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Optimization of low sulfur carob pulp liquor as carbon source for fossil fuels biodesulfurization

机译:低硫角豆粕浆液作为化石燃料生物脱硫碳源的优化

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BACKGROUND: Biodesulfurization (BDS) is a complementary technology to hydrodesulfurization since it allows the removal of recalcitrant sulfur compounds present in fossil fuels. The cost of culture medium to produce the biocatalysts is still one limitation for BDS application. Carob pulp, as an alternative carbon source, can reduce this cost. However, the presence of sulfates is critical, since BDS is inhibited at very low concentrations. Thus, the goal of this work was to optimize the process of sulfur precipitation on carob pulp liquor. RESULT: The effect of BaCl_2 concentration (0-0.5%) and exposure time (6-36 h) on sulfate removal from carob pulp liquor was studied according to a statistical design following the Doehlert distribution for two factors. This experimental design determined that 0.5% BaCl_2 concentration for 21 h were adequate conditions for sulfate removal from carob pulp liquor using BDS. CONCLUSION: These results demonstrate that it is possible to use alternative carbon sources derived from agro-industrial wastes for BDS, even those with high sulfur levels. For future industrial application, an inexpensive culture medium would have to be employed in a large-scale process and carob pulp liquor could be the carbon source.
机译:背景:生物脱硫(BDS)是加氢脱硫的一项补充技术,因为它可以去除化石燃料中存在的顽固性硫化合物。用于生产生物催化剂的培养基的成本仍然是BDS应用的限制之一。角豆浆作为替代碳源可以降低成本。但是,硫酸盐的存在至关重要,因为BDS在非常低的浓度下会被抑制。因此,这项工作的目的是优化角豆粕浆液中硫的沉淀过程。结果:根据Doehlert分布的两个因素,根据统计学设计,研究了BaCl_2的浓度(0-0.5%)和暴露时间(6-36 h)对角豆浆液中硫酸盐去除的影响。该实验设计确定0.5%BaCl_2浓度持续21 h是使用BDS从角豆粕浆液中去除硫酸盐的适当条件。结论:这些结果表明,即使是高硫含量的情况,也可以使用源自农业工业废物的替代碳源作为BDS。为了将来的工业应用,必须在大规模过程中使用廉价的培养基,角豆粕浆液可能是碳源。

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