[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"item-3156":3,"related-3156":52},{"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":51},3156,"Climate Adaptation and Sustainable Agriculture in Africa: Strategies for Food Security","https:\u002F\u002Fdoi.org\u002F10.56201\u002Fijgem.vol.11.no2.2025.pg8.32","This study investigates the role of Climate-Smart Agriculture (CSA) and agroecology in enhancing agricultural resilience and food security in the face of climate change in Africa. Through a comprehensive review of existing literature, case studies, and policy frameworks, the research explores how these adaptive strategies are being implemented across the continent and assesses their effectiveness. The findings reveal that while CSA techniques—such as droughtresistant crop varieties, water-efficient irrigation, and soil management practices—offer tangible benefits to agricultural productivity and resilience, their widespread adoption remains constrained by limited access to finance, inadequate infrastructure, and insufficient extension services. Similarly, agroecological approaches, including crop diversification, agroforestry, and organic farming, have proven successful in fostering sustainable agricultural practices and enhancing biodiversity, yet face significant challenges from prevailing agricultural policies and institutional frameworks that favor large-scale industrial agriculture. The study recommends scaling up the adoption of CSA and agroecology by improving access to financing, technology, and farmer training programs. It also advocates for policy reforms that support agroecological practices and climate adaptation, as well as increased investment in research and development. Additionally, fostering multi-stakeholder collaborations, including public-private partnerships, is critical to overcoming institutional barriers and ensuring the effective implementation of climate adaptation strategies. The conclusion underscores the need for integrated policy frameworks that combine the strengths of CSA and agroecology to build a resilient, sustainable, and food-secure agricultural sector in Africa. By addressing both environmental and socioeconomic challenges, these strategies can significantly contribute to combating the impacts of climate change on African agriculture, ensuring long-term food security and sustainable development.","本研究探讨了气候智能型农业（Climate-Smart Agriculture, CSA）和农业生态学在增强非洲农业应对气候变化韧性和粮食安全方面的作用。通过系统梳理现有文献、案例研究和政策框架，本研究考察了这些适应性策略在非洲大陆的实施情况并评估其有效性。研究发现，尽管气候智能型农业技术——如抗旱作物品种、节水灌溉和土壤管理措施——对提高农业生产力和韧性具有切实效益，但其广泛采用仍受限于融资渠道有限、基础设施不足和推广服务欠缺。同样，农业生态学方法，包括作物多样化、农林业和有机农业，已被证明在促进可持续农业实践和增强生物多样性方面卓有成效，但仍面临来自有利于大规模工业化农业的现行农业政策和制度框架的重大挑战。本研究建议通过改善融资渠道、技术获取和农民培训项目来扩大气候智能型农业和农业生态学的采用。研究还倡导支持农业生态实践和气候适应的政策改革，以及增加研发投入。此外，促进多方利益相关者合作，包括公私合作伙伴关系，对于克服制度障碍和确保气候适应策略的有效实施至关重要。结论强调，需要建立综合性政策框架，将气候智能型农业和农业生态学的优势相结合，以在非洲构建具有韧性、可持续且粮食安全的农业部门。