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Continuous low pressure decarboxylation of fatty acids to fuel-range hydrocarbons with in situ hydrogen production

机译:脂肪酸连续低压脱羧生成原位制氢的燃料范围的碳氢化合物

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Fatty acids are considered as a renewable feedstock for the production of high value products such as fuel-range hydrocarbons. Decarboxylation can produce high quality fuels from fatty acids, although either high pressure or additional hydrogen is required. This study investigated a low pressure (< 500 psi) continuous decarboxylation process examining oleic acid in a continuous fixed bed reactor using activated carbon, which gave surprisingly high quality fuel-like hydrocarbons with no external hydrogen. The results showed that activated carbon performed as a catalyst for both decarboxylation and in situ hydrogen production. The reaction parameters for maximum degree of decarboxylation (91%) was found to be 400 degrees C, 2 h and water-to-oleic acid ratio of 4:1. To determine the degree of decarboxylation and reaction mechanism, the formed liquid products were examined by ATR-FTIR, Raman and GC-FID analysis, respectively. The liquid product was found to consist of mainly saturated hydrocarbons containing heptadecane (89.3% selectivity) as the major compound. The liquid product was found to have a similar density and higher heating value (HHV) to commercial diesel and jet fuel. The mechanism for decarboxylation reaction along with in situ hydrogen formation was proposed in this study.
机译:脂肪酸被认为是用于生产高价值产品(如燃料范围碳氢化合物)的可再生原料。脱羧可以从脂肪酸生产高质量的燃料,尽管需要高压或额外的氢气。这项研究研究了一种低压(<500 psi)连续脱羧工艺,该工艺在使用活性炭的连续固定床反应器中检查油酸,该工艺产生了令人惊讶的高质量燃料状烃,而没有外部氢。结果表明,活性炭可作为脱羧和原位产氢的催化剂。发现最大脱羧度(91%)的反应参数为400℃,2小时且水与油酸之比为4∶1。为了确定脱羧度和反应机理,分别通过ATR-FTIR,拉曼和GC-FID分析检查形成的液体产物。发现该液体产物主要由含有庚烷(89.3%选择性)作为主要化合物的饱和烃组成。发现液体产物具有与商用柴油和喷气燃料相似的密度和更高的热值(HHV)。在这项研究中提出了脱羧反应与原位氢形成的机理。

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