首页> 外文期刊>Water Environment Research >Kinetics of Chemoheterotrophic Microbially Mediated Reduction of Ferric EDTA and the Nitrosyl Adduct of Ferrous EDTA for the Treatment and Regeneration of Spent Nitric Oxide Scrubber Liquor
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Kinetics of Chemoheterotrophic Microbially Mediated Reduction of Ferric EDTA and the Nitrosyl Adduct of Ferrous EDTA for the Treatment and Regeneration of Spent Nitric Oxide Scrubber Liquor

机译:化学营养的微生物介导的EDTA铁还原和EDTA亚铁的亚硝基加合物处理和再生废一氧化氮洗涤塔酒的动力学

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Biomass from a prototype reactor was used to investigate the kinetics of chemoheterotrophic reduction of solutions of ferric ethylene-diaminetetraacetic acid (EDTA) and solutions containing the nitrosyl adduct of ferrous EDTA using ethanol as the primary electron donor and carbon source. A series of batch experiments were conducted using biomass extracted from the scrubber solution treatment and regeneration stage of a prototype iron EDTA-based unit process for the absorption of nitric oxide with subsequent biological treatment. Using a linear-sweep voltammetric method for analysis of the ferric EDTA concentration, iron-reducing bacteria were found to behave according to the Monod kinetic model, at initial concentrations up to 2.16 g chemical oxygen demand (COD) as ethanol per liter, with a half-velocity constant of 0.532 g COD as ethanol/L and a maximum specific utilization rate of 0.127 mol/L of ferric ethylenediamine-tetraacetic acid [Fe(Ⅲ)EDTA]~*(g volatile suspended solids [VSS]/L)d~(-1). Based on batch analyses, biomass yield and endogenous decay values of iron-reducing bacteria were estimated to be 0.055 g VSS/g COD and 0.017 L/d, respectively. An average of 1.64 times the theoretical (stoichiometric) demand of ethanol was used to complete reduction reactions. Kinetics of the reduction of the nitrosyl adduct of ferrous EDTA are summarized by the following kinetic constants: half-velocity constant (K_S) of 0.39 g COD/L, maximum specific utilization rate (k) of 0.2 mol/L [NO • Fe(Ⅱ)EDTA~(2-)](g VSS/L)d~(-1), and inhibition constant (K_I) of 0.33 g COD/L, as applied to the modified Monod kinetic expression described herein. Based on batch analyses, the biomass yield of nitrosyl-adduct-reducing bacteria was estimated to be 0.259 g VSS/g COD, endogenous decay was experimentally determined to be 0.0569 L/d, and an average of 1.26 times the stoichiometric demand of ethanol was used to complete reduction reactions.
机译:使用原型反应器中的生物质,研究了使用乙醇作为主要电子供体和碳源的乙二胺三乙酸铁(EDTA)溶液和含EDTA亚铁亚硝基加成物的溶液的化学营养还原动力学。使用从洗涤器溶液处理和基于原型铁EDTA的单元工艺的再生阶段提取的生物质进行一系列批处理实验,以吸收一氧化氮并进行后续生物处理。使用线性扫描伏安法分析三价乙二胺四乙酸(EDTA)的浓度,发现还原铁细菌的行为符合Monod动力学模型,初始浓度最高为2.16 g化学需氧量(COD),以乙醇/升计。半速度常数(乙醇/ L)为0.532 g COD,乙二胺铁-四乙酸[Fe(Ⅲ)EDTA]〜*(g挥发性悬浮物[VSS] / L)的最大比利用率为0.127 mol / L 〜(-1)。根据批次分析,还原铁细菌的生物量产量和内源性腐烂值估计分别为0.055 g VSS / g COD和0.017 L / d。乙醇的理论(化学计量)需要量平均需要1.64倍才能完成还原反应。 EDTA铁还原亚硝酰基加成反应的动力学由以下动力学常数总结:半速度常数(K_S)为0.39 g COD / L,最大比利用率(k)为0.2 mol / L [NO•Fe( Ⅱ)EDTA〜(2-)](g VSS / L)d〜(-1),抑制常数(K_I)为0.33g COD / L,适用于本文所述的改良Monod动力学表达。根据批次分析,还原亚硝酰基加合物的细菌的生物量产量估计为0.259 g VSS / g COD,实验确定内源性腐烂为0.0569 L / d,平均乙醇化学计量需求的1.26倍。用于完成还原反应。

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