Dissolved carbon in biochar: Exploring its chemistry, iron complexing capability, toxicity in natural redox environment

Chaochao Lai,Juhong Zhan, Qiuyun Chai, Changlu Wang, Xiaoxia Yang,Huan He,Bin Huang,Xuejun Pan

JOURNAL OF ENVIRONMENTAL SCIENCES(2025)

引用 0|浏览2
暂无评分
摘要
Dissolved black carbon (DBC) plays a crucial role in the migration and bioavailability of iron in water. However, the properties of DBC releasing under diverse pyrolysis conditions and dissolving processes have not been systematically studied. Here, the compositions of DBC released from biochar through redox processes dominated by bacteria and light were thoroughly studied. It was found that the DBC released from straw biochar possess more oxygen -containing functional groups and aromatic substances. The content of phenolic and carboxylic groups in DBC was increased under influence of microorganisms and light, respectively. The concentration of phenolic hydroxyl groups increased from 10.0 <^>-57.5 mmol/gC to 6.6 <^>-65.2 mmol/gC, and the concentration of carboxyl groups increased from 49.7 <^>-97.5 mmol/gC to 62.1 <^>-113.3 mmol/gC. Then the impacts of DBC on pyrite dissolution and microalgae growth were also investigated. The complexing Fe3 + was proved to play a predominant role in the dissolution of ferrous mineral in DBC solution. Due to complexing between iron ion and DBC, the amount of dissolved Fe in aquatic water may rise as a result of elevated number of aromatic components with oxygen containing groups and low molecular weight generated under light conditions. Fe-DBC complexations in solution significantly promoted microalga growth, which might be attributed to the stimulating effect of dissolved Fe on the chlorophyll synthesis. The results of study will deepen our understanding of the behavior and ultimate destiny of DBC released into an iron -rich environment under redox conditions. (c) 2024 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences. Published by Elsevier B.V.
更多
查看译文
关键词
Dissolved black carbon,Bacteria,Light,Iron complexes,Toxicity
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要