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FEASIBILITY OF UTILIZATION OF CHARCOAL AND ASHES FROM BIOMASS-ENERGY PROCESSES IN CONSTRUCTION MATERIALS

机译:利用木炭和灰烬的可行性从建筑材料中的生物质 - 能量过程

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Biomass-energy processes are those used to obtain energy by the burning or biochemical converting of any organic matter to be used for fuel. In recent years, some materials used as a source for biomass energy have been obtained from the discards of agricultural activities. These include wood, sawdust, corn, sugarcane and rice husks, among others. The processes for converting biomass into energy are numerous. The most commonly used are combustion, co-firing process and pyrolysis. The residual endproducts obtained from these processes are highly dependent on the process conditions, especially temperature, pressure and atmosphere. Char and ashes are the most commonly obtained materials. The objective of this work is to analyse the feasibility of reusing these discards of biomass-energy processes, as additions in clay mixtures for the production of ceramic materials for civil construction. For this purpose, charcoal and ashes obtained from various biomasses have been characterized by SEM, EDS, DTA-TGA, XRD, etc. These results, and the determination of the theoretical sintering temperatures by the use of ternary diagrams, lead to the establishment of the feasibility of using these discards in current ceramic industry processes. Charcoal and ashes from sunflower husks, brewery waste and pine sawdust are the materials studied.
机译:生物质 - 能量过程是用于通过燃烧或生物化学转换来获得能量的那些用于燃料的任何有机物质的能量。近年来,已经从农业活动的丢弃来获得了作为生物质能源来源的一些材料。这些包括木材,锯末,玉米,甘蔗和稻壳等。将生物质转化为能量的方法很多。最常用的是燃烧,共烧过程和热解。从这些过程获得的残余封端高度依赖于工艺条件,尤其是温度,压力和大气。 Char和灰烬是最常用的材料。这项工作的目的是分析重用这些生物质 - 能量过程的可行性,因为粘土混合物中的陶瓷材料用于民用建筑的添加剂。为此目的,通过SEM,EDS,DTA-TGA,XRD等表征了从各种生物量获得的木炭和灰烬。这些结果,并通过使用三元图来确定理论烧结温度,导致建立使用这些丢弃在当前陶瓷工业过程中的可行性。来自向日葵壳,啤酒厂废物和松木锯末的木炭和灰烬是研究的。

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