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Significance of the structural properties of CaO catalyst in the production of biodiesel: An effect on the reduction of greenhouse gases emission

机译:CaO催化剂的结构性质在生物柴油生产中的意义:对减少温室气体排放的影响

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The influence of the physicochemical properties of a series of CaO catalysts activated at different temperatures on the biodiesel production was investigated. These catalysts show dissimilar yields in the transesterification of triglycerides with methanol. We have found significant relationships between structural properties (the type of the pore system, the typical CaO crystal phase and the sizes of crystallites (up to 25 nm), the minimal weight percentage of CaO phase, the total surface basicity and potential existence of two types of basic active sites) of CaO prepared and activated by means of thermal treatment at highest temperature and catalytic efficiency. Benefits of this catalyst are short contact time, standard operating temperature and atmospheric conditions, relatively low molar ratios and small catalyst loading. These all together resulted in a very high biodiesel yield of high purity. The properties of different biodiesel (obtained with the use of the prepared CaO catalyst) blends with different diesel and biodiesel ratios indicate that the higher the fraction of biodiesel fuel the better the achieved fuel properties according to the EU standards. A significant reduction of CO2 and CO emissions and only a negligible NOx increase occurred when blends with an increased biodiesel portion was used. The use of biodiesel derived blends, and the eventual complete replacement of fossil fuels with biodiesel as a renewable, alternative fuel for diesel engines, would greatly contribute to the reduction of greenhouse gases emissions. [Projekat Ministarstva nauke Republike Srbije, br. ON 172061 i TR 34008]
机译:研究了在不同温度下活化的一系列CaO催化剂的理化性质对生物柴油生产的影响。这些催化剂在甘油三酸酯与甲醇的酯交换反应中显示出不同的产率。我们发现结构性质(孔隙系统的类型,典型的CaO晶相和微晶的尺寸(最大25 nm),CaO相的最小重量百分比,总的表面碱性和两种的潜在存在之间存在显着的关系。的CaO的类型和类型),并通过在最高温度和催化效率下进行热处理来制备和活化。该催化剂的优点是接触时间短,标准操作温度和大气条件,较低的摩尔比和较小的催化剂负载量。所有这些共同导致了高纯度的高生物柴油产量。具有不同柴油和生物柴油比率的不同生物柴油(通过使用制备的CaO催化剂获得的混合物)的性能表明,根据欧盟标准,生物柴油燃料的比例越高,获得的燃料性能越好。当使用生物柴油比例增加的混合物时,CO2和CO排放量显着减少,而NOx的增加仅可忽略不计。使用生物柴油衍生的混合物,以及最终用生物柴油完全替代化石燃料作为柴油发动机的可再生替代燃料,将大大有助于减少温室气体排放。 [Projekat Ministarstva nauke Republike Srbije,br。 ON 172061 i TR 34008]

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