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Construction of Meteorological Monitoring and Early Warning System for Alfalfa Diseases and Pests
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作者 Wei DUAN Yan LIANG yangyang shang 《Agricultural Biotechnology》 2025年第4期7-13,19,共8页
Leveraging the achievements of the smart meteorological system nationwide,a meteorological monitoring and early warning system for alfalfa pests and diseases can be formed through the establishment of four systems,nam... Leveraging the achievements of the smart meteorological system nationwide,a meteorological monitoring and early warning system for alfalfa pests and diseases can be formed through the establishment of four systems,namely,"real-time monitoring system,forecasting and prediction system,monitoring and early warning system,and smart service system".It will enable intelligent,dynamic meteorological monitoring,early warning,and forecasting services for the occurrence and development of alfalfa pests and diseases,providing technical support for scientifically controlling their harm and improving yield and quality. 展开更多
关键词 Alfalfa Pest DISEASE Monitoring and early warning
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Simple self-assembly of 3D laminated CuO/SnO2 hybrid for the detection of triethylamine 被引量:1
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作者 yangyang shang Wenqiong Shi +3 位作者 Ruihua Zhao Md.Maruf Ahmed Jinping Li Jianping Du 《Chinese Chemical Letters》 SCIE CAS CSCD 2020年第8期2055-2058,共4页
Tin dioxide is important gas sensor material and has wide applications in the detection of toxic gases and volatile organic compounds.Here,we synthesized a 3D laminated structural CuO/SnO2 material possessing p-n hete... Tin dioxide is important gas sensor material and has wide applications in the detection of toxic gases and volatile organic compounds.Here,we synthesized a 3D laminated structural CuO/SnO2 material possessing p-n heterostructures.The morphology and structure were characterized by XRD,SEM,TEM and XPS techniques and the sensing properties were investigated for the detection of triethylamine(TEA).The results indicate that 3D laminated CuO/SnO2 material,assembled by lamellae consisting of ordered nanoparticles,exhibit an enhanced sensing performance compared with SnO2,and notably,CuO/SnO2 with size less than 1μm has obvious high selectivity in the detection of 100 ppm TEA.Particularly,it has a high response and stability to 1 and 5 ppm TEA(S is 8 and 33),and that is higher than SnO2 material,suggesting 3D laminated CuO/SnO2 is an effective ca ndidate material served as sensor platform to detect low-concentration amines. 展开更多
关键词 Tin oxide CuO dopant p-n heterostructure TRIETHYLAMINE Gas sensing
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Morphology evolution of ZnO by controlling solvent and electrochemical sensing of hexagonal nanotablets toward amines
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作者 Md.Maruf Ahmed Ruihua Zhao +3 位作者 Bayram Hayytov yangyang shang Jinping Li Jianping Du 《Chinese Chemical Letters》 SCIE CAS CSCD 2020年第8期2091-2094,共4页
Organic amines are important solvent and raw material in laboratory and industry,as well as releasing from cigarette smoke.It is significant to detect low-concentration amines for environment and public health.Here we... Organic amines are important solvent and raw material in laboratory and industry,as well as releasing from cigarette smoke.It is significant to detect low-concentration amines for environment and public health.Here we reported that as-synthesized zinc oxide is an effective electrode material of electrochemical sensor for the detection of amines.The characterization results reveal that the ZnO morphologies experienced a change from hexagonal bowl-like microparticles,cones,prisms to nanoparticles by adjusting the reaction time,temperature,solvents and additives.Interestingly,ZnO material possessing hexagonal shapes and different sizes exhibits distinct electrochemical response in various amines solution,suggesting that there is a better dependent relationship between different morphological ZnO and amines detection.Particularly,regular hexagonal ZnO nanotablets exhibit a detectable electrochemical response and selectivity to ammonia,implying it can be serve as electrode material for highly effective detection of organic amines. 展开更多
关键词 ZNO Morphology control Hexagonal nanotablet Electrochemical sensor Organoamines
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