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Coupling Aquaculture—Crop Productions and Using of Water Drained from Ponds Rearing Clarias gariepinus as Fertilizer for Okra Production (Abelmoschus esculentus var. Clemson spineless, L. Moench)
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作者 Louis Dossou Magblénou Justin Kantoussan +2 位作者 César Bassène Dieynaba Yacine Mar Gueye Hamath Sy 《Open Journal of Applied Sciences》 2024年第9期2628-2647,共20页
The present study concerns the revalorization of drained water from aquaculture ponds rearing Clarias gariepinus on okra crops. The rearing was carried out at the farm of Gaston Berger University in 100 m2 ponds. In e... The present study concerns the revalorization of drained water from aquaculture ponds rearing Clarias gariepinus on okra crops. The rearing was carried out at the farm of Gaston Berger University in 100 m2 ponds. In each pond, the individuals of C. garipinus with an average weight of 6 ± 0.3 g were stocked at a density of 11 per m2. The water temperature and pH were measured during the experiment. The control fishing is carried out every month to monitor variations in the weight and size of reared individuals. The plant production is carried out in elementary plots measuring 3 m × 1.5 m. Each plot was fertilized with either: drained water from C. gariepinus rearing (DWC), poultry droppings (PD), cow dung (CD) and mineral fertilizer (NPK). Treatments are carried out in tripliqua with either river water (RW), RW + the recommended dose of NPK (RD-NPK), RW + RD-PD, RW + RD-CD, DWC, DWC + 25% RD-NPK, DWC + 50% RD-NPK, DWC + 75% RD-NPK, DWC + 25% RD-PD, DWC + 50% RD-PD, DWC + 75% RD-PD, DWC + 25% RD-CD, DWC + 50% RD-CD, DWC + 75% RD-CD. Growth parameters and yield of okra were determined. The average temperature in the rearing environment was 27.6 ± 1.5˚C and pH 7.9 ± 1.1. After six (06) months of rearing, C. gariepinus individuals reached an average weight of 850.12 ± 1.3 g and an average height of 52.44 ± 1.1 cm. The daily weight gain and specific growth rates over this period were 3.9 g per day and 2.8% per day, respectively. The treatment T1 (RW + DR-NPK) gave the highest mean collar diameter and mean plant height with 2.3 ± 0.9 cm and 61.6 ± 32 cm, respectively. In T4 (DWC), the mean height of plants was 38.8 ± 23.5 cm and mean collar diameter 1.4 ± 0.8 cm. The growth performance in T4 was comparable to that of RD-CD (T3), but different from RD-NPK (T1) and RD-PD (T2). The highest average number, average weight, average length and average diameter of fruits were noted in treatments T13 (RW + RD-75%CD) and T7 (DWC + 75% RD-NPK). The best yields were noted in T1 (RW + RD-NPK) = 10.8 ± 5.4 t·ha−1, T5 (DWC + 25% RD-NPK) = 9.2 ± 4.6 t·ha−1 and T4 (DWC) = 8.6 ± 4.3 t·ha−1 which are comparable and higher than those obtained in T2 = 5.7 ± 2.8 t·ha−1 and T3 = 7.5 ± 3.8 t·ha−1. 展开更多
关键词 Integrated Aquaculture Drained water FERTILIZATION C. gariepinus OKRA
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Application Effect of Integrated Water and Fertilizer Technology for Tomato 被引量:1
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作者 Haimin KONG Ruohui LU 《Asian Agricultural Research》 2017年第11期62-65,共4页
Integrated water and fertilizer technology has the advantages of saving water,fertilizer and labour,which is widely applied in tomato plantation. Integrated water and fertilizer technology in topdressing and whole pro... Integrated water and fertilizer technology has the advantages of saving water,fertilizer and labour,which is widely applied in tomato plantation. Integrated water and fertilizer technology in topdressing and whole process of big and small tomatoes were studied,and their application effects were contrasted and analyzed,and application advantages and scopes of the two models were concluded. 展开更多
