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Utilization of Sustainable Palm Empty Fruit Bunch Sorbents for Carbon dioxide Capture

机译:利用可持续棕榈空果束吸收剂捕获二氧化碳

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摘要

Sustainable porous carbons have been produced via pyrolysis of palm empty fruit bunch (EFB) and then modified using hydrogen reduction and treatment with phenol for increase in hydrophilic character. The sorbents were tested for CO2 capture. The EFB based sorbent materials were characterized for morphology and chemical functionaludgroups. Characterization of the porous carbons covered four samples: hydrogen reduced, hydrophilic treated, bio oil impregnated and CO2 uptake samples. FTIR analysis showed presence of hydroxyl, carbonyl, aliphatic, esters, alcohol, phenol and analysis showed presence of hydroxyl, carbonyl, aliphatic, esters, alcohol, phenol and carboxylic groups on the surfaces of the sorbent materials. Absence of C=O in thehydrophilic treated samples could be traced back to reaction of the phenol and compounds containing carbonyl groups. Absence of C-O stretching for ethers in the carbon captured samples could be related to oxidation of ethers in CO2.Spectra at 557.5cm-1 could be due to adsorption of CO2 bending stretch.
机译:可持续的多孔碳是通过棕榈空果束(EFB)的热解产生的,然后通过氢还原和苯酚处理进行改性,以提高亲水性。测试了吸附剂的二氧化碳捕获。对基于EFB的吸附剂材料进行了形态和化学官能团 udgroup表征。多孔碳的表征包括四个样品:氢还原样品,亲水处理样品,生物油浸渍样品和二氧化碳吸收样品。 FTIR分析表明在吸附剂材料的表面上存在羟基,羰基,脂族,酯,醇,苯酚,分析表明存在羟基,羰基,脂族,酯,醇,酚和羧基。经过亲水处理的样品中C = O的缺乏可以追溯到酚与含羰基化合物的反应。碳捕获样品中的醚没有进行C-O拉伸可能与CO2中的醚氧化有关.557.5cm-1处的光谱可能是由于CO2弯曲拉伸的吸附所致。

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