通过同时应对环境和社会经济挑战，这些策略能够为抵御气候变化对非洲农业的影响、确保长期粮食安全和可持续发展作出重大贡献。",null,"IIARD INTERNATIONAL JOURNAL OF GEOGRAPHY AND ENVIRONMENTAL MANAGEMENT","2026-09-21T00:00:00Z","论文",10,false,76,{"impact":17,"substance":18,"depth":19,"authority":20,"freshness":21,"relevant":22,"comment":23},18,20,17,13,8,1,"系统综述非洲气候智慧型农业与生态农业的适应策略及政策障碍，结论可靠但属文献综述，非突破性成果。",[25],{"name":10,"url":6},[27,28,29,30,31],"粮食安全","非洲农业","气候智慧型农业","农业适应","生态农业",[33,34],"气候智慧型农业 非洲","生态农业 粮食安全","气候智慧型农业非洲-3156",0,"10.56201\u002Fijgem.vol.11.no2.2025.pg8.32",{"doi":37,"openalex_id":39,"authors":40,"venue":10,"cited_by_count":22,"oa_url":9,"card":43,"direction":49,"ingested_from":50},"W7213982962",[41],{"name":42,"orcid":9},"Ayobami Samuel Owoyemi",{"tldr":44,"method":45,"finding":46,"direction":47,"opportunity":48},"综述气候智慧型农业与生态农业在非洲提升农业韧性与粮食安全的成效及障碍。","文献综述、案例研究与政策框架分析。","两类策略有效但受资金、基建、推广服务及政策偏向制约。","农业绿色发展与碳","可量化评估CSA与生态农业在非洲不同区域的适配性与政策协同效果。","智慧农业 \u002F 农业物联网","openalex","2026-09-22T23:30:10.505058Z",{"total":53,"page":22,"page_size":53,"items":54},6,[55,89,123,151,189,231],{"id":56,"title":57,"url":58,"summary":59,"summary_zh":60,"content":9,"source_name":61,"source_url":58,"published_at":62,"category":12,"cover_url":9,"hotness":13,"is_selected":14,"score":63,"score_detail":64,"sources":67,"tags":69,"search_phrases":72,"slug":75,"view_count":36,"doi":76,"paper":77,"created_at":88},2508,"Food Insecurity: The Hungry Face of Climate Change","https:\u002F\u002Fdoi.org\u002F10.56201\u002Fjbgr.vol.11.no4.2025.pg88.95","Climate change is rapidly reshaping global food systems, intensifying food insecurity across both the Global North and South. Rising temperatures, erratic precipitation, extreme weather events, and land degradation are undermining agricultural productivity and destabilizing food access, particularly among marginalized and low-income populations. This paper examines the complex interplay between climate change and food insecurity, drawing on recent empirical studies and cross-regional data to analyze environmental, economic, and social dimensions. It highlights how climate-related disruptions disproportionately affect women, children, indigenous groups, and smallholder farmers, compounding existing structural inequities. The review evaluates current adaptation and mitigation efforts, including climate-smart agriculture, water resource management, and renewable energy integration. It also assesses policy gaps and proposes a holistic, equity-centered framework that integrates sustainable agriculture, community empowerment, and climate resilience. The study emphasizes the urgency of embedding food security into climate policy at all levels to safeguard livelihoods and promote sustainable development in an era of intensifying climate risk.","气候变化正在迅速重塑全球粮食系统，加剧全球北方和全球南方的粮食不安全。气温上升、降水异常、极端天气事件和土地退化正在削弱农业生产力并破坏粮食获取的稳定性，尤其是对边缘化和低收入群体而言。本文借鉴近期实证研究和跨区域数据，分析环境、经济和社会维度，考察气候变化与粮食不安全之间复杂的相互作用。文章强调，与气候相关的扰动对妇女、儿童、原住民群体和小农的影响尤为不成比例，并加剧了现有的结构性不平等。本文评估了当前的适应和减缓努力，包括气候智慧型农业、水资源管理和可再生能源整合。文章还评估了政策缺口，并提出一个以公平为中心的整体框架，将可持续农业、社区赋权和气候韧性相结合。