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Optimisation of biomass catalytic depolymerisation conditions by using response surface methodology

机译:利用响应面法优化生物质催化解聚条件

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The aim of this study is to present the optimum operating conditions for reducing energy consumption in the process of obtaining bio-oil from the mixture of sawdust, waste lubricating oil, lime, and commercial catalyst. In the study where the catalytic pressureless depolymerisation (also called Katalytische Drucklose Veroelung - KDV) was applied, the operating conditions were analysed with response surface methodology. According to the analysis of variance results, a mathematical model was obtained for specific product yield (bio-oil amount/energy consumption gkW_e~(-1)). Effects of temperature (260℃-290℃), catalyst rate (1-2 wt.%) and reaction time (0.5-1h) were investigated. The optimum conditions for the three independent variables (temperature, catalyst rate, reaction time) were 279 ± 2℃, 2 wt.% and 0.5h, respectively. Maximum specific product yield was obtained as 970.17gkW_e~(-1). While the reaction time was the most effective regarding the amount of bio-oil obtained at 1 kW_e energy consumption, the temperature was found to be the least effective. In addition to these, bio-oil obtained under optimum conditions were characterised and compared with standard diesel specifications.
机译:这项研究的目的是提出一种最佳操作条件,以减少从锯末,废润滑油,石灰和市售催化剂的混合物中获得生物油的过程中的能耗。在应用无催化催化解聚反应(也称为Katalytische Drucklose Veroelung-KDV)的研究中,使用响应面方法对运行条件进行了分析。根据方差分析结果,获得了特定产品产量的数学模型(生物油量/能耗gkW_e〜(-1))。研究了温度(260℃-290℃),催化剂用量(1-2 wt。%)和反应时间(0.5-1h)的影响。三个独立变量(温度,催化剂速率,反应时间)的最佳条件分别为279±2℃,2 wt。%和0.5h。获得的最大比产品产量为970.17gkW_e〜(-1)。对于以1 kW_e能耗获得的生物油量而言,反应时间最有效,而温度最低。除此之外,还对在最佳条件下获得的生物油进行了表征,并与标准柴油规格进行了比较。

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