Porous Ni@Tantalum Silicate as a Tandem Catalyst for Selective Synthesisof C4 Hydrocarbons from Ethanol

M. Sibi, H. Singh, A. Sinha
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Abstract

Selective catalysts for sustainable production of fuels and commodity chemicals are important due to the abundance of the raw materials in the nature. Most of these reactions require multiple active sites due to the complexity of the reactions involved. In view of this, we have synthesized a multifunctional catalyst for the selective synthesis of C 4 hydrocarbons from ethanol. The reason for selecting ethanol is due to the easy production and transformation of biomass, and the heavy demand in future for fuels. Here, we have synthesized nanometer sized nickel particles and protected it with a porous siliceous cover. The acidity of the catalyst has been tuned by introducing tantalum in the framework structure. The use of easily available metals for the synthesis of catalysts reduces the cost of making the catalyst and it also gives high temperature resistance characteristics. The physico-chemical characteristics of the catalysts were studied with various sophisticated instruments. We also investigated in detail the selective production of C 4 hydrocarbons, by tuning the reaction conditions.
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多孔Ni@Tantalum硅酸盐作为乙醇选择性合成C4烃的串联催化剂
由于自然界中原料的丰富,选择性催化剂对燃料和商品化学品的可持续生产非常重要。由于所涉及的反应的复杂性,大多数这些反应需要多个活性位点。鉴于此,我们合成了一种多功能催化剂,用于乙醇选择性合成c4烃。选择乙醇的原因是由于生物质易于生产和转化,以及未来对燃料的大量需求。在这里,我们合成了纳米尺寸的镍颗粒,并用多孔硅覆盖层保护它。通过在骨架结构中引入钽来调节催化剂的酸度。使用容易获得的金属来合成催化剂降低了制造催化剂的成本,并且还具有耐高温的特性。用各种精密仪器对催化剂的理化性质进行了研究。我们还通过调整反应条件,详细研究了c4烃的选择性生产。
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