The Indian Institute of Soil and Water Conservation(IISWC)and its Research Centres have developed many successful model watershed projects in India in the past and implemented many Soil and Water Conservation(SWC)tech...The Indian Institute of Soil and Water Conservation(IISWC)and its Research Centres have developed many successful model watershed projects in India in the past and implemented many Soil and Water Conservation(SWC)technologies for sustainable watershed management.While many evaluation studies were conducted on these projects in the past,there has been no assessment of the post-adoption status of the SWC technologies over a longer period.It was imperative to appraise the behaviour of the farmers with regard to the continuance or discontinuance of the technologies adopted,diffusion or infusion that took place and technological gaps that occurred in due course of time in the post watershed programme.Therefore,it was realized that the postadoption behaviour of beneficiary farmers who have adopted different soil and water conservation technologies for watershed management projects should be studied in detail.The research study was initiated in 2012 as a core project at Vasad as the lead Centre along with IISWC headquarter Dehradun,and Centres Agra,Bellary,Chandigarh,Datia,Kota&Ooty,with the specific objectives of the study to measure the extent of post-adoption behaviour(continued-adoption,discontinuance,technological gap,diffusion and infusion)of farmers towards the adopted SWC technologies of watershed management.In the present study various indices regarding continued adoption,dis-adoption(discontinuance),technological gap,diffusion,infusion regarding soil and water conservation technologies for watershed management were developed for measurement of post-adoption behaviour of farmers.It was revealed that a little less than three-fourth(73%)of SWC technologies continued to be adopted and more than onefourth(27%)were discontinued by farmers.Out of the total continue adopted SWC technologies by farmers,a little less than onefifth(19%)of technologies continued to be adopted with a technological gap.More than one-fourth(28%)of SWC technologies were also diffused to other farmers’fields in nearby villages and on an average 1.2 technologies were also infused into the farmers'fields from outside by their own efforts in the watersheds developed by the IISWC and its Centres.展开更多
Rain-fed(dryland)farming is an ancient agricultural production system in China.It occurs widely across almost the whole country,especially in the Northwest and North China.The semi-arid Loess Plateau is the most impor...Rain-fed(dryland)farming is an ancient agricultural production system in China.It occurs widely across almost the whole country,especially in the Northwest and North China.The semi-arid Loess Plateau is the most important region of rain-fed farming in China,but unfortunately,soil erosion on the Loess Plateau area is the highest in China,and indeed amongst the highest in the world.This highlights the necessity for developing practices that can reduce soil and water erosion,improve soil water use efficiency,improve crop productivity,and reduce rural poverty in the region.Many techniques of soil and water conservation are being used in rain-fed areas of China,including such systems as mulch,ridge and furrow systems.The Appendix describes a unique system of soil and water conservation,called Shatian.Modern research on conservation tillage(No Till),although essential for reducing erosion,increasing crop productivity,and ameliorating poverty,is just beginning in China.Modern conservation tillage research started in the1990s’with support from Australia and other countries.The procedures,however,were modified to be in accord with local conditions and prevailing farmer experiences.With 10 years of experimentation,results show that the most successful conservation practice on the Western Loess Plateau is no till with stubble retention.This technique helps to conserve soil water,increases soil organic carbon,improves soil structure and water infiltration,reduces soil and water erosion,and improves crop productivity and sustainability of rain-fed farming systems.However,its adoption rate remains low due to barriers such as traditional attitude,insufficient rural extension,and so forth.展开更多
