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首页> 外文期刊>Journal of Colloid and Interface Science >Sludge based micro-electrolysis filler for removing tetracycline from solution
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Sludge based micro-electrolysis filler for removing tetracycline from solution

机译:基于污泥的微电解填料,用于从溶液中去除四环素

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摘要

In this study, a novel catalytic micro-electrolysis filler (CMEF) was prepared using waste sludge as the main raw materials. The preparation process was optimized in terms of the mass ratio of raw materials and sintering temperature based on the tetracyclines (TCs) removal efficiency. The physicochemical characteristics (e.g., surface area, morphology features, function groups, and valence state of Fe) of the prepared CMEF were determined. Finally, the removing performance and mechanism of CMEF were discussed by removing TCs from solution. The results showed that the optimum conditions for CMEF preparation were a sintering temperature of 1050 degrees C, and the mass ration for sludge:clay:Fe powder of 3:2:2. The CMEF exhibited a high degradation capacity for TCs with a removal rate up to 99.9% in 2.5 h, and the removal kinetics fit well with a pseudo-second-order model. Introducing Fe into the CMEF significantly promoted TCs removal, comparing to the removal of TCs by sludge based ceramic (without addition of iron). This study provides a novel cost-effective CMEF based on sludge, and is also of significance for co-friend recycling of waste sludge. (C) 2018 Elsevier Inc. All rights reserved.
机译:在该研究中,使用废污泥作为主要原料制备一种新型催化微电解填料(CMEF)。基于四环素(TCS)去除效率,根据原料和烧结温度的质量比优化制备方法。确定了制备的CMEF的物理化学特性(例如,表面积,形态,形态学特征,功能组和价级)。最后,通过从解决方案中移除TCS来讨论去除CMEF的性能和机制。结果表明,CMEF制剂的最佳条件为1050℃的烧结温度,以及污泥的质量配量:粘土:Fe粉末为3:2:2。 CMEF在2.5小时内表现出高达99.9%的TCS的高降解能力,并且去除动力学与伪二阶模型相适合。将Fe引入CMEF明显促进TCS去除,与污泥的陶瓷除去TCS(无需加入铁)。本研究提供了一种基于污泥的新型成本效益的CMEF,对副朋友的垃圾污泥的回收也具有重要意义。 (c)2018 Elsevier Inc.保留所有权利。

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