<p>Promoting clean production technology is an effective approach to address pollution issues arising from small and medium scale livestock and poultry farming (SM-LPFG). This study designed a waste reduction and recycling mechanism, considering the influences of the input side, product side, waste side, and social networks on the adoption of clean production technologies by small and medium-scale livestock and poultry farmers (SM-LPF). A complex network evolutionary game model for the adoption of clean production technologies by SM-LPF was constructed. And numerical simulation was conducted to analyze the SM-LPF’ strategy in acquaintance society and atomized society rural environments, with a sensitivity analysis of key parameters undertaken. The results show that: (1) Cleaner production technology adoption can be divided into initial stage, development stage and maturity stage, and the waste emissions trading and recycling mechanism can play a transitional role in the development stage. (2) On the product side, the quality elasticity of demand, the degree of consumer preference for green products, and the degree of trust in the market positively affected the cleaner production strategy of SM-LPF, while the price sensitivity coefficient and the quality cost coefficient negatively affected the cleaner production strategy of SM-LPF; (3) In the short term, acquaintance society is conducive to rapid diffusion of cleaner production technologies, while in the long term, atomized society is conducive to increased diffusion depth. This research offers theoretical support and practical guidance for encouraging SM-LPF to adopt clean production technologies and manage SM-LPFG pollution.</p>

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Research on cleaner production decision-making mechanisms for livestock and poultry farmers driven by waste emission rights trading

  • Wenlong Liu,
  • Kangning Li,
  • Lijing Yu

摘要

Promoting clean production technology is an effective approach to address pollution issues arising from small and medium scale livestock and poultry farming (SM-LPFG). This study designed a waste reduction and recycling mechanism, considering the influences of the input side, product side, waste side, and social networks on the adoption of clean production technologies by small and medium-scale livestock and poultry farmers (SM-LPF). A complex network evolutionary game model for the adoption of clean production technologies by SM-LPF was constructed. And numerical simulation was conducted to analyze the SM-LPF’ strategy in acquaintance society and atomized society rural environments, with a sensitivity analysis of key parameters undertaken. The results show that: (1) Cleaner production technology adoption can be divided into initial stage, development stage and maturity stage, and the waste emissions trading and recycling mechanism can play a transitional role in the development stage. (2) On the product side, the quality elasticity of demand, the degree of consumer preference for green products, and the degree of trust in the market positively affected the cleaner production strategy of SM-LPF, while the price sensitivity coefficient and the quality cost coefficient negatively affected the cleaner production strategy of SM-LPF; (3) In the short term, acquaintance society is conducive to rapid diffusion of cleaner production technologies, while in the long term, atomized society is conducive to increased diffusion depth. This research offers theoretical support and practical guidance for encouraging SM-LPF to adopt clean production technologies and manage SM-LPFG pollution.