Yu K C, Tsai L J, Chen S H, Ho S T
Department of Environmental Engineering and Health, Chia-Nan University of Pharmacy and Science, Tainan, Taiwan.
Water Res. 2001 Dec;35(17):4086-94. doi: 10.1016/s0043-1354(01)00126-9.
Acid volatile sulfides (AVS) in sediments are available for binding with divalent cationic metals through the formation of insoluble metal-sulfide complexes, thereby controlling the metal bioavailability and subsequent toxicity to benthic biocommunities. However, when the molar concentrations of simultaneously extracted metals (SEM) were greater than AVS, the unexpectedly low or nondetectable levels of metal in pore water could also be found. Thus, except AVS, additional binding phases in sediments were supposed to provide the binding sites for SEM. The aims of this study are to realize the spatial distribution of AVS, SEM, and other binding phases of heavy metals in anoxic sediments of the Ell-Ren river and to elucidate what may be the main additional binding phases except AVS in the anoxic river sediments. By comparing the spatial distributions of SEM/ AVS ratio with various binding phases in extremely anoxic sediments (redox potential was between -115 and -208 mV), both organic matter and carbonates could be considered to be the main additional binding phases of SEM other than AVS. In addition, AVS appeared to have the priority to bind with SEM. By comparing the binding phases of heavy metals before and after AVS extraction, it could be found that Fe-oxides could also be considered to be the main additional binding phase associated with Zn in slightly anoxic sediments (redox potential was between -50 and -130mV), while organic matter with Cu being the next.
沉积物中的酸挥发性硫化物(AVS)可通过形成不溶性金属硫化物络合物与二价阳离子金属结合,从而控制金属的生物有效性以及随后对底栖生物群落的毒性。然而,当同时提取的金属(SEM)的摩尔浓度大于AVS时,也可能会在孔隙水中发现金属含量意外低或无法检测到的情况。因此,除了AVS之外,沉积物中的其他结合相被认为为SEM提供了结合位点。本研究的目的是了解Ell-Ren河缺氧沉积物中AVS、SEM以及重金属的其他结合相的空间分布,并阐明在缺氧河流沉积物中除AVS之外可能的主要其他结合相是什么。通过比较极缺氧沉积物(氧化还原电位在-115至-208 mV之间)中SEM/AVS比值与各种结合相的空间分布,有机物和碳酸盐都可被认为是除AVS之外SEM的主要其他结合相。此外,AVS似乎优先与SEM结合。通过比较AVS提取前后重金属的结合相,可以发现铁氧化物也可被认为是轻度缺氧沉积物(氧化还原电位在-50至-130 mV之间)中与锌相关联的主要其他结合相,而有机物是与铜相关联的主要其他结合相。