National Key Laboratory of Biochemical Engineering, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, People's Republic of China.
World J Microbiol Biotechnol. 2013 Jan;29(1):103-8. doi: 10.1007/s11274-012-1162-7. Epub 2012 Sep 1.
Biodesulfurization (BDS) is a promising method to remove sulfur compounds from diesel and gasoline. However, the information on BDS of heavy oil is scanty, which might be due to their "undesirable" physical properties and more complicated sulfur diversities. In this study, the BDS of one kind of heavy oil, bunker oil MFO380 was investigated. The biocatalyst was obtained by the enrichment with oil sludge as the seed and using dibenzothiophene (DBT) as the sole sulfur source. The enriched biocatalyst (microbial mixed culture) could selectively remove sulfur from DBT and DBT was transformed into 2-hydroxybiphenyl, which indicates that the BDS process is beneficial to non-destructive carbon bonds and thus can maintain the calorific value. The bunker oil BDS results showed that after 7 days of incubation, the removal efficiency of sulfur in MFO380 was only 2.88 %, but this could be significantly improved by adding surfactants Triton X-100 or Tween 20. This effect could be attributed to greatly reduced viscosity of heavy oil and increased mass transfer of sulfur compounds in heavy oil into water. Adding Triton X-100 achieved the highest removal efficiency of sulfur, up to 51.7 % after 7 days of incubation. The optimal amount of Triton X-100 was 0.5 g/50 ml medium. When toluene was added as an organic solvent for MFO380, the BDS activity was improved, while lower than the effect of adding surfactants.
生物脱硫(BDS)是一种从柴油和汽油中去除硫化合物的很有前途的方法。然而,重油的 BDS 信息很少,这可能是由于它们“不理想”的物理性质和更复杂的硫多样性。在这项研究中,考察了一种重油(船用燃料油 MFO380)的 BDS。生物催化剂是通过以油泥为种子进行富集并用二苯并噻吩(DBT)作为唯一的硫源获得的。富集的生物催化剂(微生物混合培养物)可以选择性地从 DBT 中去除硫,并且 DBT 转化为 2-羟基联苯,这表明 BDS 过程有利于非破坏性的碳键,从而可以保持热值。船用燃料油 BDS 的结果表明,在 7 天的孵育后,MFO380 中硫的去除效率仅为 2.88%,但通过添加表面活性剂 Triton X-100 或 Tween 20 可以显著提高。这种效果可以归因于重油粘度的大大降低和重油中硫化合物向水中的传质增加。添加 Triton X-100 可在 7 天的孵育后达到最高的硫去除效率,达到 51.7%。Triton X-100 的最佳用量为 0.5 g/50 ml 培养基。当甲苯被添加为 MFO380 的有机溶剂时,BDS 活性得到了提高,但低于添加表面活性剂的效果。