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Adsorption and Desorption of Mercury(II) in Three Forest Soils in Shandong Province, China

机译:山东省三种森林土壤对汞(II)的吸附和解吸

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As one of the most toxic heavy metals with persistence,bioaccumulation,and toxicity in environment,mercury and its environmental problems have caused a global concern.To fully understand the behavior and fate of mercury (Hg)(II) in forest soils,a series of batch experiments were conducted to determine the adsorption and desorption characteristics of Hg(II) by three dark brown forest soils from Mount Taishan,Laoshan Mountain,and Fanggan Village in Shandong Province,China.The adsorption solution was prepared using 0.1 mol L-1 NaNO3 as background electrolyte,with Hg(II) at rising concentration gradients of 0.0,2.0,4.0,6.0,8.0,and 10.0 mg L-1.Fourier transform infrared (FTIR) spectroscopy was adopted to characterize the soil samples and soil-Hg complexes.It was found that Hg(II) adsorption isotherms could be well fitted with both Langmuir and Freundlich equations.The soil from Mount Taishan had the largest potential Hg(II) adsorption capacity,though with less adsorptive intensity.The percentages of Hg(II) desorbed from all soil samples were less than 0.6%,which suggested that all the soils studied had a high binding strength for Hg(II).The soil from Mount Taishan had a higher Hg(II) desorption capacity than the other soils,which indicated that the Hg(II) deposited on the topsoil of Mount Taishan from atmosphere may easily discharge to surface water through runoff.Results of the FTIR spectroscopy showed that the three soils contained the same functional groups.The relative absorbencies of soil-Hg complexes changed significantly compared with those of the soil samples and the adsorption of Hg(II) mainly acted on the O-H,C-O,and C=O groups of the soils.
机译:汞及其作为环境中具有持久性,生物累积性和毒性的毒性最高的重金属之一,引起了全球关注。要充分了解森林土壤中汞(Hg)(II)的行为和归宿,系列通过分批实验来确定山东山的泰山,La山和房岗村的三种深棕色森林土壤对Hg(II)的吸附和解吸特性。采用0.1 mol L-1制备吸附溶液以NaNO3为背景电解质,Hg(II)的浓度梯度为0.0、2.0、4.0、6.0、8.0和10.0 mg L-1。采用傅里叶变换红外(FTIR)光谱法表征土壤样品和土壤汞结果表明,Hg(II)的吸附等温线可以很好地拟合Langmuir和Freundlich方程。泰山山地的土壤对Hg(II)的吸附能力最大,但吸附强度较小。从所有土壤样品中脱附的Hg(II)含量均小于0.6%,这表明所研究的所有土壤对Hg(II)的结合强度都很高。泰山的土壤中Hg(II)的脱附能力高于FTIR光谱结果表明这3种土壤具有相同的官能团,相对土壤的吸收度较高,表明土壤中的Hg(II)可能会通过径流排放到地表水中。土壤-Hg络合物与土壤样品相比变化显着,并且Hg(II)的吸附主要作用于土壤的OH,CO和C = O。

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