[1] ZONI S, ALBINI E, LUCCHINI R. Neuropsychological testing for the assessment of manganese neurotoxicity: A review and a proposal [J]. American Journal of Industrial Medicine, 2007, 50(11): 812-830. doi: 10.1002/ajim.20518
[2] 丁宏伟, 李岩. 锰的神经毒性机制研究进展 [J]. 实用预防医学, 2016, 23(8): 1022-1025. doi: 10.3969/j.issn.1006-3110.2016.08.040 DING H W, LI Y. Advances in the mechanism of manganese-induced neurotoxicity [J]. Pract Prev Med, 2016, 23(8): 1022-1025(in Chinese). doi: 10.3969/j.issn.1006-3110.2016.08.040
[3] ROTH JA, LI Z Z, SRIDHAR S, et al. The effect of manganese on dopamine toxicity and dopamine transporter (DAT) in control and dat transfected hek cells [J]. Neurotoxicology, 2013, 35(3): 121-128.
[4] 杨心乐, 王桂兰, 张忠诚. 锰与人体健康 [J]. 医学综述, 2006, 12(8): 1134-1136. YANG X L, WANG G L, ZHANG Z C. Manganese and Health of Human Body [J]. Medical Recapitulate, 2006, 12(8): 1134-1136(in Chinese).
[5] GB 3838—2002 地表水环境质量标准[S]. GB 3838—2002 Environmental quality standard value for surface water[S].
[6] 陈能汪, 王德利, 鲁婷, 等. 九龙江流域地表水锰的污染来源和迁移转化机制 [J]. 环境科学学报, 2018, 38(8): 2955-2964. CHEN N W, WANG D L, LU T, et al. Manganese pollution in the Jiulong River watershed: Sources and transformation [J]. Acta Scientiae Circumstantiae, 2018, 38(8): 2955-2964(in Chinese).
[7] 陈燕. “锰三角”对湖南湘西州境内酉水流域锰指标污染状况调查 [J]. 资源节约与环保, 2015, 10: 178-180. doi: 10.3969/j.issn.1673-2251.2015.06.146 CHEN Y. Investigation on manganese pollution in Youshui Basin of Xiangxi autonomous Prefecture, Hunan province by "Manganese Triangle" [J]. Resource Conservation and Environmental Protection, 2015, 10: 178-180(in Chinese). doi: 10.3969/j.issn.1673-2251.2015.06.146
[8] 黄波, 刘家春. 长江经济带的锰“暴露”—长江干流锰污染状况分析 [J]. 水利水电快报, 2015, 36(10): 33-35. doi: 10.3969/j.issn.1006-0081.2015.10.014 HUANG B, LIU J C. Manganese "exposed" in the Yangtze River Economic Belt—Analysis of manganese pollution in the Yangtze River trunk stream [J]. EWRHI, 2015, 36(10): 33-35(in Chinese). doi: 10.3969/j.issn.1006-0081.2015.10.014
[9] 周琦, 杜远生, 袁良军, 等. 贵州铜仁松桃锰矿国家整装勘查区地质找矿主要进展及潜力预测 [J]. 贵州地质, 2016, 33(4): 237-244. doi: 10.3969/j.issn.1000-5943.2016.04.001 ZHOU Q, DU Y S, YUAN L J, et al. Main progress and potential prediction of geological prospecting for manganese ore in national integrated exploration area of Songtao, Tongren, Guizhou province [J]. Guizhou Geology, 2016, 33(4): 237-244(in Chinese). doi: 10.3969/j.issn.1000-5943.2016.04.001
[10] 陈红亮. 新鲜电解锰渣和长期堆存渣的矿物成分和毒性特征的差异分析 [J]. 贵州师范大学学报(自然科学版), 2016, 34(2): 32-36. CHEN H L. Differences analysis of minerals compositions and toxicity characteristics between the fresh electrolytic manganese residue and the stockpiling residue [J]. Journal of Guizhou Normal University (Natural Sciences), 2016, 34(2): 32-36(in Chinese).
[11] DUAN N, FAN W, CHANGBO Z, et al. Analysis of pollution materials generated from electrolytic manganese industries in China [J]. Resources Conservation and Recycling, 2010, 54(8): 506-511. doi: 10.1016/j.resconrec.2009.10.007
[12] LI Z, PENG X, OUYANG Y. Conditions for leaching manganese from electrolytic manganese waste residue [J]. Jishou University Natural Science, 2006, 27(2): 110-113.
[13] 罗乐, 降林华, 段宁. 电解锰废渣的浸出毒性及生石灰固化技术 [J]. 环境工程, 2017, 35(12): 139-143. LUO L, JIANG L H, DUAN N. A EMR solidification technology based on quicklime and leaching toxicity [J]. Environmental Engineering, 2017, 35(12): 139-143(in Chinese).