关键词 TOMATO Integrated water and fertilizer technology in whole process Integrated water and fertilizer technology in topdressing
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Integrated Monitor System of Water and Fertilizer of Greenhouse Intelligent Irrigatio 被引量:2
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作者 蔡长青 郑萍 张继成 《Agricultural Science & Technology》 CAS 2017年第8期1465-1469,1523,共6页
The integration of water and fertilizer is a comprehensive technology combined irrigation and fertilizer, which has outstanding advantages of saving fertilizer, saving water, saving labor, protecting environment, high... The integration of water and fertilizer is a comprehensive technology combined irrigation and fertilizer, which has outstanding advantages of saving fertilizer, saving water, saving labor, protecting environment, high yield and high efficiency. Currently, most of the water and fertilizer integrated irrigation and fertilization and irrigation operation in the production-based greenhouse is achieved relying on artificial experience, which is hard to achieve timely, scientific and intelligent irrigation. In this study, the application of STM32 embedded system realized the real-time collection of the data from the humidity sensors buried in top, middle and low depth of soil, and water and fertilizer integrated irrigation work was completed in the greenhouse through automatic control according to the predetermined fertilization and irrigation strategies for different crops. Moreover, the system had remote monitoring function, which used the global system for mobile (GSM) module to provide users with remote short message services, and therefore, the users could not only achieve the remote intelligent monitoring on the irrigation, light, ventilation of the greenhouse through short messages, but also could start and stop the remote control system operation, so as to realize the automatic management of the greenhouse environment, achieving the purpose of remote fertilization and water-saving irrigation. 展开更多
关键词 Intelligent greenhouse integration of water and fertilizer SIM32 He-mote monitoring GSM
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Design and Application of Water, Fertilizer and Pesticide Integrated Automatic Control Device 被引量:4
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作者 Huang Wei Lu Meiling +2 位作者 Liang Xin Zhu Yulin Wang Daobo 《Plant Diseases and Pests》 CAS 2020年第1期30-32,共3页
Integration of water, fertilizer and pesticide is the final stage of agricultural development, which improves the utilization efficiency of water, fertilizer and pesticide. Starting from the design and realization of ... Integration of water, fertilizer and pesticide is the final stage of agricultural development, which improves the utilization efficiency of water, fertilizer and pesticide. Starting from the design and realization of water, fertilizer and pesticide integrated automatic control device, the paper discusses selection and application of fertilizer pesticides, use procedure, water, fertilizer and pesticide saving effect and receptive crowd in the application process of modern planting industry, so as to provide the basis for promotion and popularization of water, fertilizer and pesticide integration. 展开更多
