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Towards the upgrading of fermentation broths to advanced biofuels: a water tolerant catalyst for the conversion of ethanol to isobutanol

机译:对发酵培养基配方的升级先进生物燃料:水宽容的催化剂乙醇,异丁醇的转换

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摘要

Isobutanol is an ideal gasoline replacement due to its high energy density, suitable octane number and compatibility with current engine technology. It can be formed by the Guerbet reaction in which (bio) ethanol and methanol mixtures are converted to this higher alcohol in the presence of a suitable catalyst under basic conditions. A possible limitation of this process is the catalyst's water tolerance; a twofold problem given that water is produced as a by-product of the Guerbet reaction but also due to the need to use anhydrous alcoholic feedstocks, which contributes significantly to the cost of advanced biofuel production. Isobutanol formation with pre-catalyst trans-[RuCl2(dppm)(2)] (1) has been shown to be tolerant to the addition of water to the system, achieving an isobutanol yield of 36% at 78% selectivity with water concentrations typical of that of a crude fermentation broth. Key to this success is both the catalyst's tolerance to water itself and the use of a hydroxide rather than an alkoxide base; other catalysts explored are less effective with hydroxides. Alcoholic drinks have also been used as surrogates for the fermentation broth: the use of lager as the ethanol source yielded 29% isobutanol at 85% selectivity in the liquid phase.
机译:异丁醇是一种理想的汽油替代由于其能量密度高、合适的辛烷值当前引擎技术和兼容。它可以由格尔伯特反应中形成的(生物)乙醇和甲醇混合物被转换这个更高的酒精的存在在基本条件下合适的催化剂。可能这个过程的限制催化剂的耐水性;鉴于水是产生的副产品格尔伯特反应也由于需要使用无水酒精原料,很大程度上有助于先进的成本生物燃料生产。pre-catalyst反式- [RuCl2 (dppm) (2)] (1)证明是宽容的水系统实现了异丁醇产量的36%选择性与水浓度78%原油的典型的发酵肉汤。这一成功的关键是催化剂的耐水本身和使用氢氧化而非醇盐基地;催化剂探索更有效氢氧化物。作为发酵肉汤代理人:使用啤酒的收益率为29%乙醇的来源异丁醇选择性85%的液体阶段。

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