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使用合成菱铁矿去除水溶液中的砷酸盐。

Arsenate removal from aqueous solution using synthetic siderite.

机构信息

School of Water Resources and Environment, China University of Geosciences, Beijing 100083, China. hm

出版信息

J Hazard Mater. 2010 Apr 15;176(1-3):174-80. doi: 10.1016/j.jhazmat.2009.11.009. Epub 2009 Nov 10.

Abstract

The study was carried out to evaluate the feasibility of synthetic siderite for As(V) removal from aqueous solution. Batch experiments were performed to investigate effects of various experimental parameters such as contact time (10 min-8 h), initial As(V) concentration (0.5-60.0 mg/L), temperature (15, 25, 35 and 45 degrees C), pH (2.0-10.0) and the presence of competing anions on As(V) adsorption on the synthetic siderite. Kinetic data reveal that the uptake rate of As(V) was rapid at the beginning and 90% adsorption was completed within 10 min at 45 degrees C and equilibrium was achieved within 3 h. The adsorption process was well described by pseudo-second-order kinetics model. The adsorption data better fitted Langmuir isotherm at low temperatures (i.e., 15 and 25 degrees C), while Freundlich isotherm at relatively high temperatures (35-45 degrees C). The maximum adsorption capacity calculated from Langmuir isotherm model was up to 31 mg/g. Thermodynamic study indicates an exothermic nature of adsorption and a spontaneous and favorable process. The optimum pH for As(V) removal was broad, ranging from 3.0 to 10.0. The As(V) adsorption was impeded by the presence of SiO(3)(2-), followed by PO(4)(3-) and NO(3)(-). The adsorption process appeared to be controlled by the chemical process. The high As uptake may attribute to both coprecipitation of As with goethite and lepidocrocite forming during the reaction and subsequent adsorption of As on these minerals.

摘要

本研究旨在评估合成菱铁矿去除水溶液中砷(V)的可行性。通过批量实验研究了接触时间(10 分钟至 8 小时)、初始砷(V)浓度(0.5-60.0mg/L)、温度(15、25、35 和 45°C)、pH 值(2.0-10.0)以及共存阴离子对合成菱铁矿吸附砷(V)的影响。动力学数据表明,砷(V)的吸附速率在开始时很快,在 45°C 下 10 分钟内完成了 90%的吸附,在 3 小时内达到平衡。吸附过程较好地符合拟二级动力学模型。在较低温度(即 15 和 25°C)下,吸附数据更符合 Langmuir 等温线,而在较高温度(35-45°C)下更符合 Freundlich 等温线。从 Langmuir 等温线模型计算出的最大吸附容量高达 31mg/g。热力学研究表明吸附是放热的,是自发和有利的过程。最佳的砷(V)去除 pH 值范围较宽,从 3.0 到 10.0。存在 SiO(3)(2-)、PO(4)(3-)和 NO(3)(-)会阻碍砷(V)的吸附。吸附过程似乎受化学过程控制。高砷去除率可能归因于反应过程中砷与针铁矿和纤铁矿共沉淀,以及随后砷在这些矿物上的吸附。

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