Citation: | LI Ming-li, DUO Ji, WANG Zhu, WU Guo-dong, JIANG Zhen-zhen, LIU Gao-ling. Hydrochemical characteristics and material sources of the Riduo thermal spring in Tibet[J]. CARSOLOGICA SINICA, 2015, 34(3): 209-216. doi: 10.11932/karst20150302 |
[1] |
杜毓超,吕勇,罗贵荣.滇西潞西盆地温泉水文地球化学特征及其成因[J].地质通报,2012,31(2-3): 406-412.
|
[2] |
于彦,刘杰,康楠,等.地热流体水化学特征与地质构造关系的Q-型聚类分析[J].水文地质工程地质,2013,40(3): 131-135.
|
[3] |
徐则民,雍自权,孙世雄.西藏朗久地热田水文地球化学特征[J].桂林工学院学报,1997,17(1):63-69.
|
[4] |
伍坤宇,沈立成,王香桂.西藏朗久地热田及其温泉水化学特征研究[J].中国岩溶,2011, 30(1): 1-8.
|
[5] |
Hakim S, Sachio E. Temperature and chemical changes in the fluids of the Obama geothermal field (SW Japan) in response to field utilization [J]. Geothermics, 2010,39:228-241.
|
[6] |
Suzan Pasvanog. Hydrogeochemical study of the Terme and Karakurt thermal and mineralized waters from Kirs, ehir Area, central Turkey [J].Environ Earth Sci,2012,66:169-182.
|
[7] |
Mohammadi R, Bagheri R,Jahanshahi. Hydrogeochemistry and geothermometry of Changal thermal springs, Zagros region, Iran [J].Geothermics, 2010, 39: 242-249.
|
[8] |
魏斯禹, 腾吉文,杨秉平,等.西藏高温地热活动温泉分布与地球物理场特征[J].西北地震学报,1981,3(4):17-25.
|
[9] |
佟伟,廖志杰,刘时彬,等.西藏温泉志[M].北京:科学出版社,2000.
|
[10] |
多吉.典型高温地热系统-羊八井热田基本特征[J].中国工程科学,2003,5(1):42-47.
|
[11] |
赵平,Mack KENNEDY,多吉.西藏羊八井热田地热流体成因及演化的惰性气体制约[J].岩石学报,2001,17(3): 497-503.
|
[12] |
GB/T 11615-2010,地热资源地质勘查规范[S].
|
[13] |
GB/T 13727-92,天然矿泉水地质勘探规范[S].
|
[14] |
Piper A M. A graphic procedure in the geochemical interpretation of water analysis [J].Transactions American Geophysical Union, 1994, 25(6): 914-928
|
[15] |
Yildiray Palabiyik,Umran Serpen. Geochemical assessment of Simav geothermal field, Turkey [J].Revista Mexicana Geologicas,2008,25(3):408-425.
|
[16] |
Delgado-Outeiriňo, Araujo-Nespereira P , Cid-Fernández J A , et al. Behaviour of thermal waters through granite rocks based on residence time and inorganic pattern[J].Journal of Hydrology, 2009, 373: 329-336.
|
[17] |
K R Bradbury. 以氚作指示剂测量威斯康星州中部地区地下水的年龄(钟文)[TJ].地质地球化学,1992,4:75-79.
|
[18] |
李学礼,孙占学,刘金辉.水文地球化学[M].北京:原子能出版社,2010:51-52,253-254.
|
[19] |
Suzan Pasvanog. Hydrogeochemical study of the Terme and Karakurt thermal and mineralized waters from Kirs, ehir Area,central Turkey[J].Environ Earth Sci ,2012, 66:169-182
|
[20] |
Rose F E, Chaussidon M, FrancesLanord C H. Fractionation of boron isotopes during erosion processes: The Himalayan rivers [C]. Geochimica Cosmochimica Acta,2000,64:397-408.
|
[21] |
Leeman W P, Sisson V B. Geochemistry of boron and its implications for crustal and mantle processes [J]. Reviews in Mineralogy, 1996, 33:645-707.
|
[22] |
Vengosh A, Starinsky A, Kolodny Y, etal. Boron isotope geochemistry of thermal springs from the northern Rift Valley, Israel[J].Journal of Hydrology,1994,162:155-169.
|
[23] |
吕苑苑,赵平,许荣华,等.西藏羊八井地热田硼同位素地球化学特征初步研究[J].地质科学,2012,47(1): 251-264.
|
[24] |
宋军,胡进武.岩溶水锶元素水文地球化学特征[J].西部探矿工程,2005,12: 131-133.
|
[25] |
钱丽萍.五大连池药泉山矿水锶元素水文地球化学特征[J].资源开发与市场,2007,23(10): 865-867.
|
[26] |
赵平,多吉,谢鄂军,等.中国典型高温热田水的锶同位素研究[J].岩石学报,2003,19(3): 569-576.
|
[27] |
Paropkpari A L. Geochemistry of sediments from the Mangalore–Cochin shelf and upper slope off southwest India. Geological and environmental factors controlling dispersal of elements [J]. Chemical Geology, 1990, 81: 99-119.
|
[28] |
Giggench W F. Geothermal solute equilibria Derivation of Na-K-Mg-Ca geoindicators [J]. Geochimica Cosmochima Acta, 1988, 52: 2749-2765.
|
[29] |
胡弘,朱家玲,赵季初. 新西兰ROTORUA市KUIRAU热泉Na-K地球化学温标研究[J].黑龙江科技学院学报,2003,13(4): 45-49.
|
[30] |
王莹,周训,于湲,等.应用地热温标估算热储温度[J].现代地质,2007,21(4):605-612.
|
[31] |
柴蕊,王皓,刘洋.多矿物平衡法在地下热储温度估算中的应用[J].煤炭科学与技术,2010,38(4): 100-103.
|
[32] |
Parkhurst D, Appelo C. User's Guide to PHREEQC(Version2)-A Computer Program for Speciation,Batch-reaction,one dimensional Transport and Inverse Geochemical Calculations[R].US Geol. Surv. Water Resour.Invest.Rep,1999:1-6.
|
[33] |
周训,金晓媚,梁四海,等.地下水科学专论[M].北京:地质出版社,2010: 72-75.
|
[34] |
郑西来,郭建青.二氧化硅地热温标及其相关问题的处理方法[J].地下水,1996,18(2): 85-88.
|
[35] |
徐世光,郭远生.地热学基础[M].北京:科学出版社,2009: 36-40.
|