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Optimization of binder addition and particle size for densification of coffee husks briquettes using response surface methodology

机译:使用响应表面方法的粘合剂加成和粒度优化咖啡壳聚集液的致密化

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The present research focuses on establishing the optimum conditions in converting coffee husk into a densified biomass fuel using starch as a binding agent. A Response Surface Methodology (RSM) approach using Box-Behnken experimental design with three levels (-1, 0, and +1) was employed to obtain the optimum level for each parameter. The briquettes wereproduced by compressing the mixture of coffee husk-starch in a piston and die assembly with the pressure of 2000 psi. Furthermore, starch percentage, pyrolysis time, and particle size were the input parameters for the algorithm. Bomb calorimeter was used to determine the heating value (HHV) of the solid fuel. The result of the study indicated that a combination of 34.71 mesh particle size, 110.93 min pyrolysis time, and 8% starch concentration werethe optimum variables.The HHV and density of the fuel were up to 5644.66 calgr~(-1) and 0.7069 grcm~(-3),respectively. The study showed that further research should be conducted to improve the briquette density therefore the coffee husk could be convert into commercialsolid fuel to replace the dependent on fossil fuel.
机译:本研究的重点是在咖啡壳转换成使用淀粉作为结合剂的致密化的生物质燃料建立的最佳条件。使用箱Behnken设计实验设计具有三个电平(-1,0和1)的反应面方法(RSM)方法被用来获得每个参数的最佳水平。团块wereproduced通过在活塞的咖啡稻壳淀粉的混合物压缩,用2000磅的压力模具组件。此外,淀粉百分比,热解时间,和粒径者为算法的输入参数。弹式热量计被用于确定固体燃料的热值(HHV)。该研究的结果表明,34.71目粒度,110.93分钟的热解时间,和8%的淀粉浓度的组合werethe最佳variables.The HHV和燃料的密度分别达到5644.66 calgr〜(-1)和0.7069〜grcm (-3),分别。研究表明,进一步的研究应进行以提高型煤密度因此咖啡壳可以转换成commercialsolid燃料,以取代依赖化石燃料。

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