[1] |
韩玉丽, 卜红梅. 极端降水条件下白洋淀主淀区水化学特征及水质变化[J]. 湖泊科学, 2022, 34(6): 1968-1979. doi: 10.18307/2022.0613
HAN Y L, BU H M. Hydrochemical characteristics and water quality variations in the main area of Lake Baiyangdian under extreme precipitation[J]. Journal of Lake Sciences, 2022, 34(6): 1968-1979 (in Chinese). doi: 10.18307/2022.0613
|
[2] |
HU M H, STALLARD R F, EDMOND J M. Major ion chemistry of some large Chinese Rivers[J]. Nature, 1982, 298(5874): 550-553. doi: 10.1038/298550a0
|
[3] |
张立成, 董文江. 我国东部河水的化学地理特征[J]. 地理研究, 1990, 9(2): 67-75.
ZHANG L C, DONG W J. Geochemical characteristics of the river system in East China[J]. Geographical Research, 1990, 9(2): 67-75 (in Chinese).
|
[4] |
石万鹏, 刘景涛, 李备, 等. 青藏高原盐湖地区水化学特征及成因分析[J]. 环境化学, 2023, 42(1): 101-112. doi: 10.7524/j.issn.0254-6108.2022090508
SHI W P, LIU J T, LI B, et al. Hydrochemical characteristics and genesis analysis of salt lake area in Qinghai-Tibet Plateau[J]. Environmental Chemistry, 2023, 42(1): 101-112 (in Chinese). doi: 10.7524/j.issn.0254-6108.2022090508
|
[5] |
王珺瑜, 王家乐, 靳孟贵. 济南泉域岩溶水水化学特征及其成因[J]. 地球科学, 2017, 42(5): 821-831.
WANG J Y, WANG J L, JIN M G. Hydrochemical characteristics and formation causes of Karst water in Jinan spring catchment[J]. Earth Science, 2017, 42(5): 821-831 (in Chinese).
|
[6] |
王攀, 靳孟贵, 路东臣, 等. 城镇化对永城市浅层地下水水质的影响[J]. 安全与环境工程, 2021, 28(1): 125-134.
WANG P, JIN M G, LU D C, et al. Influence of urbanization on the shallow groundwater quality of Yongcheng city[J]. Safety and Environmental Engineering, 2021, 28(1): 125-134 (in Chinese).
|
[7] |
彭聪, 何江涛, 廖磊, 等. 应用水化学方法识别人类活动对地下水水质影响程度: 以柳江盆地为例[J]. 地学前缘, 2017, 24(1): 321-331.
PENG C, HE J T, LIAO L, et al. Research on the influence degree of human activities on groundwater quality by the method of geochemistry: A case study from Liujiang Basin[J]. Earth Science Frontiers, 2017, 24(1): 321-331 (in Chinese).
|
[8] |
孙大鹏, 唐渊, 许志强, 等. 青海湖湖水化学演化的初步研究[J]. 科学通报, 1991, 36(15): 1172-1174. doi: 10.1360/csb1991-36-15-1172
SUN D P, TANG Y, XU Z Q, et al. Preliminary study on chemical evolution of Qinghai Lake[J]. Chinese Science Bulletin, 1991, 36(15): 1172-1174 (in Chinese). doi: 10.1360/csb1991-36-15-1172
|
[9] |
XU H, HOU Z H, AN Z S, et al. Major ion chemistry of waters in Lake Qinghai Catchments, NE Qinghai-Tibet Plateau, China[J]. Quaternary International, 2010, 212(1): 35-43. doi: 10.1016/j.quaint.2008.11.001
|
[10] |
张飞, 金章东, 石岳威, 等. 青海湖水化学的季节性和空间变化及其受自生碳酸盐沉淀的影响[J]. 地球环境学报, 2013, 4(3): 1314-1321.
