〔1〕〓〖ZK(#〗朱秉启,杨小平.塔克拉玛干沙漠天然水体的化学特征及其成因〔J〕.科学通报,2007,52(13):1 561-1 566.〔Zhu Bingqi,Yang Xiaoping.Chemical composition of natural waters and its origin in the Taklamakan Desert〔J〕.Chinese Science Bulletin,2007,52(13):1 561-1 566.〕
〔2〕〓张涛,蔡五田,李颖智,等.尼洋河流域水化学特征及其控制因素〔J〕.环境科学,2017,38(11):4 537-4 545.〔Zhang Tao,Cai Wutian,Li Yingzhi,et al.Major ionic features and their pssible controls in the water of the Niyang River Basin〔J〕.Environmental Science,2017,38(11):4 537-4 545.〕
〔3〕〓邵跃杰,罗光明,王建,等.新疆克里雅河上游主要离子化学特征及其成因〔J〕.干旱区研究,2018,35(5):1 021-1 029.〔Shao Yuejie,Luo Guangming,Wang Jian,et al.Hydrochemical characteristics and formation causes of main ions in water of the Keriya River,Xinjiang〔J〕.Arid Zone Research,2018,35(5):1 021-1 029.〕
〔4〕〓李会亚,冯起,陈丽娟,等.民勤绿洲灌区地下水水化学特征及其演化驱动机理〔J〕.干旱区研究,2017,34(4):733-740.〔Li Huiya,Feng Qi,Chen Lijuan,et al.Hydrochemical characteristics and evolution mechanism of groundwater in the Minqin Oasis〔J〕.Arid Zone Research,2017,34(4):733-740.〕
〔5〕〓张艳,吴勇,杨军,等.阆中市思依镇水化学特征及其成因分析〔J〕.环境科学,2015,36(9):3 230-3 237.〔Zhang Yan,Wu Yong,Yang Jun,et al.Hydrochemical characteristic and reasoning analysis in Siyi Town,Langzhong City〔J〕.Environmental Science,2015,36(9):3 230-3 237.〕
〔6〕〓宋献方,李发东,于静洁,等.基于氢氧同位素与水化学的潮白河流域地下水水循环特征〔J〕.地理研究,2007,26(1):11-21.〔Song Xianfang,Li Fadong,Yu Jingjie,et al.Characteristics of groundwater cycle using deuterium,oxygen-18 and hydrochemistry in Chaobai River Basin〔J〕.Geographical Research,2007,26(1):11-21.〕
〔7〕〓Chen J,Liu X,Wang C,et al.Isotopic constraints on the origin of groundwater in the Ordos Basin of Northern China〔J〕.Environmental Earth Sciences,2012,66(2):505-517.
〔8〕〓〖JP2〗Chen J,Sun X,Gu W,et al.Isotopic and hydrochemical data to restrict the origin of the groundwater in the Badain Jaran Desert,Northern China〔J〕.Geochemistry International,2012,50(5):455-〖JP〗465.
〔9〕〓Ren X,Zhu B,Liu M,et al.Mechanism of groundwater recharge in the middlelatitude desert of eastern Hunshandake,China:Diffuse or focused recharge?〔J〕.Hydrogeology Journal,2019,27(2):761-783.
