Yu Bo, Ma Cuiqing, Zhou Wenjuan, Wang Ying, Cai Xiaofeng, Tao Fei, Zhang Quan, Tong Mingyou, Qu Jingyao, Xu Ping
State Key Laboratory of Microbial Technology, Shandong University, Jinan, China.
FEMS Microbiol Lett. 2006 May;258(2):284-9. doi: 10.1111/j.1574-6968.2006.00227.x.
Rhodococcus erythropolis XP could grow well with condensed thiophenes, mono-thiophenic compounds and mercaptans present in gasoline. Rhodococcus erythropolis XP was also capable of efficiently degrading the condensed thiophenes in resting cell as well as biphasic reactions in which n-octane served as a model oil phase. Free whole cells of R. erythropolis XP were adopted to desulfurize fluid catalytic cracking (FCC) and straight-run (SR) gasoline oils. About 30% of the sulfur content of FCC gasoline and 85% of sulfur in SR gasoline were reduced, respectively. Gas chromatography analysis with atomic emission detection also showed depletion of sulfur compounds in SR gasoline. Rhodococcus erythropolis XP could partly resist the toxicity of gasoline and had an application potential to biodesulfurization of gasoline.
红平红球菌XP能在汽油中存在的稠合噻吩、单噻吩类化合物和硫醇的环境中良好生长。红平红球菌XP还能够在静息细胞中高效降解稠合噻吩,以及在以正辛烷作为模拟油相的双相反应中降解稠合噻吩。采用红平红球菌XP的游离全细胞对流化催化裂化(FCC)汽油和直馏(SR)汽油进行脱硫。FCC汽油的硫含量分别降低了约30%,SR汽油中的硫含量降低了85%。采用带原子发射检测的气相色谱分析也表明SR汽油中的硫化合物减少。红平红球菌XP能够部分抵抗汽油的毒性,在汽油生物脱硫方面具有应用潜力。