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Non-catalytic hydropyrolysis of microalgae to produce liquid biofuels

机译:微藻的非催化加氢热解以生产液体生物燃料

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摘要

Non-catalytic hydropyrolysis of Chlorella pyrenoidosa was studied by using a stainless-steel batch reactor at different temperature (150-450°C), time (5-120min) and initial hydrogen pressure (1atm-8MPa), aiming to find how these parameters affect the product (oil, gas and solid) yields and properties of the hydropyrolysis oil (HPO). Temperature was the most influential factor to the relative amount of each product and properties of the HPOs. The hydrogen favored the stabilization of the active intermediates but cannot guarantee to produce HPOs in higher hydrogen at its higher initial pressure. The HPO, which showed much difference in component strongly depending on the reaction conditions, mainly consisted of aromatics and straight-chain hydrocarbons, amides, amines, nitriles and carboxylic acids at moderate temperatures. The main gas products detected during the hydropyrolysis were unreacted H_2, CO_2, CO and CH_4. About 85% of energy originally present in the microalgae was recovered as oil under the optimal conditions.
机译:通过使用不锈钢间歇式反应器在不同温度(150-450°C),时间(5-120min)和初始氢气压力(1atm-8MPa)下研究了小球藻的非催化加氢热解,旨在寻找这些参数的方法影响产品(油,气和固体)的产率和加氢热解油(HPO)的性能。温度是影响每种产品相对含量和HPOs性能的最重要因素。氢有利于活性中间体的稳定,但不能保证在较高的初始压力下在较高的氢中生成HPO。 HPO的成分在很大程度上取决于反应条件,其差异很大,主要由芳族化合物和直链烃,酰胺,胺,腈和羧酸组成,且温度适中。在加氢热解过程中检测到的主要气体产物为未反应的H_2,CO_2,CO和CH_4。在最佳条件下,最初存在于微藻中的能量的约85%被回收为油。

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