富营养化
生物炭
磷
化学
吸附
零价铁
纳米-
环境化学
环境工程
营养物
化学工程
环境科学
热解
工程类
有机化学
作者
Ling Ren,Yue Li,Kang Wang,Kejia Ding,Mengqiao Sha,Yuan Cao,Fanlong Kong,Sen Wang
出处
期刊:Chemosphere
[Elsevier]
日期:2021-06-30
卷期号:284: 131391-131391
被引量:41
标识
DOI:10.1016/j.chemosphere.2021.131391
摘要
Effective removal and recovery of phosphorus (P) from the aquatic environment was of great significance for eutrophication control and P recovery. This study investigated the effects of different environmental conditions on P adsorption by biochar (BC) and the feasibility of applying the P-laden BC as a fertilizer for plant growth. The nano zero-valent iron (nZVI) modified reeds BC prepared at 700 °C (Fe-700-BC) had the maximum P adsorption capacity of 95.2 mg g −1 , which was higher than those prepared at 300, 500, and 900 °C. The addition of Fe-700-BC reduced the concentration of total phosphorus (TP) in the overlying water, in which the soluble reactive phosphorus (SRP) almost completely removed, as well as had a certain inhibitory effect on the growth of algae. Simultaneously, Fe-700-BC reduced the contents of different fractions of P (weakly adsorbed inorganic phosphorus (WA-Pi), potential active inorganic phosphorus (PA-Pi), and Fe/Al-bound inorganic phosphorus (Fe/Al-Pi)) by adsorbing the soluble P released from the sediments, especially in the case of disturbance. Fe-700-BC had no significant effect on the diversity and richness of the microbial community in the sediment. Moreover, P-laden BC was safe and environmentally friendly for application in the soil and tended to increase stem and root length, fresh and dry weight at low doses (0.5 wt%) in wheat planting experiments. The present work could provide a reference for solving the problems related to eutrophication and P deficiency. • The saturated adsorption capacity of Fe-700-BC on P is 95.2 mg g −1 • Fe-700-BC effectively reduces the P content especially under disturbance condition. • Fe-700-BC inhibits the growth of algae but does not affect the microbial community. • The P-laden biochar promotes the growth of wheat at 0.5 wt% dosage.
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