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Comparison of biological and chemical treatment processes as cost-effective methods for elimination of benzoate in saline wastewaters

机译:比较生物和化学处理工艺,作为消除含盐废水中苯甲酸酯的经济有效方法

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摘要

Eight mixed cultures, able to degrade benzoic acid under saline conditions were established and kinetic parameters were determined in batch processes with cultures SBM002 (0.5 g d~(-1)·g oDM~(-1)), SBM003 (0.7 g d~(-1)·g oDM~(-1)) and SBM007 (2.2 g d~(-1)·g oDM~(-1)) showing the highest degradation rates. Treatability of an industrial waste water (12 g L~(-1) benzoic acid, 82 g L~(-1) NaCl) by these cultures was proven in a fed-batch system (SBM002 & SBM003) and a continuous flow reactor (SBM007). The performance of the continuous flow reactor was 15-times higher compared to the fed-batch system due to the change of inocula, higher concentration of ammonia as nutrient and less accumulation of possibly toxic catecholic compounds. Average DOC reduction was found to be 98% at 100 g L~(-1) NaCl and 1.2 g L~(-1) benzoic acid under these conditions. Pre-treatment of the waste water via chemical precipitation by acidification to pH 3.5 diminished the concentration of benzoic acid to 2.1 g L~(-1). In a combined chemical-biological process the volume of the bioreactor is reduced to 15% compared to a pure biological process. A comparison of operational costs for these three alternatives is presented.
机译:建立了八种能够在盐水条件下降解苯甲酸的混合培养物,并分别用SBM002(0.5 gd〜(-1)·g oDM〜(-1)),SBM003(0.7 gd〜(- 1)·g oDM〜(-1))和SBM007(2.2 gd〜(-1)·g oDM〜(-1))降解率最高。在分批进料系统(SBM002&SBM003)和连续流反应器(SBM002)中证明了这些培养物对工业废水(12 g L〜(-1)苯甲酸,82 g L〜(-1)NaCl)的处理能力。 SBM007)。由于接种量的变化,作为营养物的氨的浓度较高以及可能有毒的儿茶酚化合物的积聚较少,连续流反应器的性能比分批进料系统高15倍。在这些条件下,在100 g L〜(-1)NaCl和1.2 g L〜(-1)苯甲酸下,平均DOC减少量为98%。通过酸化至pH 3.5进行化学沉淀对废水进行预处理,将苯甲酸的浓度降至2.1 g L〜(-1)。与纯生物过程相比,在化学-生物过程联合过程中,生物反应器的体积减少到15%。比较了这三种选择的运营成本。

著录项

  • 来源
    《Water Research》 |2014年第1期|1-11|共11页
  • 作者单位

    Institute of Sanitary Engineering, Water Quality and Solid Waste Management, University of Stuttgart, D-70569 Stuttgart, Germany;

    Institute of Sanitary Engineering, Water Quality and Solid Waste Management, University of Stuttgart, D-70569 Stuttgart, Germany;

    Institute of Sanitary Engineering, Water Quality and Solid Waste Management, University of Stuttgart, D-70569 Stuttgart, Germany,Department of Biological Waste Air Purification, Institute of Sanitary Engineering, Water Quality and Solid Waste Management, University of Stuttgart, Bandtaele 2, D~70569 Stuttgart, Germany;

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

    Benzoate; Elimination; Saline conditions; Waste water treatment; Chemical precipitation; Biodegradation;

    机译:苯甲酸盐;消除;盐水条件;废水处理;化学沉淀;生物降解;

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