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首页> 外文期刊>Journal of Cleaner Production >Utilization of waste natural fishbone for heavy metal stabilization in municipal solid waste incineration fly ash
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Utilization of waste natural fishbone for heavy metal stabilization in municipal solid waste incineration fly ash

机译:利用废天然鱼骨稳定城市垃圾焚烧飞灰中的重金属

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Waste fishbone that is a rich source of hydroxyapatite (HAP) was investigated for the stabilization of heavy metals (mainly Pb) in municipal solid waste incineration (MSWI) fly ash, which has not been particularly studied to date. In the present study, the original status of fishbone and fly ash was preserved. The stabilization was initially conducted during a leaching process (Scenario A). Greater doses of fishbone and longer contact times benefited the stabilization in this scenario, and the highest Pb stabilization efficiency reached 59.31% after a 72 h-leaching process at fishbone dose of 100% (w/w). The abundant supply of Pb relative to fishbone HAP might affect the efficient stabilization. Therefore, the influence of liquid/solid (L/S) was examined for improving the stabilization under a settling condition (Scenario B). Lower L/S conditions were beneficial to the stabilization, and the highest Pb stabilization efficiency achieved was 66.35% at L/S of 1 mL/g for 24 h of settling when fishbone dose was 50% (w/w). Additionally, as the second most leachable metal, Zn was also considerably stabilized at L/S 1.5 mL/g (solid-like conditions) in Scenario B. Cu in the leachates of both scenarios increased in the presence of fishbone. The facilitation of Cu release undesirably hindered Pb stabilization; however, this impediment presumably occurred during the leaching process rather than settling period. The solid-like condition was found to be more favorable for using fishbone HAP on the stabilization of heavy metals in fly ash. L/S and settling period were identified as the critical factors for the efficient stabilization of Pb and Zn, respectively. It is suggested that this technique not only helps treat MSWI fly ash in a low-cost and environmental-friendly approach, but also helps reduce the problems associated with waste fishbone disposal. (C) 2017 Elsevier Ltd. All rights reserved.
机译:为了在市政固体废物焚烧(MSWI)粉煤灰中重金属(主要是Pb)的稳定化,已对富含羟基磷灰石(HAP)的废鱼骨进行了研究,迄今为止尚未进行专门研究。在本研究中,鱼骨和粉煤灰的原始状态得以保留。最初在浸出过程中进行稳定化(方案A)。在这种情况下,更大剂量的鱼骨和更长的接触时间有益于稳定,在100%(w / w)的鱼骨剂量下经过72 h浸出过程,最高的Pb稳定效率达到59.31%。铅相对于鱼骨HAP的大量供应可能会影响有效稳定。因此,研究了液/固(L / S)的影响,以改善沉降条件下的稳定性(方案B)。较低的L / S条件有利于稳定,当鱼骨剂量为50%(w / w)时,在1 mL / g的L / S沉降24 h时,实现的最高Pb稳定效率为66.35%。此外,作为第二种最易浸出的金属,场景B中的Zn也稳定在L / S <1.5 mL / g(类固体条件)下。两种情况下的浸出液中的铜在鱼骨的存在下均会增加。铜释放的促进不希望地阻碍了铅的稳定;但是,该障碍可能发生在浸出过程中,而不是沉降期间。发现固体状条件对于使用鱼骨HAP稳定粉煤灰中的重金属更为有利。 L / S和稳定期分别被确定为有效稳定Pb和Zn的关键因素。建议该技术不仅有助于以低成本和环境友好的方式处理MSWI粉煤灰,而且还有助于减少与废弃鱼骨处理相关的问题。 (C)2017 Elsevier Ltd.保留所有权利。

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