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利用固定化的氧化硫硫杆菌RAI01细胞在流化床生物反应器中对有毒石油废碱液进行生物处理。

Biological treatment of toxic petroleum spent caustic in fluidized bed bioreactor using immobilized cells of Thiobacillus RAI01.

作者信息

Potumarthi Ravichandra, Mugeraya Gopal, Jetty Annapurna

机构信息

Bioengineering and Environmental Center, Indian Institute of Chemical Technology, Tarnaka, Hyderabad, India.

出版信息

Appl Biochem Biotechnol. 2008 Dec;151(2-3):532-46. doi: 10.1007/s12010-008-8229-9. Epub 2008 Jun 24.

Abstract

In the present studies, newly isolated Thiobacillus sp was used for the treatment of synthetic spent sulfide caustic in a laboratory-scale fluidized bed bioreactor. The sulfide oxidation was tested using Ca-alginate immobilized Thiobacillus sp. Initially, response surface methodology was applied for the optimization of four parameters to check the sulfide oxidation efficiency in batch mode. Further, reactor was operated in continuous mode for 51 days at different sulfide loading rates and retention times to test the sulfide oxidation and sulfate and thiosulfate formation. Sulfide conversions in the range of 90-98% were obtained at almost all sulfide loading rates and hydraulic retention times. However, increased loading rates resulted in lower sulfide oxidation capacity. All the experiments were conducted at constant pH of around 6 and temperature of 30 +/- 5 degrees C.

摘要

在目前的研究中,新分离出的硫杆菌属菌株被用于在实验室规模的流化床生物反应器中处理合成废硫化钠碱液。使用海藻酸钙固定化硫杆菌属菌株测试硫化物氧化情况。最初,应用响应面法优化四个参数,以检查间歇模式下的硫化物氧化效率。此外,反应器在不同的硫化物负荷率和停留时间下以连续模式运行51天,以测试硫化物氧化以及硫酸盐和硫代硫酸盐的形成。在几乎所有的硫化物负荷率和水力停留时间下,硫化物转化率都在90%-98%的范围内。然而,负荷率的增加导致硫化物氧化能力降低。所有实验均在pH值约为6且温度为30±5℃的恒定条件下进行。

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