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Removal of High Levels of Cyanide and COD from Cassava Industrial Wastewater by a Fixed-Film Sequencing Batch Reactor

机译:通过固定膜测序批量反应器去除来自木薯工业废水的高水平氰化物和鳕鱼

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The fixed-film sequencing batch reactor, or F-SBR, was developed to treat high organic compound levels and toxic cyanide concentrations in cassava wastewater. The performance of the F-SBR was compared with that of a conventional sequencing batch reactor, or SBR, that was operated with organic compound contents of 16,266.67-26,666 mg COD/L and 132.92-252.66 mg CN-/L. The cyanide and chemical oxygen demand removal efficiencies of the conventional SBR system were 42.61% and 36.83%, respectively, while those of the F-SBR were 77.95% and 74.43%, respectively; the cyanide removal efficiency reached 95.45% when the hydraulic retention time was increased to 5 days, and the F-SBR was very effective for the complete removal of cyanide when the hydraulic retention time was increased to 10 days. This effectiveness was similar to the effectiveness of chemical oxygen demand removal, which reached 40-78% efficiency with the F-SBR system. These results showed that the immobilization of cyanide-degrading bacteria such asAgrobacterium tumefaciensSUTS 1 andPseudomonas monteiliiSUTS 2 carried out with a polypropylene ring in a fixed-film aerobic system enhanced the performance of the reactor and can be successfully applied for cyanide and chemical oxygen demand removal from industrial wastewater with high cyanide and chemical oxygen demand concentrations. This study may provide a promising alternative technique that reduces economic operation costs in solving wastewater contamination problems.
机译:开发了固定膜测序批量反应器或F-SBR,以治疗木薯废水中的高有机化合物水平和有毒的氰化物浓度。将F-SBR的性能与常规测序批量反应器或SBR的性能进行了比较,其与有机化合物含量为16,266.67-26,666mg Cod / L和132.92-252.66mg CN- / L的操作。常规SBR系统的氰化物和化学氧需求去除效率分别为42.61%和36.83%,而F-SBR分别为77.95%和74.43%;当液压保留时间增加到5天时,氰化物去除效率达到95.45%,并且当液压保留时间增加至10天时,F-SBR非常有效地完全除去氰化物。该有效性类似于化学氧需求去除的有效性,其效率为40-78%,F-SBR系统达到40-78%。这些结果表明,在固定膜有氧体系中用聚丙烯环进行的氰化物降解细菌的固定化术曲棍球菌1 andpseudomonas onteiliisuts 2增强了反应器的性能,可以成功地应用于氰化物和化学氧需求去除具有高氰化物和化学需氧量浓度的工业废水。本研究可以提供有希望的替代技术,可降低解决废水污染问题的经济运行成本。

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