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Carbon-cryogel hierarchical composites as effective and scalable filters for removal of trace organic pollutants from water

机译:碳-冰凝胶分层复合材料可作为有效和可扩展的过滤器,用于去除水中的痕量有机污染物

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摘要

Effective technologies are required to remove organic micropollutants from large fluid volumes to overcome present and future challenges in water and effluent treatment. A novel hierarchical composite filter material for rapid and effective removal of polar organic contaminants from water was developed. The composite is fabricated from phenolic resin-derived carbon microbeads with controllable porous structure and specific surface area embedded in a monolithic, flow permeable, poly(vinyl alcohol) cry- ogel. The bead-embedded monolithic composite filter retains the bulk of the high adsorptive capacity of the carbon microbeads while improving pore diffusion rates of organic pollutants. Water spiked with organic contaminants, both at environmentally relevant concentrations and at high levels of contami- nation, was used to determine the purification limits of the filter. Flow through tests using water spiked with the pesticides atrazine (32 mg/L) and malathion (16 mg/L) indicated maximum adsorptive capac- ities of 641 and 591 mg pollutant/g carbon, respectively. Over 400 bed volumes of water contaminated with 32 mg atrazine/L, and over 27,400 bed volumes of water contaminated with 2 mg atrazine/L, were treated before pesticide guideline values of 0.1 mg/L were exceeded. High adsorptive capacity was maintained when using water with high total organic carbon (TOC) levels and high salinity. The toxicity of water filtrates was tested in vitro with human epithelial cells with no evidence of cytotoxicity afterinitial washing.
机译:需要有效的技术来从大量流体中去除有机微量污染物,以克服目前和未来在水和废水处理方面的挑战。开发了一种新型的分层复合过滤材料,可从水中快速有效地去除极性有机污染物。该复合材料是由酚醛树脂衍生的碳微珠制成的,该微珠具有可控的多孔结构,并且特定的表面积嵌入单片,可渗透液体的聚乙烯醇冰冻凝胶中。嵌入珠子的整体式过滤器保留了碳微珠的大部分高吸附能力,同时提高了有机污染物的孔隙扩散率。用与环境有关的浓度和高污染水平的有机污染物加标的水来确定过滤器的净化极限。使用掺有农药r去津(32 mg / L)和马拉硫磷(16 mg / L)的水进行的流通测试表明,最大吸附容量分别为641和591 mg污染物/克碳。在超过0.1 mg / L的农药指导值之前,处理了超过400床体积的被32 mg阿特拉津/ L污染的水和超过27,400床体积的被2 mg阿特拉津/ L污染的水。当使用具有高总有机碳(TOC)水平和高盐度的水时,可保持高吸附能力。水滤液的毒性在体外用人上皮细胞进行了测试,最初洗涤后没有细胞毒性的证据。

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