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砷酸盐在未处理的白云石粉末上的吸附作用。

Adsorption of arsenate on untreated dolomite powder.

作者信息

Ayoub G M, Mehawej M

机构信息

Faculty of Engineering and Architecture, American University of Beirut, P.O. Box 11-0236, Beirut, Lebanon.

出版信息

J Hazard Mater. 2007 Sep 5;148(1-2):259-66. doi: 10.1016/j.jhazmat.2007.02.011. Epub 2007 Feb 14.

Abstract

Raw dolomite powder was evaluated for its efficiency in adsorbing As(V) from water. An experimental setup comprised of a fluidized dolomite powder bed was used to assess the impact of various test variables on the efficiency of removal of As(V). Test influents including distilled water (DW), synthetic groundwater (SGW) and filtered sewage effluent (FSE) were employed to assess the effect of influent parameters on the adsorption process and the quality of the effluent generated. Dolomite exhibited good As(V) removal levels for distilled water (>92%) and synthetic ground water (>84%) influents at all initial As(V) concentrations tested (0.055-0.600 ppm). Breakthrough of dolomite bed occurred after 45 bed volumes for DW and 20 bed volumes for SGW influents with complete breakthrough taking place at more than 300 bed volumes. As(V) removal from FSE influents was relatively unsuccessful as compared to the DW and SGW influents. Partial removal in the order of 32% from filtered sewage effluent at initial concentration of 0.6 mg/L started at 75 bed volumes and gradually stopped at 165 bed volumes. Varying degrees of As(V) adsorption capacities were observed by the different test influents employed, which indicate that the adsorption of As(V) is adversely affected by competing species, mainly sulfates and phosphates present in the influent. The adsorptive behavior of dolomite was described by fitting data generated from the study into the Langmuir and Freundlich isotherm models. Both models described well the adsorption of dolomite. The average isotherm adsorptive capacity was determined at 5.02 mug/g. Regeneration of the dolomite bed can be achieved with the use of caustic soda solution at a pH of 10.5.

摘要

对生白云石粉末吸附水中五价砷(As(V))的效率进行了评估。使用由流化白云石粉末床组成的实验装置来评估各种测试变量对去除As(V)效率的影响。采用包括蒸馏水(DW)、合成地下水(SGW)和过滤后的污水(FSE)在内的测试进水来评估进水参数对吸附过程和产生的出水水质的影响。在所有测试的初始As(V)浓度(0.055 - 0.600 ppm)下,白云石对蒸馏水(>92%)和合成地下水(>84%)进水表现出良好的As(V)去除水平。对于DW进水,白云石床在45个床体积后出现穿透,对于SGW进水,在20个床体积后出现穿透,超过300个床体积时完全穿透。与DW和SGW进水相比,从FSE进水中去除As(V)相对不太成功。在初始浓度为0.6 mg/L时,从过滤后的污水中约32%的部分去除在75个床体积时开始,在165个床体积时逐渐停止。所采用的不同测试进水观察到不同程度的As(V)吸附容量,这表明As(V)的吸附受到竞争物质的不利影响,主要是进水中存在的硫酸盐和磷酸盐。通过将研究产生的数据拟合到朗缪尔和弗伦德利希等温线模型中来描述白云石的吸附行为。两个模型都很好地描述了白云石的吸附。平均等温线吸附容量确定为5.02 μg/g。白云石床可以使用pH值为10.5的氢氧化钠溶液进行再生。

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