[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"item-3627":3,"related-3627":57},{"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":56},3627,"A decision support tool for sustainable cropping pattern and irrigation management under water and nitrogen trade offs","https:\u002F\u002Fdoi.org\u002F10.1007\u002Fs43621-026-04797-z","Abstract Sustainable water and nitrogen management has become a major challenge for agricultural systems, particularly in regions facing increasing water scarcity and environmental degradation. Hence, this study integrated the Decision Support System for Agrotechnology Transfer (DSSAT) with a multi-objective optimization framework to evaluate optimal cropping patterns in the Darion Plain, Fars Province, Iran, during the 2022–2023 growing season. Unlike traditional single-objective approaches, the augmented ε-constraint method was employed to generate Pareto-optimal solutions that maximize economic profitability and minimize water loss, while nitrogen leaching was evaluated as an environmental outcome under a fixed nitrogen application rate. The results showed that current management practices lead to unnecessary water consumption and elevated nitrogen leaching, while optimized cropping patterns can substantially reduce environmental impacts without imposing major economic losses. In addition, water loss is translated into an implicit economic cost using a shadow price approach, allowing the economic value of water-saving scenarios to be explicitly assessed across alternative cropping patterns. Overall, this research develops a decision-support tool that helps farmers and policymakers identify cropping strategies that balance profitability with long-term environmental sustainability.","摘要 可持续的水资源和氮素管理已成为农业系统面临的重大挑战，尤其是在面临日益加剧的水资源短缺和环境退化的地区。因此，本研究将农业技术转移决策支持系统（DSSAT）与多目标优化框架相结合，以评估伊朗法尔斯省达里翁平原在2022—2023年生长季的最优种植模式。与传统单目标方法不同，本研究采用增强ε-约束方法生成帕累托最优解，以最大化经济收益并最小化水分损失，同时在固定施氮量下将氮素淋失作为环境结果进行评估。结果表明，当前管理实践导致了不必要的水资源消耗和较高的氮素淋失，而优化后的种植模式能够在不造成重大经济损失的情况下大幅降低环境影响。此外，本研究采用影子价格方法将水分损失转化为隐性经济成本，从而能够在不同种植模式下明确评估节水情景的经济价值。总体而言，本研究开发了一种决策支持工具，有助于农民和政策制定者识别兼顾盈利能力与长期环境可持续性的种植策略。",null,"Discover Sustainability","2026-09-26T00:00:00Z","论文",10,false,72,{"impact":17,"substance":18,"depth":19,"authority":20,"freshness":21,"relevant":22,"comment":23},12,21,17,13,9,1,"将DSSAT与多目标优化结合构建水氮权衡决策支持工具，方法有新意但属区域案例研究，对国内智慧农业与节水灌溉有参考价值。",[25],{"name":10,"url":6},[27,28,29,30,31],"智慧农业","决策支持系统","水肥一体化","灌溉管理","作物种植结构",[33,34],"DSSAT 