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Effects of C/N, C/S and S/N ratios on TOC and nitrogen removal in the sulfate reduction-sulfur denitrification process

机译:C / N,C / s和s / N比对硫酸盐还原 - 硫反硝化过程中TOC和脱氮的影响

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摘要

Effects of C/N, C/S and S/N ratios on TOC and denitrification removal were examined in the sulfate reductionsulfur denitrification process using the two upflow biological filter reactors. High TOC and nitrogen removal ratio was obtained at C/N=2.2 and S/N=0.7 through the reactors. In the first reactor, sulfate reduction occurred predominantly. SRB mainly produced acetate at C/S=3.1. However, acetate was decomposed in the first reactor at C/S=1.6. In the second reactor, sulfur denitrification and heterotrophic denitrification occurred simultaneously. Sulfur denitrification occurred in the lower part of the reactor in S/N=0.7, and all sulfide produced in the first reactor was re-oxidized. On the other hand, sulfur denitrification also occurred in the upper part of the reactor in S/N=1.3, and 35 mg/gSS of sulfur granules were accumulated in the biofilm. The sulfur granules played an important role on denitrification. The activity of SDNB in the second reactor was about 3-4 times lower than the activity of DNB. When the S/N ratio increased, the activity of SDNB increased and those of DNB decreased. The number of SDNB was greater than those of DNB. The activity of SRB in the first reactor increased, when S/N ratio increased. SRB also grew in the anoxic second reactor, and the activity of SRB in the second reactor was relatively high. The sulfur cycle consist of sulfate reduction and sulfur denitrification in the second reactor might be established in the reactor.
机译:使用两个上流式生物滤池,在硫酸盐还原-硫反硝化工艺中检查了C / N,C / S和S / N比对TOC和反硝化去除的影响。通过反应器在C / N = 2.2和S / N = 0.7下获得高的TOC和氮去除率。在第一反应器中,硫酸盐还原主要发生。 SRB主要以C / S = 3.1产生乙酸盐。然而,乙酸盐在第一反应器中以C / S = 1.6分解。在第二反应器中,硫反硝化和异养反硝化同时进行。在S / N = 0.7的情况下,反应器下部发生硫反硝化作用,第一个反应器中产生的所有硫化物均被重新氧化。另一方面,在反应器的上部,S / N = 1.3时也发生硫的反硝化,生物膜中积存35mg / gSS的硫颗粒。硫颗粒对反硝化起重要作用。第二反应器中SDNB的活性比DNB的活性低约3-4倍。当信噪比增加时,SDNB的活性增加而DNB的活性降低。 SDNB的数量大于DNB的数量。当信噪比增加时,第一反应器中SRB的活性增加。 SRB在缺氧的第二反应器中也生长,第二反应器中的SRB活性较高。硫循环包括硫酸盐还原和第二反应器中的硫反硝化。

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