[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"item-3642":3,"related-3642":36},{"id":4,"title":5,"url":6,"summary":7,"summary_zh":8,"content":9,"source_name":10,"source_url":8,"published_at":11,"category":12,"cover_url":8,"hotness":13,"is_selected":14,"score":15,"score_detail":16,"sources":22,"tags":24,"search_phrases":30,"slug":33,"view_count":34,"doi":8,"paper":8,"created_at":35},3642,"亚夫科技服务惠山洛社工作站组织蔬菜安全生产技术专题培训——江苏农科院质量安全所、省农检中心联合举办","https:\u002F\u002Fjaas.ac.cn\u002Fxww\u002Fkjfw\u002Fart\u002F2026\u002Fart_050ee8516bb54267a6f9b0a72406ab42.html","9月20日，由亚夫科技服务惠山洛社工作站与无锡市农业技术推广中心联合主办的蔬菜安全生产技术专题培训在惠山区洛社镇举行。江苏省农业科学院质量安全所副所长张志勇、省农检中心高级农艺师闫晓阳作专题讲座。张志勇以《农产品农药残留检测与食品安全》为题，从食品安全典型案例切入，分析国内蔬菜质量安全现状，讲解农药残留检测标准体系。闫晓阳结合最新政策要求，逐项解读蔬菜生产质量安全条例规定。此次培训系统集成了蔬菜安全生产技术体系，省植保站高级农艺师卢鹏、无锡市农业技术推广中心副主任王程亮、江苏省农科院无锡分院副院长高兵、惠山区蔬菜站站长高晓东出席活动。",null,"9月20日，由亚夫科技服务惠山洛社工作站与无锡市农业技术推广中心联合主办的蔬菜安全生产技术专题培训在惠山区洛社镇举行。我院质量安全所副所长张志勇、省农检中心高级农艺师闫晓阳作专题讲座。省植保站高级农艺师卢鹏、无锡市农业技术推广中心副主任王程亮、我院无锡分院副院长高兵、惠山区蔬菜站站长高晓东出席活动，当地农技推广人员、新型经营主体等60余人参加培训。\n\n会前，专家团队首先前往尚田郝伟农场、乐野农场，现场察看了当地番茄、小白菜等设施果蔬长势，促进技术服务与生产需求精准对接。\n\n培训会上，张志勇以《农产品农药残留检测与食品安全》为题，从食品安全典型案例切入，分析国内蔬菜质量安全现状，讲解农药残留检测标准体系，并围绕检测技术要点和生产用药规范，指导种植户科学认识农药残留、合理使用农药投入品。闫晓阳结合最新政策要求，逐项解读蔬菜生产质量安全条例规定，将专业政策转化为种植户听得懂、用得上的生产指引。\n\n此次培训系统集成了蔬菜安全生产技术体系，为种植户搭建起安全高效生产的技术平台。亚夫科技服务惠山洛社工作站将在未来工作中持续弘扬践行“亚夫精神”，坚持做给农民看、带着农民干、帮助农民销、实现农民富，推动先进技术落地田间，助力洛社镇设施蔬菜产业提质增效。","江苏省农业科学院 2026-09-20","2026-09-20T00:00:00Z","报道",10,false,52,{"impact":13,"substance":17,"depth":18,"authority":18,"freshness":19,"relevant":20,"comment":21},14,12,4,1,"省级科研机构牵头的基层蔬菜安全培训，内容务实但属常规农技推广，时效偏旧，可作主题聚合素材而非每日精选。",[23],{"name":10,"url":6},[25,26,27,28,29],"设施蔬菜","亚夫科技服务","农技培训","农药残留","蔬菜安全",[31,32],"亚夫科技服务 惠山洛社 蔬菜培训","江苏农科院 农药残留 蔬菜安全","亚夫科技服务惠山洛社蔬菜培训-3642",0,"2026-09-28T00:03:00.487394Z",{"total":37,"page":20,"page_size":37,"items":38},6,[39,93,116,139,182,212],{"id":40,"title":41,"url":42,"summary":43,"summary_zh":44,"content":8,"source_name":45,"source_url":42,"published_at":46,"category":47,"cover_url":8,"hotness":13,"is_selected":14,"score":48,"score_detail":49,"sources":56,"tags":58,"search_phrases":64,"slug":67,"view_count":34,"doi":68,"paper":69,"created_at":92},3460,"Knowledge graph-based expert system for tea pesticide residue compliance verification and detection method selection optimization","https:\u002F\u002Fdoi.org\u002F10.3389\u002Ffsufs.2026.1865601","Introduction Strict Maximum Residue Limits (MRLs) and complex residue definitions in pesticide standards (e.g., GB 2763) pose significant challenges for