多目标优化 灌溉","伊朗 Darion Plain 种植结构","DSSAT多目标优化灌溉-3627",0,"10.1007\u002Fs43621-026-04797-z",{"doi":37,"openalex_id":39,"authors":40,"venue":10,"cited_by_count":36,"oa_url":6,"card":49,"direction":53,"ingested_from":55},"W7214492159",[41,44,47],{"name":42,"orcid":43},"Hoda Fouladi","https:\u002F\u002Forcid.org\u002F0009-0008-7156-2445",{"name":45,"orcid":46},"Mohammad Hassan Tarazkar","https:\u002F\u002Forcid.org\u002F0000-0001-9585-4460",{"name":48,"orcid":9},"Mansour Zibaei",{"tldr":50,"method":51,"finding":52,"direction":53,"opportunity":54},"集成DSSAT与多目标优化，为伊朗平原提供兼顾经济与水氮环境的种植决策工具。","DSSAT作物模型+增广ε-约束多目标优化，以影子价格量化水损失。","优化种植模式可大幅减少水耗与氮淋失，且不造成显著经济损失。","农业人工智能与决策模型","可将该水氮权衡框架扩展至不同气候区，并耦合实时气象与市场数据实现动态决策。","openalex","2026-09-27T23:31:29.607447Z",{"total":58,"page":22,"page_size":58,"items":59},6,[60,85,140,161,190,206],{"id":61,"title":62,"url":63,"summary":64,"summary_zh":9,"content":9,"source_name":65,"source_url":9,"published_at":66,"category":67,"cover_url":9,"hotness":13,"is_selected":14,"score":68,"score_detail":69,"sources":74,"tags":76,"search_phrases":80,"slug":83,"view_count":36,"doi":9,"paper":9,"created_at":84},3403,"指尖办农事、数字助粮安——齐鲁现代农事综合服务中心管理平台上线——省农科院水肥智慧大模型支撑","https:\u002F\u002Fnews.qq.com\u002Frain\u002Fa\u002F20260921A06Z6K00","山东省委一号文件要求布局建设现代农事综合服务中心，全省新增水肥一体化推广面积300万亩。齐鲁现代农事综合服务中心管理平台在德州首发，把政府政策、农户需求、金融资源、社会服务有效贯通，推动农业社会化服务从'碎片化供给'向'集成化服务'跃升。山东省农科院作物所副所长李娜娜发布'水肥智慧大模型'，汇聚土壤、墒情、气象、苗情等海量数据，针对不同地块、不同作物智能输出个性化的灌溉施肥方案。","腾讯新闻\u002F大众日报 2026-09-21","2026-09-21T00:00:00Z","报道",74,{"impact":70,"substance":71,"depth":72,"authority":13,"freshness":58,"relevant":22,"comment":73},22,20,16,"省级平台首发叠加水肥智慧大模型落地，政策与数据细节扎实，对农业社会化服务数字化有示范价值。",[75],{"name":65,"url":63},[77,27,78,29,79],"数字乡村","农业大模型","农业社会化服务",[81,82],"山东 现代农事综合服务中心","水肥智慧大模型 山东","山东现代农事综合服务中心-3403","2026-09-25T00:09:30.111193Z",{"id":86,"title":87,"url":88,"summary":89,"summary_zh":90,"content":9,"source_name":91,"source_url":88,"published_at":92,"category":12,"cover_url":9,"hotness":13,"is_selected":14,"score":93,"score_detail":94,"sources":98,"tags":100,"search_phrases":104,"slug":107,"view_count":36,"doi":108,"paper":109,"created_at":139},3348,"Nanobubble Technology in Smart Agriculture: Underlying Mechanisms and Application Dynamics for Resource Optimization","https:\u002F\u002Fdoi.org\u002F10.1007\u002Fs41101-026-00573-2","Nanobubble (NB) technology is considered as an innovative approach in terms of efficient