[14] ZHOU C B, WANG N F. Treating electrolytic manganese residue with alkaline additives for stabilizing manganese and removing ammonia [J]. Korean Journal of Chemical Engineering, 2013, 30(11): 2037-2042. doi: 10.1007/s11814-013-0159-8
[15] XIN B, CHEN B, DUAN N, et al. Extraction of manganese from electrolytic manganese residue by bioleaching [J]. Bioresource Technology, 2011, 102(2): 1683-1687. doi: 10.1016/j.biortech.2010.09.107
[16] LI H, ZHANG Z, TANG S, et al. Ultrasonically assisted acid extraction of manganese from slag [J]. Ultrasonics Sonochemistry, 2008, 15(4): 339-343. doi: 10.1016/j.ultsonch.2007.07.010
[17] ZHOU C, DU B, WANG N, et al. Preparation and strength property of autoclaved bricks from electrolytic manganese residue [J]. Journal of Cleaner Production, 2014, 84: 707-714. doi: 10.1016/j.jclepro.2014.01.052
[18] 杨盼, 卢路, 王继保, 等. 基于主成分分析的spearman秩相关系数法在长江干流水质分析中的应用 [J]. 环境工程, 2019, 37(8): 76-80. YANG P, LU L, WANG J B, et al. Analysis of water quality trend in the main stream of the Yangtze River based on principal component analysis [J]. Environmental Engineering, 2019, 37(8): 76-80(in Chinese).
[19] ZHANG P P, ZHANG X K. Analysis of evolution trend of water resources based on spearman and R/S methods: A case study of agricultural water source in Jinghui Irrigation Area [J]. Journal of Landscape Research, 2020, 12(3): 30-32.
[20] 陈雨艳, 杨坪, 向秋实, 等. 岷江流域水质状况评价及变化趋势分析 [J]. 中国环境监测, 2015, 31(6): 53-57. doi: 10.3969/j.issn.1002-6002.2015.06.012 CHEN Y Y, YANG P, XIANG Q S, et al. Evaluation of the water quality in Minjiang River and analysis on its variation trend [J]. Environmental Monitoring in China, 2015, 31(6): 53-57(in Chinese). doi: 10.3969/j.issn.1002-6002.2015.06.012
[21] WANG W P, CHEN Y F, BECKER S, et al. Linear trend detection in serially dependent hydrometeorological data based on a variance correction spearman RHO method [J]. Water, 2015, 7(12): 7045-7065. doi: 10.3390/w7126673
[22] 陈欣佛, 柴元冰, 闵敏. 基Kendall检验法的湟水水质变化趋势分析 [J]. 人民黄河, 2019, 41(9): 97-101. doi: 10.3969/j.issn.1000-1379.2019.09.020 CHEN X F, CHAI Y B, MIN M. Analysis of variation trend of Huangshui water quality based on Kendall method [J]. Yellow River, 2019, 41(9): 97-101(in Chinese). doi: 10.3969/j.issn.1000-1379.2019.09.020
[23] KISI O, AY M. Comparison of Mann–Kendall and innovative trend method for water quality parameters of the Kizilirmak River, Turkey [J]. Journal of Hydrology, 2014: 362-375.
[24] HIRSCH R M, SLACK J R, SMITH R A. Techniques of trend analysis for monthly water quality data [J]. Water Resources Research, 1982, 18(1): 107-121. doi: 10.1029/WR018i001p00107
[25] 胡国华, 唐忠旺, 肖翔群. 季节性Kendall检验及其在三门峡水库水质趋势分析中的应用[J]. 地理与地理信息科学, 2004(3): 86-88. HU G H, TANG Z W, XIAO X Q. Trend analysis of water quality of Sanmenxia Reservoir of the Yellow River[J]. Geography and Geo-Information Science, 2004(3): 86-88(in Chinese).
[26] VAN B G, HUGHES J P. Nonparamertic tests for trend in waterquality [J]. Water Resources Research, 1984, 20(1): 127-136. doi: 10.1029/WR020i001p00127
[27] 邱瑀, 卢诚, 徐泽, 等. 湟水河流域水质时空变化特征及其污染源解析 [J]. 环境科学学报, 2017, 37(8): 2829-2837. QIU Y, LU C, XU Z, et al. Spatio-temporal variation characteristics and water pollution sources in the Huangshui River Basin [J]. Acta Scientiae Circumstantiae, 2017, 37(8): 2829-2837(in Chinese).
[28] 徐华山, 徐宗学, 唐芳芳, 等. 漳卫南运河流域水质时空变化特征及其污染源识别 [J]. 环境科学, 2012, 33(2): 359-369. XU H S, XU Z X, TANG F F, et al. Spatiotemporal variation analysis and identification of water pollution sources in the Zhangweinan River basin [J]. Environmental Science, 2012, 33(2): 359-369(in Chinese).
[29] 王翠榆, 杨永辉, 周丰, 等. 沁河流域水体污染物时空分异特征及潜在污染源识别 [J]. 环境科学学报, 2012, 32(9): 2267-2278. WANG C Y, YANG Y H, ZHOU F, et al. Spatio-temporal characteristics and source identification of water pollutants in River Qinhe Basin [J]. Acta Scientiae Circumstantiae, 2012, 32(9): 2267-2278(in Chinese).
