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Process oriented thinking as a key for integration of ecohydrology, biotechnology and engineering for sustainable water resources management and ecosystems

机译:以可持续水资源管理和生态系统融合生态水解,生物技术和工程融合的过程为导向思维

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The recent high rate of environmental degradation due to unsustainable use of water and other natural resources and mismanagement, is, in many cases, the result of a dominant sectoral approach, limited communication between different users and agencies, and lack of knowledge transfer between different disciplines, and especially lack of dialogue between environmental scientists and engineers. There is no doubt that the genuine improvement of human well-being has to be based on understanding the complexity of interactions between abiotic, biotic and socio-economic systems. The major drivers of biogeosphere evolution and function have been the cycles of water and nutrients in a complex array of differing climates and catchment geomorphologies. In the face of global climate change and unequally distributed human populations, the recent sectoral mechanistic approach in natural resources management has to be replaced by an evolutionary systems approach based on well-integrated problem-solving and policy-oriented environmental science. Thus the principles of ecohydrology should be the basis for further integration of ecology, hydrology, engineering, biotechnology and other environmental sciences. Examples from UNESCO IHP Ⅶ show how the integration of these will not only increase the efficiency of measures to harmonize ecosystem potentials with societal needs, but also significantly reduce the costs of sustainable environmental management.
机译:近期由于不可持续使用水和其他自然资源和管理不可操作系统的高度环境退化率,是在许多情况下,主要的部门方法,不同用户和机构之间的沟通有限,不同学科之间的知识转移缺乏知识转移,特别是环境科学家和工程师之间缺乏对话。毫无疑问,人类福祉的真正改善必须基于了解非生物,生物和社会经济系统之间的相互作用的复杂性。生物盖圈演化和功能的主要驱动因素是一种不同气候和集水区的复杂阵列中的水和营养素的循环。面对全球气候变化和不平等的人口人口,最近的自然资源管理机制方法必须由基于综合解决问题和政策导向的环境科学的进化系统方法所取代。因此,生态学的原则应该是进一步整合生态,水文,工程,生物技术和其他环境科学的基础。来自联合国教科文组织IHP的例子展示了这些的整合性如何增加衡量措施的效率,以协调与社会需求的生态系统潜力,也大大降低了可持续环境管理的成本。

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