Using Material Flow Analysis (MFA) to generate the evidence on plastic waste management from commercial fishing gears in Norway

Plastic debris is an ever-growing concern adversely affecting the coastal and marine ecosystem. Among marine plastic waste, a particularly troublesome waste fraction is Abandoned, Lost or Discarded Fishing Gears (ALDFG) that continues to trap marine life for years upon releaseand has significant adv...

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Main Authors: Paritosh C. Deshpande, Gaspard Philis, Helge Brattebø, Annik M. Fet
Format: Article
Language:English
Published: Elsevier 2020-01-01
Series:Resources, Conservation & Recycling: X
Online Access:http://www.sciencedirect.com/science/article/pii/S2590289X19300210
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spelling doaj-94b4a7782b1d4da9923aa565de76245d2020-11-25T03:02:56ZengElsevierResources, Conservation & Recycling: X2590-289X2020-01-015Using Material Flow Analysis (MFA) to generate the evidence on plastic waste management from commercial fishing gears in NorwayParitosh C. Deshpande0Gaspard Philis1Helge Brattebø2Annik M. Fet3Department of Industrial Economics and Technology Management, Norwegian University of Science and Technology, 103, Gamle Fysikk, Sem Sælands vei 5, 7491, Trondheim, Norway; Corresponding author.Department of Biological Sciences, Norwegian University of Science and Technology, Hovedbygget, A428, Larsgårdsvegen 2, 6009, Ålesund, NorwayDepartment of Energy and Process Engineering, Norwegian University of Science and Technology, Sem Sælands vei 7, 7491, Trondheim, NorwayDepartment of Industrial Economics and Technology Management, Norwegian University of Science and Technology, 103, Gamle Fysikk, Sem Sælands vei 5, 7491, Trondheim, NorwayPlastic debris is an ever-growing concern adversely affecting the coastal and marine ecosystem. Among marine plastic waste, a particularly troublesome waste fraction is Abandoned, Lost or Discarded Fishing Gears (ALDFG) that continues to trap marine life for years upon releaseand has significant adverse environmental effects on coastal and marine ecosystems. However, lack of scientific data on the estimated contribution of ALDFG to marine plastics and associated reasoning hinders the management of fishing gear resources across the globe. This study presents a system-wide analysis of the typical fishing gears used in Norway for commercial fishing, i.e. trawls, seines (Danish and Purse), longlines, gillnets, and traps. Based on data from gear producers, suppliers, fishers, collectors, authorities, and waste management facilities, we model the flows of plastics polymers, polypropylene, polyethylene, and Nylon, used as the building blocks of advanced gears. A static Material Flow Analysis (MFA) is used to understand life cycle processes and further monitor gear quantities in and between the processes in the system. Our findings indicate that commercial fishing in Norway contributes to around 380 t/yr. mass of plastics from lost fishing gears and parts. Gillnets, longlines, and traps are the main contributors to ALDFG in the ocean due to gear design, practice, and ground deployment. Additionally, around 4000 tons of plastic waste is collected in Norway annually from derelict fishing gears out of which 24% is landfilled, and 21% is incinerated for energy recovery. The MFA approach shows significant potential as a holistic decision support tool for industry and policy-makers in exercising sustainable fishing gear resource management. The study also generates key evidence on regional level plastic pollution from the fishing sector and highlights possible mechanisms that may aid in proposed improvements.http://www.sciencedirect.com/science/article/pii/S2590289X19300210
collection DOAJ
language English
format Article
sources DOAJ
author Paritosh C. Deshpande
Gaspard Philis
Helge Brattebø
Annik M. Fet
spellingShingle Paritosh C. Deshpande
Gaspard Philis
Helge Brattebø
Annik M. Fet
Using Material Flow Analysis (MFA) to generate the evidence on plastic waste management from commercial fishing gears in Norway
Resources, Conservation & Recycling: X
author_facet Paritosh C. Deshpande
Gaspard Philis
Helge Brattebø
Annik M. Fet
author_sort Paritosh C. Deshpande
title Using Material Flow Analysis (MFA) to generate the evidence on plastic waste management from commercial fishing gears in Norway
title_short Using Material Flow Analysis (MFA) to generate the evidence on plastic waste management from commercial fishing gears in Norway
title_full Using Material Flow Analysis (MFA) to generate the evidence on plastic waste management from commercial fishing gears in Norway
title_fullStr Using Material Flow Analysis (MFA) to generate the evidence on plastic waste management from commercial fishing gears in Norway
title_full_unstemmed Using Material Flow Analysis (MFA) to generate the evidence on plastic waste management from commercial fishing gears in Norway
title_sort using material flow analysis (mfa) to generate the evidence on plastic waste management from commercial fishing gears in norway
publisher Elsevier
series Resources, Conservation & Recycling: X
issn 2590-289X
publishDate 2020-01-01
description Plastic debris is an ever-growing concern adversely affecting the coastal and marine ecosystem. Among marine plastic waste, a particularly troublesome waste fraction is Abandoned, Lost or Discarded Fishing Gears (ALDFG) that continues to trap marine life for years upon releaseand has significant adverse environmental effects on coastal and marine ecosystems. However, lack of scientific data on the estimated contribution of ALDFG to marine plastics and associated reasoning hinders the management of fishing gear resources across the globe. This study presents a system-wide analysis of the typical fishing gears used in Norway for commercial fishing, i.e. trawls, seines (Danish and Purse), longlines, gillnets, and traps. Based on data from gear producers, suppliers, fishers, collectors, authorities, and waste management facilities, we model the flows of plastics polymers, polypropylene, polyethylene, and Nylon, used as the building blocks of advanced gears. A static Material Flow Analysis (MFA) is used to understand life cycle processes and further monitor gear quantities in and between the processes in the system. Our findings indicate that commercial fishing in Norway contributes to around 380 t/yr. mass of plastics from lost fishing gears and parts. Gillnets, longlines, and traps are the main contributors to ALDFG in the ocean due to gear design, practice, and ground deployment. Additionally, around 4000 tons of plastic waste is collected in Norway annually from derelict fishing gears out of which 24% is landfilled, and 21% is incinerated for energy recovery. The MFA approach shows significant potential as a holistic decision support tool for industry and policy-makers in exercising sustainable fishing gear resource management. The study also generates key evidence on regional level plastic pollution from the fishing sector and highlights possible mechanisms that may aid in proposed improvements.
url http://www.sciencedirect.com/science/article/pii/S2590289X19300210
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