compliance verification and detection method selection in tea safety management. Manual inspection is prone to systematic errors, particularly false negatives caused by neglecting metabolites or isomers. Methods This study proposes a Knowledge Graph-based Expert System to address these issues. We constructed a domain-specific knowledge graph integrating 110 tea-registered pesticide active substances (comprising 847 entities and 2,156 relationships) and 37 detection standards using a human-in-the-loop verification process. A semantic classification model categorizing residue definitions into six patterns (Type A–F) was developed to enable automated, logic-driven compliance verification. A weighted set-cover algorithm was implemented to optimize the selection of detection methods among existing standardized methods. Validation included a small exploratory pilot user study (n = 5) and a retrospective analysis of 500 historical laboratory samples. Results In the retrospective analysis, the system’s automated verdicts agreed with the laboratory’s human Final Verdict in all 500 cases (95% CI: 99.3%–100.0%), demonstrating faithful reproduction of institutional interpretation of GB 2763. Notably, the system independently flagged three metabolite-summation (Type B) cases that first-level manual review had passed, illustrating its value as a redundant safeguard for multi-component residue definitions. The pilot user study illustrated qualitative trends consistent with cognitive load theory, whereas the system produced deterministic verdicts at a mean of 0.63 s per sample. Discussion This system provides an effective decision-support tool for laboratory quality control and regulatory compliance.","引言 农药标准（如GB 2763）中严格的最高残留限量（MRLs）和复杂的残留物定义，给茶叶安全管理中的合规性验证和检测方法选择带来了重大挑战。人工审查容易产生系统性错误，尤其是因忽视代谢物或异构体而导致的假阴性。方法 本研究提出了一种基于知识图谱的专家系统来解决这些问题。我们采用人在回路验证流程，构建了整合110种茶叶登记农药活性物质（包含847个实体和2，156个关系）及37项检测标准的领域专用知识图谱。开发了将残留物定义归类为六种模式（A型–F型）的语义分类模型，以实现自动化、逻辑驱动的合规性验证。实现了加权集合覆盖算法，以在现有标准化方法中优化检测方法的选择。验证包括一项小型探索性试点用户研究（n = 5）和对500份历史实验室样本的回顾性分析。结果 在回顾性分析中，系统的自动判定在所有500个案例中均与实验室人工最终判定一致（95% CI：99.3%–100.0%），表明系统忠实再现了GB 2763的机构解释。值得注意的是，系统独立标记出3例一级人工审查已通过的代谢物加和（B型）案例，说明其作为多组分残留物定义冗余保障的价值。试点用户研究显示了与认知负荷理论一致的定性趋势，而系统以平均每样本0.63秒的速度产生确定性判定。