Design of biomass-based composite photocatalysts for wastewater treatment: a review over the past decade and future prospects

被引:0
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作者
Marina M. G. Pastre
Deivisson Lopes Cunha
Marcia Marques
机构
[1] Rio de Janeiro State University (UERJ),Department of Sanitary and Environmental Engineering
关键词
Biomass sources; TiO; ZnO; Photocatalysts; Pollutants removal; Water treatment; Multivariate data analysis;
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学科分类号
摘要
This investigation applied a systematic review approach on publications covering primary data during 2012–2022 with a focus on photocatalytic degradation of pollutants in aqueous solution by composite materials synthesized with biomass and, at least, TiO2 and/or ZnO semiconductors to form biomass-based composite photocatalysts (BCPs). After applying a set of eligibility criteria, 107 studies including 832 observations/entries were analyzed. The average removal efficiency and degradation kinetic rate reported for all model pollutants and BCPs were 77.5 ± 21.5% and 0.064 ± 0.174 min−1, respectively. Principal component analysis (PCA) was applied to analyze BCPs synthesis methods, experimental conditions, and BCPs’ characteristics correlated with the removal efficiency and photodegradation kinetics. The relevance of adsorption processes on the pollutants’ removal efficiency was highlighted by PCA applied to all categories of pollutants (PCA_pol). The PCA applied to textile dyes (PCA_dyes) and pharmaceutical compounds (PCA_pharma) also indicate the influence of variables related to the composite synthesis (i.e., thermal treatment and time spent on BCPs synthesis) and photocatalytic experimental parameters (catalyst concentration, pollutant concentration, and irradiation time) on the degradation kinetic accomplished by BCPs. Furthermore, the multivariate analysis (PCA_pol) revealed that the specific surface area and the narrow band gap are key characteristics for BCPs to serve as a competitive photocatalyst. The effect of scavengers on pollutants’ degradation and the recyclability of BCPs are also discussed, as necessary aspects for scalability trends. Further investigations are recommended to compare the performance of BCPs and commercial catalysts, as well as to assess the costs to treat real wastewater.
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页码:9103 / 9126
页数:23
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