零价铁(ZVI)与颗粒活性炭(GAC)复合添加强化制药废水厌氧消化

Chenbo Dai, Libin Yang, Jun Wang, Dezhen Li, Yalei Zhang, Xuefei Zhou
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引用次数: 19

摘要

制药废水的厌氧消化受到其含有有毒化合物的挑战,这限制了甲烷生产和有机降解的稳定性和效率。以零价铁(zero valent iron, ZVI)和颗粒活性炭(granular activated carbon, GAC)为研究对象,通过不同的添加策略改善制药废水的厌氧消化。结果证实了ZVI+GAC对COD去除率(提高13.4%)和甲烷产量(提高11.0%)的协同效应。ZVI+GAC提高了对药物中间体的去除率,特别是脱氢表雄酮(DHEA)和2,2′-亚甲基双(6-叔丁基-4-甲基苯酚)的残留量(%)仅为30.48±6.53和39.92±4.50,有效降低了生物毒性。这一促进结果归因于直接种间电子转移(DIET)的建立。微生物群落分析表明,ZVI+GAC降低了细菌的物种均匀度和丰富度,增加了古细菌的物种均匀度和丰富度。乙营养型产甲烷菌相对丰度降低,氢营养型和甲基营养型产甲烷菌相对丰度增加,拓宽了产甲烷途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhancing Anaerobic Digestion of Pharmaceutical Industries Wastewater with the Composite Addition of Zero Valent Iron (ZVI) and Granular Activated Carbon (GAC)
Anaerobic digestion of pharmaceutical wastewater is challenged by its contained toxic compounds which limits the stability and efficiency of methane production and organic degradation. In this study, zero valent iron (ZVI) and granular activated carbon (GAC) were added with different strategies to improve anaerobic digestion of pharmaceutical wastewater. The results confirmed synergy effects of ZVI+GAC for both COD removal (increased by 13.4%) and methane production (increased by 11.0%). Furthermore, ZVI+GAC improved the removal of pharmaceutical intermediates, in particular, the residues (%) of dehydroepiandrosterone (DHEA) and 2,2'-methylenebis(6-tert-butyl-4-methylphenol) were only 30.48 ± 6.53 and 39.92 ± 4.50, and effectively reduced biotoxicity. The promoted results were attributed to the establishment of direct interspecies electron transfer (DIET). Microbial community analysis revealed that ZVI+GAC decreased species evenness and richness in bacterial whereas increased in archaeal. The relative abundance of acetotrophic methanogens decreased but hydrogenotrophic and methylotrophic methanogens increased, which broadening the pathway of methane production.
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