Keyword search (4,163 papers available)

"Sustainability" Keyword-tagged Publications:

Title Authors PubMed ID
1 Assessing Port-related Greenhouse Gas Emissions and Mitigation Pathways Through a Comprehensive Framework Applied to the Vancouver Fraser Port Authority Wang Z; Su Y; Lu Z; An C; 41925888
ENCS
2 Using an insect for sustainable waste management of a superabundant bird López-Manzano C; Mahdjoub H; Arce-Valdés LR; Khelifa R; 41719861
BIOLOGY
3 Acceptance of entomophagy among Canadians at an insectarium Velchovska N; Khelifa R; 41565845
BIOLOGY
4 Post-subsidy Era: Potential for Carbon Pricing in Industrial Fisheries among Global Major Fishing Countries Peng H; Hao J; Lyu L; Wan S; An C; 40737555
ENCS
5 Landscapes-a lens for assessing sustainability Dade MC; Bonn A; Eigenbrod F; Felipe-Lucia MR; Fisher B; Goldstein B; Holland RA; Hopping KA; Lavorel S; Lede Polain Waroux Y; MacDonald GK; Mandle L; Metzger JP; Pascual U; Rieb JT; Vallet A; Wells GJ; Ziter CD; Bennett EM; Robinson BE; 39867571
BIOLOGY
6 The degradation of polylactic acid face mask components in different environments Lyu L; Bagchi M; Ng KTW; Markoglou N; Chowdhury R; An C; Chen Z; Yang X; 39378804
ENCS
7 Existing evidence on the effect of urban forest management in carbon solutions and avian conservation: a systematic literature map Hutt-Taylor K; Bassett CG; Kinnunen RP; Frei B; Ziter CD; 39363382
BIOLOGY
8 Innovations and development of sustainable personal protective equipment: a path to a greener future Lyu L; Bagchi M; Markoglou N; An C; 38911061
ENCS
9 Optimizing energy efficiency in brackish water reverse osmosis (BWRO): A comprehensive study on prioritizing critical operating parameters for specific energy consumption minimization Abkar L; Aghili Mehrizi A; Jafari M; Beck SE; Ghassemi A; Van Loosdrecht MCM; 38688362
ENCS
10 Advancements in Hybrid Cellulose-Based Films: Innovations and Applications in 2D Nano-Delivery Systems Ramezani G; Stiharu I; van de Ven TGM; Nerguizian V; 38667550
ENCS
11 A game theoretic approach to contract-based enviro-economic coordination of wood pellet supply chains for bioenergy production Vazifeh Z; Mafakheri F; An C; Bensebaa F; 38037615
ENCS
12 Assessment of coal supply chain under carbon trade policy by extended exergy accounting method Roozbeh Nia A; Awasthi A; Bhuiyan N; 37363701
ENCS
13 Upcycling face mask wastes generated during COVID-19 into value-added engineering materials: A review Sina Pourebrahimi 36055514
ENCS

 

Title:Assessing Port-related Greenhouse Gas Emissions and Mitigation Pathways Through a Comprehensive Framework Applied to the Vancouver Fraser Port Authority
Authors:Wang ZSu YLu ZAn C
Link:https://pubmed.ncbi.nlm.nih.gov/41925888/
DOI:10.1007/s00267-026-02426-z
Publication:Environmental management
Keywords:Climate changeDecarbonizationGreenhouse gas emissionsLife cycle assessmentPort sustainability
PMID:41925888 Category: Date Added:2026-04-02
Dept Affiliation: ENCS
1 Department of Building, Civil and Environmental Engineering, Concordia University, Montreal, QC, Canada.
2 Vancouver Office, Bunt & Associates Engineering Ltd., Vancouver, BC, Canada.
3 Department of Building, Civil and Environmental Engineering, Concordia University, Montreal, QC, Canada. chunjiang.an@concordia.ca.

Description:

Maritime transport is a major contributor to greenhouse gas (GHG) emissions, and ports play a critical role in shaping regional and national decarbonization pathways. This study develops a comprehensive framework to quantify both offshore and onshore GHG emissions associated with port activities and applies it to the Vancouver Fraser Port Authority (VFPA), the largest maritime gateway of Canada. Using the port area ship emission model, fuel emission factors, life cycle assessment (LCA), and scenario forecasting, the analysis integrates emissions from ocean-going vessels, port authority operations, and non-port authority transport activities from 2020 to 2024 and extends forecasting for 2030 and 2050. Results show that total annual emissions from 2020 to 2024 ranged from 899 to 1,012 kilotonnes of CO2e, with offshore maritime activity consistently accounting for over 50% of total emissions. Shore power expansion reduced offshore emissions by 20.1% between 2021 and 2022. Three emission scenarios for 2030 and 2050 demonstrate that aggressive adoption of renewable biodiesel, vessel speed reduction, and electrification operations can decrease total emissions by up to 86% by 2050 relative to 2024 levels. The findings highlight the critical role of fuel transitions, port electrification, and policy-supported incentives in accelerating decarbonization. The framework provides a replicable methodological basis for global port emission mitigation planning.





BookR developed by Sriram Narayanan
for the Concordia University School of Health
Copyright © 2011-2026
Cookie settings
Concordia University