Phosphate and ammonium adsorption of the modified biochar based on Phragmites australis after phytoremediation

生物炭 芦苇 吸附 富营养化 磷酸盐 化学 环境化学 植物修复 环境工程 环境修复 营养物 环境科学 热解 污染 重金属 生态学 湿地 生物 有机化学
作者
Yu-Peng Gong,Zhi-Yi Ni,Zhao-Zhao Xiong,Li‐Hua Cheng,Xinhua Xu
出处
期刊:Environmental Science and Pollution Research [Springer Science+Business Media]
卷期号:24 (9): 8326-8335 被引量:101
标识
DOI:10.1007/s11356-017-8499-2
摘要

To effectively remove N and P from eutrophic water, the Phragmites australis after phytoremediation was harvested for preparation of modified biochar. The MgCl2-modified biochar (MPB) was successfully synthesized at 600 °C under N2 circumstance. The physiochemical characteristics, the adsorption capacity for N and P in the simulated solution, and their adsorption mechanism of MPB were then determined, followed by the treatment of eutrophic water of Tai lake and its inflow river from agricultural source. The results demonstrated that the MPB presented high adsorption capacity to both simulated NH4-N and PO4-P with the maximum adsorption capacity exceeding 30 and 100 mg g−1, respectively. The entire ammonium adsorption process could be described by a pseudo-second-order kinetic model whereas the phosphate adsorption process could be divided into three phases, as described by both intra-particle diffusion model and the pseudo-first-order kinetic. It was further found that the dominant mechanism for ammonium adsorption was Mg2+ exchange instead of functional groups and surface areas and the Mg-P precipitation was the main mechanism for phosphate adsorption. The MPB also showed high removal ratio of practical TP which reached nearly 90% for both the water in Tai lake and its agricultural source. It suggested that MPB based on harvested P. australis was a promising composite for eutrophic water treatment and it could deliver multiple benefits.
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