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Biological sulphate reduction and redox mediator effects on azo dye decolourisation in anaerobic-aerobic sequencing batch reactors

机译:厌氧-好氧测序间歇反应器中生物硫酸盐还原和氧化还原介质对偶氮染料脱色的影响

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In this work,the anaerobic period of an anaerobic-aerobic sequencing batch reactor was found to allow the reductive decolourisation of azo dyes.1-1 reactors were operated in 24-h cycles comprising anaerobic and aerobic reaction phases,fed with a simulated textile effluent including a reactive type(Remazol Brilliant Violet 5R)or an acid type(Acid Orange 7)azo dye.The aim was to assess the role of different redox phenomena in the anaerobic decolourisation process.Selective inhibition of sulphate reducing bacteria was carried out in the sulphate-containing,reactive dye fed reactor,resulting in nearly complete,though reversible and inhibition of decolourisation.The acid dye fed reactor's supplementation with sulphate,though resulting in sulphate reduction,did not improve decolourisation.Other redox mediators,namely quinones,were more effective in promoting electron transfer to the azo bond.Bio-augmentation of the acid dye fed reactor with a pure sulphate reducer strain known to decolourise azo dyes,Desulfovibrio alaskensis,was also carried out.Decolourisation was improved,but apparently as a result of the carbon source change required to support D.alaskensis growth.A chemically mediated reduction of the azo bond coupled to biological sulphate reduction,thus seemed to account for the high decolourisation yields of both dyes.
机译:在这项工作中,发现厌氧-好氧顺序分批反应器的厌氧时间可以使偶氮染料还原脱色。1-1反应器在24小时的循环中运行,包括厌氧和好氧反应阶段,并由模拟的纺织废水进料包括活性型(Remazol Brilliant Violet 5R)或酸性型(Acid Orange 7)偶氮染料,目的是评估不同氧化还原现象在厌氧脱色过程中的作用。含硫酸盐的反应性染料进料反应器,几乎可以完成,但可逆,并能抑制脱色。酸性染料进料反应器中补充硫酸盐,虽然可以减少硫酸盐,但并不能改善脱色。其他氧化还原介质,即醌,则更多。有效促进电子转移至偶氮键。使用已知可脱色的纯硫酸盐还原剂对酸性染料进料的反应器进行生物增强还进行了偶氮染料Desulfovibrio alaskensis。脱色得到了改善,但这显然是由于支持D.alaskensis生长所需的碳源变化所致。偶氮键的化学介导还原与生物硫酸盐的还原相结合,似乎解释了两种染料的高脱色率。

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