讨论 该系统为实验室质量控制和法规合规提供了有效的决策支持工具。","Frontiers in Sustainable Food Systems","2026-09-24T00:00:00Z","论文",78,{"impact":50,"substance":51,"depth":52,"authority":53,"freshness":54,"relevant":20,"comment":55},16,22,18,13,9,"知识图谱专家系统用于茶叶农残合规判定与检测方法优选，500例回溯验证一致率100%，方法新颖、数据扎实，对农产品质量安全监管有实用价值。",[57],{"name":45,"url":42},[59,60,61,28,62,63],"智慧农业","农业人工智能","知识图谱","茶叶安全","检测标准",[65,66],"农药残留 知识图谱","GB 2763 茶叶 检测方法","农药残留知识图谱-3460","10.3389\u002Ffsufs.2026.1865601",{"doi":68,"openalex_id":70,"authors":71,"venue":45,"cited_by_count":34,"oa_url":42,"card":85,"direction":89,"ingested_from":91},"W7214240413",[72,74,76,78,80,82],{"name":73,"orcid":8},"Yanyan Zhang",{"name":75,"orcid":8},"Jianrong Wen",{"name":77,"orcid":8},"Xuexiang Su",{"name":79,"orcid":8},"Tingxin Chen",{"name":81,"orcid":8},"Min Xie",{"name":83,"orcid":84},"Jindong Chen","https:\u002F\u002Forcid.org\u002F0000-0002-5560-1431",{"tldr":86,"method":87,"finding":88,"direction":89,"opportunity":90},"构建知识图谱专家系统，自动核验茶叶农药残留合规并优化检测方法选择。","整合110种农药与37项标准构建知识图谱，用语义分类和加权集合覆盖算法。","500例回溯判定与人工一致，并额外发现3例被人工漏检的代谢物加和案例。","农业人工智能与决策模型","可扩展至其他作物与多残留定义，并探索知识图谱与实验室LIMS实时联动。","openalex","2026-09-25T23:30:06.985753Z",{"id":94,"title":95,"url":96,"summary":97,"summary_zh":8,"content":98,"source_name":99,"source_url":8,"published_at":100,"category":12,"cover_url":8,"hotness":13,"is_selected":14,"score":101,"score_detail":102,"sources":105,"tags":107,"search_phrases":111,"slug":114,"view_count":34,"doi":8,"paper":8,"created_at":115},3416,"河北《设施冬春季茄果类蔬菜育苗智能化管控技术规程》地方标准征求意见——9月22日至10月22日公开征集意见","https:\u002F\u002Fscjg.hebei.gov.cn\u002Finfo\u002F121569","根据市场监管总局第26号令《地方标准管理办法》规定，河北省市场监督管理局现将《设施冬春季茄果类蔬菜育苗智能化管控技术规程》河北省地方标准网上征求意见稿予以公示，面向社会广泛征求意见，期限为2026年9月22日至2026年10月22日。起草单位为河北省农林科学院经济作物研究所。省市场监管局将在公开征求意见期满后组织专家对上述地方标准开展技术审查。","[](javascript:void(0))\n\n中文域名：河北省市场监督管理局.政务\n\n[![Image 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[首页](https:\u002F\u002Fscjg.hebei.gov.cn\u002F)>[互动交流](https:\u002F\u002Fscjg.hebei.gov.cn\u002Fnode\u002F310)>[地方标准意见征集](https:\u002F\u002Fscjg.hebei.gov.cn\u002Fnode\u002F1083)\n\n 关于对《设施冬春季茄果类蔬菜育苗  \n智能化管控技术规程》河北省地方标准  \n公开征求意见的通知 \n\n 2026-09-22 09:39 来源：河北省市场监督管理局\n\n![Image 15](https:\u002F\u002Fscjg.hebei.gov.cn\u002Ftemplate\u002F1\u002Fdefault\u002F_files\u002Fimages\u002Fdy2.png)\n\n[![Image 16](https:\u002F\u002Fscjg.hebei.gov.cn\u002Ftemplate\u002F1\u002Fdefault\u002F_files\u002Fimages\u002Fwx.jpg)](javascript:; \"分享至微信\")\n\n根据市场监管总局第26号令《地方标准管理办法》规定，现将《设施冬春季茄果类蔬菜育苗智能化管控技术规程》河北省地方标准网上征求意见稿予以公示，面向社会广泛征求意见，期限为2026年9月22日至2026年10月22日。\n\n公开征求意见期间，相关单位和个人若对标准有修改意见建议，可以通过电话、电子邮件、信函等形式反馈。省市场监管局将在公开征求意见期满后组织专家对上述地方标准开展技术审查。\n\n单位名称：河北省农林科学院经济作物研究所\n\n联系人：梁玉芹\n\n电话（传真）：13290615131\n\n电子邮箱：liangyuqin1995@163.com\n\n附件：1.