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In this paper, waste electrical and electronic equipment (WEEE) is collected both with online and traditional methods in a reverse channel. We obtain a quantity for recycling based on online popularity and reference price by considering their impact on consumer recycling behaviors. On this basis, we build a Stackelberg game model in which the recycling dealer acts as the leader and the recycler acts as the follower in a reverse supply chain. We explore a combination contract comprising a revenue cost-sharing contract and a two-part tariff contract to enhance the performance of the reverse supply chain with a dual channel. The conclusion shows that the reference price degree can alleviate the recycling channel’s conflict in order to improve the operation efficiency of the reverse supply chain. The well-designed coordination mechanism enables the perfect coordination of the entire supply chain system.
In this paper, waste electrical and electronic equipment (WEEE) is collected both with online and traditional methods in a reverse channel. We obtain a quantity for recycling based on online popularity and reference price by considering their impact on consumer recycling behaviors. On this basis, we build a Stackelberg game model in which the recycling dealer acts as the leader and the recycler acts as the follower in a reverse supply chain. We explore a combination contract comprising a revenue cost-sharing contract and a two-part tariff contract to enhance the performance of the reverse supply chain with a dual channel. The conclusion shows that the reference price degree can alleviate the recycling channel’s conflict in order to improve the operation efficiency of the reverse supply chain. The well-designed coordination mechanism enables the perfect coordination of the entire supply chain system.
Decision Models for a Dual-Recycling Channel Reverse Supply Chain with Consumer Strategic Behavior
2022
Article (Journal)
Electronic Resource
Unknown
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