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Assessing biomass diversity and performance of an activated sludge process treating saline table olive processing wastewater

机译:评估生物质化多样性和活性污泥工艺的性能处理盐水表橄榄加工废水

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摘要

This study aimed to determine the effects of salinity on the biomass behavior and its diversity in activated sludge process (ASP) treating the table olive processing wastewater (TOPW), and to evaluate ASP performances under increased TOPW concentration feeding, the numerical abundance, diversity and activity of the biomass, removal efficiencies of chemical oxygen demand (COD), phenolic compounds, nitrogen and phosphorus were evaluated. Results showed that biomass growth is very high and became faster according to an increase in the percentage of TOPW feeding and reached 5.2g(MLVSS)?l(-1). The specific oxygen uptake rate (SOUR) analysis revealed that salinity up to 10gl(-1) provides an increase in biomass activity. SOUR reached a maximum of 20.3g(O2)g(MLVSS)(-1)h(-1). The increasing percentages of TOPW induce actually an evolution of microorganism's biodiversity; the microorganism communities were characterized by the abundance of halotolerant, Pseudomonas and Yeast genus that became the most abundant in the bioreactor as adaptation response against salinity. Furthermore, COD, phenolic compounds, nitrogen and phosphorus removal efficiencies attained 92.3%, 84.5%, 80% and 60%, respectively. A satisfactory release of extracellular polymeric substances is found to occur in the reactor with regard to increased saline TOPW, providing significant removal efficiencies and best settling of sludge.
机译:该研究旨在确定盐度对生物量行为的影响及其在活性污泥过程中的多样性(ASP)处理表橄榄加工废水(TOPW),并在增加TOPW浓度饲养时评价ASP表演,数值丰富,多样性和评价生物质的活性,评估化学需氧量(COD),酚类化合物,氮和磷的去除效率。结果表明,生物质生长非常高,并根据TOPW进料百分比的增加而变得更快,并且达到5.2g(MLVS)?L(-1)。特定的氧摄取率(酸)分析显示,高达10gL(-1)的盐度提供生物质活性的增加。酸达到最多20.3g(o2)g(mlvss)( - 1)h(-1)。越来越多的Topw诱导实际上是微生物的生物多样性的演变;微生物群群的特征在于卤化剂,假鼠和酵母属的丰富,其成为生物反应器中最丰富的含量,作为对盐度的适应性应答。此外,鳕鱼,酚类化合物,氮和磷去除效率分别达到92.3%,84.5%,80%和60%。发现令人满意的细胞外聚合物物质释放在反应器中发生在反应器中,在增加的盐水上,提供显着的去除效率和最佳污泥沉降。

著录项

  • 来源
    《Environmental Technology》 |2019年第20期|2608-2619|共12页
  • 作者单位

    Lab Hydrobiol Ecotoxicol & Sanitat LHEA URAC 33 BP 2390 Marrakech Morocco|Univ Cadi Ayyad Natl Ctr Studies & Res Water & Energy CNEREE BP 511 Marrakech Morocco;

    Lab Hydrobiol Ecotoxicol & Sanitat LHEA URAC 33 BP 2390 Marrakech Morocco|Univ Cadi Ayyad Natl Ctr Studies & Res Water & Energy CNEREE BP 511 Marrakech Morocco;

    Univ Nangui Abrogoua Lab Biotechnol & Food Microbiol Abidjan Cote Ivoire;

    Lab Hydrobiol Ecotoxicol & Sanitat LHEA URAC 33 BP 2390 Marrakech Morocco|Univ Cadi Ayyad Natl Ctr Studies & Res Water & Energy CNEREE BP 511 Marrakech Morocco;

    Lab Hydrobiol Ecotoxicol & Sanitat LHEA URAC 33 BP 2390 Marrakech Morocco|Univ Cadi Ayyad Natl Ctr Studies & Res Water & Energy CNEREE BP 511 Marrakech Morocco;

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

    Activated sludge process; table olive processing wastewater; salinity; biomass diversity; extracellular polymeric substances;

    机译:活性污泥工艺;表橄榄加工废水;盐度;生物质多样性;细胞外聚合物物质;

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