Hot-Spot Analysis and Scenario-Driven Life Cycle Assessment of Authenticated Greek PDO “Avgotaracho Mesolongiou”

Author:

Melas Lefteris D.1ORCID,Batsioula Maria1ORCID,Skoutida Stamatia1ORCID,Geroliolios Dimitris1,Malamakis Apostolos1ORCID,Karkanias Christos1ORCID,Madesis Panagiotis23ORCID,Banias George F.1ORCID

Affiliation:

1. Institute for Bio-Economy and Agri-Technology (IBO), Centre for Research and Technology-Hellas (CERTH), 57001 Thermi, Greece

2. Institute of Applied Biosciences, Centre for Research & Technology-Hellas, 57001 Thessaloniki, Greece

3. Laboratory of Molecular Biology of Plants, School of Agricultural Sciences, University of Thessaly, 38446 Volos, Greece

Abstract

Food systems account for one third of greenhouse gas emissions while fish production is assigned 4% of total anthropogenic emissions as well as other environmental implications. The Greek fishery industry is a very promising and upcoming sector with renowned products such as “Avgotaracho Mesolongiou”, the Greek bottarga, which is a product of designated origin (PDO) with cultural and economic significance but unexplored environmental impacts. The aim of the study is to depict the environmental hot-spots of “Avgotaracho Mesolongiou” production using the life cycle analysis (LCA) methodology with the help of SimaPro v3.5 software and the Ecoinvent database v3.9. “Avgotaracho Mesolongiou” supply chain is divided into the fish extraction, roe processing and transport, and retail stages, while the inventory of each stage is filled with data depicted from producers via a questionnaire and findings from the literature. The hot-spot analysis of Avgotaracho Mesolongiou exhibited high human carcinogenic toxicity, and marine and freshwater ecotoxicity impacts that account for more than 90% of total normalized scores. More specifically, the use of metallic traps in the fish-catching facilities presented the highest contribution among the inputs and was responsible for more than 70% of total normalized scores. Furthermore, the uncontrolled treatment processes of waste streams are attributed 6% of total normalized scores. More specifically, waste wood open-burning accounts for 10% of human carcinogenic toxicity while disposal of wastewater was responsible for 25% of freshwater eutrophication. Moreover, a scenario-driven LCA was conducted to compare the existing waste treatment meth+ods to a proposed improved waste management (IWM) scenario. The implementation of controlled treatment processes resulted in a decrease in human carcinogenic toxicity and freshwater eutrophication impact by 8% and 26%, respectively. The outcome was proven to be robust in respect to the affected impact categories while the fish extraction remains the most impactful stage of the supply chain when subjected to a sensitivity analysis.

Funder

the PRIMA program

Publisher

MDPI AG

Reference81 articles.

1. Core Writing Team, Lee, H., and Romero, J. (2023). Climate Change 2023: Synthesis Report, IPCC. in Press.

2. Food Systems Are Responsible for a Third of Global Anthropogenic GHG Emissions;Crippa;Nat. Food,2021

3. An Overview of the Interactions between Food Production and Climate Change;Filho;Sci. Total Environ.,2022

4. Coimbra, F., and Andersen, I. (2023, October 13). The Triple Planetary Crisis: Forging a New Relationship between People and the Earth. Available online: https://www.unep.org/news-and-stories/speech/triple-planetary-crisis-forging-new-relationship-between-people-and-earth.

5. Ammonia Emissions from Agriculture and Their Contribution to Fine Particulate Matter: A Review of Implications for Human Health;Wyer;J. Environ. Manag.,2022

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