[《设施冬春季茄果类蔬菜育苗智能化管控技术规程》网上征求意见稿](https:\u002F\u002Fscjg.hebei.gov.cn\u002Fuploads\u002F1\u002Ffile\u002Fpublic\u002F202609\u002F20260922093959_v8nmwjk4cv.docx \"《设施冬春季茄果类蔬菜育苗智能化管控技术规程》网上征求意见稿.docx\")\n\n2.[地方标准网上征求意见反馈表](https:\u002F\u002Fscjg.hebei.gov.cn\u002Fuploads\u002F1\u002Ffile\u002Fpublic\u002F202609\u002F20260922094018_9hif0o6rdl.docx \"地方标准网上征求意见反馈表.docx\")\n\n河北省市场监督管理局\n\n2026年9月22日\n\n相关链接：\n\n![Image 17](https:\u002F\u002Fscjg.hebei.gov.cn\u002Fuploads\u002F1\u002Fimage\u002Fpublic\u002F202304\u002F20230426211602_vkhtm4dw0e.jpg)官方微信\n\n![Image 18](https:\u002F\u002Fscjg.hebei.gov.cn\u002Ftemplate\u002F1\u002Fdefault\u002F_files\u002Fimages\u002Fqingfengjiyu.jpg)清风纪语\n\n[![Image 19](https:\u002F\u002Fscjg.hebei.gov.cn\u002Ftemplate\u002F1\u002Fdefault\u002F_files\u002Fimages\u002Fcall.png)注册咨询电话](https:\u002F\u002Fs.hebamr.cn\u002Fbsdt\u002Fg\u002Fywzxdh,djnew)\n\n主办：河北省市场监督管理局主办\n\n版权所有：本网站所刊登的各种信息和各种专题专栏资料  \n 均为河北省市场监督管理局版权所有，未经协议授权，严禁下载。\n\n地址：石家庄市中华南大街537号 邮编：050091\n\n[冀ICP备18039175号-1](https:\u002F\u002Fbeian.miit.gov.cn\u002F)[冀ICP备18039175号-2](https:\u002F\u002Fbeian.miit.gov.cn\u002F)[![Image 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2026-09-22","2026-09-22T00:00:00Z",67,{"impact":50,"substance":52,"depth":18,"authority":53,"freshness":103,"relevant":20,"comment":104},8,"省级地方标准公开征求意见，聚焦设施茄果类蔬菜育苗智能化管控，属智慧农业标准化实质进展，但为征求意见阶段、正文信息有限，适合作为行业动态收录。",[106],{"name":99,"url":96},[59,25,108,109,110],"茄果类蔬菜","地方标准","育苗智能化",[112,113],"河北 茄果类蔬菜 育苗 智能化","河北省农林科学院 地方标准 征求意见","河北茄果类蔬菜育苗智能化-3416","2026-09-25T00:09:31.106787Z",{"id":117,"title":118,"url":119,"summary":120,"summary_zh":8,"content":121,"source_name":122,"source_url":8,"published_at":123,"category":12,"cover_url":8,"hotness":13,"is_selected":14,"score":124,"score_detail":125,"sources":127,"tags":129,"search_phrases":134,"slug":137,"view_count":34,"doi":8,"paper":8,"created_at":138},3223,"以科技赋能养殖产业升级——2026年度亚夫科技服务项目\"水禽智能健康养殖关键技术集成与示范推广\"启动会顺利召开","https:\u002F\u002Fnewiafe.jaas.ac.cn\u002Fxww\u002Fxwzx\u002Fart\u002F2026\u002Fart_6d08a9cfbbfd4ea78a7094b8f250d7fb.html","9-17 江苏省农科院农业设施与装备研究所牵头承担的2026年度亚夫科技服务项目\"水禽智能健康养殖关键技术集成与示范推广\"启动会在睢宁县顺利召开。院成果转化处处长顾军，省畜牧总站副站长高升，江苏农牧科技职业学院副教授张蕾，装备所副所长、养殖环境工程与装备创新团队首席柏宗春等参加会议。柏宗春表示，亚夫科技服务项目是传承\"亚夫精神\"、推动科技下沉、服务乡村振兴的重要载体，项目团队将聚焦水禽智能健康养殖关键技术集成与示范推广，把论文写在大地上、把成果送到农户家，以科技赋能产业提质增效。","9月17日，由装备所牵头承担的2026年度亚夫科技服务项目“水禽智能健康养殖关键技术集成与示范推广”启动会在睢宁县顺利召开。院成果转化处处长顾军，省畜牧总站副站长高升，江苏农牧科技职业学院副教授张蕾，装备所副所长、养殖环境工程与装备创新团队首席柏宗春等参加会议。睢宁县农业农村局、项目实施所在镇（街道）、有关企业的代表及项目团队核心成员参会。会议由睢宁县农业农村局党组成员、副局长严军主持。\n\n柏宗春代表项目承担单位致辞。他表示，亚夫科技服务项目是传承“亚夫精神”、推动科技下沉、服务乡村振兴的重要载体，项目团队将坚持产业需求导向，聚焦关键技术攻关，强化产学研用协同，把论文写在大地上，把成果送到农户家，以科技赋能产业提质增效。