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Effect of leachate effluent from activated sludge and membrane bioreactor systems with acclimatized sludge on plant seed germination

机译:渗滤液流出物从活性污泥和膜生物反应器系统对植物种子萌发中的酸膜生物反应器系统的影响

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摘要

This research comparatively investigates the effect of landfill leachate effluent of two biological treatment schemes on germination of Lactuca sativa and Vigna radiata. The treatment schemes are two-stage activated sludge (AS) and two-stage membrane bioreactor (MBR) systems with acclimatized seed sludge. The AS and MBR are operated under two concentrations of landfill leachate influent: moderate (condition 1) and elevated (condition 2). The results show that, under condition 1, the AS and MBR efficiently remove 80-96% of organic compounds and nutrients and 81 -100% of harmful micropollutants. Under condition 2 with elevated influent concentration, MBR is more effective in biodegrading micropollutants than the AS system. The germination rate (GR) and germination seed index (GSI) of L. sativa and V. radiata germinated with AS and MBR effluent from condition 1 are 100% and 1.29-1.56. Under condition 2, the GR and GSI with AS effluent are reduced to 80% and 0.65-0.77, while those with MBR effluent are 100% and 1.27-1.38. Quantitative real-time polymerase chain reaction (qPCR) analysis indicates that the bacterial community in the MBR is more abundant than in the AS, especially ammonia oxidizing bacteria, Nitrobacter, and Nitrospira, which aid heterotrophic bacteria in biodegradation of micropollutants and promote the growth of heterotrophs. The bacterial abundance and community composition render the MBR scheme more operationally suitable for elevated landfill-leachate influent concentrations. By comparison, the MBR system is more effective in removal of micropollutants than the AS, as evidenced by higher GR and GSI. The technology also could potentially be applied to water reclamation. A lack of technological and financial resources in many developing countries nevertheless precludes the adoption of MBR despite higher pollutant removal efficiency. An alternative solution is the use of acclimatized seed sludge in AS system to enhance treatment efficiency, especially in influent with low concentrations of micropollutants. In addition, the seed germination results suggest the possibility of water reuse in agriculture.
机译:本研究相对调查了两个生物治疗方案填埋渗滤液流出物对乳突苜蓿和豇豆菌萌发的垃圾渗滤液流出物。处理方案是具有适应种子污泥的两级活性污泥(AS)和两级膜生物反应器(MBR)系统。 AS和MBR在两种浓度的垃圾填埋场流入物进水中运行:中度(条件1)和升高(条件2)。结果表明,在病症1,AS和MBR下有效地除去80-96%的有机化合物和营养物,81 -100%的有害微孔。在具有升高的流动浓度的条件2下,MBR在生物降解微孔中比AS系统更有效。 L.Sativa和V. radiata的发芽率(GR)和发芽种子指数(GSI)从病症1中发芽的辐射产生的radiata为100%和1.29-1.56。在条件2下,GR和GSI具有流出物的降低至80%和0.65-0.77,而MBR流出物的遗料为100%和1.27-1.38。定量实时聚合酶链反应(QPCR)分析表明,MBR中的细菌群落比氨氧化细菌,硝基杆菌和氮血管均多,氮曲杆菌和氮曲线中的生物降解,促进了微渗透剂的生物降解并促进生长异质。细菌丰度和群落组成使MBR方案更加适合填埋液渗滤液流入的浓度。相比之下,MBR系统在除去微孔径而不是由高GR和GSI证明的情况下更有效。该技术也可能适用于水填海作用。尽管较高的污染物去除效率,但许多发展中国家缺乏技术和财政资源仍然可以通过MBR的采用排除。另一种解决方案是在系统中使用适应的种子污泥以提高治疗效率,尤其是在低浓度的微渗透剂中的影响。此外,种子萌发结果表明水重用农业的可能性。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第jul1期|138275.1-138275.8|共8页
  • 作者单位

    Department of Environmental Engineering Faculty of Engineering Rajamangala University of Technology Thanyaburi (RMUTT) Klong 6 Pathum Thani 12110 Thailand;

    Department of Environmental Engineering Faculty of Engineering Rajamangala University of Technology Thanyaburi (RMUTT) Klong 6 Pathum Thani 12110 Thailand;

    Faculty of Geosciences and Civil Engineering Institute of Science and Engineering Kanazawa University Kakuma-machi Kanazawa 920-1192 Japan;

    Department of Environmental Engineering Faculty of Engineering Kasetsart University Jatujak Bangkok 10900 Thailand;

    Pilot Plant Development and Training Institute King Mongkut's University of Technology Thonburi (KMUTT) Bangkhuntien Bangkok 10150 Thailand;

    Department of Environmental Engineering Faculty of Engineering Rajamangala University of Technology Thanyaburi (RMUTT) Klong 6 Pathum Thani 12110 Thailand;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Seed germination; Landfill leachate; Activated sludge (AS); Membrane bioreactor (MBR);

    机译:种子萌发;垃圾填埋场渗滤液;活性污泥(AS);膜生物反应器(MBR);

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