关键词 AUTOMATIC control DEVICE integration water fertilizer PESTICIDE
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Effects of Different Water-soluble Fertilizers on Yield and Quality of Strawberry under Integrated Application of Water and Fertilizer 被引量:1
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作者 Rong KANG Jianbiao NIU +1 位作者 Zhengren CHEN Jizu ZHANG 《Asian Agricultural Research》 2018年第12期59-61,66,共4页
Taking Hongyan strawberry as the material and PE drip irrigation tape and fertilizer applicator as the tool of integrated application of water and fertilizer,this experiment studied the effects of six fertilizers incl... Taking Hongyan strawberry as the material and PE drip irrigation tape and fertilizer applicator as the tool of integrated application of water and fertilizer,this experiment studied the effects of six fertilizers including Batian,Jiashili,Wangdefeng,Stanley,volfertile and calcium protein on yield and quality of strawberry. The experimental results showed that different water-soluble fertilizers had different effects on the main economic traits of strawberry. For the maximum single fruit mass,the highest was volfertile treatment( 28. 72 g),followed by calcium protein treatment,and the lowest was Stanley treatment( 23. 89 g). The fruit treated with Batian,volfertile and calcium protein was hard in the texture,the fruit treated with Wangdefeng was harder,that of Stanley was softer,and that of Jiashili was soft. The strawberry fruit treated with Wangdefeng and calcium protein was sweet,the fruit treated with volfertile and Batian was sweet,that treated with Jiashili was sour and sweet,and that treated with Stanley was slightly sour. The fruit treated with calcium protein,volfertile and Batian showed strong storage resistance.Strawberry plants treated with Batian,Wangdefeng,Stanley,and calcium protein showed stronger growth,and strawberry plants showed a semi-opening pattern. The yield of strawberry treated with volfertile was highest( 17 400 kg/ha),which was significantly increased compared with other treatments,followed by that treated by Stanley( 13 140 kg/ha). 展开更多
关键词 water soluble fertilizer INTEGRATED APPLICATION of water and fertilizer Strawberry Yield Economic traits
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Effects of Integrated Technology of Medicine and Fertilizer on Bacterial Wilt of Tobacco
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作者 ZHOU Lian-chuan HE Wen-wei +5 位作者 QIN Xi-yun XU Tian-yang ZHANG Chuan-shu WANG Jing LU Fu-zhi ZHANG Li-xia 《Agricultural Science & Technology》 CAS 2019年第3期47-50,共4页
In order to validate the control effects of integrated technology of medicine and fertilizer on tobacco bacterial wilt,field experiments were conducted by using youmeili and tetracycline as the test agents.The results... In order to validate the control effects of integrated technology of medicine and fertilizer on tobacco bacterial wilt,field experiments were conducted by using youmeili and tetracycline as the test agents.The results obtained were listed as follows:(1)The incidence rate of bacterial wilt ascended more quickly after July 10 th,the incidence of CK reached 78.30%on July 25 th.(2)The control effect of“youmeili 3 g+tetramycin 200 times liquid”reached 69.47%,significantly higher than other treatments.(3)The output value of“Youmeil 3 g+tetramycin 200 times liquid”served as 1635.66 yuan/667m^2,with the highest economic character in all treatments.In a word,integrated technology of medicine and fertilizer was a feasible approach to control tobacco bacterial wilt. 展开更多