水土保持是生态环境保护工作的重要内容,为全面提升水利工程中水土保持信息化建设水平,提高水土保持监管的动态化、实时化、智慧化与系统化水平,使之更好地服务于各类大型工程项目,开发一套集数据分析、流程管理、数据可视化为一体的水...水土保持是生态环境保护工作的重要内容,为全面提升水利工程中水土保持信息化建设水平,提高水土保持监管的动态化、实时化、智慧化与系统化水平,使之更好地服务于各类大型工程项目,开发一套集数据分析、流程管理、数据可视化为一体的水土保持智慧管理平台。该管理平台立足于水利生产建设项目,融合了项目管理、业务流程管理、大数据管理和地理信息系统(geographic information system,GIS)可视化等技术,针对水土保持作业特点,实现工程中施工、监理、监督、监测、验收等重要流程的全方位一体化管理模式。该系统易于运行维护和应用拓展,能很好地服务于各类用户,且期望为后续应用程序升级和类似软件开发提供参考。展开更多
文摘The Indian Institute of Soil and Water Conservation(IISWC)and its Research Centres have developed many successful model watershed projects in India in the past and implemented many Soil and Water Conservation(SWC)technologies for sustainable watershed management.While many evaluation studies were conducted on these projects in the past,there has been no assessment of the post-adoption status of the SWC technologies over a longer period.It was imperative to appraise the behaviour of the farmers with regard to the continuance or discontinuance of the technologies adopted,diffusion or infusion that took place and technological gaps that occurred in due course of time in the post watershed programme.Therefore,it was realized that the postadoption behaviour of beneficiary farmers who have adopted different soil and water conservation technologies for watershed management projects should be studied in detail.The research study was initiated in 2012 as a core project at Vasad as the lead Centre along with IISWC headquarter Dehradun,and Centres Agra,Bellary,Chandigarh,Datia,Kota&Ooty,with the specific objectives of the study to measure the extent of post-adoption behaviour(continued-adoption,discontinuance,technological gap,diffusion and infusion)of farmers towards the adopted SWC technologies of watershed management.In the present study various indices regarding continued adoption,dis-adoption(discontinuance),technological gap,diffusion,infusion regarding soil and water conservation technologies for watershed management were developed for measurement of post-adoption behaviour of farmers.It was revealed that a little less than three-fourth(73%)of SWC technologies continued to be adopted and more than onefourth(27%)were discontinued by farmers.Out of the total continue adopted SWC technologies by farmers,a little less than onefifth(19%)of technologies continued to be adopted with a technological gap.More than one-fourth(28%)of SWC technologies were also diffused to other farmers’fields in nearby villages and on an average 1.2 technologies were also infused into the farmers'fields from outside by their own efforts in the watersheds developed by the IISWC and its Centres.
文摘Rain-fed(dryland)farming is an ancient agricultural production system in China.It occurs widely across almost the whole country,especially in the Northwest and North China.The semi-arid Loess Plateau is the most important region of rain-fed farming in China,but unfortunately,soil erosion on the Loess Plateau area is the highest in China,and indeed amongst the highest in the world.This highlights the necessity for developing practices that can reduce soil and water erosion,improve soil water use efficiency,improve crop productivity,and reduce rural poverty in the region.Many techniques of soil and water conservation are being used in rain-fed areas of China,including such systems as mulch,ridge and furrow systems.The Appendix describes a unique system of soil and water conservation,called Shatian.Modern research on conservation tillage(No Till),although essential for reducing erosion,increasing crop productivity,and ameliorating poverty,is just beginning in China.Modern conservation tillage research started in the1990s’with support from Australia and other countries.The procedures,however,were modified to be in accord with local conditions and prevailing farmer experiences.With 10 years of experimentation,results show that the most successful conservation practice on the Western Loess Plateau is no till with stubble retention.This technique helps to conserve soil water,increases soil organic carbon,improves soil structure and water infiltration,reduces soil and water erosion,and improves crop productivity and sustainability of rain-fed farming systems.However,its adoption rate remains low due to barriers such as traditional attitude,insufficient rural extension,and so forth.
文摘水土保持是生态环境保护工作的重要内容,为全面提升水利工程中水土保持信息化建设水平,提高水土保持监管的动态化、实时化、智慧化与系统化水平,使之更好地服务于各类大型工程项目,开发一套集数据分析、流程管理、数据可视化为一体的水土保持智慧管理平台。该管理平台立足于水利生产建设项目,融合了项目管理、业务流程管理、大数据管理和地理信息系统(geographic information system,GIS)可视化等技术,针对水土保持作业特点,实现工程中施工、监理、监督、监测、验收等重要流程的全方位一体化管理模式。该系统易于运行维护和应用拓展,能很好地服务于各类用户,且期望为后续应用程序升级和类似软件开发提供参考。