utilization of resources and production of crops. A nanobubble is an ultra-fine gas bubble generally smaller than 1 μm in diameter, commonly reported in the range of 50–200 nm, which behaves differently from ordinary bubbles due to its apparently tiny size, high internal pressure and surface charge. Their applications include irrigation management through improved water and oxygen delivery to the root zone, soil management by enhancing soil structure and aeration, and nutrient management with improved nutrient uptake and favourable microbial interactions. Despite these advances, large scale adoption remains constrained by greater variability in water quality, soil heterogeneity, irrigation system design and limitations related to nanobubble generation efficiency and economic feasibility. Addressing these challenges requires coordinated interdisciplinary efforts integrating agronomy, soil science and engineering to optimize application strategies and scalability. This review aims to synthesize current knowledge on nano bubble technology in agriculture, applications in irrigation, soil, nutrient, microbial management and assess its integration with sustainable systems. However, much of the available evidence is based on short-term or controlled studies and further long-term field validation across diverse agroecological conditions is needed. Together, nanobubble technology holds a promising future for maintaining and enhancing sustainability in agriculture. Graphical Abstract","纳米气泡（NB）技术被认为是一种在资源高效利用和作物生产方面的创新方法。纳米气泡是一种超细气泡，直径通常小于1 μm，常见报道范围为50–200 nm，由于其极小的尺寸、高内压和表面电荷，其行为与普通气泡不同。其应用包括通过改善水分和氧气向根区的输送来进行灌溉管理，通过增强土壤结构和通气性来进行土壤管理，以及通过改善养分吸收和有利的微生物相互作用来进行养分管理。尽管取得了这些进展，但大规模采用仍受限于水质变异性较大、土壤异质性、灌溉系统设计以及纳米气泡生成效率和经济可行性方面的局限。应对这些挑战需要协调一致的跨学科努力，整合农学、土壤科学和工程学，以优化应用策略和可扩展性。本综述旨在综合当前关于纳米气泡技术在农业中应用的知识，包括在灌溉、土壤、养分和微生物管理中的应用，并评估其与可持续系统的整合。然而，现有证据大多基于短期或受控研究，仍需在不同农业生态条件下进行进一步的长期田间验证。总之，纳米气泡技术在维持和增强农业可持续性方面具有广阔前景。图形摘要","Water Conservation Science and Engineering","2026-09-23T00:00:00Z",76,{"impact":95,"substance":71,"depth":19,"authority":20,"freshness":96,"relevant":22,"comment":97},18,8,"系统综述纳米气泡技术在灌溉、土壤与养分管理中的应用机制与规模化瓶颈，属智慧农业资源优化方向的前沿论文，但偏理论综述、缺乏长期田间验证，适合主题聚合而非头条精选。",[99],{"name":91,"url":88},[27,29,101,102,103],"土壤健康","节水灌溉","纳米气泡",[105,106],"纳米气泡 灌溉","水肥一体化 土壤健康 智慧农业 纳米气泡","纳米气泡灌溉-3348","10.1007\u002Fs41101-026-00573-2",{"doi":108,"openalex_id":110,"authors":111,"venue":91,"cited_by_count":36,"oa_url":88,"card":133,"direction":137,"ingested_from":55},"W7214068919",[112,115,118,121,124,127,130],{"name":113,"orcid":114},"Deepasri