭示出显著的空间错位：农业产量损失集中在南部农业区，而未被满足的消费者需求则主要出现在北部市镇。此外，网络分析表明，干旱胁迫下的流量重构形成了新的关键瓶颈，实际上转移了系统的整体脆弱性。虽然这些具体的地理结果更多体现了该框架的诊断能力，而非经验证实的实际运行故障，但它们表明干旱影响会通过供应网络非线性传播。这凸显了在粮食安全评估中考虑网络拓扑结构的关键重要性。最终，我们的方法提供了一个可扩展的框架，用于识别隐藏的脆弱性并为国家食品供应基础设施的韧性策略提供信息。","Frontiers in Sustainable Food Systems",86,{"impact":107,"substance":215,"depth":66,"authority":20,"freshness":13,"relevant":22,"comment":216},23,"以83万节点最小成本流网络模型揭示干旱冲击在粮食供应链中的非线性级联与瓶颈转移，方法新颖、结论有政策参考价值，属农业信息化与粮食安全交叉领域的高质量研究。",[218],{"name":212,"url":209},[27,220,28,221,222],"农业供应链","干旱风险","网络优化",[224,225],"农业供应链 农业遥感 干旱风险 粮食安全","农业供应链 农业遥感","农业供应链农业遥感干旱风险粮食安全-2749","10.3389\u002Ffsufs.2026.1892770",{"doi":227,"openalex_id":229,"authors":230,"venue":212,"cited_by_count":36,"oa_url":209,"card":241,"direction":245,"ingested_from":52},"W7213455583",[231,233,236,238],{"name":232,"orcid":9},"Noor Bosman",{"name":234,"orcid":235},"Samuel Jonson Sutanto","https:\u002F\u002Forcid.org\u002F0000-0003-4903-6445",{"name":237,"orcid":9},"Zahra Kalantari",{"name":239,"orcid":240},"Marlon Vieira Passos","https:\u002F\u002Forcid.org\u002F0000-0002-3111-4583",{"tldr":242,"method":243,"finding":244,"direction":245,"opportunity":246},"构建瑞典全国食品供应网络最小成本流模型，模拟干旱下农业损失沿供应链级联传播。","基于开放地理数据构建83万节点网络，用最小成本流算法模拟2018年干旱情景。","南部减产却导致北部需求缺口，干旱使网络瓶颈转移，影响非线性传播。","农业人工智能与决策模型","可结合真实贸易流与多灾种情景，开发动态网络韧性评估与优化决策工具。","2026-09-17T23:30:07.182055Z",{"id":249,"title":250,"url":251,"summary":252,"summary_zh":9,"content":253,"source_name":254,"source_url":9,"published_at":255,"category":256,"cover_url":9,"hotness":13,"is_selected":104,"score":257,"score_detail":258,"sources":263,"tags":265,"search_phrases":270,"slug":273,"view_count":36,"doi":9,"paper":9,"created_at":274},2694,"加快农业保险高质量发展实施方案印发——2030年保险深度1.9%、密度1200元\u002F人","https:\u002F\u002Fjcs.moa.gov.cn\u002Fgzdt\u002F202609\u002Ft20260915_6487691.htm","财政部、农业农村部、金融监管总局、国家林草局联合印发《关于加快农业保险高质量发展的实施方案》,到2030年农业保险深度达到1.9%、密度达到1200元\u002F人、科技投入强度达到1%,稻谷、小麦、玉米三大粮食作物覆盖率稳定在90%左右,综合费用率不高于20%。","各省、自治区、直辖市人民政府，新疆生产建设兵团，国务院有关部委、有关直属机构：\n\n经国务院同意，现将《关于加快农业保险高质量发展的实施方案》印发给你们，请抓好贯彻落实。\n\n财政部 农业农村部\n\n金融监管总局 国家林草局\n\n2026 年 9 月 8 日\n\n**关于加快农业保险高质量发展的实施方案**\n\n为进一步加快农业保险高质量发展，稳定农户收益，服务保障国家粮食安全和农业生产能力，经国务院同意，制定本实施方案。