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首页> 外文期刊>Journal of Molecular Liquids >Removal of anionic pollutants from liquids by biomass materials: A review
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Removal of anionic pollutants from liquids by biomass materials: A review

机译:生物质材料去除液体中的阴离子污染物的评论

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摘要

The industrialization development has delivered a number of anionic species (nitrate, nitrite, cyanide, phosphate, perchiorate, and fluoride), as well as anionic metal complexes (chromate, arsenate/arsenite, vanadate and selenate/selenite) into ecosystems, which have received increasing concerns of environmental and human health risks. Increasing R&D emphasis has been placed on the development of cost-effective treatment technologies to remove these anionic pollutants. Among the advanced treatment technologies, sorption process has offered significant advantages like availability, profitability, simplicity in operation and efficiency. To exploit and use a low cost and high efficiency sorbent is the center of an industrial process. We present the current state of research on the preparation and utilization of biomaterials based activated carbons/anion exchange resins for removal of various anions. We report activation methods, especially recent chemical technologies to functionalize surface characteristics, specificity and selectivity of the biomass materials, and to enhance their sorption capacities and rates. The sorption as well as recovery capacities of the biomass sorbents studied in laboratory scale and pilot plant systems are summarized. It is evident that these biomaterials based sorbents have shown significantly low costs and comparable sorption capacities for various anions as those of commercial sorbents; this makes the biomaterials promising for the development of technically and economically feasible technology for removal anionic pollutants. (C) 2015 Elsevier B.V. All rights reserved.
机译:工业化的发展已将许多阴离子物质(硝酸盐,亚硝酸盐,氰化物,磷酸盐,高铁酸盐和氟化物)以及阴离子金属络合物(铬酸盐,砷酸盐/亚砷酸盐,钒酸盐和硒酸盐/硒酸盐)带入了生态系统,现已得到接受。人们越来越关注环境和人类健康风险。研发的重点越来越放在开发具有成本效益的处理技术上,以去除这些阴离子污染物。在先进的处理技术中,吸附工艺具有显着的优势,例如可用性,获利能力,操作简便性和效率。开发和使用低成本高效的吸附剂是工业过程的中心。我们目前在制备和利用基于生物材料的活性炭/阴离子交换树脂去除各种阴离子方面的研究现状。我们报告活化方法,特别是最近的化学技术,以功能化生物质材料的表面特征,特异性和选择性,并增强其吸附能力和速率。总结了在实验室规模和试验工厂系统中研究的生物质吸附剂的吸附和回收能力。显然,这些生物材料基吸附剂的成本低廉,对各种阴离子的吸附能力与商业吸附剂相当。这使得生物材料有望发展技术和经济上可行的去除阴离子污染物的技术。 (C)2015 Elsevier B.V.保留所有权利。

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