Department of Environmental Engineering, Kocaeli University, Kocaeli, 41380, Turkey.
J Environ Manage. 2019 Nov 1;249:109362. doi: 10.1016/j.jenvman.2019.109362. Epub 2019 Aug 11.
Recently, a considerable increase has occurred in cement manufacturing, which is a highly energy intensive, resource consuming, and carbon emission industry based on industrialization and urbanization. In order to minimize the adverse effects from this industry on climate change, ecosystem quality, human health, and resources for cement production, it is very important to assess the potential environmental impacts of the cement production process. In this study, a comparative life cycle assessment (LCA) of cement production with traditional raw material and fuel (traditional scenario [TS]) and alternative raw material and fuel (alternative scenario [AS]) usage were performed in accordance with International Organization for Standardization (ISO) 14040 and 14044 standards. The scope of the study was determined as "cradle to gate" including raw material acquisition, transportation, and manufacturing stages. The functional units were 1 ton of clinker and 1 ton of cement. SimaPro 8.0.4 software was used for the LCA, and impact assessment was carried out using the IMPACT 2002 + method. As a result of the LCA for clinker production, the overall environmental impact was reduced by approximately 12% in the AS. According to damage assessment, the effects on climate change, human health, ecosystem quality, and resources decreased 1.4%, 27%, 10%, and 11%, respectively. The use of alternative fuel and raw material had approximately 3% positive impact on overall environmental burden of clinker production. Considering cement types, the lowest environmental impacts were determined for CEM IV and CEM II based on trass usage.
近年来,水泥制造业的发展势头迅猛,该行业高度依赖工业化和城市化,能源密集且资源消耗量大,碳排放严重。为了最大限度地减少该行业对气候变化、生态系统质量、人类健康和水泥生产资源的不利影响,评估水泥生产过程的潜在环境影响非常重要。本研究按照国际标准化组织(ISO)14040 和 14044 标准,对传统原料和燃料(传统情景 [TS])及替代原料和燃料(替代情景 [AS])的水泥生产进行了比较生命周期评估(LCA)。研究范围确定为“摇篮到大门”,包括原料获取、运输和制造阶段。功能单位为 1 吨熟料和 1 吨水泥。使用 SimaPro 8.0.4 软件进行 LCA,采用 IMPACT 2002+方法进行影响评估。熟料生产的 LCA 结果表明,AS 中整体环境影响降低了约 12%。根据损害评估,气候变化、人类健康、生态系统质量和资源的影响分别降低了 1.4%、27%、10%和 11%。替代燃料和原料的使用对熟料生产的整体环境负担产生了约 3%的积极影响。考虑到水泥类型,基于硅铝质火山灰质材料的 CEM IV 和 CEM II 的环境影响最低。