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Determination of the intrinsic kinetic parameters of sulfide-oxidizing autotrophic denitrification in differential reactors containing immobilized biomass

机译:固定化生物质反应器中硫化物氧化自养反硝化的内在动力学参数的确定

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Nitrogen removal coupled with sulfide oxidation has potential for the treatment of effluents from anaerobic reactors because they contain sulfide, which can be used as an endogenous electron donor for denitrification. This work evaluated the intrinsic kinetics of sulfide-oxidizing autotrophic denitrification via nitrate and nitrite in systems containing attached cells. Differential reactors were fed with nitrified synthetic domestic sewage and different sulfide concentrations. The intrinsic kinetic parameters of nitrogen removal were determined when the mass transfer resistance was negligible. This bioprocess could be described by a half-order kinetic model for biofilms. The half-order kinetic coefficients ranged from 0.425 to 0.658mgN ~(1/2)L ~(-1/2)h ~(-1) for denitrification via nitrite and from 0.190 to 0.609mgN ~(1/2)L ~(-1/2)h ~(-1) for denitrification via nitrate. In this latter, the lower value was due to the use of electrons donated from intermediary sulfur compounds whose formation and subsequent consumption were detected.
机译:脱氮和硫化物氧化相结合具有处理厌氧反应器废水的潜力,因为它们含有硫化物,可以用作反硝化的内源电子供体。这项工作评估了含有附着细胞的系统中通过硝酸盐和亚硝酸盐硫化物氧化的自养反硝化的内在动力学。向差动反应器中供入硝化的合成生活污水和不同浓度的硫化物。当传质阻力可忽略时,确定脱氮的内在动力学参数。该生物过程可以通过生物膜的半阶动力学模型来描述。通过亚硝酸盐反硝化的半级动力学系数范围为0.425至0.658mgN〜(1/2)L〜(-1/2)h〜(-1),范围为0.190至0.609mgN〜(1/2)L〜 (-1/2)h〜(-1)用于通过硝酸盐进行反硝化。在后者中,较低的值是由于使用了从中间硫化合物提供的电子,这些中间硫化合物可检测到形成和随后的消耗。

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