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Life Cycle of Titanium Dioxide Nanoparticle Production: Impact of Emissions and Use of Resources

机译:二氧化钛纳米粒子生产的生命周期:排放和资源利用的影响

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摘要

Life cycle impact of emissions, energy requirements, and exergetic losses are calculated for a novel process for producing titanium dioxide nanoparticles from an ilmenite feedstock. The Altairnano hydrochloride process analyzed is tailored for the production of nanoscale particles, unlike established commercial processes. The life cycle energy requirements for the production of these particles is compared with that of traditional building materials on a per unit mass basis. The environmental impact assessment and energy analysis results both emphasize the use of nonrenewable fossil fuels in the upstream life cycle. Exergy analysis shows fuel losses to be secondary to material losses, particularly in the mining of ilmenite ore. These analyses are based on the same inventory data. The main contributions of this work are to provide life cycle inventory of a nanomanufacturing process and reveal potential insights from exergy analysis that are not available from other methods.
机译:计算了一种从钛铁矿原料生产二氧化钛纳米颗粒的新方法的排放,能量需求和高能损失的生命周期影响。与已建立的商业流程不同,所分析的Altairnano盐酸盐流程是为生产纳米级颗粒量身定制的。以单位质量为基础,将生产这些颗粒的生命周期能量需求与传统建筑材料的生命周期能量需求进行比较。环境影响评估和能源分析结果均强调了上游生命周期中不可再生化石燃料的使用。火用分析表明,燃料损失仅次于物质损失,特别是在钛铁矿开采中。这些分析基于相同的库存数据。这项工作的主要贡献是提供了纳米制造过程的生命周期清单,并揭示了来自火用分析的潜在见解,而其他方法无法获得这些见解。

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