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微波活性炭催化剂制备生物炭:重金属的吸附与表征。

Microwave biochar produced with activated carbon catalyst: Characterization and adsorption of heavy metals.

机构信息

School of Environmental Engineering, Xuzhou University of Technology, Xuzhou, 221018, China.

School of Environmental Engineering, Xuzhou University of Technology, Xuzhou, 221018, China.

出版信息

Environ Res. 2023 Jan 1;216(Pt 4):114732. doi: 10.1016/j.envres.2022.114732. Epub 2022 Nov 17.

Abstract

Novel microwave biochar derived from wheat straw (WS) using a range of power levels, with activated carbon catalyst as microwave absorber, was produced, characterized and tested as adsorbent of three heavy metals (Pb, Cd, and Cu). The microwave biochar with the greatest specific surface area (156.09 m g) and total pore volume (0.0790 cm g) were produced at 600 W (WS600) and 500 W (WS500) power level, respectively. Maximum adsorption capacities of WS500 to Pb, Cd and Cu were 139.44 mg g, 52.92 mg g, and 31.25 mg g, respectively. Optimal pH value for heavy metal removal was at range of 5-6, and Pb showed the strongest affinity in competitive adsorption experiments. The adsorption data were fitted better by pseudo-second-order model and Langmuir isotherm, indicating that adsorption process was mainly explained by monolayer adsorption, and chemical adsorption occupied important role. The predominant adsorption mechanisms of heavy metals on microwave pyrolysis biochar included complexation with oxygen-containing functional groups (i.e., carboxylic acid CO and -OH) and precipitation with carbonate. In addition, reused WS600 maintained 76.17% and 96.07% of their initial adsorption capacity for Cu and Cd, respectively. These results suggest that microwave biochar produced with activated carbon catalyst has excellent potential for efficient use in the removal of heavy metals from waste water.

摘要

利用一系列功率水平,从麦秆(WS)中制备了新型微波生物炭,并将活性炭催化剂作为微波吸收剂,将其作为三种重金属(Pb、Cd 和 Cu)的吸附剂进行了表征和测试。在 600 W(WS600)和 500 W(WS500)功率水平下,分别产生了比表面积最大(156.09 m g)和总孔体积最大(0.0790 cm g)的微波生物炭。WS500 对 Pb、Cd 和 Cu 的最大吸附容量分别为 139.44、52.92 和 31.25 mg g。去除重金属的最佳 pH 值范围为 5-6,Pb 在竞争吸附实验中表现出最强的亲和力。吸附数据更符合伪二级模型和 Langmuir 等温线,表明吸附过程主要由单层吸附解释,化学吸附占据重要地位。重金属在微波热解生物炭上的主要吸附机制包括与含氧官能团(即羧酸 CO 和-OH)的络合和与碳酸盐的沉淀。此外,再利用的 WS600 对 Cu 和 Cd 的初始吸附容量分别保持了 76.17%和 96.07%。这些结果表明,用活性炭催化剂制备的微波生物炭具有从废水中高效去除重金属的巨大潜力。

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