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[1]ZHANG Wang,WANG Dianwu,LEI Kun,et al.Hydrochemical Characteristics and Impact Factors in the Middle and Lower Reaches of the Yellow River in the Wet Season[J].Research of Soil and Water Conservation,2020,27(01):380-386,393.
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Hydrochemical Characteristics and Impact Factors in the Middle and Lower Reaches of the Yellow River in the Wet Season

References:
[1] Gibbs R J. Mechanisms controlling world water chemistry[J]. Science, 1971,172(3985):870-872.
[2] Meybeck M. Global chemical weathering of surficial rocks estimated from river dissolved loads[J]. American Journal of Science, 1987,287(5):401-428.
[3] Zhang Q, Jin Z, Fei Z, et al. Seasonal variation in river water chemistry of the middle reaches of the Yellow River and its controlling factors[J]. Journal of Geochemical Exploration, 2015,156(3):101-113.
[4] Meybeck M. Global occurrence of major elements in rivers[J]. Treatise on Geochemistry, 2003,5(1):207-223.
[5] Grasby S E, Hutcheon I. Chemical dynamics and weathering rates of a carbonate basin Bow River, southern Alberta[J]. Applied Geochemistry, 2000,15(1):67-77.
[6] Millot R, Gaillardet J, Dupré B, et al. The global control of silicate weathering rates and the coupling with physical erosion:new insights from rivers of the Canadian Shield[J]. Earth & Planetary Science Letters, 2002,196(1):83-98.
[7] 乐嘉祥,王德春.中国河流水化学特征[J].地理学报,1963,30(1):3-15.
[8] 过常龄.黄河流域河流水化学特征初步分析[J].地理研究,1987,6(3):65-73.
[9] 李晶莹,张经.黄河流域化学风化作用与大气CO2的消耗[J].海洋地质与第四纪地质,2003,23(2):43-49.
[10] 陈静生,王飞越,何大伟.黄河水质地球化学[J].地学前缘,2006,13(1):58-73.
[11] 张龙军,温志超.黄河流域硅酸盐风化的讨论[J].中国海洋大学学报:自然科学版,2009,39(5):988-994.
[12] 张永领,王明仕,董玉龙.黄河小浪底水库水沙调控对DOC输送的影响[J].环境科学,2015,36(4):1249-1255.
[13] 田超,孟平,张劲松,等.黄河小浪底库区降水δD和δ18O季节变化特征及水汽来源[J].应用生态学报,2015,26(12):3579-3587.
[14] Yokoo Y, Nakano T, Nishikawa M, et al. mineralogical variation of Sr-Nd isotopic and elemental compositions in loess and desert sand from the central Loess Plateau in China as a provenance tracer of wet and dry deposition in the northwestern Pacific[J]. Chemical Geology, 2004,204(1):45-62.
[15] 国家环境保护总局.水和废水监测分析方法第四版[M].北京:中国环境科学出版社,2002.
[16] 何姜毅,张东,赵志琦.黄河流域河水水化学组成的时间和空间变化特征[J].生态学杂志,2017,36(5):1390-1401.
[17] Zhi F X, Liu C Q. Water geochemistry of the Xijiang basin rivers, South China:Chemical weathering and CO2 consumption[J]. Applied Geochemistry, 2010,25(10):1603-1614.
[18] 陈静生,李荷碧,夏星辉,等.近30年来黄河水质变化趋势及原因分析[J].环境化学,2000,19(2):97-102.
[19] 吴起鑫,韩贵琳,陶发祥,等.西南喀斯特农村降水化学研究:以贵州普定为例[J].环境科学,2011,32(1):26-32.
[20] 李军,刘丛强,李龙波,等.硫酸侵蚀碳酸盐岩对长江河水DIC循环的影响[J].地球化学,2010,39(4):305-313.
[21] Ahmad T, Khanna P P, Chakrapani G J, et al. Geochemical characteristics of water and sediment of the Indus river, Trans-Himalaya, India:constraints on weathering and erosion[J]. Journal of Asian Earth Sciences, 1998,16(2/3):333-346.
[22] Li S L, Chetelat B, Yue F, et al. Chemical weathering processes in the Yalong River draining the eastern Tibetan Plateau, China[J]. Journal of Asian Earth Sciences, 2014,88:74-84.
[23] Li S, Zhang Q. Geochemistry of the upper Han River basin, China, 1:Spatial distribution of major ion compositions and their controlling factors[J]. Applied Geochemistry, 2008,23(12):3535-3544.
[24] 胡春华,周文斌,夏思奇.鄱阳湖流域水化学主离子特征及其来源分析[J].环境化学,2011,30(9):1620-1626.
[25] 张亚男,甘义群,李小倩,等.2013年长江丰水期河水化学特征及控制因素[J].长江流域资源与环境,2016,25(4):645-654.
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