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首页> 外文期刊>Environmental Science and Pollution Research >Applying steel slag leachate as a reagent substantially enhances pH reduction efficiency for humidification treatment
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Applying steel slag leachate as a reagent substantially enhances pH reduction efficiency for humidification treatment

机译:作为试剂施加钢渣渗滤液,大大提高了加湿处理的pH降低效率

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摘要

A cost-effective, easy-to-implement, and sustainable approach is needed to mitigate the production of alkaline leachate from steel slags that are reused or disposed in the environment. To address this issue, a humidification treatment process, which is operated by wetting a stack of steel slag using aqueous reagents and letting atmospheric CO_2 to be passively diffused into the slag pores to induce slag carbonari on reaction, was previously developed. In this study, we demonstrate that the leachate of raw steel slag can be recycled and used as a humidification reagent to substantially enhance the treatment efficiency as well as to enable operating the process with neither synthetic chemical consumption nor wastewater discharge. In a 24-h study, a 0.61 -unit reduction in slag pH is achieved using a raw slag leachate as a reagent, which is substantially greater than a 0.28-unit reduction using deionized water. The net amount of CaCO_3 produced during an extended humidification duration of 4 weeks is increased by 2.7-fold when the leachate is used instead of deionized water. A series of systematically designed experiments demonstrates that the pH (11.0) and ionic strength (0.0048) are the two major characteristics of the raw slag leachate that contribute to the enhanced efficiency of humidification treatment. With further demonstration at larger scales in follow-up studies, the novel humidification process that utilizes the leachate generated on-site as a reagent is expected to be a feasible alternative for alkali waste treatment prior to its reuse or disposal.
机译:需要具有成本效益,易于实施和可持续的方法来减轻从重复使用或设置在环境中的钢渣生产碱性渗滤液。为了解决这个问题,通过使用含水试剂润湿一堆钢渣并使大气CO_2被动地扩散到炉渣孔中以进行加湿处理过程以在反应中诱导渣中的炉渣孔中。在这项研究中,我们证明了原料钢渣的渗滤液可以再循环并用作加湿试剂,以显着提高治疗效率,并且能够通过合成化学品消耗和废水排放来进行操作。在24小时的研究中,使用原料熔渣渗滤液作为试剂的0.61·单次减少,其基本上大于使用去离子水的0.28单元减少。在使用渗滤液代替去离子水时,在4周的延长加湿持续时间内产生的CaCO_3的净量增加2.7倍。一系列系统设计的实验表明pH(11.0)和离子强度(0.0048)是原料矿泉液的两个主要特征,有助于提高加湿处理效率。随着在后续研究方面的较大规模的进一步证明,利用现场产生的渗滤液作为试剂的新型加湿过程预计将是在重用或处理之前的碱废物处理的可行替代方案。

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