关键词 Bacterial wilt Control effect Youmeil+tetramycin Integrated technology of medicine and fertilizer
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Green High-yield and High-efficiency Cultivation Techniques of Integrated Management of Water and Fertilizer for Maize under Mulch Drip Irrigation
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作者 Guangbin YANG 《Plant Diseases and Pests》 CAS 2023年第3期22-26,共5页
The green high-yield and high-efficiency cultivation techniques of integrated management of water and fertilizer for maize under mulch drip irrigation are described from the aspects of high yield target of maize and i... The green high-yield and high-efficiency cultivation techniques of integrated management of water and fertilizer for maize under mulch drip irrigation are described from the aspects of high yield target of maize and its component factor indexes,pre-sowing preparation,sowing,post-sowing management,field management at the seedling stage,integrated management of water and fertilizer for target yield of maize,rational application of micro-fertilizer,comprehensive prevention and control of diseases and pests,timely harvest,etc.,in order to provide a reference for agricultural technicians,maize farmers and maize industry development in northern Xinjiang. 展开更多
关键词 Mulch drip irrigation MAIZE Integrated management of water and fertilizer Cultivation techniques
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Nitrogen and Phosphorus Loss Law and Emission Reduction Effects Under Water and Fertilizer Management Integrated Mode in Dike Paddy Field 被引量:2
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作者 GUO Longsheng ZHOU Guangtao GUO Zhongyuan 《Journal of Northeast Agricultural University(English Edition)》 CAS 2009年第4期31-37,共7页
To achieve the purpose of reducing farm non-point source pollution, we integrated site specific nitrogen management precise irrigation, controlled drainage, and wetland eco-repair system in dike area of Taihu basin. D... To achieve the purpose of reducing farm non-point source pollution, we integrated site specific nitrogen management precise irrigation, controlled drainage, and wetland eco-repair system in dike area of Taihu basin. During investigation, it had given prominence for the water and fertilizer coupling effects of precise irrigation and site specific nutrient management, the characteristics of integration on controlled irrigation, controlled drainage and wetland ecosystem non-point source pollution control. Then the water and fertilizer integrated management mode of paddy field was put forward in Taihu basin where the water production efficiency increased to 1.64 kg. m-3, water saved 37.8%, fertilizer use efficiency raised 15,4%, yield raised 10%, and N, P load decreased 26%-72%. The modern agricultural and farmland ecosystems that control and cut down the farm non-point source pollution came into being, which can be a reference by Taihu basin to control its agricultural non-point source pollution and eutrophicated water body. 展开更多
关键词 paddy field the integrated mode of water and fertilizer management non-point source pollution nitrogen and phosphorus loss
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Effect of Irrigation and Fertilization on Population Structure and Yield of Wheat
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作者 Minmin SHAO Leiming SUN +6 位作者 Xingke XU Kai ZHAO Ling HUANG Weiying FENG Jifeng WANG Lu YAN Lin WANG 《Agricultural Biotechnology》 CAS 2020年第2期21-24,共4页
