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Influence of sulfide to nitrate ratios on denitrifying sulfide removal and elemental sulfur reclamation from wastewater containing high organic carbon concentration

机译:硫化物对硝酸盐比对含有高有机碳浓度的废水中硫化物去除和元素硫回收的影响

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This study evaluated the effect of sulfide to nitrate (S/N) ratios on elementary sulfur biotransformation in a simultaneous autotrophic and heterotrophic denitrifying sulfide removal(DSR) process, at a carbon to nitrate (C/N) ratio of 3/1. Four groups of batch tests were conducted at S/N ratios of 5/2, 5/5, 5/6 and 5/8, respectively. Results showed a low accumulation of elementary sulfur. Elementary sulfur was first obtained by the oxidizing of sulfide through DSR process and then was reduced back to sulfide with the interaction of surplus acetate. The highest elementary sulfur transformation rates at S/N ratios of 5/2, 5/5, 5/6 and 5/8 were 47.1%, 94.7%, 94.0% and 93.5%, respectively. It can be concluded from analysis of the stoichiometric proportion of the bio-chemical reactions that the proportion of acetate consumed in DSR process to the whole acetate consumption in the first 6 hours were no more than 50%, indicating a low efficiency of DSR process under high concentration of organic carbons, except for the condition under S/N of 5/6, during which period the highest proportion can be as much as 85.6%. Given the elemental sulfur transformation rate and the acetate consumption proportion in DSR process, it can be concluded that adjusting the ratio of sulfide to nitrate at an appropriate level (around 5/6) would be an appropriate strategy for higher elemental transformation.
机译:该研究评估了硫化物对硝酸盐(S / N)比在同时自养和异养的反硝化硫化物去除(DSR)工艺中的基本硫的生物转化的比例,在碳氮化至硝酸盐(C / N)的比例3/1中。在5/2,5 / 5,5 / 6和5/8的S / N比分别进行四组批次试验。结果表明,基本硫的累积较低。首先通过DSR工艺氧化硫化物首先获得基本硫,然后通过乙酸剩余的相互作用减少回硫化物。 S / N比的最高基本硫转化率5 / 2,5 / 5,5 / 6和5/8分别为47.1%,94.7%,94.0%和93.5%。可以从分析中分析生物化学反应的化学计量比例的分析中,在前6小时内乙酸酯的醋酸酸盐比例不超过50%,表明DSR过程的低效率高浓度的有机碳,除了S / N的条件为5/6,在此期间最高比例可以高达85.6%。鉴于DSR工艺中的元素硫变换率和醋酸盐消耗比例,可以得出结论,调节硫化物与硝酸盐的比例在适当的水平(约5/6)是适当的元素转化的策略。

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