Research Institute of Tianying in Shanghai, China Tianying Inc., Shanghai, 200233, China.
Graduate Institute of Environmental Engineering, National Taiwan University, 71 Fan-Lan Road, Da-an District, Taipei City, 10672, Taiwan.
J Hazard Mater. 2020 Nov 5;398:122959. doi: 10.1016/j.jhazmat.2020.122959. Epub 2020 May 17.
Fly ash from municipal solid waste incineration is considered as a hazardous waste, which would raise great threats on environmental safety due to the inherent toxic heavy metals and organic pollutants. In this study, we applied the life cycle assessment to evaluate the thermal plasma vitrification process for stabilization of fly ash from municipal solid waste incineration. We established four scenarios: (i) plasma vitrification, including centralized and off-site plasma treatment, (ii) fuel-based vitrification, (iii) water-washing treatment followed by a rotary kiln, and (iv) conventional solidification and landfill. We found that the environmental impacts, especially toxicity to ecosystem quality and human health, could be significantly reduced by deploying plasma vitrification technology. We also found that centralized plasma vitrification facilities possessing larger treatment capabilities with clean electricity could further reduce the environmental impacts. In contrast, the water-washing treatment exhibited the highest environmental impacts due to the emissions of vaporized heavy metals. Based on the LCA and sensitivity analysis, we confirmed that the thermal plasma vitrification should be considered as an environmentally-friendly solution to sustainable treatment of fly ash from municipal solid waste incineration. Lastly, we provided several perspectives and prospects of plasma vitrification for realizing the sustainable materials management.
城市生活垃圾焚烧飞灰被视为危险废物,由于其固有的有毒重金属和有机污染物,会对环境安全构成极大威胁。在本研究中,我们应用生命周期评估来评估用于稳定城市生活垃圾焚烧飞灰的热等离子体玻璃化工艺。我们建立了四个情景:(i)等离子体玻璃化,包括集中式和场外等离子体处理,(ii)基于燃料的玻璃化,(iii)水洗处理后再进行回转窑处理,以及(iv)常规固化和填埋。我们发现,通过部署等离子体玻璃化技术,可以显著降低环境影响,特别是对生态系统质量和人类健康的毒性。我们还发现,具有清洁电力的集中式等离子体处理设施具有更大的处理能力,可以进一步降低环境影响。相比之下,由于蒸发重金属的排放,水洗处理表现出最高的环境影响。基于生命周期评估和敏感性分析,我们确认热等离子体玻璃化应该被视为可持续处理城市生活垃圾焚烧飞灰的环保解决方案。最后,我们提供了等离子体玻璃化的几个视角和前景,以实现可持续的材料管理。