Author:
Herth Annika,Blok Kornelis
Abstract
Purpose
The purpose of this paper is to present a comprehensive analysis of the carbon footprint of the Delft University of Technology (TU Delft), including direct and indirect emissions from utilities, logistics and purchases, as well as a discussion about the commonly used method. Emissions are presented in three scopes (scope 1 reports direct process emissions, scope 2 reports emissions from purchased energy and scope 3 reports indirect emissions from the value chain) to identify carbon emission hotspots within the university’s operations.
Design/methodology/approach
The carbon footprint was calculated using physical and monetary activity data, applying a process and economic input-output analysis.
Findings
TU Delft’s total carbon footprint in 2018 is calculated at 106 ktCO2eq. About 80% are indirect (scope 3) emissions, which is in line with other studies. Emissions from Real estate and construction, Natural gas, Equipment, ICT and Facility services accounted for about 64% of the total footprint, whereas Electricity, Water and waste-related carbon emissions were negligible. These findings highlight the need to reduce universities’ supply chain emissions.
Originality/value
A better understanding of carbon footprint hotspots can facilitate strategies to reduce emissions and finally achieve carbon neutrality. In contrast to other work, it is argued that using economic input-output models to calculate universities’ carbon footprints is a questionable practice, as they can provide only an initial estimation. Therefore, the development of better-suited methods is called for.
Subject
Education,Human Factors and Ergonomics
Reference50 articles.
1. Carbon footprint using the compound method based on financial accounts, the case of the school of forestry engineering, technical university of Madrid;Journal of Cleaner Production,2014
2. Blom, T. and van den Dobbelsteen, A. (2019), “CO2-roadmap TU Delft”, available at: https://d2k0ddhflgrk1i.cloudfront.net/Websections/Sustainability/CO2-roadmap%20TU%20Delft.pdf (accessed 11 October 2022).
3. A Real-World lab approach to the carbon neutral campus transition: a case study,2017
4. Towards carbon neutrality and environmental sustainability at CCSU;International Journal of Sustainability in Higher Education,2009
5. Defra (2014), “Table 13 - Indirect emissions from the supply chain”, available at: www.gov.uk/government/statistics/uks-carbon-footprint (accessed 11 October 2022).
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