生物炭
泡叶藻
吸附
环境修复
铜
水溶液
化学
环境化学
热解
污染物
藻类
植物
污染
有机化学
生态学
生物
作者
Ravi Katiyar,Anil Kumar Patel,Thanh-Binh Nguyen,Reeta Rani Singhania,Chiu‐Wen Chen,Cheng‐Di Dong
标识
DOI:10.1016/j.biortech.2021.124829
摘要
There has been growing research interest in exploiting biochar for cost-effective. removal of different pollutants. Heavy metals, especially copper II (Cu II) is highly toxic and nonbiodegradable pollutants, and has been major source of environmental pollution. In this study adsorption of Cu (II) on seaweed (Ascophyllum nodosum)-derived biochar was systematically examined. The removal efficiency based on surface property of biochar and type of interactions associated with biochar produced at varying pyrolysis conditions were investigated. The highest removal efficiency of Cu (II) from aqueous media was >99% with 223 mg g−1 Cu (II) adsorption capacity observed by biochar derived at 700 °C and pH 5. Langmuir adsorption isotherm described the adsorption mechanisms of Cu (II) on biochar with cationic and anionic electrostatic attractions, surface precipitation, and pore depositions. Thus, this study shows that waste biomass (seaweed) could be a valuable bioresource for heavy metal remediation from various water bodies.
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