可见光照射下聚苯胺/ CuO纳米复合材料在水体系中光催化还原CO2为碳氢化合物

IF 0.9 Q4 ENGINEERING, CHEMICAL Indian Chemical Engineer Pub Date : 2022-10-20 DOI:10.1080/00194506.2022.2124198
Deeksha Matthew, V. Shetty K.
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引用次数: 0

摘要

不断增长的能源需求导致了二氧化碳排放量的增加和全球变暖。光催化将二氧化碳还原为甲醇,这被认为是下一代替代燃料,在对抗全球变暖和向甲醇经济发展方面越来越受到关注。本文主要研究了聚苯胺/CuO (PANI/CuO)纳米复合材料在可见光照射下光催化还原CO2为甲醇、甲酸和甲醛。以柚木叶水提液为原料合成CuO纳米颗粒,并将其应用于不同CuO负载的聚苯胺/CuO纳米复合材料的制备。PANI/CuO纳米复合材料在可见光下具有还原CO2生成甲醇、甲酸和甲醛的活性。用CuO质量分数为13.7%的聚苯胺/CuO纳米复合材料光催化还原CO2,甲醇收率最高。该纳米复合材料的带隙能为2.28 eV,证实了其良好的可见光活性,并提出了基于聚苯胺- cuo异质结的光催化机理。PANI-CuO光催化剂的合成使用的CuO是通过环保途径合成的,利用柚木叶(木材工业废料),因此它可以作为一种更环保的催化剂。图形抽象
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Visible light irradiated photocatalytic reduction of CO2 to hydrocarbons using hybrid polyaniline/ CuO nanocomposite in aqueous system
ABSTRACT The ever-increasing energy demand has resulted in an increase in CO2 emissions and global warming. Photocatalytic reduction of CO2 to methanol, which is considered to be the next generation alternate fuel is gaining interest to combat global warming and to move towards a methanol economy. The present work focuses on photocatalytic reduction of CO2 using Polyaniline/CuO (PANI/CuO) nanocomposite to methanol, formic acid, and formaldehyde under visible light irradiation. CuO nanoparticles were synthesised using the aqueous extract of Tectona grandis (teak) leaves and further used in the synthesis of PANI/CuO nanocomposite with different CuO loading. PANI/CuO nanocomposite exhibited visible light activity in the reduction of CO2 to form methanol, formic acid, and formaldehyde. Photocatalytic reduction of CO2 with PANI/CuO nanocomposite containing 13.7% by weight of CuO resulted in a maximum yield of methanol. The band gap energy of the nanocomposite was found to be 2.28 eV, thus confirming its good visible light activity and the PANI-CuO heterojunction-based mechanism of photocatalysis is proposed. The synthesis of PANI-CuO photocatalyst uses CuO which is synthesised by an eco-friendly route with the utilisation of teak leaves, a timber industry waste and thus it can serve as a greener catalyst. GRAPHICAL ABSTRACT
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来源期刊
Indian Chemical Engineer
Indian Chemical Engineer ENGINEERING, CHEMICAL-
CiteScore
3.00
自引率
6.70%
发文量
33
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