Biodegradation of Synthetic Reactive Orange 16 Dye in Anaerobic Reactor Conditions

Mohamad Adib Syahmi, Fazilah Ariffin
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Abstract

Industrial use of azo dyes has been linked to severe environmental damage in the textile and apparel sectors. The breakdown products of many azo dyes are poisonous and mutagenic, posing a threat to human health and the environment. Hence, azo dye wastewater bioremediation is gaining interest. The objective of this study was focused on the biodegradation of an azo dye, Reactive Orange 16 (RO16), in an anaerobic continuous tank reactor operated with digested sludge sample. The digested sludge was used as the organic biodegradation agent for azo dye. The aim was to investigate the fate of the anaerobic RR16 breakdown products during the degradation process. Gas Chromatography-Mass Spectrophotometry (GC-MS) was used to identify RO16 biodegradation metabolites and their corresponding molecular weight. As a result, RO 16 showed about 85.91% decolorization capacity, and the degradation metabolites were detected as pentanoic acid and phenol after seven days of incubation. The degradation mechanism was completed as the azo bond of RO16 was successfully cleaved based on the result of GC-MS, and the proposed pathway of the degradation mechanism is described. The digested palm oil sludge with dye degradation enzymes may provide new avenues for biological waste treatment, especially wastewater bioremediation.
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厌氧反应器条件下合成活性橙16染料的生物降解
偶氮染料的工业使用与纺织和服装行业的严重环境破坏有关。许多偶氮染料的分解产物具有毒性和诱变性,对人类健康和环境构成威胁。因此,偶氮染料废水的生物修复正在引起人们的兴趣。本研究的目的是研究偶氮染料活性橙16 (RO16)在厌氧连续池反应器中对消化污泥样品的生物降解。将消化后的污泥作为偶氮染料的有机生物降解剂。目的是研究厌氧RR16分解产物在降解过程中的命运。采用气相色谱-质谱联用法(GC-MS)鉴定RO16生物降解代谢物及其分子量。结果表明,RO - 16的脱色能力约为85.91%,培养7天后检测到降解代谢物为戊酸和苯酚。根据GC-MS的结果,RO16的偶氮键被成功切割,从而完成了降解机制,并描述了所提出的降解机制途径。利用染料降解酶对棕榈油污泥进行消化处理,为生物废物处理特别是废水生物修复提供了新的途径。
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