ZHANG F, JIN Z D, SHI Y W, et al. Seasonal and spatial variations of water chemistry in Lake Qinghai and its influence by authigenic carbonate precipitation[J]. Journal of Earth Environment, 2013, 4(3): 1314-1321 (in Chinese).
|
[11] |
LIANG S H, GUO J, WU P, et al. Hydrogeochemical and isotopic characteristics of surface water and groundwater in the Qinghai Lake Catchment (China)[J]. Arabian Journal of Geosciences, 2020, 13(3): 135. doi: 10.1007/s12517-020-5103-8
|
[12] |
靳惠安, 姚晓军, 高永鹏, 等. 封冻期青海湖水化学主离子特征及控制因素[J]. 干旱区资源与环境, 2020, 34(8): 140-146.
JIN H A, YAO X J, GAO Y P, et al. Hydrochemistry characteristics of major ions in Lake Qinghai during the freeze-up period and controlling factors[J]. Journal of Arid Land Resources and Environment, 2020, 34(8): 140-146 (in Chinese).
|
[13] |
马凯丽, 熊雄, 敖鸿毅, 等. 青海湖新生湖滨带与主湖区水环境特征差异研究[J]. 水生生物学报, 2022, 46(12): 1788-1796.
MA K L, XIONG X, AO H Y, et al. Study on the difference of water environment characteristics between the new lakeside zone and the main lake area of Qinghai Lake[J]. Acta Hydrobiologica Sinica, 2022, 46(12): 1788-1796 (in Chinese).
|
[14] |
侯昭华, 徐海, 安芷生. 青海湖流域水化学主离子特征及控制因素初探[J]. 地球与环境, 2009, 37(1): 11-19.
HOU Z H, XU H, AN Z S. Major ion chemistry of waters in Lake Qinghai Catchment and the possible controls[J]. Earth and Environment, 2009, 37(1): 11-19 (in Chinese).
|
[15] |
张琨, 蓝江湖, 沈振兴, 等. 青海湖流域水化学分析及水质初步评价[J]. 地球环境学报, 2010, 1(3): 162-168.
ZHANG K, LAN J H, SHEN Z X, et al. The chemical composition and quality evaluation of surface water in Qinghai Lake areas[J]. Journal of Earth Environment, 2010, 1(3): 162-168 (in Chinese).
|
[16] |
李晓东. 青海湖水体对流域气候和生态环境变化的响应[D]. 兰州: 兰州大学, 2022.
LI X D. Response of Qinghai Lake water body to climate and ecological environment changes in the basin[D]. Lanzhou: Lanzhou University, 2022 (in Chinese).
|
[17] |
白文蓉, 余迪, 刘彩红, 等. 气候变暖背景下青海湖水位及面积变化趋势及成因分析[J]. 青海科技, 2019, 26(3): 72-78.
BAI W R, YU D, LIU C H, et al. Variation trend and cause analysis of water level and area of Qinghai Lake under the background of climate warming[J]. Qinghai Science and Technology, 2019, 26(3): 72-78 (in Chinese).
|
[18] |
陈骥, 姜在兴, 刘超, 等. “源-汇”体系主导下的障壁滨岸沉积体系发育模式: 以青海湖倒淌河流域为例[J]. 岩性油气藏, 2018, 30(3): 71-79.
CHEN J, JIANG Z X, LIU C, et al. Depositional models of barrier shoreline sedimentary system under guidance of source-to-sink system theory: A case from Daotang River in Qinghai Lake[J]. Lithologic Reservoirs, 2018, 30(3): 71-79 (in Chinese).
|
[19] |
张焜, 孙延贵, 巨生成, 等. 青海湖由外流湖转变为内陆湖的新构造过程[J]. 国土资源遥感, 2010, 22(增刊1): 77-81.
ZHANG K, SUN Y G, JU S C, et al. The neotectonic process causing the conversion of the Qinghai Lake from an outflow lake into an interior lake[J]. Remote Sensing for Land & Resources, 2010, 22(Sup 1): 77-81 (in Chinese).
|
[20] |
侯威. 青海湖流域生态环境地质条件与生态环境地质问题研究[D]. 北京: 中国地质大学(北京), 2020.
