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Utilization of catalyzed waste vegetable oil as a binder for the production of environmentally friendly roofing tiles

机译:利用催化废植物油作为粘合剂生产环保屋面瓦

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摘要

Climate change has become a major issue in recent years owing to the emission of greenhouse gases. Mitigation measures are required to overcome the challenges pertained to greenhouse gases emissions. This research paper attributes to the utilization of catalyzed waste vegetable oil as a binder for the production of roofing tiles to replace the conventional construction materials such as clay and cement A novel methodology of utilizing catalyzed waste oil incorporated with sand and filler was adopted and the innovative product produced is entitled as catalyzed Vege-Roofing tiles that discovered to be economical and environmentally friendly in contrast to the traditional binders. It is believed that an extended heat curing of vegetable oil resulted in a complex oxy-polymerization reaction converting it into a rigid binder. Triplicate prototypes samples were manufactured to optimize the final conditions for the fabrication of catalyzed Vege-Roofing tiles. Optimized conditions were then implemented to produce standard catalyzed Vege-Roofing tiles and these fabricated tiles have shown flexural stress of up to 12 MPa for 18 h of curing. Moreover, these novel tiles were tested for permeability and water absorption according to the ASTM standards and have shown impermeability and remarkably low water absorption. Progressively, the embodied energy and embodied carbon requirements for these tiles found to be 0.64 MJ/kg and 0.327 kg CO2 per equivalent respectively which is quite less in comparison to the traditional binders. Conclusively, environmentally friendly and economic production of tiles, conservation of existing resources and overcoming the issue of waste management are the remarkable outcomes of this research. (C) 2017 Elsevier Ltd. All rights reserved.
机译:由于温室气体的排放,近年来气候变化已成为一个主要问题。需要采取缓解措施来克服与温室气体排放有关的挑战。该研究论文归功于利用催化废植物油作为粘合剂来代替传统的建筑材料(如粘土和水泥),用于生产屋面瓦。采用了一种新型的催化废油与沙子和填料结合使用的方法,该创新方法所生产的产品被称为催化型屋面瓦,与传统的粘合剂相比,它被发现具有经济性和环保性。据信,植物油的长时间热固化导致复杂的氧聚合反应,将其转化为硬质粘合剂。制造一式三份的原型样品,以优化制造催化型屋面瓦的最终条件。然后实施优化条件以生产标准催化的Vege-Roofing屋面瓦,并且这些固化的瓦在固化18 h后显示出高达12 MPa的弯曲应力。此外,这些新型瓷砖根据ASTM标准进行了渗透性和吸水率测试,显示出不渗透性和极低的吸水率。逐渐地,发现这些瓷砖的内在能量和内在碳需求分别为每当量0.64 MJ / kg和0.327 kg CO2,与传统粘合剂相比要低得多。总之,瓷砖的环保和经济生产,现有资源的节约以及克服废物管理问题是这项研究的显着成果。 (C)2017 Elsevier Ltd.保留所有权利。

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