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首页> 外文期刊>Water Science and Technology >Successful treatment of high azo dye concentration wastewater using combined anaerobic/aerobic granular activated carbon-sequencing batch biofilm reactor (GAC-SBBR): Simultaneous adsorption and biodegradation processes
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Successful treatment of high azo dye concentration wastewater using combined anaerobic/aerobic granular activated carbon-sequencing batch biofilm reactor (GAC-SBBR): Simultaneous adsorption and biodegradation processes

机译:使用厌氧/好氧颗粒活性炭顺序分批生物膜反应器(GAC-SBBR)成功处理高偶氮染料浓度的废水:同时吸附和生物降解过程

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摘要

The application of a granular activated carbon-sequencing batch biofilm reactor (GAC-SBBR) for treatment of wastewater containing 1,000 mg/L Acid Red 18 (AR18) was investigated in this research. The treatment system consisted of a sequencing batch reactor equipped with moving GAC as biofilm support. Each treatment cycle consisted of two successive anaerobic (14 h) and aerobic (8 h) reaction phases. Removal of more than 91% chemical oxygen demand (COD) and 97% AR18 was achieved in this study. Investigation of dye decolorization kinetics showed that the dye removal was stimulated by the adsorption capacity of the GAC at the beginning of the anaerobic phase and then progressed following a first-order reaction. Based on COD analysis results, at least 77.8% of the dye total metabolites were mineralized during the applied treatment system. High-performance liquid chromatography analysis revealed that more than 97% of 1-naphthyalamine-4-sulfonate as one of the main sulfonated aromatic constituents of AR18 was removed during the aerobic reaction phase. According to the scanning electron microscopic analysis, the microbial biofilms grew in most cavities and pores of the GAC, but not on the external surfaces of the GAC.
机译:本研究研究了颗粒活性炭分批生物膜反应器(GAC-SBBR)在处理含1,000 mg / L酸性红18(AR18)的废水中的应用。该处理系统由配备有移动GAC作为生物膜支持物的测序间歇反应器组成。每个处理周期包括两个连续的厌氧(14 h)和有氧(8 h)反应阶段。在这项研究中,去除了超过91%的化学需氧量(COD)和97%的AR18。染料脱色动力学的研究表明,在厌氧阶段开始时,GAC的吸附能力促进了染料的去除,然后随着一级反应的进行而进行。根据COD分析结果,在应用的处理系统中至少有77.8%的染料代谢产物矿化。高效液相色谱分析显示,在好氧反应阶段,超过97%的1-萘甲胺-4-磺酸盐作为AR18的主要磺化芳族成分之一被去除。根据扫描电子显微镜分析,微生物生物膜在GAC的大多数腔和孔中生长,但不在GAC的外表面上生长。

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