Efficient catalyst development for deep aerobic photocatalytic oxidative desulfurization: recent advances, confines, and outlooks

I. Shafiq, Sumeer Shafique, P. Akhter, G. Abbas, A. Qurashi, M. Hussain
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引用次数: 53

Abstract

ABSTRACT The supply of environmentally friendly petroleum products has extreme importance in ensuring a reliable healthy climate globally. The elimination of obstinate sulfur complexes is an enormous task in the current challenging legislative situation for fuel refining companies. The conversion of these obstinate sulfur complexes is challenging in the progression of deeper photocatalytic oxidative desulfurization. As an eco-friendly, inexpensive and non-lethal oxidant with bountiful accessibility, oxygen prevailing in the air is utilized in the deep photocatalytic oxidative desulfurization process as a reliable substitute for hydroperoxide and other expensive hydroperoxide derivatives. However, the superlative activation of oxygen under light irradiations is hitherto a challenge. This potential review critically analyzes the recent strategies employed for the development of efficient materials for the progression of deep aerobic photocatalytic oxidative desulfurization system for the removal of obstinate sulfur complexes. Furthermore, the associated technologies influencing the deep photocatalytic oxidative desulfurization performances have been identified and significant parameters for the process optimization are evaluated to address the forthcoming challenges. Graphical Abstract
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深度好氧光催化氧化脱硫高效催化剂的研究进展、局限与展望
环境友好型石油产品的供应对于确保全球可靠的健康气候至关重要。在当前充满挑战的立法形势下,消除顽固硫络合物对燃料精炼公司来说是一项艰巨的任务。这些顽固硫配合物的转化是深度光催化氧化脱硫研究的难点。空气中的氧是一种环境友好、价格低廉、可及性丰富的非致死性氧化剂,可作为氢过氧化物和其他昂贵的氢过氧化物衍生物的可靠替代品,用于深度光催化氧化脱硫过程。然而,迄今为止,光照射下氧的最高活化是一个挑战。这篇潜在的综述批判性地分析了最近用于开发用于去除顽固硫络合物的深度好氧光催化氧化脱硫系统进展的高效材料的策略。此外,还确定了影响深度光催化氧化脱硫性能的相关技术,并对工艺优化的重要参数进行了评估,以应对即将到来的挑战。图形抽象
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