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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Catalytic conversion of bio-oil to oxygen-containing fuels by simultaneous reactions with 1-butanol and 1-octene over solid acids: Model compound studies and reaction pathways
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Catalytic conversion of bio-oil to oxygen-containing fuels by simultaneous reactions with 1-butanol and 1-octene over solid acids: Model compound studies and reaction pathways

机译:通过与1-丁醇和1-辛烯同时在固体酸上同时反应,将生物油催化转化为含氧燃料:化合物模型研究和反应途径

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摘要

Upgrading bio-oil by addition reactions across olefins represents a route to refine bio-oil to combustible and stable oxygen-containing fuels. Development and application of highly active strong solid acid catalysts with good hydrothermal stability has become a key determinant for success, because bio-oil's complexity includes large amounts of water. Temperatures of 120°C or more are needed for satisfactory kinetics. Batch upgrading of a model bio-oil (phenol/water/acetic acid/acetaldehyde/hydroxyacetone/d-glucose/2-hydroxymethylfuran) over five water-tolerant solid acid catalysts (Dowex50WX2, Amberlyst15, Amberlyst36, silica sulfuric acid (SSA) and Cs_(2.5)H_(0.5)PW_(12)O_(40) supported on K-10 clay (Cs_(2.5)/K-10, 30wt.%)) with 1-octene/1-butanol were studied at 120°C/3h. SSA, exhibited the highest water tolerance and activity. Upgrading using olefin/1-butanol is complex, involving many simultaneous competing esterification, etherification, olefin hydration, phenol alkylation, aldol condensation, sugar dehydration etc. reactions.
机译:通过跨烯烃的加成反应来升级生物油代表了将生物油精制为可燃和稳定的含氧燃料的途径。具有良好水热稳定性的高活性强固体酸催化剂的开发和应用已成为成功的关键因素,因为生物油的复杂性包括大量的水。为了使动力学令人满意,需要120℃或更高的温度。在五种耐水固体酸催化剂(Dowex50WX2,Amberlyst15,Amberlyst36,二氧化硅硫酸盐(SSA)和三氧化二硅)上批量升级模型生物油(苯酚/水/乙酸/乙醛/羟丙酮/ d-葡萄糖/ 2-羟甲基呋喃)在120°下研究了用1-辛烯/ 1-丁醇负载在K-10粘土上的Cs_(2.5)H_(0.5)PW_(12)O_(40)(Cs_(2.5)/ K-10,30wt。%) C / 3小时。 SSA具有最高的耐水性和活性。使用烯烃/ 1-丁醇的升级很复杂,涉及许多同时竞争的酯化,醚化,烯烃水合,酚烷基化,羟醛缩合,糖脱水等反应。

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