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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >The influence of pH on the kinetics, reversibility and mechanisms of Pb(II) sorption at the calcite-water interface
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The influence of pH on the kinetics, reversibility and mechanisms of Pb(II) sorption at the calcite-water interface

机译:pH对方解石-水界面吸附Pb(II)的动力学,可逆性和机理的影响

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摘要

Pb(II) sorption experiments with calcite powders were conducted in suspensions equilibrated at atmospheric PCO2(g) and ambient temperature at pH 7.3, 8.2 and 9.4. Pb fractional sorption was low at pH 7.3 and 9.4 relative to pH 8.2, and correlated well with PbCO3(aq)0 speciation. Desorption experiments conducted for initial sorption times ranging from 0.5 11 to 12 d reveal an almost completely reversible process at pH 8.2, attributed to the dominance of an adsorption mechanism, with slight and pronounced irreversibility at pH 7.3 and 9.4 respectively. Similarities in X-ray absorption near edge spectra (XANES) for 24 h and 12 d pH 7.3 and 9.4 sorption samples indicate no effect of initial sorption time. Results from linear combination (LC) fits of XANES spectra for samples sorbed at pH 9.4 confirm similar to 75% adsorbed and similar to 25% coprecipitated components. The coprecipitated fraction was attributed to the non-exchangeable metal observed in desorption experiments. At pH 7.3, similar to 95% adsorbed and similar to 5% coprecipitated components were obtained. A comparison of results from desorption experiments and LC-XANES alludes to an irreversibly bound adsorbed component for the pH 9.4 12 d sorption sample. Extended X-ray absorption fine structure spectroscopy (EXAFS) analysis of pH 7.3 and 9.4 12 d sorption samples confirms the presence of both adsorbed and coprecipitated metal. At pH 7.3 a first-shell Pb-O bond length of 2.38 angstrom is intermediate between that of adsorbed (2.34 angstrom) and coprecipitated (2.51 angstrom) Pb. At pH 9.4, two first-shell Pb-O distances at 2.35 angstrom and 2.51 angstrom were obtained, indicative of the occurrence of both adsorption and coprecipitation and a larger coprecipitated fraction relative to that at pH 7.3, consistent with LC-XANES results. We propose that the disparity in the fraction of coprecipitated metal with pH may be linked to the ability of sorbed Pb to inhibit near-surface dynamic exchange of Ca and CO3 species, which dictates step advance and retreat. Less effective inhibition of step motion at pH 9.4, due to lower fractional sorption, combined with highest rates of dynamic exchange results in a significant fraction of coprecipitated Pb at this pH. At low pH, though fractional sorption is also low, lower rates of exchange prohibit significant coprecipitation. At pH 8.2, effective inhibition of surface processes due to higher fractional sorption and lower rates of exchange compared to pH 7.3 and 9.4 preclude detectable coprecipitation. Other factors such as changes in surface speciation and solubility of the Pb-Ca solid solution with pH may also come into play. Overall, this study presents evidence for the influence of pH on Pb sorption mechanisms, and addresses the efficiency of Pb immobilization in calcitic systems. Copyright (c) 2005 Elsevier Ltd.
机译:方解石粉对Pb(II)的吸附实验是在大气PCO2(g)和环境温度分别为pH 7.3、8.2和9.4平衡的悬浮液中进行的。相对于pH 8.2,在pH 7.3和9.4时,Pb的分数吸附率较低,并且与PbCO3(aq)0形态密切相关。初始吸附时间为0.5 11至12 d的解吸实验表明,在pH 8.2下几乎完全可逆,这归因于吸附机理的主导,在pH 7.3和9.4下分别具有轻微和明显的不可逆性。 X射线近边缘光谱(XANES)在24 h和12 d pH 7.3和9.4吸附样品中的相似性表明初始吸附时间无影响。 XANES光谱的线性组合(LC)拟合结果表明,pH 9.4吸附的样品相似,有75%的吸附和25%的共沉淀组分。共沉淀部分归因于在解吸实验中观察到的不可交换金属。在pH 7.3下,获得了接近95%的吸附组分和相似的5%的共沉淀组分。解吸实验和LC-XANES的结果比较表明,pH 9.4 12 d吸附样品具有不可逆结合的吸附组分。 pH 7.3和9.4 12 d吸附样品的扩展X射线吸收精细结构光谱(EXAFS)分析证实了吸附金属和共沉淀金属的存在。在pH 7.3时,2.38埃的第一壳Pb-O键长度介于吸附(2.34埃)和共沉淀(2.51埃)的Pb之间。在pH 9.4时,获得了两个第一壳Pb-O距离,分别为2.35埃和2.51埃,表明发生了吸附和共沉淀,并且相对于pH 7.3出现了更大的共沉淀级分,这与LC-XANES结果一致。我们提出,与pH共沉淀的金属部分的差异可能与吸附的Pb抑制Ca和CO3种类的近表面动态交换的能力有关,这决定了步长的前进和后退。由于较低的部分吸附,在pH 9.4下对步进运动的抑制效果较差,加上最高的动态交换速率,导致在此pH下有很大一部分共沉淀Pb。在低pH值下,尽管分数吸附也很低,但较低的交换速率会阻止显着的共沉淀。在pH 8.2下,与pH 7.3和9.4相比,由于较高的部分吸附和较低的交换速率而导致的表面过程的有效抑制,使得可检测不到的共沉淀。其他因素,例如表面形态的变化以及Pb-Ca固溶体随pH的变化,也可能起作用。总体而言,这项研究为pH对Pb吸附机理的影响提供了证据,并解决了钙在钙体系中固定化效率的问题。版权所有(c)2005 Elsevier Ltd.

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