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Recycling contaminated soil as alternative raw material in cement facilities: Life cycle assessment

机译:回收污染土壤作为水泥设施的替代原料:生命周期评估

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Volcanic soil can be used to remove metals from wastewaters. Once used, it is disposed in landfills. The utilization of this material in the cement industry as an alternative raw material was evaluated using life cycle assessment (LCA) methodology. This possibility has been studied from an environmental point of view in a Chilean cement facility, representative of the current operation state of art, including both technical and economic analysis. Two scenarios were compared: Scenario 1, which corresponds to the existing cement production process, and Scenario 2, which represents cement production using spent volcanic soil. With the exception of the categories of carcinogens (C) and minerals (M), the comparative results are favourable to Scenario 2, specially regarding to the category of ecotoxicity (E), mainly due to the avoided landfilling emissions of the volcanic soil. When considering the damage assessment, damage to human health (HH), ecosystem quality (EQ) and resources (R) are lower in Scenario 2. In addition, sensitivity analyses were performed to study the influence of particular parameters (i.e., transport of spent volcanic Soil, CO2 emissions from the clinkerization process and heavy metals leaching from the spent volcanic soil) on the results of the assessment. The use of alternative raw materials (in this case, spent volcanic soil), which present the advantage to be wastes from other technical systems, appear to allow the development of cement production in a more sustainable way, slightly improving the economy of the process. The spent volcanic soil can be treated with zero cost for the wastewater treatment plant with savings of 0.23EURO for each tonne of clinker production. Establishing a sound management way for the spent volcanic soil could foment its possible use as mineral adsorbent in industrial wastewater treatment facilities. (c) 2006 Elsevier B.V. All rights reserved.
机译:火山土壤可用于去除废水中的金属。使用后,将其丢弃在垃圾填埋场中。使用生命周期评估(LCA)方法评估了该材料在水泥工业中作为替代原材料的利用率。在智利水泥厂从环境的角度研究了这种可能性,代表了当前操作的最新技术水平,包括技术和经济分析。比较了两个方案:方案1(对应于现有的水泥生产过程)和方案2(代表使用废火山岩的水泥生产)。除了致癌物(C)和矿物质(M)的类别外,比较结果对方案2有利,特别是在生态毒性(E)类别方面,主要是因为避免了火山土壤的填埋排放。当考虑损害评估时,在方案2中对人类健康(HH),生态系统质量(EQ)和资源(R)的损害较低。此外,还进行了敏感性分析,以研究特定参数(例如,废弃物的运输)的影响。评估结果包括火山灰土壤,熟化过程中的CO2排放以及火山灰废土中重金属的浸出)。使用替代原料(在这种情况下为火山岩废土)的优点是可以替代其他技术系统的废物,这似乎可以使水泥生产的发展更具可持续性,从而略微改善了该工艺的经济性。废水处理厂可以用零成本处理废火山岩,每生产一吨熟料可节省0.23EURO。为火山废土建立合理的管理方法可能会激发其在工业废水处理设施中用作矿物吸附剂的可能性。 (c)2006 Elsevier B.V.保留所有权利。

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