Coupling Anaerobic Digestion with Pyrolysis for Phosphorus-Enriched Biochar Production from Constructed Wetland Biomass

文献类型: 外文期刊

第一作者: Yu, Fan

作者: Yu, Fan;Hu, Yanjun;Yu, Fan;Li, Xiangming;Wang, Jiangtao;Wang, Xutong;Wang, Zhi;Cui, Xiaoqiang;Yan, Beibei;Chen, Guanyi;Yu, Fan;Li, Xiangming;Wang, Jiangtao;Wang, Xutong;Wang, Zhi;Cui, Xiaoqiang;Yan, Beibei;Chen, Guanyi;Xiao, Hui;Chen, Guanyi

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关键词: anaerobic digestion; pyrolysis; biochar; phosphorus; DGT

期刊名称:ACS SUSTAINABLE CHEMISTRY & ENGINEERING ( 影响因子:9.224; 五年影响因子:9.458 )

ISSN: 2168-0485

年卷期: 2022 年 10 卷 12 期

页码:

收录情况: SCI

摘要: Coupling anaerobic digestion with pyrolysis (AD-pyrolysis) has drawn increasing attention for the treatment of organic solid wastes. To evaluate the feasibility of AD-pyrolysis to reclaim phosphorus (P) from wetland plants, pyrolysis and AD-pyrolysis were used to dispose of wetland plants at different temperatures (300, 500, and 700 degrees C). The biochars derived from pyrolysis (TBs) showed a high pH and abundant functional groups, while the biochars derived from AD-pyrolysis (ATBs) contained high P (19.52-27.53 mg g(-1)) and ash (35.17-49.88%) contents. Both pyrolysis and AD-pyrolysis effectively reduced the risk of P leaching loss by transforming P into a stable pool. In comparison with pyrolysis, AD-pyrolysis enhanced the formation of the medium-term potential plant-available P (NaOH-P) in biochars (21.50-71.69%) and reduced the residual-P content. The diffusive gradients in thin films (DGT) results confirmed that the addition of AD-pyrolysis-derived biochars greatly increased the available P content in the soil, and DGT-P was positively correlated with the NaOH-P content (r = 0.919, P < 0.01) and the total contents of NaOH-P and NaHCO3-P (r = 0.937, P < 0.01). Therefore, AD-pyrolysis is a promising treatment technique to achieve the upgraded recovery of P in biochar from wetland plants.

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[1]Coupling Anaerobic Digestion with Pyrolysis for Phosphorus-Enriched Biochar Production from Constructed Wetland Biomass. Yu, Fan,Hu, Yanjun,Yu, Fan,Li, Xiangming,Wang, Jiangtao,Wang, Xutong,Wang, Zhi,Cui, Xiaoqiang,Yan, Beibei,Chen, Guanyi,Yu, Fan,Li, Xiangming,Wang, Jiangtao,Wang, Xutong,Wang, Zhi,Cui, Xiaoqiang,Yan, Beibei,Chen, Guanyi,Xiao, Hui,Chen, Guanyi. 2022

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