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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Biokinetics of microbial consortia using biogenic sulfur as a novel electron donor for sustainable denitrification
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Biokinetics of microbial consortia using biogenic sulfur as a novel electron donor for sustainable denitrification

机译:使用生物硫作为可持续反硝化的新型电子供体的微生物混合的生物学

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摘要

In this study, the biokinetics of autotrophic denitrification with biogenic S-0 (ADBIOS) for the treatment of nitrogen pollution in wastewaters were investigated. The used biogenic S-0, a by-product of gas desulfurization, was an elemental microcrystalline orthorhombic sulfur with a median size of 4.69 mu m and a specific surface area of 3.38 m(2)/g, which made S-0 particularly reactive and bioavailable. During denitritation, the biomass enriched on nitrite (NO2-) was capable of degrading up to 240 mg/l NO2--N with a denitritation activity of 339.5 mg NO2--N/g VSS.d. The use of biogenic S-0 induced a low NO2--N accumulation, hindering the NO2--N negative impact on the denitrifying consortia and resulting in a specific denitrification activity of 223.0 mg NO3--N/g VSS.d. Besides Thiobacillus being the most abundant genus, Moheibacter and Thermomonas were predominantly selected for denitrification and denitritation, respectively.
机译:在该研究中,研究了用生物营养脱氮的生物营养脱氮,用于治疗废水中的氮气污染。 使用的生物生物S-0,气体脱硫的副产物是元素微晶正交硫,中值尺寸为4.69μm和3.38m(2)/ g的比表面积,这使得S-0特别是反应性 和生物利用。 在脱氮期间,富含亚硝酸盐(NO2-)的生物质能够降解高达240mg / L NO2 - N,其脱氮活性为339.5mg no2 - n / g Vss.d. 生物S-0的使用诱导低NO2 - N积累,阻碍了对反硝化的联原的NO2-n负面影响,并产生223.0mg NO 3 - N / g VSS.D的特定脱氮活性。 此外,除了作为最丰富的属,莫希曲杆菌和Thermogonas主要是分别选择过硝化和脱氮。

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