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采用 pH 依赖分离过程对磷石膏进行分步纯化。

Staged purification of phosphogypsum using pH-dependent separation process.

机构信息

Chemical and Biochemical Sciences, Green Process Engineering (CBS.GPE), Mohammed VI Polytechnic University (UM6P), 43150, Ben Guerir, Morocco.

Institut de Chimie de Nice (ICN), UMR CNRS 7272, Université Côte d'Azur, F06108, Nice, France.

出版信息

Environ Sci Pollut Res Int. 2024 Feb;31(7):9920-9934. doi: 10.1007/s11356-023-26199-8. Epub 2023 Mar 30.

Abstract

Phosphogypsum (PG) is an industrial by-product of the transformation of phosphate rocks. For decades, PG has been a source of environmental concern due to the massive amount produced thus far, i.e., 7 billion tons, with a current production rate of 200-280 million tons per year. Phosphate minerals contain various impurities that precipitate and concentrate within PG. These impurities hinder PG usability in various sectors. This paper aims to purify PG using an innovative process based on staged valorization of PG. Initially, PG dissociation by ethylenediaminetetraacetic acid (EDTA) was optimized. After screening of different parameters and monitoring the ionic conductivity of solutions, it was disclosed that a pH-dependent solubilization process in the presence of EDTA resulted in high solubility of PG, up to 11.82 g/100 mL at pH > 11. Subsequently, a recovery of the purified PG by selective precipitation of calcium sulfate dihydrate (CSD) from obtained filtrate through pH adjustment to 3.5 were investigated. An abatement of 99.34% Cr, 97.15% Cd, 95.73% PO, 92.75% Cu, 92.38% AlO, 91.16% Ni, 74.58% Zn, 72.75% F, 61.43% MgO, 58.8% FeO, 56.97% KO, and 55.41% Ba was achieved. The process relied on the variation of EDTA chelation properties towards monovalent, divalent, and trivalent cations at different pHs. According to the findings of this study, a staged purification process in the presence of EDTA is an effective method for removing impurities from the industrial PG.

摘要

磷石膏 (PG) 是磷矿石转化的工业副产品。几十年来,由于迄今为止已生产了 70 亿吨磷石膏,且目前的产量为每年 2 亿至 2.8 亿吨,因此磷石膏已成为环境关注的一个来源。磷矿矿物含有各种杂质,在磷石膏中沉淀和浓缩。这些杂质阻碍了磷石膏在各个领域的使用。本文旨在使用基于磷石膏分阶段增值的创新工艺对磷石膏进行纯化。首先,优化了乙二胺四乙酸 (EDTA) 对 PG 的解离。在筛选不同参数并监测溶液的离子电导率之后,发现 EDTA 存在下的 pH 依赖性溶解过程导致 PG 的高溶解度,在 pH>11 时高达 11.82 g/100 mL。随后,通过将获得的滤液的 pH 值调节至 3.5 以选择性沉淀二水硫酸钙 (CSD),研究了从所得滤液中回收纯化的 PG。实现了 99.34%Cr、97.15%Cd、95.73%PO、92.75%Cu、92.38%AlO、91.16%Ni、74.58%Zn、72.75%F、61.43%MgO、58.8%FeO、56.97%KO 和 55.41%Ba 的去除率。该过程依赖于 EDTA 在不同 pH 值下对单价、二价和三价阳离子的螯合特性的变化。根据本研究的结果,在 EDTA 存在下的分阶段纯化过程是从工业 PG 中去除杂质的有效方法。

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