4.7 Article

Existing form and distribution of fluorine and phosphorus in phosphate rock acid-insoluble residue

期刊

ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH
卷 29, 期 5, 页码 7758-7771

出版社

SPRINGER HEIDELBERG
DOI: 10.1007/s11356-021-16267-2

关键词

Acid-insoluble residue; Fluorine; Phosphorus; Existing form distribution

资金

  1. National Key R&D Program of China [2018YFC1900206]
  2. Guizhou Province Science and Technology Project Plan [(2017) 2892]
  3. Guizhou University Introduced Talents Research Project Contract [(2019) 70]

向作者/读者索取更多资源

The phosphorus-sulfur two-step production process was developed in the wet-process phosphoric acid industry as a solution to phosphogypsum pollution, but it results in the production of acid-insoluble residue as solid waste. This residue contains fluorine and phosphorus, impacting the potential uses of the residue. Fluorine and phosphorus are mainly distributed in clusters in the phosphate rock acid-insoluble residue.
The phosphorus-sulfur two-step production process was developed in the wet-process phosphoric acid industry to solve phosphogypsum pollution. However, phosphate rock acid-insoluble residue is produced during this process as a new type of solid waste, which had a high potential for recycling. For process reasons, this type of residue still contains a certain amount of fluorine and phosphorus, which has a massive impact on the potential uses of phosphate rock acid-insoluble residue. Therefore, X-ray photoelectron spectroscopy, Raman, electron probe spectroscopy, and scanning electron microscopy were used to examine the existing form and distribution of fluorine and phosphorus in phosphate rock acid-insoluble residue. The mass fraction of F and P2O5 were 9.407% and 11.862%, respectively. Fluorine existed mainly in the form of fluorite, fluorapatite and metal fluoride. Phosphorus existed mainly in the form of fluoroapatite, phosphate, hydrogen phosphate, and dihydrogen phosphate. The total phosphate, hydrogen phosphate and dihydrogen phosphate contents were much higher than that of fluoroapatite, whereas the fluoroapatite content was higher than that of fluorite and metal fluoride. Fluorine and phosphorus were distributed in the form of agglomerates in the phosphate rock acid-insoluble residue. Fluorine and phosphorus were partially correlated, showing a weak relationship in the high phosphorus area.

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