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- Title
Treating waste with waste: adsorption behavior and mechanism of phosphate in water by modified phosphogypsum biochar.
- Authors
Shan, Li-li; Wang, Ruo-shan; Lai, Hai-tao; Zhu, Ze-bing; Chen, Yu; Ni, Zhu-ye; Pang, Chang-long; Zhang, Qiu-zhuo
- Abstract
The use of green methods to treat industrial waste and waste reuse has become a key environmental issue. In order to achieve this goal, this study treated waste phosphogypsum (PG) and produced modified PG biochar to adsorb and remove phosphorus from PG leachate, so that the PG pollution problem was controlled. In this study, PG was modified with sodium carbonate (Na2CO3) to prepare a modified PG biochar that was used for the removal of phosphorus-containing wastewater. An X-ray diffraction (XRD) analysis of the modified PG revealed that the main component was calcium carbonate (CaCO3), and a suitable amount of modified PG could load calcium oxide (CaO) onto the biochar and improve its physical properties. The experimental results showed that the modified PG biochar had a maximum phosphorus adsorption capacity of 132 mg/g. A further investigation of the mechanism of adsorption revealed the importance of electrostatic attraction and chemical precipitation, and it was found that the CaO in the modified PG biochar could effectively facilitate the conversion of phosphate to hydroxylapatite (Ca5(PO4)3OH) in water. The phosphorus removal rate from leachate obtained from a landfill containing PG was 99.38% for a specific dose of the modified PG biochar. In this study, a PG pollution control technology was developed to realize the goal of replacing waste with waste.
- Subjects
PHOSPHATE removal (Sewage purification); INDUSTRIAL wastes; WASTE recycling; LIME (Minerals); POLYWATER; GYPSUM; BIOCHAR
- Publication
Environmental Science & Pollution Research, 2024, Vol 31, Issue 38, p50411
- ISSN
0944-1344
- Publication type
Article
- DOI
10.1007/s11356-024-34272-z