HOU W. Study on eco-environmental geological conditions and eco-environmental geological problems in Qinghai Lake Basin[D]. Beijing: China University of Geosciences, 2020 (in Chinese).
|
[21] |
袁骞骞. 基于多源遥感数据的青海湖流域生态环境变化研究[D]. 成都: 电子科技大学, 2017.
YUAN (J/Q)(J/Q). Study on ecological environment change in Qinghai Lake basin based on multi-source remote sensing data[D]. Chengdu: University of Electronic Science and Technology of China, 2017 (in Chinese).
|
[22] |
陈骥. 青海湖现代沉积体系研究[D]. 北京: 中国地质大学(北京), 2016.
CHEN J. The study on mordern sedimentary system in the Qinghai Lake[D]. Beijing: China University of Geosciences, 2016(in Chinese).
|
[23] |
李东昇, 崔步礼, 赵云朵. 环青海湖地下水溶解性碳的时空变化特征[J]. 地理研究, 2022, 41(10): 2821-2831.
LI D S, CUI B L, ZHAO Y D. Temporal and spatial variation characteristics of dissolved carbon in groundwater around Qinghai Lake[J]. Geographical Research, 2022, 41(10): 2821-2831 (in Chinese).
|
[24] |
AO H Y, WU C X, XIONG X, et al. Water and sediment quality in Qinghai Lake, China: A revisit after half a century[J]. Environmental Monitoring and Assessment, 2014, 186(4): 2121-2133. doi: 10.1007/s10661-013-3522-7
|
[25] |
张洪源, 吴艳红, 刘衍君, 等. 近20年青海湖水量变化遥感分析[J]. 地理科学进展, 2018, 37(6): 823-832. doi: 10.18306/dlkxjz.2018.06.009
ZHANG H Y, WU Y H, LIU Y J, et al. Water storage variation of the Qinghai Lake in recent decades based on satellite observation[J]. Progress in Geography, 2018, 37(6): 823-832 (in Chinese). doi: 10.18306/dlkxjz.2018.06.009
|
[26] |
REN Z, NIU D C, MA P P, et al. Cascading influences of grassland degradation on nutrient limitation in a high mountain lake and its inflow streams[J]. Ecology, 2019, 100(8): e02755. doi: 10.1002/ecy.2755
|
[27] |
郭军明, 康世昌, 张强弓, 等. 青藏高原纳木错湖水主要化学离子的时空变化特征[J]. 环境科学, 2012, 33(7): 2295-2302.
GUO J M, KANG S C, ZHANG Q G, et al. Temporal and spatial variations of major ions in nam co lake water, Tibetan Plateau[J]. Environmental Science, 2012, 33(7): 2295-2302 (in Chinese).
|
[28] |
JIN Z D, YU J M, WANG S M, et al. Constraints on water chemistry by chemical weathering in the Lake Qinghai Catchment, northeastern Tibetan Plateau (China): Clues from Sr and its isotopic geochemistry[J]. Hydrogeology Journal, 2009, 17(8): 2037-2048. doi: 10.1007/s10040-009-0480-9
|
[29] |
蒲焘, 何元庆, 朱国锋, 等. 丽江盆地地表-地下水的水化学特征及其控制因素[J]. 环境科学, 2012, 33(1): 48-54.
PU T, HE Y Q, ZHU G F, et al. Geochemistry of surface and ground water in the lijang basin, northwest Yunnan[J]. Environmental Science, 2012, 33(1): 48-54 (in Chinese).
|
[30] |
闫露霞. 青藏高原湖泊与湿地水化学特征及其物质来源[D]. 兰州: 西北师范大学, 2019.