研究强调，在气候风险日益加剧的时代，将粮食安全纳入各级气候政策以保障生计和促进可持续发展具有紧迫性。","JOURNAL OF BIOLOGY AND GENETIC RESEARCH","2026-09-14T00:00:00Z",78,{"impact":65,"substance":17,"depth":19,"authority":20,"freshness":21,"relevant":22,"comment":66},22,"跨区域综述揭示气候变化对全球粮食安全的系统性冲击，并提出以公平为核心的适应框架，对农业政策与气候韧性建设具参考价值。",[68],{"name":61,"url":58},[27,70,71,29,30],"小农户","气候变化",[73,74],"气候智慧型农业 农业适应 气候变化 粮食安全","气候智慧型农业 农业适应","气候智慧型农业农业适应气候变化粮食安全-2508","10.56201\u002Fjbgr.vol.11.no4.2025.pg88.95",{"doi":76,"openalex_id":78,"authors":79,"venue":61,"cited_by_count":36,"oa_url":82,"card":83,"direction":49,"ingested_from":50},"W7212575816",[80],{"name":81,"orcid":9},"Ahmed Farida Mohammed","https:\u002F\u002Fiiardjournals.org\u002Fget\u002FJBGR\u002FVOL. 11 NO. 4 2025\u002FFood Insecurity The Hungry 88-95.pdf",{"tldr":84,"method":85,"finding":86,"direction":47,"opportunity":87},"综述气候变化与粮食不安全的复杂关联，提出以公平为中心的综合应对框架。","基于近期实证研究与跨区域数据，分析环境、经济和社会维度。","气候冲击对妇女、儿童、原住民和小农影响尤甚，需将粮食安全嵌入各级气候政策。","可量化气候智能农业与水资源管理对弱势群体粮食安全的公平性效益，填补政策评估空白。","2026-09-15T23:30:08.313374Z",{"id":90,"title":91,"url":92,"summary":93,"summary_zh":94,"content":9,"source_name":95,"source_url":92,"published_at":96,"category":12,"cover_url":9,"hotness":13,"is_selected":14,"score":15,"score_detail":97,"sources":99,"tags":101,"search_phrases":105,"slug":108,"view_count":36,"doi":109,"paper":110,"created_at":122},2939,"Climate Change and Food Security in Africa: Harnessing Responsible AI for Sustainable Agricultural Transformation","https:\u002F\u002Fdoi.org\u002F10.56201\u002Fijaes.vol.11.no9.2025.pg79.102","Africa stands at the crossroads of two defining 21st-century challenges: climate change and food insecurity. The continents agricultural systems are increasingly disrupted by rising temperatures, erratic rainfall, and extreme weather events, exacerbating hunger, poverty, and rural vulnerability. At the same time, Artificial Intelligence (AI) presents transformative potential to support climate adaptation, improve agricultural resilience, and enhance food systems governance across Africa. This study undertakes a qualitative content analysis and critical synthesis of 25 peer-reviewed articles, institutional reports, and working papers to examine how AI is currently applied and could be more effectively leveraged for climate-resilient agriculture and food security on the continent. Findings reveal a growing body of innovations, from AIdriven weather forecasting and early warning systems to precision agriculture and supply chain optimization. Yet the study identifies persistent structural limitations, including unreliable data infrastructure, low digital capacity in rural areas, and governance gaps around ethical deployment, data ownership, and equitable access. Through African case studies, the paper explores how localized AI solutions when supported by inclusive policies, multi-stakeholder collaboration, and responsible innovation frameworks can mitigate climate-induced food shocks and