\n\n一、总体要求\n\n坚持以习近平新时代中国特色社会主义思想为指导，深入贯彻党的二十大和二十届历次全会精神，认真落实四中全会部署，全面贯彻习近平总书记关于“三农”工作的重要论述，完整准确全面贯彻新发展理念，加快构建新发展格局，着力推动高质量发展，遵循政府引导、市场运作、自主自愿、协同推进、改革创新的原则，充分发挥农业保险在价格、补贴、保险“三位一体”农业支持政策体系中的重要一环作用。\n\n到 2030 年，基本建成与农户风险保障需求相契合、与现代农业发展相适应、中央与地方分工负责的多层次农业保险体系，总体达到国际先进水平，实现补贴有效率、产业有保障、农民得实惠、机构可持续的多赢格局，政策更加普惠，发展更加均衡。农业保险深度（保费\u002F第一产业增加值）达到 1.9%，农业保险密度（保费\u002F第一产业就业人数）达到 1200 元\u002F人，农业保险科技投入强度（农业保险机构科技创新投入\u002F保费）达到 1%。稻谷、小麦、玉米三大粮食作物农业保险覆盖率稳定在 90%左右，提升特色农业保险对特色农业产业的保障水平，更好发挥富农强农作用。农业保险综合费用率不高于 20%。\n\n二、聚焦农业保险发展重点\n\n**（一）健全多层次农业保险体系。**坚持中央与地方共同推动、各部门分工负责，构建复合、多元、多层次的农业保险体系。加强对关系国计民生和粮食安全的大宗农产品以及地方特色农业的保障，稳步推进物化成本保险、完全成本保险、收入保险等险种发展，加强对小农户和农民合作社、家庭农场等新型农业经营主体的保障，强化对防止返贫致贫对象的支持。建立健全投保人、直保端、再保端等多方参与的风险分散链条，发挥好大灾风险准备金作用。\n\n**（二）增强种植业农产品风险保障。**加强主粮、棉花、油料、糖料、橡胶等大宗农产品风险保障，提高区域间农业保险发展均衡性，完善省以下保费分担机制。逐步降低产粮大县农业保险县级保费补贴承担比例，推动扩大稻谷、小麦、玉米、大豆完全成本保险和种植收入保险投保面积。完善对马铃薯、油菜、花生、甜菜、青稞等农产品以及稻谷、小麦、玉米制种的保险支持保障。\n\n**（三）促进养殖业保险规范发展。**完善养殖企业和养殖场（户）养殖保险模式，采用电子耳标、生物识别等技术加强养殖数量监控。动态调整能繁母猪、育肥猪、奶牛等养殖业保险保障水平，鼓励根据不同养殖方式提供差异化风险保障方案。做好牦牛、藏系羊等涉藏特定品种保险支持保障。\n\n**（四）推动林草保险提质增效。**坚持预防与保障并重，与现代林草业发展相适应，推动构建林草综合保险体系。完善公益林保险和商品林保险政策，探索适合相关林业保险险种特点的承保理赔模式。保险机构要合理确定森林保险防灾减损费用计提比例，据实列支。鼓励保险机构开展草原、湿地、国家公园、碳汇等保险试点，丰富林草保险产品。\n\n**（五）支持地方特色发展。**鼓励各地结合实际制定特色农业保险发展政策，加强相关资金统筹，加大支持力度，扩大保险范围，积极发展蔬菜、水果、肉牛、肉羊、禽类、渔业、林下经济等特色农业保险。\n\n**（六）完善产品供给体系。**健全“政策险+商业险”、“基本险+补充险”的农业保险产品供给体系。鼓励各地结合实际在物化成本保险等提供基本保险保障的险种基础上，设计开发相关补充保险，形成更高保障。鼓励各地因地制宜发展农业气象指数保险。支持保险机构发展商业性农业保险，开发便利农户投保的综合型保险保障方案。\n\n**（七）推广“农业保险+”模式。**深化农业保险与信贷、担保、期货等金融工具协同，探索保单质押、联合分担风险等模式。发挥农业保险增信功能，提高投保农户信用等级，促进涉农数据、科技、资产等要素资源融合，引导加大金融资源投入。\n\n**（八）逐步拓宽服务领域。**鼓励保险机构根据农业发展需要以市场化方式提供覆盖农林牧渔、涉农产业上下游、农民人身安全等方面风险的保险产品，探索开展农产品加工、仓储、运输、质量保险及高标准农田工程质量保险，为农业对外合作提供保险服务。鼓励地方和保险机构提供大棚、农房、农机、仓库等农业生产设施设备保险，以及农业绿色发展、智慧农业、民族村寨等领域保险。\n\n三、优化农业保险运行机制\n\n**（九）优化完善承保管理。**财政、发展改革、农业农村、保险监管、林业草原等部门及保险机构加强信息互通，共享农（林）地确权、流转、目标价格补贴面积以及农产品成本调查、畜禽存出栏量、病死猪无害化处理等农业生产经营数据。逐步推行“一户一单”承保模式。保险监管部门指导保险机构制定农业保险精准承保规范，提升可操作性。保险机构应加强农业保险承保精准性管理，开展验标和承保信息审核，集体投保类业务逐步提高抽查验标比例，规模经营主体投保类业务实现全部验标。\n\n**（十）加强财政补贴管理。**强化保费补贴资金管理，加强补贴资金所涉投保信息与农业生产经营数据、历史投保数据的比对核验，提高财政资金使用效益。及时向保险机构拨付保费补贴资金，优化资金拨付方式。鼓励各地实行省级财政部门与保险机构省级分公司“省级对省级”结算等模式。