YAN L X. Hydrochemical characteristics and material sources of lakes and wetlands in Qinghai-Tibet Plateau[D]. Lanzhou: Northwest Normal University, 2019 (in Chinese).
|
[31] |
刘智琦, 潘保柱, 韩谞, 等. 青藏高原湖泊水环境特征及水质评价[J]. 环境科学, 2022, 43(11): 5073-5083.
LIU Z Q, PAN B Z, HAN X, et al. Water environment characteristics and water quality evaluation of lakes in Qinghai-Tibet Plateau[J]. Environmental Science, 2022, 43(11): 5073-5083 (in Chinese).
|
[32] |
王海雷, 郑绵平. 青藏高原湖泊水化学与盐度的相关性初步研究[J]. 地质学报, 2010, 84(10): 1517-1522.
WANG H L, ZHENG M P. Preliminary study of the correlation between hydrochemistry and salinity of lakes in the qinghai-tibetan plateau[J]. Acta Geologica Sinica, 2010, 84(10): 1517-1522 (in Chinese).
|
[33] |
肖蓓. 青海湖流域河川径流及溶解性碳输移过程研究[D]. 烟台: 鲁东大学, 2019.
XIAO B. Study on river runoff and dissolved carbon transport process in Qinghai Lake basin[D]. Yantai: Ludong University, 2019 (in Chinese).
|
[34] |
WANG L Q, SHEN Z X, LU D, et al. Water-soluble ions and oxygen isotope in precipitation over a site in northeastern Tibetan Plateau, China[J]. Journal of Atmospheric Chemistry, 2019, 76(3): 229-243. doi: 10.1007/s10874-019-09393-2
|
[35] |
ZHU J F, CHEN K L, CAO S K, et al. Spatial variability analysis of soil salt and its component ions in Qinghai Lake region[J]. Procedia Environmental Sciences, 2011, 10: 2431-2436. doi: 10.1016/j.proenv.2011.09.378
|
[36] |
何炳毅, 杨英魁, 孔凡翠, 等. 青海湖布哈河流域枯水期氢氧同位素和氡同位素分布特征及其意义[J]. 地质学报, 2023, 97(6): 2042-2053.
HE B Y, YANG Y K, KONG F C, et al. The distribution characteristics and significance of stable(δD and δ18O)and radon-222 isotopes in the Buha River Basin of Qinghai Lake during dry season[J]. Acta Geologica Sinica, 2023, 97(6): 2042-2053 (in Chinese).
|
[37] |
杨康, 李红, 雷云, 等. 室温条件下青海湖水中镁离子浓度对沉淀碳酸钙同质多像类型的调控[J]. 岩石矿物学杂志, 2021, 40(3): 571-580.
YANG K, LI H, LEI Y, et al. The effect of magnesium concentration on polymorphs of calcium carbonate from Qinghai Lake water at room temperature[J]. Acta Petrologica et Mineralogica, 2021, 40(3): 571-580 (in Chinese).
|
[38] |
CUI B L, LI X Y, WEI X H. Isotope and hydrochemistry reveal evolutionary processes of lake water in Qinghai Lake[J]. Journal of Great Lakes Research, 2016, 42(3): 580-587. doi: 10.1016/j.jglr.2016.02.007
|
[39] |
吴华武, 李小雁, 赵国琴, 等. 青海湖流域降水和河水中δ18O和δD变化特征[J]. 自然资源学报, 2014, 29(9): 1552-1564.
WU H W, LI X Y, ZHAO G Q, et al. The variation characteristics of δ18O and δD in precipitation and river water, Qinghai lake basin[J]. Journal of Natural Resources, 2014, 29(9): 1552-1564 (in Chinese).
|
[40] |
SHA Z J, WANG Q G, WANG J L, et al. Regional environmental change and human activity over the past hundred years recorded in the sedimentary record of Lake Qinghai, China[J]. Environmental Science and Pollution Research, 2017, 24(10): 9662-9674. doi: 10.1007/s11356-016-8327-0
|