Wang Su-Na, Cao Jia-Shun, Zhang Jia-Ling, Luo Jing-Yang, Ni Bing-Jie, Fang Fang
Key Laboratory of Integrated Regulation and Resource Development on Shallow Lakes, Ministry of Education, College of Environment, Hohai University, Nanjing, 210098, China.
Nanjing Institute of Environmental Sciences, Ministry of Ecology and Environment (MEE), Nanjing, 210042, PR China.
J Environ Manage. 2023 Apr 1;331:117324. doi: 10.1016/j.jenvman.2023.117324. Epub 2023 Jan 17.
Vivianite crystallization has been regarded as a suitable option for recovering phosphorus (P) from P-containing wastewater. However, the presence of humic substances (HS) would inevitably affect the formation of vivianite crystals. Therefore, the influences of HS on vivianite crystallization and the changes in the harvested vivianite crystals were investigated in this study. The results suggested the inhibition effect of 70 mg/L HS on vivianite crystallization reached 12.24%, while it could be attenuated by increasing the pH and Fe/P ratio of the solution. Meanwhile, the addition of HS altered the size, purity, and morphology of recovered vivianite crystals due to the blockage of the growth sites on the crystal surface. Additionally, the formation of phosphate ester group, hydrogen bonding, and COOH-Fe complexes are the potential mechanisms of HS interaction with vivianite crystals. The results obtained herein will help to elucidate the underlying mechanism of HS on vivianite crystallization from P-containing wastewater.
蓝铁矿结晶被认为是从含磷废水中回收磷(P)的合适选择。然而,腐殖质(HS)的存在将不可避免地影响蓝铁矿晶体的形成。因此,本研究考察了HS对蓝铁矿结晶的影响以及收获的蓝铁矿晶体的变化。结果表明,70mg/L HS对蓝铁矿结晶的抑制作用达到12.24%,而通过提高溶液的pH值和铁/磷比可以减弱这种抑制作用。同时,由于HS堵塞了晶体表面的生长位点,其添加改变了回收的蓝铁矿晶体的尺寸、纯度和形态。此外,磷酸酯基团、氢键和COOH-Fe络合物的形成是HS与蓝铁矿晶体相互作用的潜在机制。本文获得的结果将有助于阐明HS对含磷废水蓝铁矿结晶的潜在机制。