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酸和磷酸盐对磷石膏基水泥回填工艺中砷固化的影响。

Effects of acid and phosphate on arsenic solidification in a phosphogypsum-based cement backfill process.

作者信息

Yin Tubing, Yang Rushi, Du Jing, Shi Ying

机构信息

School of Resources and Safety Engineering, Central South University Changsha Hunan 410083 China

出版信息

RSC Adv. 2019 Sep 6;9(48):28095-28101. doi: 10.1039/c9ra04624k. eCollection 2019 Sep 3.

Abstract

Phosphogypsum (PG) produced during phosphoric acid production contains significant amounts of arsenic and can potentially cause adverse environmental and health effects. Cement backfill technology is an effective management technique that is used to store PG to prevent such problems. The goal of this paper is to study the influencing factors and mechanism of arsenic stabilization in a PG-based cement backfill process. First, a leaching toxicity test was conducted, which showed that the arsenic concentration in PG batches ranged from 129.1 μg L to 407.1 μg L, which were all far above the standard limit (10 μg L) set by GB/T 14848-93. In addition, the arsenic content was higher in samples with larger PG particles. Secondly, hydrogen and phosphate ions were added to the backfill to investigate how they influenced arsenic solidification, and the results indicated that phosphate ions, rather than hydrogen ions, delayed the arsenic solidification process. This suggests that controlling the soluble phosphate in PG will help reduce arsenic pollution during backfilling. A toxicity leaching test was carried out after backfill samples were cured for 28 d. All arsenic concentrations were below the standard limit, indicating that the cement backfill technology ensured the long-term solidification and stabilization of arsenic.

摘要

磷酸生产过程中产生的磷石膏(PG)含有大量砷,可能对环境和健康造成不利影响。水泥回填技术是一种用于储存磷石膏以防止此类问题的有效管理技术。本文的目的是研究基于磷石膏的水泥回填过程中砷稳定化的影响因素和机制。首先,进行了浸出毒性试验,结果表明,磷石膏批次中的砷浓度在129.1μg/L至407.1μg/L之间,均远高于GB/T 14848 - 93规定的标准限值(10μg/L)。此外,磷石膏颗粒较大的样品中砷含量更高。其次,向回填材料中添加氢离子和磷酸根离子,以研究它们如何影响砷的固化,结果表明,是磷酸根离子而非氢离子延缓了砷的固化过程。这表明控制磷石膏中的可溶性磷酸盐将有助于减少回填过程中的砷污染。回填样品养护28 d后进行了毒性浸出试验。所有砷浓度均低于标准限值,表明水泥回填技术确保了砷的长期固化和稳定。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d7a9/9071007/54d801cf10ef/c9ra04624k-f1.jpg

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