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Sediment sources and their impacts on a check dam-controlled watershed, Loess Plateau, China
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作者 BAI Lu-lu SHI Peng +9 位作者 WANG Wen LI Zhan-bin yu kun-xia LI Peng CUI Ling-zhou SHEN Rong-jian GUAN Mu-hong DU Xin-chun ZHANG Xun-le CHEN Wen-fu 《Journal of Mountain Science》 SCIE CSCD 2023年第6期1660-1673,共14页
Soil erosion is a major issue in Loess Plateau,China,and quantitative analyses of sediment sources are crucial for soil erosion control.In this study,a combination of flood couplet analysis and composite fingerprint i... Soil erosion is a major issue in Loess Plateau,China,and quantitative analyses of sediment sources are crucial for soil erosion control.In this study,a combination of flood couplet analysis and composite fingerprint identification was used for historical reconstructions of soil erosion in sediment source areas in Loess Plateau.Each flood couplet was constructed based on sediment 137Cs activity,and past soil erosion was calculated using soil bulk density and storage capacity curves.The contribution rates of the sediment sources were calculated using the fingerprinting method,and the amount of erosion in the sediment source areas was estimated.The best fingerprint combination(Cr,Ni,V,and TOC)enabled a 97.2%recognition of sediment sources from 29 flood events(1956–1990)in the Loess Plateau.The contribution rates of gullies,farmland,grassland,and shrubland were 44.89%,26.38%,10.49%,and 18.24%,respectively.These four land use types contributed 1,227,751,512,and 279 tons of sediments,respectively.Re-vegetation decreased soil erosion(1966–1983),whereas deforestation increased soil erosion(1956–1965 and 1984–1990).Rational soil and water conservation measures on slopes and check dam construction in gullies are therefore suggested to mitigate erosion. 展开更多
关键词 Check dam Sediment source Soil and water conservation Land use changes Loess Plateau
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黄土丘陵沟壑区小流域不同水体氢氧同位素特征 被引量:16
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作者 张荷惠子 于坤霞 +4 位作者 李占斌 李鹏 赵宾华 柯浩成 蒋凯鑫 《环境科学》 EI CAS CSCD 北大核心 2019年第7期3030-3038,共9页
研究黄土丘陵沟壑区不同水体间同位素特征及水体转化关系,可以更好了解黄土丘陵沟壑区水循环特征,为评价区域环境、气候、生态建设和水资源形成机制提供依据.通过野外采集2017年整年生态建设治理条件良好的韭园沟研究区降水、河水及浅... 研究黄土丘陵沟壑区不同水体间同位素特征及水体转化关系,可以更好了解黄土丘陵沟壑区水循环特征,为评价区域环境、气候、生态建设和水资源形成机制提供依据.通过野外采集2017年整年生态建设治理条件良好的韭园沟研究区降水、河水及浅层地下水中δD和δ18O日及月平均数据及相关气象资料,运用稳定同位素技术,分析了不同水体中稳定氢氧同位素的组成关系、影响因子及时空变化,结合二端元混合模型揭示了研究区不同水体中稳定同位素间转化特征.结果显示:河水氘盈余参数在观测期间内呈现出随海拔升高而增大的趋势,河水δ18O值随着距河源距离的增大而富集,随着高度的递增而降低;气温、风速、相对湿度和降水量对大气降水氢氧同位素值均影响显著;河水在非汛期表现为降水和浅层地下水补给河水,比例分别为46%和54%,在汛期为河水和降水补给浅层地下水,比例分别为60%和40%.表明研究区"降水-河水-浅层地下水"间具有良好转化关系,生态建设措施的实施对小流域不同水体转化产生了一定影响.通过以上结果可为流域水资源开发保护及流域生态水文过程研究提供帮助,为建立黄土丘陵沟壑区流域水循环模型提供依据. 展开更多
关键词 同位素 转化比例 氘盈余 降水 韭园沟
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