[30] 卜红梅, 刘文治, 张全发. 多元统计方法在金水河水质时空变化分析中的应用 [J]. 资源科学, 2009, 31(3): 429-434. doi: 10.3321/j.issn:1007-7588.2009.03.012 PU H M, LIU W Z, ZHANG Q F. The application of multivariate statistical method in the analysis of temporal and spatial variation of water quality in Jinshui River [J]. Resources Science, 2009, 31(3): 429-434(in Chinese). doi: 10.3321/j.issn:1007-7588.2009.03.012
[31] 汤云, 卢毅敏, 吴升. 闽江流域水质时空分布特征及污染源解析 [J]. 长江科学院院报, 2019, 36(8): 30-35,48. doi: 10.11988/ckyyb.20171452 TANG Y, LU Y M, WU S. Spatio-temporal distribution and source identification of water pollutants in Minjiang River basin [J]. Journal of Yangtze River Scientific Research Institute, 2019, 36(8): 30-35,48(in Chinese). doi: 10.11988/ckyyb.20171452
[32] KHAN M Y, GANI K M, CHAKRAPANI G J. Spatial and temporal variations of physicochemical and heavy metal pollution in Ramganga River—a tributary of River Ganges, India [J]. Environmental Earth Sciences, 2017, 76(5): 1-13.
[33] SHRESTHA S, KAZAMA. Assessment of surface water quality using multivariate statistical techniques: A case study of the Fuji river basin, Japan [J]. Environmental Modelling & Software, 2007, 22(4): 464-475.
[34] PILLSBURY L A, BYRNE R H. Spatial and temporal chemicalvariability in the Hillsborough River system [J]. Marine Chemistry, 2007, 104: 4-16. doi: 10.1016/j.marchem.2006.12.005
[35] VAROL M, SEN B. Assessment of surface water quality using multivariate statistical techniques: A case study of Behrimaz Stream, Turkey [J]. Environmental Monitoring and Assessment, 2009, 159(1/4): 543-553.
[36] VEGA M, PARDO R, BARRADO E. Assessment of seasonal and polluting effects on the quality of river water by exploratory data analysis [J]. Water Research, 1998, 32(12): 3581-3592. doi: 10.1016/S0043-1354(98)00138-9
[37] LIU W C, KEN P J, LIU H M. Transport and distribution of manganese in tidal estuarine system in Taiwan [J]. Environmental Science and Pollution Research, 2020, 27: 510-531. doi: 10.1007/s11356-019-06797-1
[38] RAHIM A, KASMURI N. Assessment of water quality index and heavy metals in Sungai Bunus, Malaysia [J]. Journal of Physics:Conference Series, 2020, 2: 22-28. doi: 10.34306/conferenceseries.v2i11.330
[39] CHRISTER P, JOHAN I, KURT B. Geochemistry of manganese in the Kalix River, northern Sweden [J]. Pergamon, 1992, 56: 1485-1494.
[40] DUNCAN L, WILLIAM D, COLIN W. Manganese chemistry in rivers and streams [J]. Pergamon, 1984, 48: 2107-2111.
[41] 陆凤. 贵州典型锰矿区锰渣重金属污染特征及环境效应[D]. 贵阳, 贵州大学, 2018, 1 − 91. LU F. Characteristics of heavy metal pollution and environmental effects from manganese residues in typical manganese mining area in Guizhou[D]. Guiyang, Guizhou University, 2018,1 - 91.
[42] 蒋宗宏, 陆凤, 陈淼, 等. 贵州铜仁典型锰矿区土壤及蔬菜重金属污染特征及健康风险评价 [J]. 农业资源与环境学报, 2020, 37(2): 293-300. JIANG Z H, LU F, CHEN M, et al. Characteristics and health risk assessments of heavy metals in soils and vegetables in manganese mining areas in Tongren County, Guizhou Province, China [J]. Journal of Agricultural Resources and Environment, 2020, 37(2): 293-300(in Chinese).
[43] 杨育红, 沈万斌. 地表水非点源污染负荷计算方法探讨 [J]. 吉林大学学报(地球科学版), 2006, 36: 105-107. YANG Y H, SHEN W B. Preliminary study on estimating surface water non-point source pollution loads [J]. Journal of Jilin University(Earth Science Edition), 2006, 36: 105-107(in Chinese).
[44] 朱晓娟, 沈万斌, 高凯, 等. 吉林省松花江干流氨氮综合衰减系数分段研究 [J]. 科学技术与工程, 2013, 13(10): 2758-2761. doi: 10.3969/j.issn.1671-1815.2013.10.028 ZHU X J, SHEN W B, GAO K, et al. Sectional study on ammonia nitrogen comprehensive attenuation coefficient of Songhua River trunk stream in Jilin Province [J]. Science Technology and Engineering, 2013, 13(10): 2758-2761(in Chinese). doi: 10.3969/j.issn.1671-1815.2013.10.028