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Understanding water and land use within Tana and Athi River Basins in Kenya: opportunities for improvement

机译:了解塔尼亚塔纳和萨尼河流域的水和土地利用:改善机会

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摘要

River basins are the modern-day regions for integrated planning and management of watersheds, groundwater, land use, river regulation, food security and healthcare development in most countries. The Tana and Athi River Basins, being home to over 40% of Kenya's population, major hydroelectric dams and many irrigation schemes, are considered important areas of focus for sustainable agricultural production. However, competing water demands and water scarcity are posing a great challenge for decision-makers as well as farming communities. Despite these challenges, new agricultural and water projects are planned for implementation, raising doubts on the current and future state of the basins' water resources. This investigation highlights the extent to which the ongoing and future agricultural water-related developments are supported by scientific research and helps invigorate and organise critical thinking on potential investments and policies in the basins. An update and information on the understanding of the basins' land and water dynamics are provided. Analysis of the literature reviewed highlighted a limited scientific knowledge base at watershed scale, inadequate data as well as gaps in the available data and the need for application of current state-of-the-art technologies in whole basin water management. Some opportunities for improvement in data management and technology application are also suggested. This information contributes to expanding knowledge base on biophysical areas key to the basins' meeting their integrated water management.
机译:河流河是大多数国家的流域,地下水,土地利用,河流监管,粮食安全和医疗发展的综合规划和管理的现代区域。 Tana和Athi River流域是肯尼亚人口超过40%的家庭,主要的水力电压和许多灌溉计划,被认为是可持续农业生产的重要关注领域。然而,竞争水需求和水资源稀缺对决策者和农业社区产生了巨大挑战。尽管有这些挑战,但计划实施新的农业和水项目,提高了盆地水资源当前和未来状态的疑虑。该调查突出了科学研究支持持续和未来的农业水有关的发展的程度,并有助于振奋,并对盆地潜在的投资和政策进行批判性思考。提供了关于盆地土地和水动力学了解的更新和信息。文献分析综述突出显示了流域规模的有限科学知识库,数据不足以及可用数据中的差距以及在整个盆地水管理中应用当前最先进的技术。还提出了一些改进数据管理和技术应用的机会。这些信息有助于将生物物理领域的知识库扩大到符合其综合水管理的盆地的关键。

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