K","https:\u002F\u002Forcid.org\u002F0009-0005-6635-5378",{"name":116,"orcid":117},"P. M. Shanmugam","https:\u002F\u002Forcid.org\u002F0000-0002-6706-8419",{"name":119,"orcid":120},"P Kathirvelan","https:\u002F\u002Forcid.org\u002F0000-0003-3576-3545",{"name":122,"orcid":123},"Sathiya Bama Kaliappan","https:\u002F\u002Forcid.org\u002F0000-0001-8752-7881",{"name":125,"orcid":126},"P C Prabu","https:\u002F\u002Forcid.org\u002F0000-0002-7237-9481",{"name":128,"orcid":129},"R. Kuttimani","https:\u002F\u002Forcid.org\u002F0000-0002-1067-3597",{"name":131,"orcid":132},"M. N. Karthik","https:\u002F\u002Forcid.org\u002F0009-0003-4662-3078",{"tldr":134,"method":135,"finding":136,"direction":137,"opportunity":138},"综述纳米气泡技术在智能农业中优化水、土、养分资源的作用机制与应用前景。","综述纳米气泡在灌溉、土壤、养分和微生物管理中的应用及机制。","纳米气泡可提升水氧输送、土壤通气与养分吸收，但规模化受水质、土壤异质性和成本限制。","智慧农业 \u002F 农业物联网","可研究纳米气泡与物联网传感器结合，实现灌溉水气精准调控及长期田间验证。","2026-09-24T23:30:09.954106Z",{"id":141,"title":142,"url":143,"summary":144,"summary_zh":9,"content":145,"source_name":146,"source_url":9,"published_at":92,"category":67,"cover_url":9,"hotness":13,"is_selected":14,"score":147,"score_detail":148,"sources":150,"tags":152,"search_phrases":156,"slug":159,"view_count":36,"doi":9,"paper":9,"created_at":160},3302,"沭阳县潼阳镇 破内卷提品质 赋能农业转型升级——江苏省农科院高品质果蔬试验示范基地迭代升级","https:\u002F\u002Fjsnews.jschina.com.cn\u002Fsq\u002F202609\u002Ft20260923_s6ab39777e4b088096d2eb9d2.shtml","沭阳县潼阳镇立足果蔬产业基础，迭代升级江苏省农科院高品质果蔬试验示范基地，依托科研院所技术、品种、人才优势，以新品种试种、高科技赋能、高品质领跑、高效益增收为核心，跳出低价竞争内卷，全力打造绿色优质、高产高效的现代化果蔬种植样板。基地集中试种省农科院最新研发的16个果蔬新品种，涵盖苏蜜518、苏蜜7、黄金潼优质西瓜，苏甜4号香瓜以及两款全省独有的酸甜风味特色哈密瓜。基地建成50栋标准化拱棚、2栋智能温室大棚，配套物联网系统、智能水肥一体化等现代化设施。基地引种的优质新品种亩均产量较本地常规品种提升2-4倍，销售单价提升1-3倍。","中国江苏网9月23日宿迁讯 为破解农业发展瓶颈、推动产业转型升级，沭阳县潼阳镇立足果蔬产业基础，迭代升级江苏省农科院高品质果蔬试验示范基地，依托科研院所技术、品种、人才优势，以新品种试种、高科技赋能、高品质领跑、高效益增收为核心，跳出低价竞争内卷，全力打造绿色优质、高产高效的现代化果蔬种植样板，为沭阳特色农业高质量发展注入强劲动能。\n\n![Image 1](https:\u002F\u002Fjcdn.xhby.net\u002Fdams-res\u002Fediting\u002Fimage\u002F202609\u002F23\u002FFjRY63RVzfqZIvBJ3GGIBT1R.png?image_process=resize,w_800\u002Fformat,jpg)\n\n依托省农科院、亚夫工作站的硬核科研支撑，基地摒弃传统粗放种植模式，聚焦品种革新与技术升级，开启现代农业转型新路径。目前基地集中试种省农科院最新研发的16个果蔬新品种，涵盖苏蜜518、苏蜜7、黄金潼优质西瓜，苏甜4号香瓜以及两款全省独有、小众稀缺的酸甜风味特色哈密瓜。相较于市场常规品种，这批新品种风味醇厚、甜度均衡、营养更佳，稀缺性与品质优势突出，彻底摆脱果蔬市场“同质化低价内卷”困境，以差异化优质品类抢占高端市场，实现“好品质卖出好价钱”。