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Treatment of printing and dyeing wastewater in biological contact oxidation reactors comprising basalt fibers and combination fillers as bio-carriers: Elucidation of bacterial communities and underlying mechanisms

机译:用玄武岩纤维和组合填料的生物接触氧化反应器中的印染废水处理为生物载体:细菌群落的阐明和潜在机制

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摘要

This study investigates the nitrogen removal and sludge reduction efficiency of biological contact oxidation reactors in the presence of two bio-carriers namely basalt fibers (R-BF) and combination fillers (R-CF). The results were also compared with a conventional anoxic-oxic reactor (R-A/O). The reactors were operated at pilot-scale (550 L) and pollutant removal mechanisms were studied based on physicochemical parameters, bio-carrier surface morphology, microbial community structures, and activated sludge characteristics. It was found that chemical oxygen demand (COD) removals for R-BF, R-CF, and R-A/O were comparable in all reactor types, whereas R-A/O performed better in terms of ammonium-nitrogen (NH_4~+-N) and total nitrogen (TN) removal followed by R-BF and R-CF. The sludge reduction in R-BF was 40.4% higher than that in R-CF and 61.9% higher than that in R-A/O. This observation was further correlated with the abundance of protozoa (Vorricella and Epistylis) and metazoan (Aeolosoma hemprichi) communities, diverse and rich bacterial communities, stronger dehydrogenase activity, and low specific oxygen uptake rate in R-BF. The results of 16S amplicon sequencing suggested that microbiological conditions in R-BF were more favorable for heterotrophic nitrification and aerobic de-nitrification, sulfur cycle, hydrolysis and fermentation compared to R-CF. In R-A/O, however, sulfur oxidizing and reducing bacteria were completely absent which also indicated its poor efficiency for sulfur removal. This study concludes that R-BF was a better choice towards sludge reduction whereas conventional R-A/O could be a favorable approach for TN removal.
机译:本研究研究了两种生物载体中的生物接触氧化反应器的氮去除率和污泥降低效率,即玄武岩纤维(R-BF)和组合填料(R-CF)。还将结果与常规的缺氧 - 氧反应器(R-A / O)进行比较。在导频尺度(550L)(550L),基于物理化学参数,生物载体表面形态学,微生物群落结构和活化污泥特性进行污染物去除机制,反应器进行操作。发现R-BF,R-CF和RA / O的化学需氧量(COD)去除在所有反应器类型中相当,而RA / O在氮氮(NH_4〜+ -N)方面表现较好和总氮(TN)去除,然后进行R-BF和R-CF。 R-BF的污泥降低比R-CF的降低40.4%,高于R-A / O的61.9%。该观察结果与大量的原生动物(葡萄耳和脑血症)和甲卓(血球瘤血红素)群落,多样化和富含细菌社区,更强的脱氢酶活性和R-BF中的低特异性氧摄取率相关。 16S扩增子测序的结果表明,与R-CF相比,R-BF中的微生物病症更有利于异养硝化和有氧脱氮,硫循环,水解和发酵。然而,在R-A / O中,完全没有氧化和还原细菌,这也表明其硫去除效率差。该研究得出结论,R-BF对污泥降低更好的选择,而常规R-A / O可能是去除TN的有利方法。

著录项

  • 来源
    《Science of the total environment》 |2021年第1期|147272.1-147272.11|共11页
  • 作者单位

    School of the Environment and Safety Engineering Jiangsu University No. 301 Xuefu Road Jingkou District Zhenjiang 212013 China;

    Department of Civil and Environmental Engineering University of Alberta Edmonton Alberta T6G 1H9 Canada;

    School of the Environment and Safety Engineering Jiangsu University No. 301 Xuefu Road Jingkou District Zhenjiang 212013 China;

    College of Resources and Environmental Sciences Nanjing Agricultural University No.1 Weigang Road Nanjing 210095 China;

    School of the Environment and Safety Engineering Jiangsu University No. 301 Xuefu Road Jingkou District Zhenjiang 212013 China;

    School of the Environment and Safety Engineering Jiangsu University No. 301 Xuefu Road Jingkou District Zhenjiang 212013 China;

    School of the Environment and Safety Engineering Jiangsu University No. 301 Xuefu Road Jingkou District Zhenjiang 212013 China;

    School of the Environment and Safety Engineering Jiangsu University No. 301 Xuefu Road Jingkou District Zhenjiang 212013 China Department of Civil and Environmental Engineering University of Alberta Edmonton Alberta T6G 1H9 Canada;

    School of the Environment and Safety Engineering Jiangsu University No. 301 Xuefu Road Jingkou District Zhenjiang 212013 China;

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  • 正文语种 eng
  • 中图分类
  • 关键词

    Basalt fiber; Bio-carrier; Nitrogen removal; Sludge reduction; Microbial community;

    机译:玄武岩纤维;生物载体;氮气去除;减少污泥;微生物群落;

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