Marconi Marco, Landi Daniele, Bocci Edoardo, Pietroni Giorgia, Mosconi Enrico Maria
Department of Economics, Engineering, Society and Business Organization, Università degli Studi della Tuscia, Largo dell'Università, 01100 Viterbo, Italy.
Department of Management, Information and Production Engineering, Università degli Studi di Bergamo, Via Pasubio 7/b, 24044 Dalmine (BG), Italy.
Procedia CIRP. 2023;116:107-112. doi: 10.1016/j.procir.2023.02.019. Epub 2023 Apr 18.
Due to the COVID-19 pandemic, global personal protective equipment (PPE) volume production and demand increased by 300-400% between 2019 and 2021. In this scenario, the present study aims to propose and validate an innovative circular economy scenario for end of life (EoL) PPEs, reusing them to produce reinforced bituminous mixtures. Despite that several studies confirmed the possibility of reusing plastic in the asphalt mixtures, none of them investigated the potential of PPEs, highlighting the innovativeness in the scientific panorama. Five different alternatives of EoL PPE mixtures (different products, materials, dosages, etc.) were tested at laboratory scale to verify the technical feasibility of the proposed scenario. The most promising solution resulted to be the mix of gloves and face masks composed by polypropylene, polyethylene, nitrile and lattice at a dosage of 0,5% weight/weight that allowed to produce bituminous mixtures with acceptable performances in terms of relevant mechanical parameters while recycling waste PPEs. This leads to environmental benefits, since more than 3kg of EoL PPEs per square meter of road pavement can be reused instead of disposed (about 1,5 million tons/year considering the bituminous mixtures produced at European level), as well as economic benefits for public administrations and the collectivity, due to the reduced landfilling of solid wastes.
由于新冠疫情,2019年至2021年间全球个人防护装备(PPE)的产量和需求量增长了300%-400%。在这种情况下,本研究旨在提出并验证一种针对报废个人防护装备的创新型循环经济方案,即将其再利用以生产增强型沥青混合料。尽管多项研究证实了在沥青混合料中再利用塑料的可能性,但没有一项研究调查过个人防护装备的潜力,这凸显了该研究在科学领域的创新性。在实验室规模下测试了五种不同的报废个人防护装备混合物替代方案(不同产品、材料、剂量等),以验证所提方案的技术可行性。最有前景的解决方案是由聚丙烯、聚乙烯、丁腈和网格组成的手套和口罩混合物,剂量为0.5%重量/重量,该方案能够在回收废旧个人防护装备的同时,生产出在相关力学参数方面具有可接受性能的沥青混合料。这带来了环境效益,因为每平方米路面可再利用超过3千克的报废个人防护装备,而不是将其丢弃(考虑到欧洲层面生产的沥青混合料,每年约150万吨),同时也为公共管理部门和集体带来了经济效益,因为固体废弃物的填埋量减少了。