drive sustainable development. The paper argues for a strategic alignment between AI deployment and national adaptation plans, emphasizing the need for stronger public-private partnerships, investments in AI-ready infrastructure, and the development of ethical and contextsensitive governance mechanisms. In doing so, it offers a roadmap for policymakers, development agencies, and researchers seeking to harness AI not just as a technological tool, but as a catalyst for systemic transformation in African food systems in the era of climate change.","非洲正处在21世纪两大决定性挑战的交汇点：气候变化与粮食不安全。随着气温上升、降雨异常和极端天气事件频发，非洲大陆的农业系统日益受到扰乱，饥饿、贫困和农村脆弱性问题不断加剧。与此同时，人工智能（AI）展现出变革性潜力，可支持非洲的气候适应、提升农业韧性并改善粮食系统治理。本研究对25篇同行评审论文、机构报告和工作论文进行了定性内容分析与批判性综合，考察AI当前在非洲大陆的应用方式，以及如何更有效地将其用于气候韧性农业和粮食安全。研究发现，相关创新不断涌现，涵盖AI驱动的天气预报和预警系统、精准农业以及供应链优化等领域。然而，研究也识别出持续存在的结构性制约，包括数据基础设施不可靠、农村地区数字能力薄弱，以及围绕伦理部署、数据所有权和公平获取的治理缺口。通过非洲案例研究，本文探讨了在包容性政策、多利益相关方协作和负责任创新框架支持下，本地化的AI解决方案如何能够缓解气候引发的粮食冲击并推动可持续发展。本文主张将AI部署与国家适应计划进行战略对接，强调需要加强公私伙伴关系、投资于AI就绪型基础设施，并建立合乎伦理且情境敏感的治理机制。由此，本文为政策制定者、发展机构和研究人员提供了一份路线图，旨在气候变化时代将AI不仅作为技术工具，更作为非洲粮食系统系统性转型的催化剂加以利用。","INTERNATIONAL JOURNAL OF AGRICULTURE AND EARTH SCIENCE","2026-09-16T00:00:00Z",{"impact":17,"substance":18,"depth":19,"authority":20,"freshness":21,"relevant":22,"comment":98},"系统综述25篇文献，梳理AI在非洲气候韧性农业中的应用与治理缺口，对农业信息化有参考价值，但属境外区域研究，公共影响有限。",[100],{"name":95,"url":92},[102,103,27,28,104],"智慧农业","农业人工智能","气候适应",[106,107],"非洲 农业人工智能 粮食安全","AI 气候韧性农业 非洲","非洲农业人工智能粮食安全-2939","10.56201\u002Fijaes.vol.11.no9.2025.pg79.102",{"doi":109,"openalex_id":111,"authors":112,"venue":95,"cited_by_count":36,"oa_url":115,"card":116,"direction":49,"ingested_from":50},"W7213462904",[113],{"name":114,"orcid":9},"Izuchukwu Adamaagashi","https:\u002F\u002Fiiardjournals.org\u002Fget\u002FIJAES\u002FVOL. 11 NO. 9 2025\u002FClimate Change and Food Security 79-102.pdf",{"tldr":117,"method":118,"finding":119,"direction":120,"opportunity":121},"通过定性分析25篇文献，探讨如何负责任地利用AI推动非洲气候适应型农业与粮食安全。","对25篇同行评议论文、机构报告和工作论文进行定性内容分析与批判性综合。","AI在天气预报、精准农业等方面有创新，但面临数据基础设施差、农村数字能力低和治理缺口等结构性限制。","农业人工智能与决策模型","可研究非洲本地化AI解决方案的伦理治理框架与公私合作模式，填补数据所有权和公平获取的研究空白。","2026-09-19T23:30:19.482449Z",{"id":124,"title":125,"url":126,"summary":127,"summary_zh":9,"content":9,"source_name":128,"source_url":126,"published_at":129,"category":12,"cover_url":9,"hotness":13,"is_selected":14,"score":130,"score_detail":131,"sources":135,"tags":137,"search_phrases":139,"slug":142,"view_count":36,"doi":143,"paper":144,"created_at":150},2924,"Climate-Smart Agriculture Package Combinations and Household Food and Nutrition Security among Smallholder Farmers in Southwestern Ethiopia","https:\u002F\u002Fdoi.org\u002F10.21203\u002Frs.3.rs-11073051\u002Fv1","Climate-Smart Agriculture Package Combinations and Household Food and Nutrition Security among Smallholder Farmers in Southwestern Ethiopia。