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首页> 外文期刊>Journal of industrial and engineering chemistry >Heat-treated biochar impregnated with zero-valent iron nanoparticles for organic contaminants removal from aqueous phase: Material characterizations and kinetic studies
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Heat-treated biochar impregnated with zero-valent iron nanoparticles for organic contaminants removal from aqueous phase: Material characterizations and kinetic studies

机译:浸渍有零价铁纳米粒子的热处理的生物炭用于从水相中去除有机污染物:材料表征和动力学研究

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Biochar (BC) is an inexpensive and widely available carbon-based material with a variety of applications. Zero valent iron nanoparticles (nZVI), on the other hand, are highly reactive species. However, agglomeration and difficulty of separation from the treated media are the major reported drawbacks associated with nZVI application for water treatment. In this study, BC was modified by a simple heat treatment, producing hydrophilic heat-treated biochar (HBC) with enhanced absorptive features, and was impregnated with nZVI, producing BC/nZVI composite for efficient organic contaminant removal. Synthesis conditions of BC/nZVI composite were optimized by evaluating p-nitrosodimethylaniline (pNDA) bleaching efficiency of various BC/nZVI samples synthesized under different conditions of pH, ultrasonication amplitude, and iron concentration. Variously-synthesized HBCs were then used to synthesize HBC/nZVI composites, and were characterized for surface morphology, surface chemistry, and elemental composition. The best-performing HBC/nZVI for pNDA bleaching was then used for trichloroethylene (TCE) removal from water. Using HBC/nZVI or BC/nZVI composites, the pseudo second order model fit indicated a chemisorption mechanism for organic contaminants removal. Using 250 mg L-1 of the best-performing HBC/nZVI, an 88% TCE reduction (initial concentration of 40 mu g L-1) was achieved after 20 min at pH = 3.0, with a rate of 3.318 g mg(-1) min(-1). (C) 2019 The Korean Society of Industrial and Engineering Chemistry. Published by Elsevier B.V. All rights reserved.
机译:BioChar(BC)是一种廉价且广泛的碳基材料,具有各种应用。另一方面,零价铁纳米粒子(NZVI)是高度反应性物种。然而,从处理过的培养基中分离的聚集和难以是与水处理NZVI应用相关的主要报告的缺点。在本研究中,通过简单的热处理改性BC,产生具有增强吸收特征的亲水性热处理的生物炭(HBC),并用NZVI浸渍,产生BC / NZVI复合材料,以高效的有机污染物去除。通过评价在pH,超声幅度和铁浓度的不同条件下合成的各种BC / NZVI样品的P-硝基氧二甲基胺(PNDA)漂白效率来优化BC / NZVI复合物的合成条件。然后用于合成HBc / NZVI复合材料的各种合成的HBC,其特征在于表面形态,表面化学和元素组合物。然后将PNDA漂白的最佳HBC / NZVI用于从水中除去三氯乙烯(TCE)。使用HBC / NZVI或BC / NZVI复合材料,伪二阶模型配合表明了用于去除有机污染物的化学吸附机制。使用250mg L-1的最佳性能HBC / NZVI,在pH = 3.0的20分钟后,在20分钟后实现88%的TCE降低(初始浓度为40μgl-1),其速率为3.318g mg( - 1)min(-1)。 (c)2019年韩国工程化学学会。 elsevier b.v出版。保留所有权利。

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