Nada Majid H, Larsen Sarah C, Gillan Edward G
University of Iowa, Department of Chemistry Iowa City IA 52242 USA
University of Houston 4302 University Drive, Room 102 Houston TX 77004 USA
Nanoscale Adv. 2019 Sep 3;1(10):3918-3928. doi: 10.1039/c9na00399a. eCollection 2019 Oct 9.
Aluminosilicate-based zeolite materials, such as ZSM-5 and mordenite, are well-studied as catalysts. Typical approaches to synthesize these zeolites require either templates or seeds to direct ordered crystal growth and both of these are expensive and add to the complexity of zeolite synthesis. In this paper, we describe a solvent-free and template-free method to synthesize crystalline ZSM-5 and mordenite zeolites without any added seed crystals. Key to the success of this approach is a mechanochemical precursor pre-reaction step. High-energy ball-milling is used to initiate a solid-state metathesis (exchange) reaction between NaSiO and Al(SO) reagents, forming crystalline NaSO and well-mixed aluminosilicate precursor. The solid precursor mixture is thermally converted to crystalline ZSM-5 or mordenite at moderate 180 °C temperatures without solvents or an organic amine structure directing template. Variations in Si/Al ratios in the precursor mixture and additions of solid NaOH to the mechanochemical reaction were found to influence the subsequent growth of either crystalline ZSM-5 or mordenite zeolites. The crystalline zeolites from this solvent-free and template free method have high ∼300 m g surface areas directly from the synthesis without requiring high-temperature calcination. These materials are also comparably active to their commercial counterparts in cellulose and glucose biomass catalytic conversion to hydroxymethylfurfural.
基于铝硅酸盐的沸石材料,如ZSM-5和丝光沸石,作为催化剂已得到充分研究。合成这些沸石的典型方法需要模板或晶种来引导有序晶体生长,而这两者都很昂贵,且增加了沸石合成的复杂性。在本文中,我们描述了一种无溶剂、无模板的方法来合成结晶ZSM-5和丝光沸石,且无需添加任何晶种。该方法成功的关键是机械化学前驱体预反应步骤。高能球磨用于引发NaSiO和Al(SO)试剂之间的固态复分解(交换)反应,形成结晶NaSO和充分混合的铝硅酸盐前驱体。在180°C的适中温度下,无需溶剂或有机胺结构导向模板,将固体前驱体混合物热转化为结晶ZSM-5或丝光沸石。发现前驱体混合物中Si/Al比的变化以及向机械化学反应中添加固体NaOH会影响随后结晶ZSM-5或丝光沸石的生长。通过这种无溶剂、无模板方法得到的结晶沸石在合成后直接具有高达约300 m g的高表面积,无需高温煅烧。在纤维素和葡萄糖生物质催化转化为羟甲基糠醛的过程中,这些材料的活性也与它们的商业同类产品相当。