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Development of social sustainability assessment method and a comparative case study on assessing recycled construction materials

机译:发展社会可持续性评估方法和评估再生建筑材料的比较案例研究

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Purpose Sustainability analysis should include the assessment of the environmental, social, and economic impacts throughout the life cycle of a product. However, the social sustainability performance assessment is seldom carried out during materials selection due to its complex nature and the lack of a social life cycle assessment tool. This study presents a single score-based social life cycle assessment methodology, namely social sustainability grading model, for assessing and comparing the social sustainability performance of construction materials using a case study on recycled and natural construction materials. Methods The proposed method is developed based on the methodological framework provided by the United Nations Environment Programme / Society of Environmental Toxicology and Chemistry guidelines published in 2009 and the methodological sheets published in 2013, the indicators and sustainability reporting guidelines provided by the Global Reporting Initiatives and ISO 26000 for social responsibility of products, and the indicators provided by the Hong Kong Business Environment Council Limited for construction sustainability. A twofold research approach is proposed in this model: the first one is the qualitative research based on expert interviews to identify, select, and prioritize the relevant subcategories and indicators, and the second one is the operational research based on the case-specific survey to collect the required data. A social sustainability index was proposed for the interpretation of the results effectively. A case study on construction materials was conducted to illustrate the implementation of the method using case-specific first-hand data. Results and discussion The major outcome of this study is the systematic development of a social sustainability assessment tool based on the established standards and guidelines. The case study showed that four subcategories are crucial social concerns for construction materials (i.e., health and safety issues of the materials, health and safety of workers, company’s commitment to sustainability, and company’s policies on energy and water consumption). Based on the sustainability index proposed, using recycled aggregates from locally generated waste materials scored higher (about 31–34%) social sustainability than using imported natural aggregates. In addition, recycled aggregates and natural aggregates achieved “sustainable” and “neutral” rating sustainability levels, respectively. However, several subcategories (e.g., health and safety, working hour, forced work, training and social benefits of workers, and quality of the materials and information disclosing to public) are still needed to improve the social sustainability performance of recycled aggregates. Conclusions An integrated social life cycle assessment method is presented in this study for assessing the social sustainability of construction materials. In addition, the reported case study in this paper is one of the first attempts for social sustainability assessment of recycled construction materials, and the method can be applied to other recycled materials/products for comparative analysis. However, several critical factors, such as integration in other life cycle methods and software, sensitivity analysis, and more case studies, are still needed for further improvement of the developed method.
机译:目的可持续性分析应包括对产品整个生命周期中的环境,社会和经济影响的评估。但是,由于材料的复杂性和缺乏社会生命周期评估工具,因此在材料选择过程中很少进行社会可持续发展绩效评估。这项研究提出了一种基于分数的社会生命周期评估方法,即社会可持续性分级模型,用于通过对再生和天然建筑材料进行案例研究来评估和比较建筑材料的社会可持续性表现。方法拟议的方法是根据2009年联合国环境规划署/环境毒理学和化学学会指南以及2013年出版的方法表,全球报告倡议组织提供的指标和可持续性报告指南提供的方法框架开发的有关产品的社会责任的ISO 26000,以及香港商业环境理事会有限公司提供的有关建筑可持续性的指标。在此模型中,提出了两种研究方法:第一种是基于专家访谈的定性研究,以识别,选择和确定相关子类别和指标的优先级;第二种是基于案例调查的运维研究。收集所需的数据。为了有效地解释结果,提出了社会可持续性指数。进行了有关建筑材料的案例研究,以说明使用案例特定的第一手数据的方法的实现。结果与讨论这项研究的主要结果是根据既定的标准和指南系统开发社会可持续性评估工具。案例研究表明,四个子类别是建筑材料的关键社会关注点(例如,材料的健康和安全问题,工人的健康和安全,公司对可持续性的承诺以及公司的能源和水消耗政策)。根据提议的可持续性指数,使用本地产生的废料回收的骨料比使用进口的天然骨料获得更高的社会可持续性(约31–34%)。此外,再生骨料和天然骨料分别达到“可持续”和“中性”的可持续性等级。但是,仍需要几个子类别(例如,健康与安全,工作时间,强迫性工作,工人的培训和社会福利以及向公众披露的材料和信息的质量),以提高再生骨料的社会可持续性表现。结论本研究提出了一种综合的社会生命周期评估方法,用于评估建筑材料的社会可持续性。此外,本文报道的案例研究是对回收建筑材料进行社会可持续性评估的首批尝试之一,该方法可用于其他回收材料/产品进行比较分析。但是,仍需要一些关键因素,例如与其他生命周期方法和软件的集成,敏感性分析以及更多案例研究,才能进一步改进已开发方法。

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