\n\n项目团队骨刘建龙汇报了项目的实施背景、主要实施内容、预期目标与推进计划等。示范基地负责人介绍了企业总体情况、产业基础与现有条件。与会专家重点围绕项目实施方案的可行性、创新性、示范带动性和资金使用规范性等方面提出意见建议，并希望项目团队紧密围绕亚夫科技服务精神，聚焦生产实际需求，加快技术集成与成果转化。与会人员就技术落地、示范推广、联农带农等展开交流，现场气氛热烈。\n\n顾军在总结讲话中强调，项目团队要深刻把握农业科技创新的使命担当，紧扣产业发展实际需求，大力弘扬亚夫科技服务精神，注重技术应用的实用性与经济性，加快成果转化步伐；示范基地要积极配合，做好技术应用和示范展示；各方要加强协同联动，规范资金使用，确保项目成果真正惠及广大农户，为区域农业现代化发展和乡村振兴注入强劲科技动能。\n\n会议期间，与会代表与项目组成员前往示范基地进行现场观摩。\n\n本次启动会的成功召开，为项目顺利实施打下坚实基础。未来，项目团队将围绕技术集成、模式优化与示范推广持续发力，深化院地合作，推动更多农业科技成果在睢宁落地转化，为农业产业转型升级与乡村振兴战略实施提供有力技术支撑。\n\n[![Image 1: 项目启动会.jpg](https:\u002F\u002Fnewiafe.jaas.ac.cn\u002Fcms_files\u002Ffilemanager\u002F1331581533\u002Fpicture\u002F20268\u002FS628ec696fce24ac0ac9759bb4ea915b5-800.jpg)](https:\u002F\u002Fnewiafe.jaas.ac.cn\u002Fcms_files\u002Ffilemanager\u002F1331581533\u002Fpicture\u002F20268\u002F628ec696fce24ac0ac9759bb4ea915b5.jpg)\n\n[![Image 2: 示范基地观摩.jpg](https:\u002F\u002Fnewiafe.jaas.ac.cn\u002Fcms_files\u002Ffilemanager\u002F1331581533\u002Fpicture\u002F20268\u002FS9b47ea5b978e4b96b1f21aa3daedcfae-800.jpg)](https:\u002F\u002Fnewiafe.jaas.ac.cn\u002Fcms_files\u002Ffilemanager\u002F1331581533\u002Fpicture\u002F20268\u002F9b47ea5b978e4b96b1f21aa3daedcfae.jpg)[](https:\u002F\u002Fnewiafe.jaas.ac.cn\u002Fxww\u002Fxwzx\u002Fart\u002F2026\u002Fart_6d08a9cfbbfd4ea78a7094b8f250d7fb.html)","江苏省农科院农业设施与装备研究所","2026-09-17T00:00:00Z",51,{"impact":18,"substance":53,"depth":103,"authority":18,"freshness":37,"relevant":20,"comment":126},"省级科研院所牵头的科技服务项目启动会，属细分领域进展，有产学研协同与示范推广信息，但以会议通稿为主，增量有限。",[128],{"name":122,"url":119},[130,131,132,26,133],"乡村振兴","成果转化","智慧养殖","水禽养殖",[135,136],"亚夫科技服务 水禽智能健康养殖","江苏省农科院 睢宁 水禽养殖","亚夫科技服务水禽智能健康养殖-3223","2026-09-23T00:04:29.809644Z",{"id":140,"title":141,"url":142,"summary":143,"summary_zh":144,"content":8,"source_name":45,"source_url":142,"published_at":123,"category":47,"cover_url":8,"hotness":13,"is_selected":14,"score":145,"score_detail":146,"sources":150,"tags":152,"search_phrases":157,"slug":160,"view_count":20,"doi":161,"paper":162,"created_at":181},2753,"Pesticide residues in animal feed: emerging risks for animal health and crop production","https:\u002F\u002Fdoi.org\u002F10.3389\u002Ffsufs.2026.1948597","Introduction Pesticides are essential for maximizing crop yields and ensuring food security, yet concerns are growing about their accumulation in the food chain. While human dietary exposure has received considerable attention, pesticide residues in animal feed represent a critical, underexplored pathway that can