[Objectives] This study was conducted to investigate the effects of irrigation and fertilization on population structure and yield of wheat.[Methods]With Shannong 29 as an experimental material,the effects of irrigati... [Objectives] This study was conducted to investigate the effects of irrigation and fertilization on population structure and yield of wheat.[Methods]With Shannong 29 as an experimental material,the effects of irrigation and fertilization on population,dry matter accumulation and yield of wheat were studied.[Results]Integrated water-saving irrigation and fertilization of ridged field was the best with the highest population,dry matter accumulation and yield of wheat.[Conclusions]This study provides a theoretical basis for high-yield and high-efficiency wheat production with saved water and fertilizers. 展开更多
关键词 IRRIGATION FERTILIZATION WHEAT integration of water and fertilizer YIELD
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Profitability and Farmer Acceptability of Selected Climate Smart Technologies and Practices for Maize-Beans Production in Drought-Prone Areas, Uganda
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作者 Onesimus Semalulu Patrick Kibaya +3 位作者 Stewart Kyebogola Edson Mworozi Nelson Sewankambo Berhane Gebru 《Agricultural Sciences》 CAS 2022年第11期1259-1284,共26页
Climate change is increasingly affecting farm-level decisions on when to plant and which climate smart agriculture (CSA) options to use. This study was conducted to determine the profitability and farmer acceptability... Climate change is increasingly affecting farm-level decisions on when to plant and which climate smart agriculture (CSA) options to use. This study was conducted to determine the profitability and farmer acceptability of different CSA options for maize-bean production in drought-prone areas of Uganda. It was conducted on-farm in Rakai and Nakasongola districts during 2020 and 2021. Variables included: planting date (early vs late);varieties (common beans: NABE 4 and NAROBEAN 2, and maize: Longe 5 and Bazooka);intercropping versus pure stand;and fertiliser use (manure, Diammonium phosphate (DAP) or combination). The experimental design was split-split plot, replicated six times. Over two years, early planting caused 16% and up to 46% higher yields of maize and beans, respectively, than late planting, resulting in 14% - 28% and 18% - 43% higher Benefit/Cost (B/C) ratio for maize and beans, respectively. Intercropping reduced maize and beans yield by 16% - 25% and 52% - 57%, respectively. The B/C was highest for sole maize;intercropping was more profitable than sole beans. Fertilizer (DAP) was most profitable when Bazooka was early-planted as sole crop followed by intercrop. For late planted-crop, manure was better. These practices were more beneficial when applied simultaneously for both crops excluding bean variety. Farmers’ lessons stressed the importance of early planting and fertilizer use;however, majority indicated they were to adopt more than two of the practices tested. 展开更多
关键词 Climate Change Adaptation COST-EFFECTIVENESS Decision Making Integrated Soil Fertility Management technology Adoption
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智能传感技术在水肥一体系统中的应用研究
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作者 祝鹏 郭艳光 《农机化研究》 北大核心 2025年第2期176-180,共5页