Research Square","Research Square","2026-09-18T00:00:00Z",56,{"impact":21,"substance":17,"depth":132,"authority":53,"freshness":133,"relevant":22,"comment":134},15,9,"研究主题契合气候智慧型农业与小农户粮食安全，但属区域性论文且来源为预印本平台，公共影响与权威性有限，暂不建议进入每日精选。",[136],{"name":128,"url":126},[27,70,29,138],"埃塞俄比亚",[140,141],"埃塞俄比亚 小农户 气候智慧型农业","气候智慧型农业 埃塞俄比亚 粮食安全 小农户","埃塞俄比亚小农户气候智慧型农业-2924","10.21203\u002Frs.3.rs-11073051\u002Fv1",{"doi":143,"openalex_id":145,"authors":146,"venue":128,"cited_by_count":36,"oa_url":126,"card":9,"direction":49,"ingested_from":50},"W7213535845",[147],{"name":148,"orcid":149},"Tesfaye Gafaro Ololo","https:\u002F\u002Forcid.org\u002F0009-0006-7838-5264","2026-09-19T23:30:10.838601Z",{"id":152,"title":153,"url":154,"summary":155,"summary_zh":156,"content":9,"source_name":157,"source_url":154,"published_at":158,"category":12,"cover_url":9,"hotness":13,"is_selected":14,"score":63,"score_detail":159,"sources":162,"tags":164,"search_phrases":167,"slug":170,"view_count":36,"doi":171,"paper":172,"created_at":188},2632,"AquaCrop modelling with frost risk in Southern Africa for bambara groundnut suitability and optimal planting dates","https:\u002F\u002Fdoi.org\u002F10.3389\u002Ffsufs.2026.1829034","Bambara groundnut ( Vigna subterranea ) is a resilient indigenous African legume with potential for improving food and nutrition security in semi-arid environments. However, conventional land suitability assessments often rely on static climatic averages, which fail to capture the dynamic interactions between climate variability and crop phenology. This study proposes a novel, process-based framework that integrates the AquaCrop simulation model with a custom frost-trigger algorithm to map land suitability and optimal planting dates across 5,838 altitude zones in Southern Africa. By simulating crop growth dynamics over 49 consecutive seasons, the framework explicitly accounts for inter-seasonal variability and extreme events, specifically frost and water stress, that are typically overlooked in conventional assessments. A sequential filtering procedure was applied to exclude unsuitable areas based on seasonal rainfall thresholds, risk of crop failure, and variability in water productivity. Findings indicate that October is the most favourable planting month, as later sowings face increased yield reductions due to potential frost risk. Accounting for frost occurrence reduced suitable growing areas by 28%, with refined land-use filtering further reducing viable area by 20%. These results highlight the critical role of dynamic environmental stressors in accurately assessing crop suitability. Ultimately, this framework provides a scalable tool for climate-smart agricultural planning, offering a more robust approach to identifying viable production zones for resilient underutilised crops.","班巴拉花生（Vigna subterranea）是一种具有韧性的非洲本土豆科作物，在改善半干旱环境的粮食和营养安全方面具有潜力。然而，传统的土地适宜性评估往往依赖静态气候平均值，无法捕捉气候变率与作物物候之间的动态相互作用。本研究提出了一种新颖的基于过程的框架，将AquaCrop模拟模型与自定义霜冻触发算法相结合，以绘制南部非洲5，838个海拔区域的土地适宜性和最佳播种日期。通过在连续49个生长季中模拟作物生长动态，该框架明确考虑了传统评估中通常被忽视的季节间变率和极端事件，特别是霜冻和水分胁迫。