Plastic-Pollution Reduction and Bio-Resources Preservation Using Green-Packaging Game Coopetition
In this paper, we deal with the renowned problem of plastic pollution caused by food consumption and its conservation. Specifically, we consider the producer/reseller decision problem of industrial organizations in conditions of perfect competition within small oligopoly clusters. Indeed, very often...
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MDPI AG
2022-12-01
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author | David Carfí Alessia Donato |
author_facet | David Carfí Alessia Donato |
author_sort | David Carfí |
collection | DOAJ |
description | In this paper, we deal with the renowned problem of plastic pollution caused by food consumption and its conservation. Specifically, we consider the producer/reseller decision problem of industrial organizations in conditions of perfect competition within small oligopoly clusters. Indeed, very often, one major sustainability problem is that the presence of direct competitors in the same market determines entrepreneurship choices which lower production costs and packaging costs at the expense of the environment and public health. For this purpose, in order to show economic scenarios in which the respect and preservation of the environment and natural resources are quantitatively compatible with profits and economic growth, we present a provisional coopetitive model of the strategic interaction of two food enterprises, in direct duopoly competition, through investments in sustainable-packaging technologies. The macroeconomic goal is to propose possible actions to reduce carbon footprints and the inflow of plastics to the marine environment, following the environmental targets established by the United Nations, also in the presence of direct perfect oligopolistic competition in the same market. From a microeconomic point of view, we assume the existence of two competitors selling a very similar type of food in the same market; therefore, within a competitive interaction, we adopt a classic “Cournot duopoly” core upon which we define a parametric game, namely, a coopetitive game, together with its possible dynamical scenarios and solutions. We should notice that beyond the parameter arising from the cooperation construct, we introduce a matrix of stochastic variables, which we can also consider as the state of the world. Moreover, we numerically examine one possible state of the world to exemplify our model proposal. We determine, analytically and graphically, the optimal investment in the cooperative strategy, the purely coopetitive solution and some super-cooperative solutions. The cooperative strategy represents the common investment chosen to acquire advanced green technologies for innovative packaging, while the fourth component of any solution in the strategy space represents the state of the world at the end of the coopetitive process in which, finally, we can see the profits and costs deriving from the adoption of the green technologies. |
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language | English |
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spelling | doaj.art-6aa0fb7c487344ada84e91da0945a58b2023-11-24T11:35:28ZengMDPI AGMathematics2227-73902022-12-011023455310.3390/math10234553Plastic-Pollution Reduction and Bio-Resources Preservation Using Green-Packaging Game CoopetitionDavid Carfí0Alessia Donato1Department of Economics, University of Messina, 98122 Messina, ItalyDepartment of Economics, University of Messina, 98122 Messina, ItalyIn this paper, we deal with the renowned problem of plastic pollution caused by food consumption and its conservation. Specifically, we consider the producer/reseller decision problem of industrial organizations in conditions of perfect competition within small oligopoly clusters. Indeed, very often, one major sustainability problem is that the presence of direct competitors in the same market determines entrepreneurship choices which lower production costs and packaging costs at the expense of the environment and public health. For this purpose, in order to show economic scenarios in which the respect and preservation of the environment and natural resources are quantitatively compatible with profits and economic growth, we present a provisional coopetitive model of the strategic interaction of two food enterprises, in direct duopoly competition, through investments in sustainable-packaging technologies. The macroeconomic goal is to propose possible actions to reduce carbon footprints and the inflow of plastics to the marine environment, following the environmental targets established by the United Nations, also in the presence of direct perfect oligopolistic competition in the same market. From a microeconomic point of view, we assume the existence of two competitors selling a very similar type of food in the same market; therefore, within a competitive interaction, we adopt a classic “Cournot duopoly” core upon which we define a parametric game, namely, a coopetitive game, together with its possible dynamical scenarios and solutions. We should notice that beyond the parameter arising from the cooperation construct, we introduce a matrix of stochastic variables, which we can also consider as the state of the world. Moreover, we numerically examine one possible state of the world to exemplify our model proposal. We determine, analytically and graphically, the optimal investment in the cooperative strategy, the purely coopetitive solution and some super-cooperative solutions. The cooperative strategy represents the common investment chosen to acquire advanced green technologies for innovative packaging, while the fourth component of any solution in the strategy space represents the state of the world at the end of the coopetitive process in which, finally, we can see the profits and costs deriving from the adoption of the green technologies.https://www.mdpi.com/2227-7390/10/23/4553plastic reductioncomputational logisticgreen packagingwater savinggreen coopetitionindustrial symbiosis |
spellingShingle | David Carfí Alessia Donato Plastic-Pollution Reduction and Bio-Resources Preservation Using Green-Packaging Game Coopetition Mathematics plastic reduction computational logistic green packaging water saving green coopetition industrial symbiosis |
title | Plastic-Pollution Reduction and Bio-Resources Preservation Using Green-Packaging Game Coopetition |
title_full | Plastic-Pollution Reduction and Bio-Resources Preservation Using Green-Packaging Game Coopetition |
title_fullStr | Plastic-Pollution Reduction and Bio-Resources Preservation Using Green-Packaging Game Coopetition |
title_full_unstemmed | Plastic-Pollution Reduction and Bio-Resources Preservation Using Green-Packaging Game Coopetition |
title_short | Plastic-Pollution Reduction and Bio-Resources Preservation Using Green-Packaging Game Coopetition |
title_sort | plastic pollution reduction and bio resources preservation using green packaging game coopetition |
topic | plastic reduction computational logistic green packaging water saving green coopetition industrial symbiosis |
url | https://www.mdpi.com/2227-7390/10/23/4553 |
work_keys_str_mv | AT davidcarfi plasticpollutionreductionandbioresourcespreservationusinggreenpackaginggamecoopetition AT alessiadonato plasticpollutionreductionandbioresourcespreservationusinggreenpackaginggamecoopetition |