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新分离的硫化物氧化假单胞菌属菌株C27的特性:反应动力学和化学计量学

Characterization of a newly isolated strain Pseudomonas sp. C27 for sulfide oxidation: Reaction kinetics and stoichiometry.

作者信息

Xu Xi-Jun, Chen Chuan, Guo Hong-Liang, Wang Ai-Jie, Ren Nan-Qi, Lee Duu-Jong

机构信息

State Key Laboratory of Urban Water Resource and Environment, Harbin Institute of Technology, P. O. Box 2614, 202 Haihe Road, Harbin 150090, China.

Department of Chemical Engineering, National Taiwan University, Taipei 10617, Taiwan.

出版信息

Sci Rep. 2016 Feb 11;6:21032. doi: 10.1038/srep21032.

Abstract

Sulfide biooxidation by the novel sulfide-oxidizing bacteria Pseudomonas sp. C27, which could perform autotrophic and heterotrophic denitrification in mixotrophic medium, was studied in batch and continuous systems. Pseudomonas sp. C27 was able to oxidize sulfide at concentrations as high as 17.66 mM. Sulfide biooxidation occurred in two distinct stages, one resulting in the formation of sulfur with nitrate reduction to nitrite, followed by thiosulfate formation with nitrite reduction to N2. The composition of end-products was greatly impacted by the ratio of sulfide to nitrate initial concentrations. At a ratio of 0.23, thiosulfate represented 100% of the reaction products, while only 30% with a ratio of 1.17. In the continuous bioreactor, complete removal of sulfide was observed at sulfide concentration as high as 9.38 mM. Overall sulfide removal efficiency decreased continuously upon further increases in influent sulfide concentrations. Based on the experimental data kinetic parameter values were determined. The value of maximum specific growth rate, half saturation constant, decay coefficient, maintenance coefficient and yield were to be 0.11 h(-1), 0.68 mM sulfide, 0.11 h(-1), 0.21 mg sulfide/mg biomass h and 0.43 mg biomass/mg sulfide, respectively, which were close to or comparable with those reported in literature by other researches.

摘要

新型硫化物氧化细菌假单胞菌属C27能够在混合营养培养基中进行自养和异养反硝化,对其硫化物生物氧化过程在间歇式和连续式系统中进行了研究。假单胞菌属C27能够氧化浓度高达17.66 mM的硫化物。硫化物生物氧化分两个不同阶段进行,一个阶段是硫化物氧化生成硫,同时硝酸盐还原为亚硝酸盐,随后是硫代硫酸盐生成,亚硝酸盐还原为N2。最终产物的组成受硫化物与硝酸盐初始浓度比例的极大影响。当比例为0.23时,硫代硫酸盐占反应产物的100%,而比例为1.17时仅占30%。在连续生物反应器中,当硫化物浓度高达9.38 mM时,可观察到硫化物的完全去除。随着进水硫化物浓度进一步增加,总体硫化物去除效率持续下降。根据实验数据确定了动力学参数值。最大比生长速率、半饱和常数、衰减系数、维持系数和产率的值分别为0.11 h(-1)、0.68 mM硫化物、0.11 h(-1)、0.21 mg硫化物/mg生物量·h和0.43 mg生物量/mg硫化物,这些值与其他研究文献报道的值接近或相当。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7fac/4750033/13fd46eaa8e2/srep21032-f1.jpg

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