研究采用序贯筛选程序，基于季节性降雨阈值、作物歉收风险和水生产力变异性排除不适宜区域。研究结果表明，10月是最有利的播种月份，较晚播种因潜在霜冻风险而面临更大的产量损失。考虑霜冻发生使适宜种植面积减少了28%，进一步的土地利用精细化筛选又使可行面积减少了20%。这些结果凸显了动态环境胁迫因素在准确评估作物适宜性中的关键作用。最终，该框架为气候智慧型农业规划提供了一种可扩展的工具，为确定具有韧性的未充分利用作物的可行生产区提供了更为稳健的方法。","Frontiers in Sustainable Food Systems","2026-09-15T00:00:00Z",{"impact":160,"substance":65,"depth":17,"authority":20,"freshness":133,"relevant":22,"comment":161},16,"该研究将AquaCrop模型与霜冻风险算法结合，在南部非洲5838个海拔带模拟49季作物生长，方法新颖、数据规模大，对气候智慧型农业规划有参考价值，但区域聚焦非洲，国内影响有限。",[163],{"name":157,"url":154},[102,28,29,165,166],"作物模型","种植适宜性",[168,169],"气候智慧型农业 种植适宜性 作物模型 智慧农业","气候智慧型农业 种植适宜性","气候智慧型农业种植适宜性作物模型智慧农业-2632","10.3389\u002Ffsufs.2026.1829034",{"doi":171,"openalex_id":173,"authors":174,"venue":157,"cited_by_count":36,"oa_url":182,"card":183,"direction":120,"ingested_from":50},"W7213270406",[175,177,179],{"name":176,"orcid":9},"Simon Lake",{"name":178,"orcid":9},"Richard Kunz",{"name":180,"orcid":181},"Tafadzwanashe Mabhaudhi","https:\u002F\u002Forcid.org\u002F0000-0002-9323-8127","https:\u002F\u002Fwww.frontiersin.org\u002Fjournals\u002Fsustainable-food-systems\u002Farticles\u002F10.3389\u002Ffsufs.2026.1829034\u002Fpdf",{"tldr":184,"method":185,"finding":186,"direction":120,"opportunity":187},"用AquaCrop结合霜冻算法评估南部非洲班巴拉花生适宜性与最佳播期。","AquaCrop作物模型+霜冻触发算法，模拟49季5838个海拔带。","10月最适播种，考虑霜冻使适宜区减少28%，土地利用过滤再减20%。","可将该动态胁迫框架迁移到其他未充分利用作物或区域，并耦合未来气候情景。","2026-09-16T23:30:08.115404Z",{"id":190,"title":191,"url":192,"summary":193,"summary_zh":194,"content":9,"source_name":195,"source_url":192,"published_at":196,"category":12,"cover_url":9,"hotness":13,"is_selected":14,"score":197,"score_detail":198,"sources":202,"tags":204,"search_phrases":207,"slug":210,"view_count":36,"doi":211,"paper":212,"created_at":230},1746,"Digitization in Agriculture and Food Security in Sub-Saharan Africa: A Systematic Review","https:\u002F\u002Fdoi.org\u002F10.70382\u002Fajbar.v13i1.032","Digitization is increasingly recognized as a transformative force in Sub-Saharan Africa’s (SSA) agricultural sector, with significant implications for productivity enhancement and food security improvement. This systematic review examines the role of digital technologies in agriculture, focusing on their contributions to food availability, accessibility, utilization, and stability across SSA. The study adopts a systematic literature review (SLR) methodology, drawing evidence from peer-reviewed journals and reports published by institutions such as the World Bank, FAO, IFAD, and the African Development Bank between 2015 and 2025. Findings reveal that digital agriculture interventions, including mobile advisory systems, precision agriculture tools, digital financial services, and e-market platforms, significantly improve agricultural productivity, reduce transaction costs, strengthen market integration, and enhance farmers’ access to financial services. However, adoption remains uneven due to infrastructural deficits, digital illiteracy, gender inequality, and weak