affect livestock health and crop production through the reuse of contaminated manure. This review examines these emerging risks by focusing on livestock health and the cascading effects on crops. Methods Following PRISMA 2020 guidelines, we systematically searched and synthesized literature addressing: (i) prevalence, types, and concentrations of pesticide residues in feed; (ii) toxicological effects on livestock; and (iii) environmental carryover potential via manure application to soils. Results Residues of major pesticide classes carbamates, organochlorines, organophosphates, and pyrethroids frequently enter feed through treated crops, pre-harvest desiccation, and environmental persistence. While EFSA concludes that typical exposure levels do not pose major acute risks to animal health, significant uncertainties remain regarding chronic low-dose exposures and synergistic effects of multi-residue mixtures on livestock physiology. Evidence on toxicological effects is drawn from a mixture of feed-specific, laboratory-animal, and human studies; the source of evidence for each finding is now explicitly identified throughout the Results (Section 3.3, Table 3). Discussion Experimental and field studies demonstrate that pesticide residues transfer from feed to manure and, subsequently, to soil when manure is used as fertilizer. This circular pathway creates secondary contamination, where residues are taken up by crops, causing phytotoxicity, reduced germination, and diminished performance. These findings underscore the need for strengthened regulatory frameworks addressing cumulative and carryover effects, alongside enhanced monitoring. From a One Health perspective, mitigating these risks requires broader adoption of sustainable practices, including Integrated Pest Management (IPM), safer pre-harvest protocols, and improved manure waste management to break the contamination cycle and protect animal, environmental, and human health.","引言 农药对于最大化作物产量和保障粮食安全至关重要，但人们对其在食物链中蓄积的担忧日益加剧。尽管人类膳食暴露已受到广泛关注，但动物饲料中的农药残留却是一条关键却研究不足的暴露途径，其可通过受污染粪肥的再利用影响畜禽健康与作物生产。本综述聚焦畜禽健康及其对作物的级联效应，审视这些新兴风险。方法 遵循PRISMA 2020指南，我们系统检索并综合了以下方面的文献：(i) 饲料中农药残留的流行率、类型及浓度；(ii) 对畜禽的毒理学效应；(iii) 通过粪肥施用至土壤的环境携带潜力。结果 主要农药类别——氨基甲酸酯类(carbamates)、有机氯类(organochlorines)、有机磷类(organophosphates)和拟除虫菊酯类(pyrethroids)——的残留常通过施用农药的作物、收获前干燥处理及环境持久性进入饲料。尽管欧洲食品安全局(EFSA)认为典型暴露水平不会对动物健康构成重大急性风险，但关于慢性低剂量暴露及多残留混合物对畜禽生理的协同效应仍存在显著不确定性。毒理学效应的证据来自饲料特异性研究、实验室动物研究和人体研究的混合来源；每项发现的证据来源现已在结果部分(第3.3节，表3)中明确标注。讨论 实验与田间研究表明，农药残留从饲料转移至粪肥，随后在粪肥用作肥料时进入土壤。