张文, 田承涛, 翁孝卿, 李洪强, 何东升, 罗惠华. 矿物解离分析系统在磷石膏工艺矿物学研究中的应用[J]. 矿产综合利用, 2022, (1): 236-242.
    引用本文: 张文, 田承涛, 翁孝卿, 李洪强, 何东升, 罗惠华. 矿物解离分析系统在磷石膏工艺矿物学研究中的应用[J]. 矿产综合利用, 2022, (1): 236-242.
    Zhang Wen, Tian Chengtao, Weng Xiaoqing, Li Hongqiang, He Dongsheng, Luo Huihua. Research on the Process Mineralogy of Phosphogypsum Using Mineral Liberation Analysis System[J]. Multipurpose Utilization of Mineral Resources, 2022, (1): 236-242.
    Citation: Zhang Wen, Tian Chengtao, Weng Xiaoqing, Li Hongqiang, He Dongsheng, Luo Huihua. Research on the Process Mineralogy of Phosphogypsum Using Mineral Liberation Analysis System[J]. Multipurpose Utilization of Mineral Resources, 2022, (1): 236-242.

    矿物解离分析系统在磷石膏工艺矿物学研究中的应用

    Research on the Process Mineralogy of Phosphogypsum Using Mineral Liberation Analysis System

    • 摘要: 首次采用矿物解离分析系统(MLA),对湖北某工业磷石膏的化学组成、矿物组成、主要矿物颗粒形貌与嵌部特征、矿物解离度、有害元素赋存状态等方面进行了系统的工艺矿物学的探索研究,为磷石膏的资源化利用提供参考。研究表明:该磷石膏中,含量最高的为氧、钙、硫和硅元素,若要提高样品的白度,需要去除磷石膏中的致色杂质元素铁、钛。该磷石膏中矿物组成比较简单,石膏矿物含量满足GB/T 23456-2009 《磷石膏》中一级磷石膏的标准(≥85%),其次含有少量的石英、钾长石、绿泥石、含铁铝硅酸盐、褐铁矿和黄铁矿等矿物。该磷石膏中的杂质磷主要分布在磷灰石和五氧化二磷中,深度脱磷需要水洗与酸洗相结合。

       

      Abstract: For the first time, process mineralogy including the chemical composition, mineral composition, main mineral particle morphology and embedded features, mineral dissociation analysis, and the occurrence status of harmful elements of an industrial phosphogypsum from Hubei provence was conducted using the mineral liberation analysis (MLA). The results provides a theoretical basis for the purification of phosphogypsum and impurity removal. It shows that the industrial phosphogypsum is mainly consist of oxygen, calcium, sulfur, and silicon. To improve the whiteness of the phosphogypsum, the coloring impurities elementsincluding iron, titaniumneed to be removed. The mineral composition of this phosphogypsum is relatively simple, and the content of gypsum mineral meets the standard of first-level phosphogypsum (≥85%) in GB/T 23456-2009 "Phosphogypsum", followed by a small amount of quartz, potassium feldspar, chlorite, iron-containing aluminosilicate, limonite and pyrite, etc. The impurity phosphorus in the phosphogypsum is mainly distributed in apatite and phosphorus pentoxide, and deep dephosphorization process requires water washing combined with pickling.

       

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