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Evaluation of adsorptive desulfurization performance and economic applicability comparison of activated carbons prepared from various carbon sources

机译:评估来自各种碳源制备的活性炭的吸附脱硫性能和经济适用性

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Adsorptive desulfurization (ADS) using activated carbon (AC) as adsorbent presents competitive potential in separating thiophenic sulfur from liquid fuels with high selectivity under mild operation conditions. It is also a highly economic remedy in ultra-low sulfur content situations. Most importantly, a suitable feedstock for macroscopic quantity preparation of AC adsorbents with good adsorptive desulfurization performance and low-cost is required to satisfy the requirements of this field. In this work, four representative substances ( i.e. , coal, coconut shell, polyurethane plastic waste, and petroleum coke) were selected as the carbon source for the preparation of various AC adsorbents. The physicochemical properties of the prepared AC adsorbents were characterized using BET, SEM, XRD, XPS, elemental analysis and Boehm's method. The corresponding adsorptive desulfurization performance was investigated. The corresponding desulfurization capacity obtained was in the order: CS-ACA > PUPW-ACA > PC-ACA > AT-ACA. Under the optimal conditions of 30 °C and 30 min contact time, the desulfurization rate of 0.5 g PUPW-ACA can reach about 98%. The HHV of non-condensable gas generated during the experiment was calculated, and the HHV of the pyrolysis oil was measured. The results showed that the by-products produced by PC had the highest HHV. The economics of the desulfurization of the four kinds of activated carbon were analyzed and evaluated. From a comprehensive analysis, PUPW-ACA has the highest economic production value and has the potential for industrial production. This plays a dual role in environmental protection.
机译:使用活性炭(AC)作为吸附剂的吸附脱硫(ADS)呈现在温和操作条件下具有高选择性的液体燃料中硫代硫硫的竞争力。它在超低硫含量情况下也是一种高度经济的补救措施。最重要的是,需要一种适用于具有良好吸附脱硫性能和低成本的AC吸附剂的宏观量制备的原料,以满足该领域的要求。在这项工作中,选择四种代表性物质(即煤,椰子壳,聚氨酯塑料废物和石油焦)作为制备各种AC吸附剂的碳源。使用BET,SEM,XRD,XPS,元素分析和BOEHM方法表征制备的AC吸附剂的物理化学性质。研究了相应的吸附脱硫性能。获得的相应脱硫能力有序:Cs-ACA> PUPW-ACA> PC-ACA> AT-ACA。在30°C和30分钟接触时间的最佳条件下,0.5g Pupw-ACA的脱硫率可以达到约98%。计算了在实验期间产生的不可冷凝气体的HHV,并测量热解油的HHV。结果表明,PC生产的副产品具有最高的HHV。分析并评估了四种活性炭的脱硫的经济学。从综合分析,Pupw-ACA具有最高的经济生产价值,具有工业生产的潜力。这在环保中起着双重作用。

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