\n\n**（十一）完善查勘定损制度。**农业农村、保险监管、林业草原等部门结合当地种植、养殖、林业生产实际，指导保险机构制定分类或分险种查勘定损操作规范，明确查勘、抽样、定损等工作流程和标准。农业农村、林业草原等部门配合做好灾后查勘和灾损核定工作。\n\n**（十二）提升理赔服务质效。**保险监管部门指导保险机构制定完善农业保险理赔实施规范，提升理赔效率和精准度。保险机构应完善基层服务网络，简化手续、优化流程、赔款到户，建立农业大灾快速理赔响应机制，针对重大自然灾害和事故合理预付部分赔偿金，支持农户恢复生产。保险机构应通过银行转账等非现金方式将保险赔款直接支付给被保险人。\n\n**（十三）鼓励开展风险减量管理。**健全风险减量管理机制，增强事前防灾减灾、事中救灾减损、事后及时赔付相结合的一体化服务能力，推动农业保险从单一事后理赔向全流程风险管理转型。保险机构可与农业农村、林业草原、气象等领域社会化服务机构合作，开展防灾减损工作。\n\n**（十四）健全监督管理机制。**健全农业保险领域常态化监督机制，财政、农业农村、保险监管、林业草原等部门加强联动，加大监督力度。对虚构虚增保险标的、虚假理赔、骗取套取保费补贴等违法违规行为，加大打击和惩戒力度，依法依规予以处理。\n\n四、夯实农业保险发展基础\n\n**（十五）强化信息化支撑。**持续推进全国农业保险数据信息系统、全国农业保险信息管理平台建设。统一农业保险数据标准，加强部门间、中央与地方间农业保险数据信息共享。加快推动农业保险行业数字化转型，促进业务流程智能化、标准化。\n\n**（十六）推进风险区划工作。**推进三大粮食作物、主要畜产品等重要农产品保险风险区划工作，适时发布风险区划结果和保险费率参考。探索开展地方特色农业保险风险区划工作。\n\n**（十七）加强科技应用。**保险机构应加大科技投入强度，合理应用无人机、遥感、物联网、人工智能、区块链、云计算等技术工具，提高保险服务精准度。鼓励保险机构探索开发农业灾害风险模型。制定农业保险科技应用规范或标准。保险机构应开展承保理赔信息实名校验和身份认证。\n\n**（十八）加强遴选管理。**按照适度竞争原则，结合服务能力、风控能力合理确定农业保险承保机构。各省份根据保费规模等因素统筹确定承保机构数量，承保机构一经确定应保持相对稳定，服务有效期一般不少于 3 年。开展承保机构绩效评价，强化绩效评价结果应用，做好承保机构动态调整工作。审慎评估农业保险市场环境和保险机构服务能力，加强经营资格管理，优化准入退出机制。\n\n**（十九）健全政策法规。**适应农业保险发展态势和高质量发展需要，推动适时修订《农业保险条例》，进一步加强农业保险法治建设。\n\n五、健全农业保险大灾风险分散机制\n\n**（二十）完善大灾风险准备金管理。**科学设置农业保险各险种大灾风险准备金计提比例，完善大灾风险准备金触发使用标准。保险机构按照独立运作、因地制宜、分级管理、统筹使用的原则，加强大灾风险准备金使用规范性管理，进一步发挥大灾风险准备金作用。\n\n**（二十一）大力发展农业再保险。**按照约定分保和市场化分保相结合的发展模式，健全农业再保险制度。完善约定分保机制和流程，优化大灾超赔保障。鼓励发展商业性再保险，逐步提高市场化业务比重。推动完善农业再保险机构治理机制，提高运行规范性和发展可持续性。\n\n**（二十二）健全风险分散机制。**研究建立农业保险大灾风险基金，完善农业保险大灾风险分散链条。加强农业保险赔付资金与政府救灾资金协同运用。\n\n六、做好组织实施工作\n\n各地区、各有关部门要高度重视农业保险工作，夯实工作基础，形成工作合力，更好满足“三农”主体风险保障需求。各省级人民政府加强组织领导，统筹推进本行政区域内农业保险规划发展、资源统筹、政策宣传等各项工作，发挥农业保险工作小组作用，组织有关部门和保险机构加强协同配合，确保各项任务落实见效。各有关部门按职责分工做好政策设计、资金安排、监督管理等工作。保险机构切实提高服务质效，可根据业务需要设立协保员，为承保理赔等服务提供便利。","农业农村部计划财务司 2026年9月8日","2026-09-08T00:00:00Z","政策",92,{"impact":259,"substance":260,"depth":261,"authority":67,"freshness":55,"relevant":22,"comment":262},28,24,19,"四部门联合印发的全国性农业保险高质量发展实施方案，明确2030年保险深度1.9%、密度1200元\u002F人等量化目标，条款与数据详实，权威性和政策影响力突出，值得进入每日精选。",[264],{"name":254,"url":251},[266,27,28,267,268,269],"数字乡村","农业保险","风险区划","财政补贴",[271,272],"农业保险 农业遥感 数字乡村 粮食安全","农业保险 农业遥感","农业保险农业遥感数字乡村粮食安全-2694","2026-09-17T00:04:35.464456Z"]