〔10〕〖KG*2〗魏亚平,范敬龙,徐新文,等.塔克拉玛干沙漠南部地下水化学演化模拟〔J〕.中国沙漠,2016,36(3):798-804.〔Wei Yaping,Fan Jinglong,Xu Xinwen,et al.Hydrogeochemical modelling of groundwater chemical evolution from southern margin to Hinterland of Taklamakan Desert〔J〕.Journal of Desert Research,2016,36(3):798-804.〕
〔11〕〖KG*2〗丁贞玉,马金珠,何建华.腾格里沙漠西南缘地下水水化学形成特征及演化〔J〕.干旱区地理,2009,32(6):948-957.〔Ding Zhenyu,Ma Jinzhu,He Jianhua.Geochemical evolution of groundwater in the southwest of Tengger Desert,NW of China〔J〕.Arid Land Geography,2009,32(6):948-957.〕
〔12〕〖KG*2〗党慧慧,董军,岳宁,等.贺兰山以北乌兰布和沙漠地下水水化学特征演化规律研究〔J〕.冰川冻土,2015,37(3):793-802.〔Dang Huihui,Dong Jun,Yue Ning,et al.Study of the evolution of hydrochemical properties of groundwater in Ulan Buh Desert in the north of the Helan Mountains〔J〕.Journal of Glaciology and Geocryology,2015,37(3):793-802.〕
〔13〕〖KG*2〗靳鹤龄,苏志珠,孙良英,等.浑善达克沙地全新世气候变化〔J〕.科学通报,2004,49(15):1 532-1 536.〔Jin Heling,Su Zhizhu,Sun Liangying,et al.Climate change in Holocene,Hunshandake Sandy Land〔J〕.Chinese Science Bulletin,2004,49(15):1 532-1 536.〕
〔14〕〖KG*2〗张洪,靳鹤龄,苏志珠,等.全新世浑善达克沙地粒度旋回及其反映的气候变化〔J〕.中国沙漠,2005,25(1):1-7.〔Zhang Hong,Jin Heling,Su Zhizhu,et al.Climate changes revealed by grainsize cycles of Holocene in Hunshandake Desert〔J〕.Journal of Desert Research,2005,25(1):1-7.〕
〔15〕〖KG*2〗Yang X,Li H,Conacher A.Largescale controls on the development of sand seas in Northern China〔J〕.Quaternary International,2012,250:74-83.
〔16〕〖KG*2〗朱震达,吴正,刘恕,等.中国沙漠概论〔M〕.北京:科学出版社,1980.〔Zhu Zhenda,Wu Zheng,Liu Shu,et al.An Outline of Chinese Deserts〔M〕.Beijing:Science Press,1980.〕
〔17〕〖KG*2〗[JP+1]Yang X,Zhu B,Wang X,et al.Late Quaternary environmental changes and organic carbon density in the Hunshandake Sandy Land,Eastern Inner Mongolia,China〔J〕.Global and Planetary Change,2008,61(1-2):70-78.[JP]
〔18〕〖KG*2〗[JP2]Liu Z,Yang X.Geochemicalgeomorphological evidence for the provenance of aeolian sands and sedimentary environments in the Hunshandake Sandy Land,Eastern Inner Mongolia,China〔J〕.Acta Geologica Sinica,2013,87(3):871-884.[JP]
〔19〕〖KG*2〗Yang X,Wang X,Liu Z,et al.Initiation and variation of the dune fields in semiarid China:With a special reference to the Hunshandake Sandy Land,Inner Mongolia〔J〕.Quaternary Science Reviews,2013,78:369-380.
〔20〕〖KG*2〗Su Hua,Li Yonggeng,Lan Zhenjiang,et al.Leaflevel plasticity of [WTBX]Salix gordejevii[WTBZ] in fixed dunes compared with lowlands in Hunshandake Sandland,North China〔J〕.Journal of Plant Research,2009,122(6):611.
〔21〕〖KG*2〗国家地质总局水文地质工程地质研究所.中华人民共和国水文地质图集〔M〕.北京:地图出版社,1979.〔Institute of Hydrogeology and Engineering Geology,State Geological Administration.Hydrogeological Atlas of the People〖JP8〗’〖JP〗s Republic of China〔M〕.Beijing:China Cartographic Publishing House,1979.〕
〔22〕〖KG*2〗Gran G.Determination of the equivalence point in potentiometric titrations.Part II〔J〕.Analyst,1952,77:661-671.
〔23〕〖KG*2〗Yang X,Williams J.The ion chemistry of lakes and late Holocene desiccation in the Badain Jaran Desert,Inner Mongolia,China〔J〕.Catena,2003,51(1):45-60.
〔24〕〖KG*2〗Zaporozec A.Graphical interpretation of waterquality data〔J〕.Ground Water,1972,10(2):32-43.
〔25〕〖KG*2〗任孝宗,刘敏,张迎珍,等.基于Matlab的Durov三线图的实现〔J〕.干旱区地理,2018,41(4):744-750.〔Ren Xiaozong,Liu Min,Zhang Yingzhen,et al.Plotting Durov diagram based on Matlab〔J〕.Arid Land Geography,2018,41(4):744-750.〕
〔26〕〖KG*2〗Gibbs R J.Mechanisms controlling world water chemistry〔J〕.Science,1970,170(3 962):1 088-1 090.