这一循环途径造成二次污染，残留被作物吸收，导致植物毒性、发芽率降低和生长性能下降。这些发现凸显了加强监管框架以应对累积效应和携带效应的必要性，同时需强化监测。从“同一健康”(One Health)视角出发，降低这些风险需要更广泛地采用可持续实践，包括综合病虫害管理(IPM)、更安全的收获前操作规程以及改进粪肥废弃物管理，以打破污染循环，保护动物、环境和人类健康。",79,{"impact":52,"substance":147,"depth":148,"authority":53,"freshness":13,"relevant":20,"comment":149},21,17,"系统综述揭示农药残留经饲料—粪肥—土壤的循环污染路径，对畜牧健康与作物生产具警示价值，但属学术综述而非政策或产业级突破。",[151],{"name":45,"url":142},[153,154,155,156,28],"绿色防控","循环农业","饲料安全","One Health",[158,159],"农药残留 循环农业 绿色防控 饲料安全","农药残留 循环农业","农药残留循环农业绿色防控饲料安全-2753","10.3389\u002Ffsufs.2026.1948597",{"doi":161,"openalex_id":163,"authors":164,"venue":45,"cited_by_count":34,"oa_url":142,"card":175,"direction":179,"ingested_from":91},"W7213471313",[165,167,169,171,173],{"name":166,"orcid":8},"Boubacar Madio dit Aladiogo Maïga",{"name":168,"orcid":8},"Aminata SISSOKO",{"name":170,"orcid":8},"Issiaka Bagayoko",{"name":172,"orcid":8},"Klema Marcel KONE",{"name":174,"orcid":8},"Fousseni Diallo",{"tldr":176,"method":177,"finding":178,"direction":179,"opportunity":180},"系统综述动物饲料中农药残留对畜禽健康及粪肥还田后作物生产的级联风险。","遵循PRISMA 2020系统检索并综合饲料残留、毒理效应与粪肥环境迁移文献。","残留经饲料-粪肥-土壤循环造成二次污染，致作物药害、发芽率与长势下降。","农业绿色发展与碳","可量化饲料-粪肥-作物残留传递系数，构建One Health风险模型并评估IPM干预效果。","2026-09-17T23:30:07.540144Z",{"id":183,"title":184,"url":185,"summary":186,"summary_zh":8,"content":8,"source_name":187,"source_url":8,"published_at":8,"category":47,"cover_url":8,"hotness":13,"is_selected":14,"score":188,"score_detail":189,"sources":193,"tags":195,"search_phrases":198,"slug":201,"view_count":20,"doi":8,"paper":202,"created_at":211},2733,"Non-Destructive Sensing and Modeling for Biomass Estimation and Yield Prediction of Protected Vegetables——综述","https:\u002F\u002Fwww.mdpi.com\u002F2077-0472\u002F16\u002F18\u002F1980","江苏大学Xiaodong Zhang等综述了设施蔬菜生物量与产量无损感知与建模研究进展,聚焦叶菜与果菜类设施栽培,总结了生物量与产量指标及地面真实测量方法,比较了RGB成像、三维视觉、光谱感知和环境数据的特点,综述了叶菜生物量估算、连续生长监测、收获预测以及果菜花果感知、果品计数、单果质量估算、分阶段收获产量预测等进展。","Agriculture (MDPI) 2026年第16卷18期",68,{"impact":50,"substance":190,"depth":148,"authority":53,"freshness":191,"relevant":20,"comment":192},20,2,"系统梳理设施蔬菜生物量与产量无损感知建模进展，方法覆盖RGB、三维视觉与光谱，专业参考价值较高，但属综述且时效性弱，适合主题聚合而非每日精选。",[194],{"name":187,"url":185},[59,60,196,25,197],"产量预测","无损感知",[199,200],"农业人工智能 产量预测 无损感知 智慧农业","农业人工智能 产量预测","农业人工智能产量预测无损感知智慧农业-2733",{"doi":8,"openalex_id":8,"authors":203,"venue":8,"cited_by_count":34,"oa_url":8,"card":204,"direction":208,"ingested_from":210},[],{"tldr":205,"method":206,"finding":207,"direction":208,"opportunity":209},"综述设施蔬菜生物量与产量无损感知与建模研究进展。","综述RGB成像、三维视觉、光谱感知及环境数据等方法。","总结了叶菜与果菜生物量估算、生长监测和产量预测的技术进展。","智慧农业 \u002F 农业物联网","多模态感知融合与跨品种泛化模型是设施蔬菜无损估产的研究空白。","agent","2026-09-17T00:04:40.596719Z",{"id":213,"title":214,"url":215,"summary":216,"summary_zh":8,"content":217,"source_name":218,"source_url":8,"published_at":219,"category":12,"cover_url":8,"hotness":13,"is_selected":14,"score":220,"score_detail":221,"sources":223,"tags":225,"search_phrases":230,"slug":233,"view_count":20,"doi":8,"paper":8,"created_at":234},2588,"河南省农科院观摩测产促提升 辣椒高效栽培技术 太康","https:\u002F\u002Fwww.hnjjbs.com\u002Farticle\u002F2026-09\u002F178935607370269.html","9月9日—10日河南省农业科学院现代农业科技综合共建县(太康)辣椒高效栽培技术现场测产观摩与培训会成功举办。实测结果显示采用标准化科学管理的示范田较对照区增产27.4%。","观摩测产促提升 技术赋能辣椒产业发展\n\n时间:2026-09-14 11:20:14 来源:\n\n**河南经济报记者 郭俊娟 通讯员 董晓宇**\n\n为推广辣椒高效栽培技术，提升本地辣椒标准化种植水平与产业效益，助力农户稳产增收、特色农业提质发展，9月9日-10日，河南省农业科学院现代农业科技综合共建县(太康)”辣椒高效栽培技术现场测产观摩与培训会在太康县成功举办。本次活动由河南省农科院植保所、蔬菜所主办，太康县农业农村局承办，采取“田间观摩测产+室内技术培训”相结合的方式开展。河南省农科院植保所、蔬菜所、资环所项目团队，太康县农业农村局相关领导及工作人员，各乡镇辣椒种植户、种植合作社、加工企业技术人员等多方代表参会，搭建起精准务实、高效顺畅的辣椒产业技术交流对接平台。\n\n![Image 1](https:\u002F\u002Fmedia.zyjjw.cn\u002Fzycf\u002Fdata\u002Fattachment\u002Fforum\u002F202609\u002F14\u002F101408wqezgutdo4zoo1fd.png)\n\n田间观摩测产现场，参会人员深入辣椒示范田查看长势。示范田辣椒长势良好，病虫害防控效果突出，体现了各项种植技术落地的扎实成效。专家组严格依照农作物测产标准流程，规范完成田间取样、实地测产、数据核算等工作。实测结果显示，采用标准化科学管理的示范田，较对照区增产27.4%，充分体现了先进栽培技术在增产提质、绿色控害方面的显著优势，为当地辣椒标准化、绿色化规模化种植推广提供了有力的数据支撑。\n\n![Image 2](https:\u002F\u002Fmedia.zyjjw.cn\u002Fzycf\u002Fdata\u002Fattachment\u002Fforum\u002F202609\u002F14\u002F101425pzmitk5h0ovz9qlp.png)\n\n在室内专题技术培训环节，课程紧密贴合太康县辣椒种植生产实际。首先由孙化田研究员重点围绕《农药管理条例》及相关法律法规、农产品质量安全规定开展系统解读，清晰阐明农药使用、监管等各环节规范要求，明确种植生产合规标准与质量安全底线，依法依规开展标准化种植生产。\n\n![Image 3](https:\u002F\u002Fmedia.zyjjw.cn\u002Fzycf\u002Fdata\u002Fattachment\u002Fforum\u002F202609\u002F14\u002F101439hzx754xx9xujsu9x.png)\n\n然后张慎璞教授对辣椒病虫害综合防控技术进行授课，结合本地田间种植特点，讲解常见病虫害的识别特征、为害症状及发病规律，普及农业措施、物理诱控、生物防治、化学药剂防治相结合的综合防控技术。授课结束后，专家们与种植户现场互动交流、逐一答疑解惑，结合太康县辣椒生产实际，就大家关心的用药规范、病虫害防治等具体问题面对面支招，进一步推动培训结果落地见效。\n\n此次观摩测产培训会，有效推动了技术措施与生产实践深度衔接，进一步普及辣椒绿色高效栽培、病虫害科学防控等实用技术，帮助种植者掌握品种与配套管理技术要点。通过面对面交流答疑，切实化解辣椒种植过程中的技术痛点，提升种植户、合作社及企业的生产实操水平，不断提高辣椒产量和品质，促进辣椒产业提质增效，带动群众稳定增收，为太康辣椒产业持续健康发展提供坚实技术支撑。\n\n编辑：晏语悦","河南经济网 2026-09-14","2026-09-14T03:20:00Z",53,{"impact":18,"substance":17,"depth":13,"authority":54,"freshness":103,"relevant":20,"comment":222},"省级农科院在太康县开展的辣椒高效栽培测产观摩与培训，有27.4%增产实测数据和多机构参与，属细分作物技术推广的务实报道，但影响限于县域、信息增量有限，未达每日精选门槛。",[224],{"name":218,"url":215},[226,227,27,228,229],"辣椒产业","病虫害防控","高效栽培","测产观摩",[231,232],"病虫害防控 农技培训 测产观摩 辣椒产业","病虫害防控 农技培训","病虫害防控农技培训测产观摩辣椒产业-2588","2026-09-16T00:03:48.849170Z"]