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铜、铅和镉对2,4,6-三氯苯酚在小麦灰分和两种商业腐殖酸上的吸附及解吸的影响。

Effects of copper, lead, and cadmium on the sorption of 2,4,6-trichlorophenol onto and desorption from wheat ash and two commercial humic acids.

作者信息

Wang Yu-Sheng, Shan Xiao-Quan, Feng Mu-Hua, Chen Guang-Cai, Pei Zhi-Guo, Wen Bei, Liu Tao, Xie Ya-Ning, Owens Gary

机构信息

Stare Key Laboratory of Environmental Chemistry and Ecotoxicology, Research Centerfor Eco-Environmental Sciences, PO Box 2871, Beijing 100085, China.

出版信息

Environ Sci Technol. 2009 Aug 1;43(15):5726-31. doi: 10.1021/es803357b.

Abstract

The effects of copper (Cu2+), lead (Pb2+), and cadmium (Cd2+) on the sorption of 2,4,6-trichlorophenol (TCP) to and desorption from wheat ash and two commercial humic acids were studied. Copper and Pb2+ diminished the sorption of TCP onto all adsorbents, and made desorption of TCP less hysteretic from ash and German humic acids (GeHA), but more hysteretic from Tianjin humic acids (TJHA). Cadmium had little effect on TCP sorption and desorption. Fourier-transform infra red (FTIR) and X-ray absorption spectroscopy (XAS) in conjunction with fluorescence quenching studies provided insights into the mechanisms of TCP sorption and desorption as affected by Cu2+ and Pb2+, indicating that complexation of Cu2+ and Pb2+ was likely via carboxylic, hydroxylic and phenolic groups of ash, TJHA and GeHA, and that theses same functional groups also reacted with TCP during sorption. In contrast, Cd, a "soft acid", had no effect on the adsorption of TCP. Hydration shells of dense water around adsorbed Cu2+ and Pb2+ ions may also compete with TCP for available surface area. Fluorescence quenching of pyrene verified that for TJHA, Cu2+ and Pb2+ promoted the formation of supramolecular associations with interior hydrophobic regions separated from aqueous surroundings by exterior hydrophilic layers.

摘要

研究了铜(Cu2+)、铅(Pb2+)和镉(Cd2+)对2,4,6-三氯苯酚(TCP)在小麦灰分和两种商业腐殖酸上的吸附及解吸的影响。铜和Pb2+降低了TCP在所有吸附剂上的吸附,并使TCP从灰分和德国腐殖酸(GeHA)上的解吸滞后性减小,但从天津腐殖酸(TJHA)上的解吸滞后性增大。镉对TCP的吸附和解吸影响很小。傅里叶变换红外光谱(FTIR)和X射线吸收光谱(XAS)结合荧光猝灭研究为受Cu2+和Pb2+影响的TCP吸附和解吸机制提供了见解,表明Cu2+和Pb2+的络合可能通过灰分、TJHA和GeHA的羧基、羟基和酚基进行,并且这些相同的官能团在吸附过程中也与TCP发生反应。相比之下,作为“软酸”的镉对TCP的吸附没有影响。吸附的Cu2+和Pb2+离子周围致密水的水合壳也可能与TCP竞争可用表面积。芘的荧光猝灭证实,对于TJHA,Cu2+和Pb2+促进了超分子缔合的形成,其内部疏水区域被外部亲水层与水相环境隔开。

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