\n\n![Image 2](https:\u002F\u002Fjcdn.xhby.net\u002Fdams-res\u002Fediting\u002Fimage\u002F202609\u002F23\u002FxiVxj13OTSNFliyZgbsfmPpf.png?image_process=resize,w_800\u002Fformat,jpg)\n\n科技赋能是基地提质降本、绿色种植的核心密钥。基地建成50栋标准化拱棚、2栋智能温室大棚，配套物联网系统、智能水肥一体化等现代化设施，实现种植、育苗全流程数字化精准调控。在田间管理上，推行精准滴灌、科学施肥、精准用药标准化模式，摒弃传统大水大肥、盲目用药的种植方式，按需供给水肥、严控农药用量，从源头大幅降低果蔬农残，保障果蔬绿色安全、品质上乘，让每一份产出都符合高端农产品品质标准。\n\n![Image 3](https:\u002F\u002Fjcdn.xhby.net\u002Fdams-res\u002Fediting\u002Fimage\u002F202609\u002F23\u002FYyzLLGhtSne8lauQBCZbCXy9.png?image_process=resize,w_800\u002Fformat,jpg)\n\n在种植模式上，基地创新推行西瓜、哈密瓜、西红柿、辣椒循环套种模式，科学搭配不同品类、不同生长期果蔬轮作套种。这种生态种植方式，能够有效改良土壤结构、均衡地力养分、减少土壤板结与病虫害滋生，最大化盘活土地资源，提升土地复种指数，实现一地多收、生态循环、节本增效的多重效益，走出了一条生态优先、高效集约的现代农业发展之路。\n\n品种升级、科技赋能、模式创新，让基地产业效益实现跨越式提升。数据显示，基地引种的优质新品种，亩均产量较本地常规品种提升2-4倍，销售单价提升1-3倍。同时，基地通过新品种试验示范、标准化种苗繁育，既为全镇乃至全县果蔬品种推广提供实地落地验证，有效降低农户试种风险，带动周边农户科学种植、抱团增收，社会效益显著；依托多品类轮作种植、优质种苗外销，基地年收益可达300万元，经济效益亮眼。\n\n从“跟风种、低价卷”到“优品种、高品质、高附加值”，潼阳镇通过科研赋能、技术革新、模式创新，顺利完成果蔬产业的迭代升级与转型升级。下一步，潼阳镇将持续深化与省农科院的产学研合作，持续引进筛选优质果蔬新品种、推广绿色高效种植新技术，持续放大示范基地辐射带动作用，持续壮大优质果蔬特色产业，以产业振兴赋能乡村全面振兴，让优质果蔬成为群众增收致富的“黄金果”。（黄杰）","中国江苏网 2026年09月23日",59,{"impact":17,"substance":72,"depth":20,"authority":21,"freshness":21,"relevant":22,"comment":149},"省级农科院与乡镇共建示范基地的迭代升级报道，有新品种、智能设施与亩均效益数据，属细分领域实质进展，但层级为县域示范，适合主题聚合而非头条精选。",[151],{"name":146,"url":143},[27,153,154,29,155],"设施农业","种业振兴","果蔬产业",[157,158],"江苏省农科院 高品质果蔬 沭阳","苏蜜518 苏甜4号 试验示范","江苏省农科院高品质果蔬沭阳-3302","2026-09-24T00:03:59.427393Z",{"id":162,"title":163,"url":164,"summary":165,"summary_zh":9,"content":9,"source_name":166,"source_url":164,"published_at":167,"category":12,"cover_url":9,"hotness":13,"is_selected":14,"score":168,"score_detail":169,"sources":171,"tags":173,"search_phrases":177,"slug":180,"view_count":36,"doi":181,"paper":182,"created_at":189},3274,"Farmer-Friendly Decision Support System Using Explainable Orangutan Artificial Intelligence for Soil Fertility","https:\u002F\u002Fdoi.org\u002F10.1007\u002Fs42979-026-05329-2","Farmer-Friendly Decision Support System Using Explainable Orangutan Artificial Intelligence for Soil Fertility。SN Computer Science","SN Computer Science","2026-09-22T00:00:00Z",68,{"impact":17,"substance":95,"depth":72,"authority":20,"freshness":21,"relevant":22,"comment":170},"论文提出可解释猩猩优化算法驱动的土壤肥力决策支持系统，方法新颖且面向农户，但尚属学术探索阶段，产业影响有限。",[172],{"name":166,"url":164},[27,174,175,28,176],"农业人工智能","可解释AI","土壤肥力",[178,179],"农业人工智能 决策支持系统 土壤肥力 智慧农业","农业人工智能 