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首页> 外文期刊>Journal of the Taiwan Institute of Chemical Engineers >Feasibility study on biostimulation of dye decolorization and bioelectricity generation by using decolorized metabolites of edible flora-extracts
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Feasibility study on biostimulation of dye decolorization and bioelectricity generation by using decolorized metabolites of edible flora-extracts

机译:用食用菌植物萃取物的脱色代谢物通过脱色代谢物生成染料脱色和生物电致刺激的可行性研究

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摘要

As known, naturally-present edible flora contained antioxidants (e.g., polyphenolic compounds) that are significant to human health. Prior studies revealed that decolorized metabolites (DM) of textile dyes might stimulate electron transfer (ET) capabilities of reductive decolorization and bioelectricity generation (RD&BG) due to their roles as electron shuttles (ESs). Such ET stimulating phenomena were also suspected to be associated with characteristics of antioxidant. This first-attempt study selected 6 edible flora to consider whether antioxidant-containing herbs were feasible to be used for wastewater decolorization. Apparently, DM of Gynura bicolor showed promising electron-shuttling capabilities to increase ET efficiency of RD&BG. Moreover, according to cyclic voltammetric profiles, the dosage should be above threshold level to trigger effective ET performance. In addition, supplementation of sufficient DM of G. bicolor could significantly enhance the efficiency of RD of Reactive Black 5 (RBk5) and BG. This study suggested that supplementation of extracts of naturally present edible flora may act as ESs to stimulate RD and BG for environmentally-friendly bioremediation. (C) 2017 Taiwan Institute of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:如已知的,天然存在的食用菌含有对人体健康的抗氧化剂(例如,多酚化合物)。现有研究表明,由于作为电子书(ESS)的角色,纺织品染料的脱色代谢物(DM)可能刺激还原脱色和生物电性产生(RD&BG)的电子转移(ET)能力。诸如刺激现象也怀疑与抗氧化剂的特征有关。该第一次尝试研究选定了6种可食用的植物,以考虑是否可用于废水脱色的抗氧化的草药是可行的。显然,Gynura双色的DM显示出有希望的电子穿梭能力,以提高RD&BG的ET效率。此外,根据循环伏安型材,剂量应高于阈值水平以触发有效的ET性能。此外,补充足够DM的G.Bicolor可以显着提高反应性黑色5(RBK5)和BG的RD的效率。该研究表明,补充了天然存在的食用菌的提取物可以充当ESS,以刺激RD和BG用于环保型生物修复。 (c)2017台湾化工工程师研究所。 elsevier b.v出版。保留所有权利。

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