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将废物处理转化为建筑材料,以研究节能和减少碳排放的潜力。

Transforming waste disposals into building materials to investigate energy savings and carbon emission mitigation potential.

机构信息

Department of Thermal and Energy, School of Mechanical Engineering, Vellore Institute of Technology, Vellore, Tamil Nadu, 632014, India.

出版信息

Environ Sci Pollut Res Int. 2021 Mar;28(12):15259-15273. doi: 10.1007/s11356-020-11693-0. Epub 2020 Nov 24.

DOI:10.1007/s11356-020-11693-0
PMID:33236299
Abstract

This work aims to enhance the energy cost-saving potential of conventional mud-brick by including natural waste materials as insulators. The solid waste materials considered for mud bricks are rice husk, sawdust, coir pith, and fly ash. This work investigates the structural and thermoeconomic performance of four types of insulated mud bricks and three roofs of ferrocement, clay, and ceramic materials. The thermal properties of walls and roofs were measured as per ASTM D 5334 standards. The utilization of solid waste in mud bricks enhanced the structural properties and air-conditioning cost-saving potential of the mud bricks. The results also showed the mitigation of greenhouse gas emissions with the usage of insulated bricks for buildings. The rice husk mud-brick wall showed better results of higher time lag, lower decrement factor, higher air-conditioning cost-savings, acceptable payback periods, and higher annual carbon mitigation values of 11.11 h, 0.24, 1.74 $/m, 1.17 years, and 33.35 kg/kWh, respectively, among all the studied multilayer walls. Among the roofs, clay tile roof showed a lower decrement factor (0.989), higher time lag (0.73 h), higher air-conditioning cost-savings (2.58 $/m), lower payback periods (0.61 years), and higher annual carbon mitigation (21.73 kg/kWh). The results are in designing eco-friendly and energy-efficient envelopes for buildings.

摘要

本工作旨在通过包含天然废料作为绝热材料来提高传统土坯的节能潜力。用于土坯的固体废料包括稻壳、木屑、椰子纤维和粉煤灰。本工作研究了四种隔热土坯和三种铁水泥、粘土和陶瓷材料屋顶的结构和热经济性能。根据 ASTM D 5334 标准测量了墙壁和屋顶的热性能。土坯中固体废料的利用提高了土坯的结构性能和空调成本节约潜力。结果还表明,使用隔热砖可以减少建筑物的温室气体排放。稻壳土坯墙表现出更好的结果,具有更高的时间滞后、更低的衰减因子、更高的空调成本节约、可接受的投资回收期和更高的每年碳减排值,分别为 11.11 小时、0.24、1.74 美元/米、1.17 年和 33.35 千克/千瓦时。在所有研究的多层墙中。在屋顶方面,粘土瓦屋顶表现出更低的衰减因子(0.989)、更高的时间滞后(0.73 小时)、更高的空调成本节约(2.58 美元/米)、更低的投资回收期(0.61 年)和更高的每年碳减排(21.73 千克/千瓦时)。研究结果为建筑物设计环保和节能的围护结构提供了依据。

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