institutional frameworks. The review concludes that while digitization holds strong potential to transform food systems in SSA, its effectiveness depends on enabling environments such as infrastructure development, inclusive policies, and capacity building. The study recommends strengthening digital infrastructure, improving literacy programs, and expanding public–private partnerships to accelerate inclusive digital transformation in agriculture.","数字化日益被视为撒哈拉以南非洲（SSA）农业部门的变革性力量，对提高生产力和改善粮食安全具有重大意义。本系统综述考察了数字技术在农业中的作用，重点关注其对撒哈拉以南非洲粮食可得性、可及性、利用和稳定性的贡献。研究采用系统文献综述（SLR）方法，借鉴了2015年至2025年间同行评审期刊以及世界银行、联合国粮农组织（FAO）、国际农业发展基金（IFAD）和非洲开发银行等机构发布的报告中的证据。研究结果表明，包括移动咨询系统、精准农业工具、数字金融服务和电子市场平台在内的数字农业干预措施，显著提高了农业生产力，降低了交易成本，加强了市场整合，并增强了农民获取金融服务的机会。然而，由于基础设施不足、数字文盲、性别不平等和制度框架薄弱，数字技术的采用仍不均衡。本综述得出结论：尽管数字化在改变撒哈拉以南非洲粮食系统方面具有巨大潜力，但其有效性取决于有利环境，如基础设施发展、包容性政策和能力建设。研究建议加强数字基础设施建设，改善扫盲计划，并扩大公私伙伴关系，以加速农业领域的包容性数字化转型。","Journal of Biotechnology and Agricultural Research","2026-09-04T00:00:00Z",70,{"impact":17,"substance":18,"depth":17,"authority":199,"freshness":200,"relevant":22,"comment":201},12,2,"系统综述非洲数字农业对粮食安全的影响，证据扎实，但时效性低，适合精选。",[203],{"name":195,"url":192},[205,206,27,28],"数字农业","系统综述",[208,209],"数字农业 粮食安全 系统综述 非洲农业","数字农业 粮食安全","数字农业粮食安全系统综述非洲农业-1746","10.70382\u002Fajbar.v13i1.032",{"doi":211,"openalex_id":213,"authors":214,"venue":195,"cited_by_count":36,"oa_url":192,"card":224,"direction":228,"ingested_from":50},"W7208759473",[215,218,220,222],{"name":216,"orcid":217},"Funso O. Alabuja","https:\u002F\u002Forcid.org\u002F0000-0002-7579-1041",{"name":219,"orcid":9},"Ejiofor D. Chukwubuike",{"name":221,"orcid":9},"Lateefah O. Lama-Abdul",{"name":223,"orcid":9},"Olabiyi Fatimah Adebisi",{"tldr":225,"method":226,"finding":227,"direction":228,"opportunity":229},"系统综述撒哈拉以南非洲农业数字化对粮食安全的影响，发现其提升生产力但采用不均。","系统文献综述，分析2015-2025年同行评审文献及国际机构报告。","数字农业提高生产力、降低交易成本，但受基础设施、数字素养等制约。","数字乡村与农业信息化","可研究数字农业采用不均的驱动因素，如性别差异、制度障碍，探索包容性数字化路径。","2026-09-05T23:30:35.595189Z",{"id":232,"title":233,"url":234,"summary":235,"summary_zh":236,"content":9,"source_name":237,"source_url":234,"published_at":238,"category":12,"cover_url":9,"hotness":13,"is_selected":14,"score":197,"score_detail":239,"sources":241,"tags":243,"search_phrases":246,"slug":249,"view_count":36,"doi":250,"paper":251,"created_at":263},1622,"Contemporary Issues, Challenges and Solutions in Nigerian Agriculture: A Review of the Period 2020–2025","https:\u002F\u002Fdoi.org\u002F10.33003\u002Ffjs-2026-1016-5658","Nigeria’s agricultural sector is central to food security, employment generation, economic diversification, and rural development, yet its transformative potential remains constrained by persistent structural, environmental, institutional, and socioeconomic challenges. This narrative review critically examines contemporary issues affecting Nigerian agriculture between 2020 and 2025, evaluates strategies for sectoral revitalisation, and draws lessons from relevant international