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首页> 外文期刊>Waste Disposal & Sustainable Energy >Leaching behavior of phosphorous compounds from sewage sludge ash based on quantitative X-ray diffraction analysis
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Leaching behavior of phosphorous compounds from sewage sludge ash based on quantitative X-ray diffraction analysis

机译:基于定量X射线衍射分析,从污水污泥灰分磷的浸出行为

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摘要

Phosphorus (P) is an essential and limited resource. Incineration sewage sludge ash (ISSA) contains a high amount of P, which can be recovered using chemical leaching methods. However, the recovery ratio depends on the speciation of P and the leaching conditions. In this study, hydrochloric acid was used as a leaching agent, and the effects of the hydrochloric acid concentration, leaching time, temperature, and liquid-solid ratio on the P leaching ratio were investigated. Furthermore, the co-leaching of macro-metals Ca, Al, Fe, and Mg was analyzed. The results showed that P leached rapidly within 30 min, where the leaching rate reached more than 80% and then gradually stabilized. The leaching concentrations of Ca and Mg had a significant correlation (correlation coefficient r2 >0.90), and both were leached completely. Al and P had similar leaching patterns, where the leaching rates increased initially and then decreased with time at 0.2 mol/L HC1. According to X-ray diffraction analysis and Rietveld refinement, the P in ISSA was mainly present in the forms of Mg3Ca3(PO4)4 and AlPO4. When leached using 0.2 mol/L HC1 at 55 °C with a liquid-to-solid ratio of 20 L/kg, the AlPO4 and Fe3(H2O)3(PO4)2 in ISSA dissolved initially and then precipitated on the surface of the solid phase, thereby impeding further P leaching.
机译:磷(P)是必不可少的和有限的资源。焚化污泥灰(ISSA)包含大量P,可以使用化学浸出方法回收。但是,恢复率取决于P和浸出条件的物种。在这项研究中,将盐酸用作浸出剂,并研究了盐酸浓度,浸出时间,温度和液化比对P浸出比的影响。此外,分析了宏观金属CA,AL,FE和MG的共延伸。结果表明,P在30分钟内迅速浸出,浸出率达到80%以上,然后逐渐稳定。 Ca和Mg的浸出浓度具有显着的相关性(相关系数R2> 0.90),并且两者都完全浸出。 AL和P具有相似的浸出模式,其中浸出速率最初增加,然后在0.2 mol/L HC1时随时间降低。根据X射线衍射分析和Rietveld改进,ISSA中的P主要以MG3CA3(PO4)4和Alpo4的形式存在。当使用0.2 mol/L HC1在55°C下以20 l/kg为20 l/kg的0.2 mol/L HC1浸出时,Alpo4和Fe3(H2O)3(PO4)2(po4)2(po4)2最初溶解,然后沉淀在固相,从而阻碍了进一步的浸出。

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