Zhou J L, Liu Y P, Abrahams P W
School of Chemistry, Physics and Environmental Science, University of Sussex, Falmer, Brighton BN1 9QJ, UK.
Chemosphere. 2003 May;51(5):429-40. doi: 10.1016/S0045-6535(02)00853-6.
The distribution of trace metals Zn, Ni, Mn, Fe, Cu, Pb, Cd and Cr between suspended particulate matter (SPM) and water in the Conwy estuary, North Wales, has been studied in three surveys in 1998. Dissolved Cu and Mn showed some monthly variations. Most of the dissolved trace metals displayed a negative association with salinity, indicating rivers as a major source of inputs for them. Particulate Zn, Mn and Fe showed a decreasing concentration seaward, whilst the levels of Ni, Cu, Cr and Pb increased with salinity. SPM concentration was the most important variable significantly related to trace metal concentrations in SPM, with an inverse relationship between the two parameters. This was explained by the relative enrichment of trace metals in fine particles at low SPM concentrations and relative depletion of trace metals in coarse particles at high SPM concentrations. Particulate Zn, Mn and Pb were dominated by the fraction available to acetic acid (non-detrital), whilst particulate Ni, Fe and Cr were dominated by the fraction available to nitric acid (detrital). The partition coefficient of trace metals between SPM and water declined with increasing SPM concentration, consistent with the so-called "particle concentration effect". Such a phenomenon may be explained by the presence of fine particles (including colloids) enriched with trace metals at low SPM concentrations, and the salinity-induced desorption.
1998年开展的三次调查研究了北威尔士康威河口悬浮颗粒物(SPM)与水中痕量金属锌(Zn)、镍(Ni)、锰(Mn)、铁(Fe)、铜(Cu)、铅(Pb)、镉(Cd)和铬(Cr)的分布情况。溶解态铜和锰呈现出一定的月度变化。大多数溶解态痕量金属与盐度呈负相关,这表明河流是其主要输入源。颗粒态锌、锰和铁的浓度向海递减,而镍、铜、铬和铅的含量则随盐度增加。SPM浓度是与SPM中痕量金属浓度显著相关的最重要变量,这两个参数呈反比关系。这可以解释为在低SPM浓度下细颗粒中痕量金属的相对富集以及在高SPM浓度下粗颗粒中痕量金属的相对贫化。颗粒态锌、锰和铅以可被乙酸提取的部分(非碎屑态)为主,而颗粒态镍、铁和铬以可被硝酸提取的部分(碎屑态)为主。痕量金属在SPM与水之间的分配系数随SPM浓度增加而下降,这与所谓的“颗粒浓度效应”一致。这种现象可以用低SPM浓度下富含痕量金属的细颗粒(包括胶体)的存在以及盐度诱导的解吸来解释。