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多功能型城市人工湿地水体汞分布特征及其量变分析
引用本文:刘伟豪,王永敏,樊宇飞,吕东威,王定勇.多功能型城市人工湿地水体汞分布特征及其量变分析[J].环境科学,2019,40(5):2219-2225.
作者姓名:刘伟豪  王永敏  樊宇飞  吕东威  王定勇
作者单位:西南大学资源环境学院,重庆,400715;西南大学资源环境学院,重庆400715;重庆市农业资源与环境研究重点实验室,重庆400716
基金项目:国家自然科学基金项目(41671469,41603103)
摘    要:以重庆某集接纳生活污水处理厂出水、水质净化、休闲娱乐为一体的城市湿地公园为研究对象,根据水流流向设点采样,分析了湿地公园内污水处理区、湖泊深度净化区中总汞(THg)和甲基汞(MeHg)的分布特征,并探讨了其源汇关系.结果表明,污水处理区出水THg质量浓度范围为1. 98~38. 03 ng·L~(-1)平均值为(9. 10±5. 84) ng·L~(-1)],出水MeHg质量浓度范围为0. 09~0. 84 ng·L~(-1)平均值为(0. 34±0. 08) ng·L~(-1)];湖泊深度净化区THg质量浓度范围为0. 37~85. 69 ng·L~(-1)平均值为(6. 76±2. 29) ng·L~(-1)],MeHg质量浓度范围为0. 04~1. 47 ng·L~(-1)平均值为(0. 35±0. 17) ng·L~(-1)],人为活动对汞浓度的干扰较为明显.水体总汞、甲基汞垂直分布规律具有一致性,均表现出表层深层.通过物料衡算,表明该湿地系统水体总汞每年降低155. 50 g,水体甲基汞每年降低1. 65 g,对下游水体具有保护作用.

关 键 词:城市湿地  水体    时空分布  物料衡算
收稿时间:2018/10/20 0:00:00
修稿时间:2018/11/30 0:00:00

Mercury Distribution Characteristics and Its Mass Balance in a Multifunctional Urban Wetland
LIU Wei-hao,WANG Yong-min,FAN Yu-fei,L&#; Dong-wei and WANG Ding-yong.Mercury Distribution Characteristics and Its Mass Balance in a Multifunctional Urban Wetland[J].Chinese Journal of Environmental Science,2019,40(5):2219-2225.
Authors:LIU Wei-hao  WANG Yong-min  FAN Yu-fei  L&#; Dong-wei and WANG Ding-yong
Institution:College of Resources and Environment, Southwest University, Chongqing 400715, China,College of Resources and Environment, Southwest University, Chongqing 400715, China;Chongqing Key Laboratory of Agricultural Resources and Environment, Chongqing 400716, China,College of Resources and Environment, Southwest University, Chongqing 400715, China,College of Resources and Environment, Southwest University, Chongqing 400715, China and College of Resources and Environment, Southwest University, Chongqing 400715, China;Chongqing Key Laboratory of Agricultural Resources and Environment, Chongqing 400716, China
Abstract:The distribution characteristics and the source-sink relationship of total mercury (THg) and methyl mercury (MeHg) were studied in a wastewater treatment area and in a lake deep purification area of a multifunctional urban wetland that integrates domestic sewage treatment plant effluent, water purification, and leisure entertainment in Chongqing. The results showed that the THg concentration ranged from 1.98 ng·L-1 to 38.03 ng·L-1average concentration was (9.10±5.84) ng·L-1] and MeHg concentration ranged from 0.09 ng·L-1 to 0.84 ng·L-1average concentration was (0.34±0.08) ng·L-1] in an outlet of wastewater treatment area. In the deep purification zone, the THg concentration ranged from 0.37 ng·L-1 to 85.69 ng·L-1average concentration of (6.76±2.29) ng·L-1] and the MeHg concentration ranged from 0.04 ng·L-1 to 1.47 ng·L-1average concentration of (0.35±0.17) ng·L-1]. The interference of human activities on mercury concentration is prominent. The vertical distribution of THg in the water is consistent with that of MeHg, the surface layer has lower values than the deep layer. Material balance suggested that THg in the wetland system decreases by 155.50 g per year, and MeHg decreases by 1.65 g per year, which has a protective effect on the downstream water.
Keywords:urban wetland  water body  mercury  temporal and spatial distribution  material balance
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