〔27〕〖KG*2〗Wen X,Wu Y,Su J,et al.Hydrochemical characteristics and salinity of groundwater in the Ejina Basin,Northwestern China〔J〕.Environmental Geology,2005,48(6):665-675.
〔28〕〖KG*2〗魏水莲,刘新平,赵学勇,等.科尔沁沙地奈曼地区地下水水质时空变化特征〔J〕.中国沙漠,2017,37(3):571-579.〔Wei Shuilian,Liu Xinping,Zhao Xueyong,et al.Spatial and temporal variability analysis of groundwater quality in Naiman Region of Horqin Sandy Land〔J〕.Journal of Desert Research,2017,37(3):571-579.〕
〔29〕〖KG*2〗唐玺雯,吴锦奎,薛丽洋,等.锡林河流域地表水水化学主离子特征及控制因素〔J〕.环境科学,2014,35(1):131-142.〔Tang Xiwen,Wu Jinkui,Xue Liyang,et al.Major ion chemistry of surface water in the Xilin River Basin and the possible controls〔J〕.Environmental Science,2014,35(1):131-142.〕
〔30〕〖KG*2〗〖JP+1〗Garrels R M,Mackenzie F T.Evolution of Sedimentary Rocks〖JP〗〔M〕.New York:W.W.Norton and Company,1971.
〔31〕〖KG*2〗Stumm W.Chemistry of the SolidWater Interface:Processes at the MineralWater and ParticleWater Interface in Natural Systems〔M〕.New York:Wiley,1992.
〔32〕〖KG*2〗Zhu B,Yang X.The ion chemistry of surface and ground waters in the Taklimakan Desert of Tarim Basin,Western China〔J〕.Chinese Science Bulletin,2007,52(15):2 123-2 129.
〔33〕〖KG*2〗Zhang L,Song X,Xia J,et al.Major element chemistry of the Huai 〖JP2〗River basin,China〔J〕.Applied Geochemistry,2011,26(3):293-〖JP〗300.
〔34〕〖KG*2〗Chen J,Wang F,Xia X,et al.Major element chemistry of the 〖JP2〗Changjiang(Yangtze River)〔J〕.Chemical Geology,2002,187(3-〖JP〗4):231-255.
〔35〕〖KG*2〗Ahmad T,Khanna P P,Chakrapani G J,et al.Geochemical characteristics of water and sediment of the Indus River,TransHimalaya,India:Constraints on weathering and erosion〔J〕.Journal of Asian Earth Sciences,1998,16(2-3):333-346.
〔36〕〖KG*2〗王亚平,王岚,许春雪,等.长江水系水文地球化学特征及主要离子的化学成因〔J〕.地质通报,2010,29(2-3):446-456.〔Wang Yaping,Wang Lan,Xu Chunxue,et al.Hydrogeochemistry and genesis of major ions in the Yangtze River,China〔J〕.Geological Bulletin of China,2010,29(2-3):446-456〕
〔37〕〖KG*2〗李亚文,韩蔚田.蒸发岩成因的物理化学研究〔J〕.地学前缘,1994,1(3-4):211-215,210.〔Li Yawen,Han Weitian.A review of physicochemicl study on the origin of evaporite〔J〕.Earth Science Frontiers,1994,1(3-4):211-215,210.〕
〔38〕〖KG*2〗Appelo C A J,Postma D.Geochemistry,Groundwater and Pollution,Second Edition〔M〕. Amsterdam:Taylor & Francis,2005.
〔39〕〖KG*2〗吕婕梅,安艳玲,吴起鑫,等.贵州清水江流域丰水期水化学特征及离子来源分析〔J〕.环境科学,2015,36(5):1 565-1 572.〔Lü Jiemei,An Yanling,Wu Qixin,et al.Hydrochemical characteristics and sources of Qingshuijiang River Basin at wet season in Guizhou Province〔J〕.Environmental Science,2015,36(5):1 565-1 572.〕 |