长江流域资源与环境 >> 2017, Vol. 26 >> Issue (10): 1517-.doi: 10.11870/cjlyzyyhj201710016

• 生态环境 • 上一篇    下一篇

三峡消落带沉积物大气界面汞交换通量及其影响因素

朱金山1,2,3, 王永敏1, 张玉涛4,廖敦秀3,#br# 王龙昌1,张成1,王定勇1   

  1. (1. 西南大学资源环境学院,重庆 400715;2. 长江师范学院三峡库区环境监测与灾害防治工程研究中心,
    重庆 408100;3. 重庆市农业科学院,重庆 401329;4.安顺学院化学化工学院,贵州 安顺 561000)
  • 出版日期:2017-10-20

CHARACTERISTICS AND INFLUENCING FACTORS OF MERCURY#br#  EXCHANGING FLUX AT THE INTERFACE OF SEDIMENT/ATMOSPHERE#br#  IN THE FLUCTUATION ZONE OF THREE GORGES RESERVOIR

ZHU Jinshan1,2,3 , WANG Yongmin1, ZHANG Yutao4, LIAO Dunxiu3, #br# WANG Longchang1, ZHANG Cheng1, WANG Dingyong1   

  1. (1.College of Resources and Environment, Southwest University, Chongqing 400715, China; 2. Research Center for Environmental
     Monitoring, Hazard Prevention of Three Gorges Reservoir, Yangtze Normal University, Chongqing 408100, China; 3. Chongqing Academy of
     Agricultural Sciences, Chongqing 401329, China; 4.  School of chemistry and chemical engineering of Anshun University, Anshun  561000, China)
  • Online:2017-10-20

摘要: 应用动力通量箱(Dynamic Flux Chamber,DFC)与高时间分辨率的RA915+自动汞分析仪联用技术,在消落带沉积物出露期,野外现场监测沉积物大气界面汞交换通量,同时对其影响因素进 行了分析。结果表明:三峡库区消落带沉积物大气界面汞交换通量范围为-6.80±12.35~28.17±36.17 ng/(m2·h)晴天库区消落带沉积物大气界面汞交换通量表现出相同的变化趋势,即从早晨开始沉积物大气界面汞的交换通量逐渐增加,到正午左右达到峰值,之后交换通量逐渐减小,但阴天这一趋势不明显。暖季白天沉积物大气界面汞交换通量都以释放为主,冷季白天则以沉降为主。暖季晴天,沉积物大气汞交换通量与气温、沉积物温度、光照强度呈显著正相关关系,与相对湿度呈显著负相关关系。无论晴天还是阴天,大气汞浓度都与沉积物大气汞交换通量呈负相关关系。白天, 光照强度和大气汞浓度是影响消落带沉积物/大气界面汞交换通量的主要因素,而在夜间,沉积物温度和大气汞浓度是其主要影响因素。

Abstract: The dynamic flux chamber and high time resolution technique (RA-915+ automatic mercury analyzer) were applied in this study to screen the mercury exchanging flux in  situ at the interface of sediment / atmosphere in the fluctuation zone when the water level of Three Gorges Reservoir was low. At the same time, the influencing factors were  analyzed. The results showed that the mercury exchanging flux was from -6.80±12.35 ng/(m2·h) to 28.17±36.17 ng/(m2·h). In the sunny days, mercury exchange flux showed the  same trend, the flux increased gradually from the early morning to the noon and the peak was appeared at noon, then, decreased gradually. But the trend was not obvious in the  cloudy days. In the warm season, mercury released from the sediment to the atmosphere in the daytime, the mercury exchanging flux showed a significant positive correlation with  air temperature, sediment temperature and light intensity and had a negative correlation with the relative humidity. While in the cold season, mercury deposited from atmosphere  to sediment in the daytime. Whether it was sunny or cloudy, there was a negative correlation between atmospheric mercury concentration and mercury exchanging flux at the  interface of sediment/atmosphere. During the daytime, light intensity and atmospheric mercury concentration were the major factors affecting the mercury exchange flux at the  sediment / atmosphere interface, while at night, the sediment temperature and atmospheric mercury concentration were the major influencing factors.

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