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Techno-economic analysis of light weight concrete block development from polyisocyanurate foam waste

机译:多异氰泡沫泡沫垃圾浪费轻量级混凝土砌块开发的技术经济分析

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摘要

Polyisocyanurate (PIR) is one of the materials commonly used as thermal insulation. With increasing global use of PIR due to its high R-values and superior fire resistance, the volume of PIR waste (PIRW) will increase over the years. Production of lightweight concrete block (LWCB) from PIRW can contribute to both efficient waste management and energy savings in air conditioning systems during the operation phase of buildings due to the insulation properties of LWCB. In this research, we determined the most suitable blends for the production of lightweight concrete mixed with PIRW (LWC-PIRW) taking into account both the technical properties and economic feasibility of LWC-PIRW production. The results show that the formula with 8% PIWR (particle size passing through sieve No. 4 and retained on sieve No. 10), 0% sand, and a water/concrete ratio of 0.7 forms a suitable composition; its compressive strength, dry density, and water absorption pass Thai industrial standards. The thermal conductivity of LWC-PIRW is 0.3598 W/m K which is similar to that of other typical foamed concretes. The economic feasibility analysis shows that the production of LWC-PIRW is economically feasible, and the sensitivity analysis shows that the return of the project is more sensitive to the selling price of the LWC-PIRW than to the production volume.
机译:多异氰脲酸酯(PIR)是常用为隔热材料的材料之一。随着由于其高R值和耐火性耐火材料,随着PIR的全球使用增加,PIR废物(PIRW)的体积将多年来会增加。由于LWCB的绝缘性能,PIRW的轻质混凝土块(LWCB)的生产可以在建筑物的运行阶段期间有效地促进空调系统中的有效废物管理和节能。在本研究中,我们确定了最适合生产与PIRW(LWC-PIRW)混合的轻质混凝土的混合,同时考虑到LWC-PIRW生产的技术性质和经济可行性。结果表明,具有8%PiWR的配方(通过筛网4的粒度,保留在筛网10),0%砂和水/混凝土比为0.7形成合适的组合物;其抗压强度,干密度和吸水性通过泰国工业标准。 LWC-PIRW的导热率为0.3598W / M k,其类似于其他典型的泡沫混凝土。经济可行性分析表明,LWC-PIRW的生产在经济上是可行的,并且灵敏度分析表明,该项目的回归对LWC-PIRW的销售价格比生产量更敏感。

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