Microwave biochars produced with activated carbon catalyst: Characterization and sorption of volatile organic compounds (VOCs)

生物炭 苯 吸附 化学 活性炭 吸附 催化作用 甲苯 体积热力学 解吸 微型多孔材料 挥发性有机化合物 BTEX公司 碳纤维 热解 乙苯 材料科学 有机化学 物理 量子力学 复合材料 复合数
作者
Xueyang Zhang,Wei Xiang,Xudong Miao,Feiyue Li,Guangdou Qi,Chengcheng Cao,Xuewen Ma,Shigeng Chen,Andrew R. Zimmerman,Bin Gao
出处
期刊:Science of The Total Environment [Elsevier BV]
卷期号:827: 153996-153996 被引量:78
标识
DOI:10.1016/j.scitotenv.2022.153996
摘要

A series of microwave biochars derived from wheat straw in the presence of a granulated activated carbon (GAC) catalyst, using a range of microwave conditions, were produced, characterized and tested as sorbents of three benzene series volatile organic compounds (VOCs). The microwave biochar with the greatest specific surface area (SSA), total pore volume (TPV), and micropore volume (312.62 m2 g-1, 0.2218 cm3 g-1, and 0.1380 cm3 g-1, respectively), were produced with 1:3 biomass:GAC catalyst mass ratio, 10 min microwave irradiation time, and at 500 W power level (WB500). Maximum adsorption capacities of WB500 to benzene, toluene and o-xylene were 53.9 mg g-1, 75.8 mg g-1 and 63.0 mg g-1, respectively, and were directly correlated to microwave biochar properties such as SSA, TPV or micropore volume, but were also influenced by VOC properties such as molecular polarity and boiling point. Kinetic modeling suggested that adsorption was governed by both physical partitioning and chemisorption mechanisms. In addition, microwave biochars maintained 79% to 92% of their initial adsorption capacity after ten adsorption/desorption cycles. These results suggest that microwave biochars produced with an GAC catalyst have excellent potential for efficient use in the removal of VOCs from waste gas.
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