Abstract
Returnable packaging systems (RPS) related to consumer products help to reduce
problematic plastic and glass waste in supply chains. The purpose of this paper is to investigate distribution and return processes and the related cost drivers and benefits of returnable packaging with a deposit refund system in retail stores. Through the lens of the actor–network theory and based on 30 interviews with store managers, including on-site observations, we develop a research model that structures key processes of RPS and their input and output factors. By subsequently applying system dynamics modeling, we find that: (1) customers’ process satisfaction, (2) price elasticity of demand, and (3) time between repeat purchases are key variables that impact RPS’ attractiveness and performance. This research contributes to an in-depth understanding of processes within RPS as well as interdependencies between cost drivers and benefits for retailers. From a managerial perspective, these insights can enable retailers to take action based on the influencing factors for efficient operations related to RPS. Finally, this research has policy implications as it provides argumentation for the commercial benefits of RPS for retailers aside from the overemphasized cost perspectives.
| Original language | English |
|---|---|
| Pages (from-to) | 439-454 |
| Number of pages | 16 |
| Journal | Journal of Industrial Ecology |
| Volume | 28 |
| Issue number | 3 |
| DOIs | |
| Publication status | Published - Jun 2024 |
Fields of science
- 502 Economics
- 502007 E-commerce
- 502014 Innovation research
- 502016 SME-research
- 502019 Marketing
- 502030 Project management
- 502045 Behavioural economics
- 502052 Business administration
- 508004 Intercultural communication
- 509017 Social studies of science
- 502003 Foreign trade
- 502015 Innovation management
- 502020 Market research
- 502025 Econometrics
- 502029 Product management
- 502051 Economic statistics
- 508013 Public relations
- 508015 Business communication
JKU Focus areas
- Digital Transformation
- Sustainable Development: Responsible Technologies and Management