决策支持系统","农业人工智能决策支持系统土壤肥力智慧农业-3274","10.1007\u002Fs42979-026-05329-2",{"doi":181,"openalex_id":183,"authors":184,"venue":166,"cited_by_count":36,"oa_url":9,"card":9,"direction":137,"ingested_from":55},"W7214018467",[185,187],{"name":186,"orcid":9},"K. Komala Devi",{"name":188,"orcid":9},"Josephine Prem Kumar","2026-09-23T23:30:12.314548Z",{"id":191,"title":192,"url":193,"summary":194,"summary_zh":9,"content":9,"source_name":195,"source_url":9,"published_at":66,"category":67,"cover_url":9,"hotness":13,"is_selected":14,"score":93,"score_detail":196,"sources":198,"tags":200,"search_phrases":201,"slug":204,"view_count":36,"doi":9,"paper":9,"created_at":205},3220,"指尖办农事，数字助粮安——齐鲁现代农事综合服务中心管理平台上线，水肥智慧大模型助力农户算好\"浇水账 施肥账\"","https:\u002F\u002Fnew.qq.com\u002Frain\u002Fa\u002F20260921A06Z6K00","9-21 大众新闻报道：齐鲁现代农事综合服务中心管理平台上线首发选择在德州——全国首个百万亩大面积\"吨半粮\"引领区，2026年省委一号文件明确要求布局建设现代农事综合服务中心，全省新增水肥一体化推广面积300万亩；德州计划到2030年水肥一体化面积达到200万亩。省农业科学院作物研究所副所长李娜娜带来了水肥智慧大模型，这项汇聚土壤、墒情、气象、苗情等海量数据的技术，能针对不同地块、不同作物，智能输出个性化的灌溉施肥方案。齐鲁现代农事综合服务中心管理平台把政府政策、农户需求、金融资源、社会服务有效贯通，推动农业社会化服务从\"碎片化供给\"向\"集成化服务\"跃升。","腾讯新闻·大众新闻",{"impact":70,"substance":18,"depth":72,"authority":21,"freshness":96,"relevant":22,"comment":197},"省级政策落地叠加水肥智慧大模型首发，数据与背景扎实，具备智慧农业主题聚合价值。",[199],{"name":195,"url":193},[77,27,78,29,79],[202,203],"水肥智慧大模型 德州","农业社会化服务 农业大模型 水肥一体化 数字乡村","水肥智慧大模型德州-3220","2026-09-23T00:04:29.579062Z",{"id":207,"title":208,"url":209,"summary":210,"summary_zh":9,"content":9,"source_name":211,"source_url":9,"published_at":212,"category":67,"cover_url":9,"hotness":13,"is_selected":14,"score":213,"score_detail":214,"sources":218,"tags":220,"search_phrases":224,"slug":227,"view_count":36,"doi":9,"paper":9,"created_at":228},3218,"国家重点研发计划项目《盐碱地智慧生态农业关键技术研发与集成应用》应用场景验收会在山东昌邑召开","https:\u002F\u002Fwww.farmer.com.cn\u002F2026\u002F09\u002F22\u002F991029269.html","9-22 中国农网报道：9-19 由山东省农业科学院主持的\"十四五\"国家重点研发计划（部省联动）项目\"工厂化农业关键技术与智能农机装备\"重点专项\"盐碱地智慧生态农业关键技术研发与集成应用\"应用场景验收会在山东潍坊昌邑召开。会议邀请北京工商大学食品与健康学院杨信廷研究员、农业农村部南京农机化所科技管理处处长常春研究员、南京农业大学工学院院长肖茂华教授、山东省农科院阮怀军研究员及湿地农业与生态研究所所长李宗新研究员组成的专家组及项目骨干成员70余人参会。现场演示了智慧水肥一体化灌溉系统和变量喷药技术，展示了水肥及智能精准调控技术、土壤质量提升绿色精量配肥、玉米花生带状复合种植生态高效等核心技术的规模化示范应用；陕西大荔、内蒙古达拉特旗及山东武城、东营、无棣5处示范基地现场实时查看。","山东省农业科学院","2026-09-19T00:00:00Z",82,{"impact":215,"substance":71,"depth":72,"authority":216,"freshness":96,"relevant":22,"comment":217},24,14,"国家重点研发计划项目在昌邑完成应用场景验收，多基地联动示范智慧水肥与变量喷药技术，专业性与示范价值突出，值得进入每日精选。",[219],{"name":211,"url":209},[27,221,29,222,223],"智能农机","盐碱地治理","生态农业",[225,226],"盐碱地智慧生态农业 昌邑","山东农科院 盐碱地 水肥一体化","盐碱地智慧生态农业昌邑-3218","2026-09-23T00:04:29.434147Z"]