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老化和pH值对方解石-水界面铅(II)吸附过程的影响。

The effect of aging and pH on Pb(II) sorption processes at the calcite-water interface.

作者信息

Rouff Ashaki A, Elzinga Evert J, Reeder Richard J, Fisher Nicholas S

机构信息

Department of Geosciences and Center for Environmental Molecular Science, Stony Brook University, Stony Brook, NY 11794, USA.

出版信息

Environ Sci Technol. 2006 Mar 15;40(6):1792-8. doi: 10.1021/es051523f.

Abstract

The effect of aging on Pb(II) retention in 1 microM Pb, calcite suspensions at pH 7.3, 8.2, and 9.4, under room-temperature conditions, was explored via a combination of batch sorption-desorption experiments and X-ray absorption spectroscopy (XAS). Short-term experiments, up to 12 days, reveal the predominance of an adsorption mechanism at pH 8.2, as confirmed by XAS analysis. Linear-combination fitting of XANES spectra indicates a dual sorption mechanism, with approximately 95% adsorbed and appromicately 5% coprecipitated, and approcimately 75% adsorbed and approsimately 25% coprecipitated Pb at pH 7.3 and 9.4, respectively. For long-term sorption, 60-270 days, slow continuous uptake occurs at pH 7.3 and 8.2, determined by EXAFS to be due to an adsorption mechanism. At pH 9.4, no further uptake occurs with aging, and the solid-phase distribution of Pb is commensurate with that for short-term experiments, suggesting that coprecipitated metal may alterthe calcite surface precluding further Pb sorption. Desorption experiments indicate that at pH 7.3 and 8.2 long-term sorption products-constituted primarily of Pb inner-sphere adsorption complexes-are reversibly bound. For aged pH 9.4 samples, significant sorption irreversibility indicates that the coprecipitated component is not readily exchangeable with the aqueous phase, and thus coprecipitation may be effective for long-term metal sequestration.

摘要

通过批量吸附-解吸实验和X射线吸收光谱(XAS)相结合的方法,研究了在室温条件下,老化对1 microM Pb、方解石悬浮液在pH值7.3、8.2和9.4时铅(II)保留率的影响。长达12天的短期实验表明,在pH值8.2时吸附机制占主导地位,XAS分析证实了这一点。XANES光谱的线性组合拟合表明存在双重吸附机制,在pH值7.3和9.4时,分别约有95%的铅被吸附、约5%共沉淀,以及约75%的铅被吸附、约25%共沉淀。对于60 - 270天的长期吸附,在pH值7.3和8.2时会缓慢持续吸收,EXAFS测定这是由于吸附机制所致。在pH值9.4时,随着老化没有进一步的吸收发生,铅的固相分布与短期实验相当,这表明共沉淀的金属可能改变方解石表面,从而阻止进一步的铅吸附。解吸实验表明,在pH值7.3和8.2时,主要由铅内层吸附络合物构成的长期吸附产物是可逆结合的。对于老化的pH值9.4样品,显著的吸附不可逆性表明共沉淀成分不易与水相交换,因此共沉淀可能对长期的金属螯合有效。

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