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Runoff change in the Yellow River Basin of China from 1960 to 2020 and its driving factors
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作者 WANG Baoliang WANG Hongxiang +3 位作者 jiao xuyang HUANG Lintong CHEN Hao GUO Wenxian 《Journal of Arid Land》 SCIE CSCD 2024年第2期168-194,共27页
Analysing runoff changes and how these are affected by climate change and human activities is deemed crucial to elucidate the ecological and hydrological response mechanisms of rivers.The Indicators of Hydrologic Alte... Analysing runoff changes and how these are affected by climate change and human activities is deemed crucial to elucidate the ecological and hydrological response mechanisms of rivers.The Indicators of Hydrologic Alteration and the Range of Variability Approach(IHA-RVA)method,as well as the ecological indicator method,were employed to quantitatively assess the degree of hydrologic change and ecological response processes in the Yellow River Basin from 1960 to 2020.Using Budyko's water heat coupling balance theory,the relative contributions of various driving factors(such as precipitation,potential evapotranspiration,and underlying surface)to runoff changes in the Yellow River Basin were quantitatively evaluated.The results show that the annual average runoff and precipitation in the Yellow River Basin had a downwards trend,whereas the potential evapotranspiration exhibited an upwards trend from 1960 to 2020.In approximately 1985,it was reported that the hydrological regime of the main stream underwent an abrupt change.The degree of hydrological change was observed to gradually increase from upstream to downstream,with a range of 34.00%-54.00%,all of which are moderate changes.However,significant differences have been noted among different ecological indicators,with a fluctuation index of 90.00%at the outlet of downstream hydrological stations,reaching a high level of change.After the mutation,the biodiversity index of flow in the middle and lower reaches of the Yellow River was generally lower than that in the base period.The research results also indicate that the driving factor for runoff changes in the upper reach of the Yellow River Basin is mainly precipitation,with a contribution rate of 39.31%-54.70%.Moreover,the driving factor for runoff changes in the middle and lower reaches is mainly human activities,having a contribution rate of 63.70%-84.37%.These results can serve as a basis to strengthen the protection and restoration efforts in the Yellow River Basin and further promote the rational development and use of water resources in the Yellow River. 展开更多
关键词 Budyko theory hydrological regime attribution analysis ecological responses Yellow River climate change human activity RUNOFF
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电催化氧化技术处理含盐有机废水研究进展 被引量:20
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作者 焦旭阳 张新妙 栾金义 《化工环保》 CAS CSCD 北大核心 2019年第1期6-10,共5页
介绍了电催化氧化技术在实际工业废水处理中的优势,对其反应原理进行了概述。总结了电催化氧化技术在石油、制药、造纸行业废水和含氨氮类有机废水处理中的研究进展,指出:电催化氧化技术未来的主要研究方向为研发新型电催化阳极材料;开... 介绍了电催化氧化技术在实际工业废水处理中的优势,对其反应原理进行了概述。总结了电催化氧化技术在石油、制药、造纸行业废水和含氨氮类有机废水处理中的研究进展,指出:电催化氧化技术未来的主要研究方向为研发新型电催化阳极材料;开发高效电解反应器;探索电催化氧化技术与其他处理工艺组合联用。 展开更多
关键词 电催化氧化技术 含盐废水 降解机理 催化电极
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