Keyword search (4,164 papers available)

"waste management" Keyword-tagged Publications:

Title Authors PubMed ID
1 The Era of Humanoid Robots: Addressing Emerging End-of-Life Waste Challenges Wang Z; Chen Z; Sajedi S; Deng S; An C; 41804291
ENCS
2 A comparison of municipal waste collection policies to optimize recycling rates: Evidence from England and Wales Wilansky J; Cao K; 41297338
CONCORDIA
3 Toward a Sustainable Future: A Holistic Environmental, Social, and Economic Assessment of Industrial Recycling for All-Solid-State Batteries with Oxide-Based Electrolytes Wang Z; Tian X; Zhao S; Zhang P; An C; 41073076
ENCS
4 Feasibility analysis of recycling and repurposing end-of-life vehicle batteries in isolated island areas: A case study in British Columbia, Canada Wang Z; Lyu L; Huang G; An C; 40795495
ENCS
5 Innovations and development of sustainable personal protective equipment: a path to a greener future Lyu L; Bagchi M; Markoglou N; An C; 38911061
ENCS
6 Towards environmentally sustainable management: A review on the generation, degradation, and recycling of polypropylene face mask waste Lyu L; Bagchi M; Markoglou N; An C; Peng H; Bi H; Yang X; Sun H; 37742382
ENCS
7 A cross-jurisdictional comparison on residential waste collection rates during earlier waves of COVID-19 Mahmud TS; Ng KTW; Hasan MM; An C; Wan S; 37274541
ENCS
8 Upcycling face mask wastes generated during COVID-19 into value-added engineering materials: A review Sina Pourebrahimi 36055514
ENCS
9 Construction and Demolition Waste Management Research: A Science Mapping Analysis Elshaboury N; Al-Sakkaf A; Mohammed Abdelkader E; Alfalah G; 35457363
ENCS
10 Analysis of input set characteristics and variances on k-fold cross validation for a Recurrent Neural Network model on waste disposal rate estimation Vu HL; Ng KTW; Richter A; An C; 35287077
ENCS

 

Title:Innovations and development of sustainable personal protective equipment: a path to a greener future
Authors:Lyu LBagchi MMarkoglou NAn C
Link:https://pubmed.ncbi.nlm.nih.gov/38911061/
DOI:10.1186/s40068-024-00350-x
Publication:Environmental systems research
Keywords:Personal protective equipment (PPE)Recycling and upcyclingSustainabilityWaste management
PMID:38911061 Category: Date Added:2024-06-24
Dept Affiliation: ENCS
1 Department of Building, Civil and Environmental Engineering, Concordia University, Montreal, QC H3G 1M8 Canada.
2 Meltech Innovation Canada Inc., Medicom Group, Pointe-Claire, Montreal, QC H9P 2Z2 Canada.

Description:

The unprecedented surge in the demand for personal protective equipment (PPE) worldwide during the covid pandemic resulted in a significant increase in PPE consumption and subsequent waste generation. Despite the importance of PPE, its widespread usage and disposal have sparked worries about the environmental impact and its long-term sustainability. The increasing awareness of environmental challenges, resource scarcity, and the urgent need to mitigate climate change necessitates a paradigm shift in the product design, manufacturing process, and waste management of PPE. To address these challenges and have a sustainable PPE future, the development of degradable polymers and natural fibers offers a promising alternative to traditional plastics. Additionally, recycling and upcycling methods can convert the waste into valuable alternate products or energy sources, thereby reducing their environmental impact. Better waste management systems, comprehensive policy frameworks, and international collaborations are essential for the effective PPE waste management and the promotion of sustainable practices. Despite the challenges, collaborative efforts across governments, manufacturers, research institutions, and waste management authorities are crucial for transitioning to a more sustainable PPE industry and a circular economy, ultimately benefiting both the environment and society.





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