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Feasibility test of waste oyster shell powder for water treatment

机译:牡蛎壳粉处理水的可行性试验

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摘要

In Korea, the huge amounts of abandoned oyster shells have caused problems including their noxious odor and illegal dumping into the sea. It is an urgent requirement, therefore, to find environmentally safe and profitable uses for waste oyster shells. Although organic and inorganic pollutant removal and biodiesel production by oyster shell powder (OSP) have been reporting recently, its utilization for water-treatment purposes still remains highly blooming to be explored. In the present study, we evaluated methylene blue (MB) removal by OSP in the bath mode, which showed a 2.0 mg/g removal capacity according to the Langmuir equation and pseudo-first-order kinetics. In continuous one-dimensional column tests, two modes, namely OSP-layer deposition on top of and OSP-encapsulated agarose gel packing in the column, were compared in their different MB-removal mechanisms and removal capacities. In the OSP agarose gel packing, the breakthrough curves were delayed compared with the case of only-OSP-layer deposition, resulting in a significantly enhanced MB-removal capacity. Further, carbon nanodots-entrapped OSP agarose gel was colorimetrically detected for the existence of Mn2+ or Fe3+ ions. As for the bacterial growth effect with OSP adsorbed with MB (OSP-MB), it showed no or little toxicity. Thus, technically, OSP can have potential with unique metal oxides for degradation of organic matter and for killing of pathogens in future advanced water treatment applications. (C) 2016 The Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:在韩国,大量废弃的牡蛎壳引起了包括臭味和非法倾倒入海在内的问题。因此,迫切需要找到牡蛎壳废料的环境安全和有利可图的用途。尽管最近有报道称牡蛎壳粉(OSP)去除有机和无机污染物以及生产生物柴油,但是其在水处理方面的利用仍处于高度发展的阶段。在本研究中,我们评估了在浴模式下OSP去除亚甲基蓝(MB)的能力,根据Langmuir方程和拟一级动力学,其去除能力为2.0 mg / g。在连续的一维色谱柱测试中,比较了两种模式,即在色谱柱顶部的OSP层沉积和色谱柱中OSP封装的琼脂糖凝胶填料的两种模式,它们具有不同的MB去除机理和去除能力。与仅OSP层沉积的情况相比,在OSP琼脂糖凝胶包装中,穿透曲线被延迟,从而显着提高了MB去除能力。此外,用比色法检测到碳纳米点包裹的OSP琼脂糖凝胶中Mn2 +或Fe3 +离子的存在。至于用MB吸附的OSP(OSP-MB)对细菌的生长作用,显示无毒性或毒性很小。因此,从技术上讲,OSP在独特的金属氧化物中具有潜在的潜力,可在未来的高级水处理应用中降解有机物并杀死病原体。 (C)2016化学工程师学会。由Elsevier B.V.发布。保留所有权利。

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