Advances in the Reduction of the Costs Inherent to Fossil Fuel Biodesulfurization Towards Its Potential Industrial Applications

S. Paixão, Tiago P. Silva, B. F. Arez, L. Alves
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引用次数: 9

Abstract

The biodesulfurization (BDS) process consists of the use of microorganisms for the removal of sulfur from fossil fuels. Through BDS it is possible to treat most of the organosulfur compounds recalcitrant to the conventional hydrodesulfurization (HDS), the petroleum industry's solution, at mild operating conditions, without the need for molecular hydrogen or metal catalysts. This technique results in lower emissions, smaller residue production, and less energy consumption, which makes BDS an eco-friendly process that can complement HDS making it more efficient. BDS has been extensively studied and much is already known about the process. Clearly, BDS presents advantages as a complementary technique to HDS; however, its commercial use has been delayed by several limitations both upstream and downstream the process. This study will comprehensively review and discuss key issues, like reduction of the BDS costs, advances, and/or challenges for a competitive BDS towards its potential industrial application aiming ultra-low sulfur fuels.
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降低化石燃料生物脱硫成本及其潜在工业应用的研究进展
生物脱硫(BDS)过程包括利用微生物从化石燃料中去除硫。通过BDS,可以在温和的操作条件下处理大多数难以进行传统加氢脱硫(HDS)的有机硫化合物,而不需要分子氢或金属催化剂。该技术排放更少,残留物产生更少,能耗更低,使北斗系统成为一种生态友好的工艺,可以补充HDS,提高其效率。人们对北斗系统进行了广泛的研究,对这一过程已经有了很多了解。显然,BDS作为HDS的补充技术具有优势;然而,由于上游和下游工艺的一些限制,它的商业应用一直被推迟。这项研究将全面审查和讨论关键问题,如降低北斗系统成本、进步和/或挑战,使北斗系统朝着其潜在的工业应用发展,目标是超低硫燃料。
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