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钙和磷酸盐对亚砷酸盐和砷酸盐吸附到针铁矿的 pH 依赖性的影响。

Influence of calcium and phosphate on pH dependency of arsenite and arsenate adsorption to goethite.

机构信息

Agro-Environmental Protection Institute, Ministry of Agriculture, Tianjin 300191, China.

Agro-Environmental Protection Institute, Ministry of Agriculture, Tianjin 300191, China; College of Natural Resources & Environment, South China Agricultural University, Guangzhou 510642, China.

出版信息

Chemosphere. 2018 May;199:617-624. doi: 10.1016/j.chemosphere.2018.02.018. Epub 2018 Feb 7.

Abstract

In the environment, simultaneous presence of arsenic (As) of different oxidation states is common, which hampers our understanding of As behavior. In the current study, the pH dependency of arsenite (As(III)) and arsenate (As(V)) adsorption to goethite under the influence of calcium (Ca) (as a major cation) and phosphate (PO) (as a major anion) was studied, and the reliability of the CD-MUSIC model prediction was tested. The results show that the presence of the major ions led in general to a weaker and more complicated pH dependency of As adsorption. Calcium promoted As(V) adsorption especially at high pH, which can reverse the direction of the pH dependency. The presence of Ca can even decrease As(III) adsorption when As(V) and/or PO are present. Phosphate competed strongly with both As(III) and As(V) in their adsorption, especially at intermediate and low pH. In the multi-component system, As(III) adsorbs weaker than As(V) over the environmental relevant pH range, therefore it is often the dominant As species in solution and soluble As(III) concentration generally decreases with increasing pH. In the same pH range, As(V) adsorption shows a complicated pH dependency. Soluble As(V) reaches a minimum around pH 6 at high concentration of major bivalent cations (e.g. Ca), whereas soluble As(V) will decrease with pH at low bivalent cation concentrations. The experimental results can be reliably predicted and explained with the CD-MUSIC model. The outcome of this study can provide understanding needed in the risk assessment and remediation of As contaminated soils and water.

摘要

在环境中,砷(As)的不同氧化态同时存在是很常见的,这阻碍了我们对 As 行为的理解。在本研究中,研究了钙(Ca)(作为主要阳离子)和磷酸盐(PO)(作为主要阴离子)存在下,针铁矿对亚砷酸盐(As(III))和砷酸盐(As(V))吸附的 pH 值依赖性,并测试了 CD-MUSIC 模型预测的可靠性。结果表明,主要离子的存在通常导致 As 吸附的 pH 值依赖性减弱且更复杂。钙尤其在高 pH 值下促进了 As(V)的吸附,这可以改变 pH 值依赖性的方向。当 As(V)和/或 PO 存在时,Ca 的存在甚至可以降低 As(III)的吸附。磷酸盐在其吸附过程中与 As(III)和 As(V)都强烈竞争,特别是在中低 pH 值下。在多组分体系中,As(III)在环境相关的 pH 范围内吸附强度弱于 As(V),因此通常是溶液中主要的 As 物种,并且随着 pH 值的升高,可溶性 As(III)浓度通常会降低。在相同的 pH 值范围内,As(V)的吸附表现出复杂的 pH 值依赖性。在高浓度的二价阳离子(例如 Ca)存在下,可溶性 As(V)在 pH 值约为 6 时达到最小值,而在低二价阳离子浓度下,可溶性 As(V)会随 pH 值降低而降低。实验结果可以用 CD-MUSIC 模型可靠地预测和解释。这项研究的结果可以为评估和修复受 As 污染的土壤和水的风险提供必要的理解。

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