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Using natural biomass microorganisms for drinking water denitrification

机译:使用天然生物质微生物对饮用水进行反硝化

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摘要

Among the methods that are studied to eliminate nitrate from drinking water, biological denitrification is an attractive strategy. Although several studies report the use of denitrifying bacteria for nitrate removal, they usually involve the use of sewage sludge as biomass to obtain the microbiota. In the present study, denitrifying bacteria was isolated from bamboo, and variable parameters were controlled focusing on optimal bacterial performance followed by physicochemical analysis of water adequacy. In this way, bamboo was used as a source of denitrifying microorganisms, using either Immobilized Microorganisms (IM) or Suspended Microorganisms (SM) for nitrate removal. Denitrification parameters optimization was carried out by analysis of denitrification at different pH values, temperature, nitrate concentrations, carbon sources as well as different C/N ratios. In addition, operational stability and denitrification kinetics were evaluated. Microorganisms present in the biomass responsible for denitrification were identified asProteus mirabilis. The denitrified water was submitted to physicochemical treatment such as coagulation and flocculation to adjust to the parameters of color and turbidity to drinking water standards. Denitrification using IM occurred with 73% efficiency in the absence of an external carbon source. The use of SM provided superior denitrification efficiency using ethanol (96.46%), glucose (98.58%) or glycerol (98.5%) as carbon source. The evaluation of the operational stability allowed 12 cycles of biomass reuse using the IM and 9 cycles using the SM. After physical-chemical treatment, only SM denitrified water remained within drinking water standards parameters of color and turbidity.
机译:在研究消除饮用水中硝酸盐的方法中,生物脱氮是一种有吸引力的策略。尽管有几项研究报道了使用反硝化细菌去除硝酸盐,但它们通常涉及使用污水污泥作为生物质来获得微生物。在本研究中,从竹子中分离出反硝化细菌,并控制变量参数,重点关注最佳细菌性能,然后对水的适量进行理化分析。通过这种方式,竹子被用作反硝化微生物的来源,使用固定化微生物(IM)或悬浮微生物(SM)去除硝酸盐。通过分析不同pH值,温度,硝酸盐浓度,碳源以及不同C / N比下的反硝化作用来优化反硝化参数。另外,评估了操作稳定性和反硝化动力学。存在于负责反硝化的生物质中的微生物被鉴定为奇异变形杆菌。将反硝化水进行物理化学处理(例如混凝和絮凝),以根据饮用水标准调整颜色和浊度参数。在没有外部碳源的情况下,使用IM进行反硝化的效率为73%。使用乙醇(96.46%),葡萄糖(98.58%)或甘油(98.5%)作为碳源,SM的使用提供了卓越的反硝化效率。操作稳定性的评估允许使用IM进行12个循环的生物质再利用,使用SM进行9个循环。经过物理化学处理后,只有SM脱硝水保留在颜色和浊度的饮用水标准参数之内。

著录项

  • 来源
    《Journal of Environmental Management》 |2018年第1期|520-530|共11页
  • 作者单位

    Universidade do Estado de Santa Catarina, Departamento de Engenharia Ambiental, Laboratório de Tratamento de Água e Resíduos;

    Universidade do Estado de Santa Catarina, Departamento de Engenharia Ambiental, Laboratório de Tratamento de Água e Resíduos;

    Universidade Federal de Santa Catarina, Departamento de Engenharia Química e Engenharia de Alimentos, Laboratório de Engenharia Bioquímica, Campus Universitário Trindade;

    Universidade do Estado de Santa Catarina, Departamento de Engenharia Florestal, Herbário Lages da Universidade do Estado de Santa Catarina;

    Universidade do Estado de Santa Catarina, Departamento de Produção Animal e Alimentos, Laboratório de Tecnologia Enzimática;

    Universidade do Estado de Santa Catarina, Departamento de Engenharia Ambiental, Laboratório de Tratamento de Água e Resíduos;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Natural biomass; Denitrification; Nitrate; Nitrite; Carbon source; Potability;

    机译:天然生物质脱氮硝酸盐亚硝酸盐碳源电位;

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