Maqbool Muhammad, Akhter Toheed, Faheem Muhammad, Nadeem Sohail, Park Chan Ho, Mahmood Asif
Department of Chemistry, University of Management and Technology C-II, Johar Town Lahore 54770 Pakistan
Department of Chemical and Biological Engineering, Gachon University Seongnam 13120 Republic of Korea
RSC Adv. 2023 Jan 10;13(3):1779-1786. doi: 10.1039/d2ra07240h. eCollection 2023 Jan 6.
Ethylene Oxide (EO) is an essential raw material used in various consumer products like different glycol derivatives, ethoxylates, and polymers. We hydrothermally synthesize niobium oxide incorporated with mesoporous silica material (Nb/MSM), an efficient catalyst for CO free-ethylene oxide (EO) production partial oxidation of ethylene. The structural properties of Nb/MSM catalysts were characterized using XRD, TEM, and N adsorption-desorption. The catalytic activity of synthesized materials in liquid phase epoxidation (LPE) of ethylene was evaluated in the presence of peracetic acid (PAA) as an oxidant to avoid the production of CO and also minimize metal leaching. GC chromatography was used to investigate the successful production of EO, and a peak with a retention time (RT) of 9.01 min served as confirmation. Various reaction parameters temperature, catalyst concentration, ethylene to PAA molar ratio, and solvent effect were investigated in order to optimize the reaction conditions for enhancing the ethylene conversion and selectivity for EO production. By this approach, the challenges of greenhouse gas production and metal leaching were addressed which were associated with previously reported catalysts.
环氧乙烷(EO)是一种重要的原材料,用于各种消费品中,如不同的二醇衍生物、乙氧基化物和聚合物。我们通过水热法合成了负载在介孔二氧化硅材料(Nb/MSM)上的氧化铌,这是一种用于通过乙烯部分氧化生产无CO环氧乙烷(EO)的高效催化剂。使用XRD、TEM和N吸附-脱附对Nb/MSM催化剂的结构性质进行了表征。在以过氧乙酸(PAA)作为氧化剂的情况下,评估了合成材料在乙烯液相环氧化(LPE)中的催化活性,以避免产生CO并使金属浸出最小化。使用气相色谱法研究环氧乙烷的成功生成情况,保留时间(RT)为9.01分钟的峰作为确认依据。研究了各种反应参数,如温度、催化剂浓度、乙烯与过氧乙酸的摩尔比以及溶剂效应,以优化反应条件,提高乙烯转化率和环氧乙烷生产的选择性。通过这种方法,解决了与先前报道的催化剂相关的温室气体产生和金属浸出的挑战。