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Regeneration performance and mechanism of modified walnut shell biochar catalyst for low temperature catalytic hydrolysis of organic sulfur

机译:改性核桃壳生物炭催化剂对有机硫的低温催化水解的再生性能及机理

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In this study, four different regeneration methods (WR, NR, AR and WNAR), regeneration conditions and regeneration mechanism of a Fe-Cu-KOH supported on WSB as a precursor catalyst (Fe-Cu-KOH/WSB) for low temperature hydrolysis of CS2 and COS were investigated. The results showed that the WNAR method (Water washing + Nitrogen sweeping + Alkali steeping regeneration) had the best regeneration performance. Under optimal regeneration conditions (500 degrees C nitrogen sweeping temperature and 13% KOH steeping content), the regenerated Fe-Cu-KOH/WSB catalyst could achieve to 42.64 mg S/g sulfur capacity, and it was close to fresh catalyst (48.58 mg S/g). A small amount of sulfate and a large number of -OH groups were washed away in water washing process. XPS, TG/DTA and DRIFTS results indicated that a large number of Fe-2(SO4)(3) were decomposed into Fe2O3 in nitrogen sweeping process, which could recover a large number of surface area and active component. CO2-TPD results indicated that the supplement of -OH groups in KOH steeping process recovered the alkalinity site strength, which was conducive to desulfurization. After three times regeneration, the sulfur capacity of Fe-Cu-KOH/WSB could reach 33.94 mg S/g, and it indicated that the WNAR method had good stability for the recovery of catalytic activity. From BET, CO2-TPD XPS and TG/DTA results, it could be seen that the decrease of adsorptive and catalytic ability was attributed to the oxidation of WSB, the block effect of KOH and decrease of CuO contents. This study provided a suitable regeneration method for industrial application of Fe-Cu-KOH/WSB on catalytic hydrolysis of organic sulfur.
机译:在本研究中,四种不同的再生方法(WR,NR,Ar和Wnar),再生条件和再生机制,WSB作为前体催化剂(Fe-Cu-KOH / WSB),用于低温水解的Fe-Cu-Koh调查了CS2和COS。结果表明,WNAR方法(水洗+氮气综合+碱浸渍再生)具有最佳的再生性能。在最佳再生条件下(500℃氮气扫描温度和13%KOH浸渍含量),再生的Fe-Cu-Koh / WSB催化剂可以达到42.64mg S / G硫的能力,并且它接近新鲜催化剂(48.58毫克S / g)。在水洗过程中洗掉少量硫酸盐和大量的-OH基团。 XPS,Tg / DTA和漂移结果表明,大量Fe-2(SO 4)(3)分解成Fe2O3在氮气扫描过程中,其可以恢复大量的表面积和活性成分。 CO2-TPD结果表明,KOH浸渍过程中的-OH基团的补充回收了碱性部位强度,这有利于脱硫。再生三次后,Fe-Cu-KOH / WSB的硫容量可达到33.94mg S / g,表明WNAR方法具有良好的催化活性稳定性。从BET,CO2-TPD XPS和TG / DTA结果,可以看出吸附性和催化能力的降低归因于WSB的氧化,KOH的阻滞效应和CUO含量的降低。本研究为Fe-Cu-KOH / WSB的工业应用提供了合适的再生方法,用于有机硫的催化水解。

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