用生命周期评价住宅建筑的环境影响评分

Manish Sakhlecha, Samir Bajpai, R. Singh
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引用次数: 2

摘要

建筑消耗大量的能源和自然资源,导致资源枯竭和污染等负面环境影响。建设部门目前的任务是开发一种评估工具,根据建筑物的环境影响对其进行评级。不同国家的不同机构开发了各种评估工具和模型来评估建筑对环境的影响。虽然这些工具已经在各自的起源地区成功地使用和实施,但由于与特定地理位置、气候条件、建筑方法和材料有关的特殊性,在其他国家进行区域适应时,应用问题仍然存在。印度是一个快速增长的经济体,住房部门呈指数级增长。建立了基于生命周期评价(LCA)框架的住宅建筑影响评价模型。通过对LCA结果进行归一化和加权,得到了一个样本房屋的生命周期影响评价分数,该样本房屋考虑了15种材料与100%热电和70%-30%光热组合的组合。结果表明,烧粘土红砖硅酸盐矿渣水泥与70%-30%光热结合(PSC+TS+RB)的LCA得分最高,粉煤灰砖与100%热电(OPC+T+FAB)的普通硅酸盐水泥的LCA得分最低,表明LCA模型有进一步改进的空间,可以将工业废弃物替代自然资源而不污染环境的积极得分纳入其中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluating the Environmental Impact Score of a Residential Building Using Life Cycle Assessment
Buildings consume major amount of energy as well as natural resources leading to negative environmental impacts like resource depletion and pollution. The current task for the construction sector is to develop an evaluation tool for rating of buildings based on their environmental impacts. There are various assessment tools and models developed by different agencies in different countries to evaluate building's effect on environment. Although these tools have been successfully used and implemented in the respective regions of their origin, the problems of application occur, especially during regional adaptation in other countries due to peculiarities associated with the specific geographic location, climatic conditions, construction methods and materials. India is a rapidly growing economy with exponential increase in housing sector. Impact assessment model for a residential building has been developed based on life cycle assessment (LCA) framework. The life cycle impact assessment score was obtained for a sample house considering fifteen combinations of materials paired with 100% thermal electricity and 70%-30% thermal-solar combination, applying normalization and weighting to the LCA results. The LCA score of portland slag cement with burnt clay red brick and 70%-30% thermal-solar combination (PSC+TS+RB) was found to have the best score and ordinary Portland cement with flyash brick and 100% thermal power (OPC+T+FAB) had the worst score, showing the scope for further improvement in LCA model to include positive scores for substitution of natural resources with industrial waste otherwise polluting the environment.
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