酯交换反应釜高压水热状态与微藻生物柴油实验  被引量:3

Transesterification Reactor High-pressure Hydrothermal State and Microalgae Biodiesel Experiment

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作  者:曹宁[1] 王勇[1] 杜畅[1] 张贵芝[1] 李坤 

机构地区:[1]中国石油大学(华东)机电工程学院,青岛266580

出  处:《农业机械学报》2013年第2期125-127,共3页Transactions of the Chinese Society for Agricultural Machinery

基  金:中央高校基本科研业务费专项资金资助项目(11CX04033A);山东省博士后创新基金资助项目(201103085)

摘  要:以间歇式酯交换反应釜为对象,探讨了本底压力和温度等参数对釜内水热平衡状态的影响。通过建立三维温度-压力场分析模型,确定了釜内高压水热状态控制方程并实现超临界状态反应条件优化。在此基础上进行了以规模化养殖微藻为原料制备生物柴油的实验研究和油品分析。结果表明,以小球藻为原料的生物柴油产出率明显高于其他藻种。超临界反应条件的引入可使直接酯交换反应生物柴油产率提高近一倍。油品具有与0号柴油几乎相同的碳氢质量比、热值和密度等理化性能。Taking intermittent high-pressure transesterification reactor as object,the influence of background pressure and temperature on thermal equilibrium state of the water were discussed.Through establishing 3-D temperature-pressure field analysis model,the high-pressure hydrothermal state control equation was determined and supercritical state reaction condition was optimized.On this basis,the experimental study on biodiesel prepared with large-scale aquaculture microalgae as raw materials was carried out and the oil quality was analyzed.The results indicated that the output rate of biodiesel prepared with chlorella was evidently higher than that of other types of algae.The introduction of supercritical state reaction condition almost doubled the output rate of biodiesel and the oil quality had nearly the same carbon/hydrogen mass ratio,calorific value and density with the 0# diesel.

关 键 词:微藻 生物柴油 超临界 直接酯交换 

分 类 号:TK6[动力工程及工程热物理—生物能] TE667[石油与天然气工程—油气加工工程]

 

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