以进一步提升水肥一体机系统的作业效率为目标,选取智能传感的监测技术,针对整机的监测控制与信号处理展开应用设计研究。考虑水肥一体机过程作业肥液融合的均匀性及系统各模块之间的协同性功能实现,结合微分补偿的传感数据算法处理方法... 以进一步提升水肥一体机系统的作业效率为目标,选取智能传感的监测技术,针对整机的监测控制与信号处理展开应用设计研究。考虑水肥一体机过程作业肥液融合的均匀性及系统各模块之间的协同性功能实现,结合微分补偿的传感数据算法处理方法,进行智能传感的水肥一体机架构布局,并匹配可执行的软件控制程序及硬件实施结构,进行实地传感应用监测与灌施控制作业试验。结果表明:水肥一体机系统的数据监测准确率可达95.25%,系统故障率相对降低3.79%,监测数据准确及时,能够确保系统各环节指令得到有效的调整与反馈,进而保证灌施土壤的含水稳定率相对提升7.87%,对于作物的稳定生长与产量提升有重要的参考价值。 展开更多
关键词 水肥一体机 智能传感 信号处理 微分补偿 数据监测准确率
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主路式水肥一体机施肥系统的设计与试验
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作者 李擎 李家春 +1 位作者 熊贤沙 蔡家斌 《农机化研究》 北大核心 2025年第2期68-74,共7页
针对现阶段水肥一体化设备存在施肥不均、自动化程度不高及滞后性严重的问题,根据现代化农业节水省肥和减少环境污染的灌溉要求,设计了一款可实现自动混肥、施肥、节水灌溉的主路式水肥一体化施肥机。根据液肥的EC和pH值调节过程的特点... 针对现阶段水肥一体化设备存在施肥不均、自动化程度不高及滞后性严重的问题,根据现代化农业节水省肥和减少环境污染的灌溉要求,设计了一款可实现自动混肥、施肥、节水灌溉的主路式水肥一体化施肥机。根据液肥的EC和pH值调节过程的特点,开发了以SIEMENS S7-1200为核心的液肥控制系统硬件,并结合MatLab设计了以模糊PID为控制器的液肥EC和pH值控制系统。为验证施肥机在实际应用中的精确性和鲁棒性,设计了施肥系统动态调节性能试验,结果表明:在施肥阶段,模糊PID控制系统具有较短的稳态时间和较小的超调量,相比于PID控制系统,对EC和pH值进行调节的稳态时间分别减少了37.7%和52.1%,稳态超调量分别降低了1.2%和2.2%,可实现对混肥溶液进行迅速有效的调节,满足现代农业实际生产需要。 展开更多
关键词 水肥一体化 施肥机 模糊PID 过程控制
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大田水肥一体化混肥器设计与试验研究
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作者 刘文亮 杨然兵 +2 位作者 潘志国 马振家 刘仕泽 《农机化研究》 北大核心 2025年第2期139-145,共7页
由于当前市场上没有既适合大田大面积灌溉、混肥精度又高的水肥一体化系统,故在旁路式结构设计中增加静态混合器替换主管道,以提高混肥均匀性为重点进行研究,对混肥部件进行了优化改进。利用混合器自身结构,在不需要外接能源的条件下,... 由于当前市场上没有既适合大田大面积灌溉、混肥精度又高的水肥一体化系统,故在旁路式结构设计中增加静态混合器替换主管道,以提高混肥均匀性为重点进行研究,对混肥部件进行了优化改进。利用混合器自身结构,在不需要外接能源的条件下,使得水肥充分混合,不仅能够满足大面积灌溉要求,而且可以保证混肥精度。基于流体力学及CFD基本原理,通过Fluent软件分析水肥混合过程中SK型静态混合器混合单元数,以及长径比对水肥混合性能和压降的影响,以此找出混合器的最佳结构参数,并对其结构做了改进,设计出了开沟式静态混合器。 展开更多
关键词 水肥一体化系统 静态混合器 混肥精度 开沟式
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基于数值分析法的水肥一体机设计研究
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作者 底慧萍 李喆时 《农机化研究》 北大核心 2025年第2期186-189,194,共5页
以进一步提升水肥一体机的智能性、数字性作业为目标,针对整机的灌施精准性要求展开设计。充分考虑水肥一体机的运用特点和结构组成,结合水肥的参数融合关系,建立用于水肥一体机准确控制作业的状态方程模型,设计以数值分析处理函数为核... 以进一步提升水肥一体机的智能性、数字性作业为目标,针对整机的灌施精准性要求展开设计。充分考虑水肥一体机的运用特点和结构组成,结合水肥的参数融合关系,建立用于水肥一体机准确控制作业的状态方程模型,设计以数值分析处理函数为核心的软件控制模块,搭建同步动作实施的硬件执行平台。展开多作物的灌施作业试验,结果表明:基于数值分析方法的水肥一体机系统架构设计合理,数值分析算法融入有效,整机试验的数值计算准确率可达98.00%以上;水肥混合均匀有度,整体管路灌施顺畅,灌施指令准确率可达99.00%以上,整机灌施效率较高,充分验证了数值分析方法应用的正确性与优越性,可以促进类似农机装备与高等数学多维度融合。 展开更多
关键词 水肥一体机 数值分析 状态方程 灌施指令准确率 多维度融合
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云控制水肥药械智能监控平台的设计与实现
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作者 林秀君 胡佳宁 +2 位作者 孙涛 张晓乾 任振辉 《农机化研究》 北大核心 2025年第2期75-80,共6页
随着我国农业现代化水平的提高,以水肥药械为核心的现代农业服务体系成为未来行业发展的方向。为此,采用B/S结构模式,使用Django框架,选用MySQL数据库,设计并实现了一种云控制水肥药械智能监控平台。平台拥有完善的机构、数据交互、用... 随着我国农业现代化水平的提高,以水肥药械为核心的现代农业服务体系成为未来行业发展的方向。为此,采用B/S结构模式,使用Django框架,选用MySQL数据库,设计并实现了一种云控制水肥药械智能监控平台。平台拥有完善的机构、数据交互、用户和权限等管理功能,可实现水肥药械的数字化管理;嵌入了基于Bi-LSTM与LightGBM融合的参考作物蒸散量预测方法,可实现对作物灌溉的实时预测;增加了作物施肥计算公式以及施肥用药数据库,可为用户对肥、药的施用提供科学的参考依据。实际运行及性能测试结果表明:平台的架构和模块设计合理,功能较全面和灵活,可有效满足设施园区对于水肥药械的管理需求,推动现代化农业发展。 展开更多
关键词 水肥药械一体化 智能监控平台 云控制 Django框架
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不同浓度Hoagland营养液对‘藤稔’葡萄树体生长和果实品质的影响 被引量:6
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作者 李琴 李慧 +5 位作者 陈秋菊 王磊 马超 许文平 张才喜 王世平 《上海交通大学学报(农业科学版)》 2019年第6期109-115,234,共8页
实验以8年生‘藤稔’葡萄为实验材料,研究了用5组含氮量分别为240-80-240、180-60-180、120-40-120、60-30-60和30-10-30 mg/L的霍格兰氏(Hoagland’s)营养液供给肥水对不同生育期(萌芽期-转色期、转色期-成熟期、成熟期-萌芽期)‘藤稔... 实验以8年生‘藤稔’葡萄为实验材料,研究了用5组含氮量分别为240-80-240、180-60-180、120-40-120、60-30-60和30-10-30 mg/L的霍格兰氏(Hoagland’s)营养液供给肥水对不同生育期(萌芽期-转色期、转色期-成熟期、成熟期-萌芽期)‘藤稔’葡萄树体生长和果实品质的影响。结果表明,处理1(N:240-80-240 mg/L)的叶绿素含量最高,新梢长度最长,但果实品质较差;处理3(N:120-40-120 mg/L)的可溶性固形物含量最高(18.17%),果皮花色苷含量积累较多,果实糖酸比最高,果实品质最优。上述结果为‘藤稔’葡萄的设施栽培水肥一体化管理提供了实验依据。 展开更多
关键词 藤稔 水肥一体化 果实品质 生长发育
