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Study of the Incorporation of Biomass Bottom Ashes in Ceramic Materials for the Manufacture of Bricks and Evaluation of Their Leachates

机译:将生物质底灰掺入用于制造砖的陶瓷材料中及其渗滤液的评估

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摘要

Scarcity of raw materials, reduction of greenhouse gas emissions and reduction of waste disposal in landfills are leading to the development of more sustainable building materials. Based on these lines, this work studies the incorporation of biomass bottom ashes into ceramic materials for brick manufacture, in order to reuse this currently unused waste and reduce clay extraction operations. To this end, different groups of samples were made with different combinations of clay and biomass bottom ashes, from 100% clay to 100% biomass bottom ashes. These samples were shaped, sintered and subjected to the usual physical tests in ceramics. In turn, the mechanical resistance, color and leaching of the contaminating elements present were studied. The physical and mechanical tests showed that the results of all the families were adequate, achieving compressive strengths of over 20 MPa and leaching of the contaminating elements acceptable by the regulations. Therefore, a sustainable range of ceramics was developed, with specific properties (porosity, density, resistance and color), with a waste that is currently unused and sustainable with the environment.
机译:原材料的稀缺,减少温室气体的排放以及减少垃圾掩埋场的废物处理,正导致开发更具可持续性的建筑材料。基于这些思路,这项工作研究了将生物质底灰掺入用于砖制造的陶瓷材料中,以便再利用这种当前未使用的废物并减少粘土的提取作业。为此,用粘土和生物质底灰的不同组合制成不同组的样品,从100%粘土到100%生物质底灰。将这些样品成型,烧结并在陶瓷中进行常规的物理测试。反过来,研究了存在的污染元素的机械阻力,颜色和浸出。物理和机械测试表明,所有系列的结果都是足够的,抗压强度超过20 MPa,并且浸出了法规可接受的污染元素。因此,开发了具有特定特性(孔隙率,密度,电阻和颜色)的可持续性陶瓷系列,以及目前未使用且对环境可持续的废物。

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