experiences. Secondary data were obtained from peer-reviewed literature, policy documents, and national and international databases, including Scopus, Web of Science, Google Scholar, African Journals Online, and the Central Bank of Nigeria, the National Bureau of Statistics, FAOSTAT, the World Bank, and FEWS NET. Evidence was synthesised thematically around key agricultural problems, transformation models, international experiences, and policy recommendations. The review identifies declining land and labour productivity, weak input and extension systems, inadequate irrigation, poor rural infrastructure, high post-harvest losses, limited agro-processing capacity, climate variability, environmental degradation, insecurity, policy inconsistency, underinvestment, land constraints, and unequal access to digital technologies and agricultural finance as major barriers to agricultural transformation. Although initiatives such as the Anchor Borrowers’ Programme, NIRSAL, digital agriculture, climate-smart practices, and value-chain development have generated important opportunities, their impacts have been limited by weak implementation, institutional fragmentation, inadequate funding, and exclusion of smallholders, women, and youth. International experiences from Asia, Latin America, India, and the Sahel demonstrate the importance of sustained public investment, effective farmer organisations, community-led adaptation, integrated value-chain development, and stable policy institutions.","尼日利亚的农业部门对于粮食安全、就业创造、经济多元化和农村发展至关重要，但其转型潜力仍受到结构性、环境性、制度性及社会经济等多重持续挑战的制约。本叙述性综述旨在批判性审视2020年至2025年间影响尼日利亚农业的当代问题，评估部门振兴战略，并从相关国际经验中汲取教训。二手数据来源于同行评审文献、政策文件以及国内外数据库，包括Scopus、Web of Science、Google Scholar、非洲在线期刊、尼日利亚中央银行、国家统计局、FAOSTAT、世界银行和FEWS NET。证据围绕主要农业问题、转型模式、国际经验和政策建议进行了主题综合。综述指出，土地和劳动生产率下降、投入品和推广体系薄弱、灌溉不足、农村基础设施落后、采后损失高、农产品加工能力有限、气候变率、环境退化、不安全因素、政策不一致、投资不足、土地制约以及数字技术和农业融资获取不平等，是农业转型的主要障碍。尽管诸如锚定借款人计划（Anchor Borrowers’ Programme）、尼日利亚激励风险分担体系（NIRSAL）、数字农业、气候智能型实践和价值链发展等举措已带来重要机遇，但其影响因执行不力、机构碎片化、资金不足以及小农户、妇女和青年被排斥而受到限制。来自亚洲、拉丁美洲、印度和萨赫勒地区的国际经验表明，持续公共投资、有效的农民组织、社区主导的适应措施、综合价值链发展和稳定的政策制度至关重要。","FUDMA Journal of Sciences","2026-09-03T00:00:00Z",{"impact":17,"substance":18,"depth":17,"authority":199,"freshness":200,"relevant":22,"comment":240},"系统综述尼日利亚农业挑战与转型路径，对发展中国家农业信息化有参考价值，但时效性较低。",[242],{"name":237,"url":234},[27,244,28,245],"农业政策","数字化转型",[247,248],"数字化转型 农业政策 粮食安全 非洲农业","数字化转型 农业政策","数字化转型农业政策粮食安全非洲农业-1622","10.33003\u002Ffjs-2026-1016-5658",{"doi":250,"openalex_id":252,"authors":253,"venue":237,"cited_by_count":36,"oa_url":234,"card":258,"direction":49,"ingested_from":50},"W7207795807",[254,256],{"name":255,"orcid":9},"Akindele Akintola",{"name":257,"orcid":9},"S.B. Fakayode",{"tldr":259,"method":260,"finding":261,"direction":228,"opportunity":262},"综述2020-2025年尼日利亚农业的挑战与解决方案，提出转型策略。","叙述性综述，整合Scopus、Web of Science等数据库及政策文件，主","农业转型受生产力低、基础设施差、气候、政策不稳等制约，现有项目效果有限。","可研究数字农业在尼日利亚小农中的实际应用障碍，如技术获取不平等，探索包容性推广模式。","2026-09-04T23:30:10.200686Z"]