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首页> 外文期刊>Journal of the European Ceramic Society >Immobilization of tannery industrial sludge in ceramic membrane preparation and hydrophobic surface modification for application in atrazine remediation from water
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Immobilization of tannery industrial sludge in ceramic membrane preparation and hydrophobic surface modification for application in atrazine remediation from water

机译:固定在陶瓷膜制备中的制革工业污泥和疏水表面改性,在水中的水中施用中的应用

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Chromium laden waste produced from tannery industry was immobilized in ceramic matrix for fabrication of the tubular single channel microfiltration membranes by extrusion. The presence of chromia resulted in substitutional solid solution formation with alumina and catalyzed mullite phase growth, hence increasing the mechanical and chemical stability of the membranes. The structural, morphological and water permeation characteristics of the membranes were studied to analyze their formation mechanism and effect of different parameters, viz. the sintering temperature, amount of waste added, presence of organics and extent of chromium immobilization. The surface of the macroporous membrane was hydrophobically modified, by polydimethylsiloxane (PDMS), producing contact angle of 141 degrees. The process efficiency of the hydrophobic membrane was assessed in terms of the removal of atrazine, a contaminant of emerging concern, following the principle of hydrophobic interaction. Effect of different operating parameters affecting atrazine removal, viz. transmembrane pressure, cross flow velocity and filtration time was studied in cross flow filtration mode. High atrazine removal of >95% was obtained along with the maintenance of high flux during the filtration operation. The prepared cost-effective microfiltration membranes can thus be further modified for efficient water treatment applications.
机译:由制革工业生产的铬载废物在陶瓷基质中固定在陶瓷基质中,通过挤出制造管状单通道微滤膜。染色体的存在导致用氧化铝和催化的莫来石相生长形成取代固溶体,因此增加了膜的机械和化学稳定性。研究了膜的结构,形态和水渗透特性,分析了它们的形成机制和不同参数,viz的影响。烧结温度,加入废物量,有机物的存在和铬固定的程度。通过聚二甲基硅氧烷(PDMS)疏水改性大孔膜的表面,产生141度的接触角。在疏水相互作用原理之后,在除去阿特拉嗪的去除时,评估疏水膜的过程效率。不同操作参数影响阿特拉津去除,viz的影响。在交叉流动过滤模式下研究了跨膜压力,交叉流速和过滤时间。在过滤操作期间,获得高尿嘧啶的去除> 95%的高通量。因此,可以进一步修改制备的经济效率的微滤膜以用于有效的水处理应用。

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