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Different Fertilization Modes of Sugarcane in Latosolic Red Soil of Guangxi 被引量:1
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作者 Shixie MENG Xiaomin WANG +3 位作者 Guosheng HUANG Yanfei LU Pingxi HUANG Guoying LU 《Asian Agricultural Research》 2019年第4期77-79,83,共4页
[Objectives] This study aimed to compare the effects of water-fertilizer integrated drip irrigation modes and traditional fertilization mode on growth,yield,production costs and economic benefit of sugarcane in latoso... [Objectives] This study aimed to compare the effects of water-fertilizer integrated drip irrigation modes and traditional fertilization mode on growth,yield,production costs and economic benefit of sugarcane in latosolic red soil of Guangxi. [Methods]A field test was conducted. [Results] The agronomic traits and comprehensive economic benefit of sugarcane under the water-fertilizer integrated drip irrigation modes were superior to those under the traditional fertilization mode. Among them,the comprehensive economic benefit of sugarcane with special granular fertilizer as the base fertilizer and water-fertilizer integrated drip irrigation as topdressing were the highest,increased by 15 813 kg/ha,an increase of 15. 8%. Considering the cost input,the comprehensive economic benefit increased by 5 676 yuan/ha. [Conclusions]Taking the production cost,economic benefit and input-output ratio into account,it is recommended to promote the application of water-fertilizer integrated drip irrigation mode in bases with water and fertilizer equipment conditions. 展开更多
关键词 Latosolic red soil FERTILIZATION mode water-fertilizer integration DRIP irrigation
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智慧农业下的水肥一体机精准化作业研究 被引量:2
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作者 徐尤华 熊传玉 《农机化研究》 北大核心 2024年第8期231-234,239,共5页
针对我国农业水资源和化肥资源的利用率较低的问题,在智慧农业下对水肥一体机的精准化作业进行了研究。水肥一体机的主要组成包括控制系统、监测系统、灌溉施肥系统、网络传输系统和数据中心。将粒子群算法与PID控制算法结合,对粒子群-... 针对我国农业水资源和化肥资源的利用率较低的问题,在智慧农业下对水肥一体机的精准化作业进行了研究。水肥一体机的主要组成包括控制系统、监测系统、灌溉施肥系统、网络传输系统和数据中心。将粒子群算法与PID控制算法结合,对粒子群-模糊PID控制器进行设计,并对水肥溶液的EC值和pH值进行控制,提高了水肥一体机的控制精度,减少了控制时间。为了验证水肥一体机的性能,进行了数据采集准确性分析试验和精准化作业控制试验,结果表明:数据采集较为准确,且可以精准地配比水肥溶液,满足作物的灌溉要求。 展开更多
关键词 水肥一体机 精准化作业 粒子群-模糊PID控制算法 智慧农业
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基于模糊策略的水肥一体机控制可行性分析 被引量:2
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作者 胡伟强 《农机化研究》 北大核心 2024年第8期226-230,共5页
为进一步提高我国农业水肥一体机的综合作业效率,实现用水量与施肥量的混合浓度最优配置,以模糊策略为设计基点,针对整机控制展开可行性分析研究。以整机作业架构组成为基础,考虑灌溉施肥同步过程的水肥动态平衡,搭建正确的模糊策略模型... 为进一步提高我国农业水肥一体机的综合作业效率,实现用水量与施肥量的混合浓度最优配置,以模糊策略为设计基点,针对整机控制展开可行性分析研究。以整机作业架构组成为基础,考虑灌溉施肥同步过程的水肥动态平衡,搭建正确的模糊策略模型,进行系统的软件设计与硬件匹配。通过升级型水肥一体机实施灌施作业的效果验证,结果表明:基于模糊策略的水肥一体机控制系统整体试验过程顺畅,灌施的肥液均匀度可相对提升8.77%,系统对于各监测参数的响应度与稳定性均保持在90%以上,验证了设计的可行性;试验中节水率和肥料利用率分别较模糊策略应用前提升至91.70%和93.15%,整体灌施效率良好,说明了此模糊策略应用设计的优越性。研究结果对于实现水肥一体装备的智能控制水平向纵深提升具有很好的参考价值。 展开更多
关键词 水肥一体机 模糊策略 动态平衡 肥料利用率 纵深提升
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基于PLC控制下水肥一体化智能监控系统设计 被引量:1
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作者 史洁 《农机使用与维修》 2024年第5期32-35,共4页
水肥一体化系统通过实时监测土壤湿度、植物生长状态等参数,精确控制水肥供给,避免过量使用水和肥料,这对于解决水资源短缺和减少农业生产对肥料的依赖具有重要意义。通过深入分析PLC技术,基于西门子S7-1200作为控制核心,采用先进的传... 水肥一体化系统通过实时监测土壤湿度、植物生长状态等参数,精确控制水肥供给,避免过量使用水和肥料,这对于解决水资源短缺和减少农业生产对肥料的依赖具有重要意义。通过深入分析PLC技术,基于西门子S7-1200作为控制核心,采用先进的传感器技术,实现了对土壤湿度、植物生长状态等关键参数的实时监测,通过智能设备,实时监测农田状态,并远程调整水肥系统的运行参数。试验结果表明,基于PLC控制的水肥一体化智能监控系统能够显著提高水肥利用率,减少资源浪费,降低生产成本,可以为农业生产提供一种先进、高效的管理方案,不仅有助于解决当前农业面临的水资源和肥料管理难题,也为实现可持续农业发展贡献重要的技术手段。 展开更多
关键词 水肥一体化 智能监控系统 PLC 传感器技术 可持续农业发展
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