机场垃圾分类与回收策略的环境效益:多智能体系统行为分析

IF 5.4 Q1 ENVIRONMENTAL SCIENCES
Zixin Bian, Zhibo Zhao, Xinrui Guo, Yifan Gu, Yi Yi, Yuxian Hong, Mingxuan Tuo, Yihan Li, Yufeng Wu
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引用次数: 0

摘要

机场废弃物的分类和回收利用已成为发展绿色机场的关键。然而,机场垃圾分类涉及到大量的利益相关者。影响因素复杂,利益相关者之间的相互作用不明确。基于agent模型,对旅客、收集者和管理者三个主要利益相关者的行为和驱动因素进行梳理,构建了垃圾产生子系统、回收子系统和策略制定子系统耦合的机场垃圾分类回收多agent系统。通过复杂系统分析不同政策策略的综合效应。运用生命周期评价方法,建立机场垃圾分类回收的环境效益评价模型,分析不同策略的环境效益,寻找最适合机场的策略。结果表明,实施政策策略可以显著改变乘客的垃圾处理行为,使其使用绿色产品的意愿增加一倍以上。全因子变化情景组合策略对机场废弃物代谢结构和可回收物处理结构的优化效果显著,绿色产品使用量较BAU情景提高76.9%。通过实施联合战略,可回收废弃物回收可减少10.6 t CO2e和15.6%的光化学氧化剂排放,环境效益显著。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Environmental benefits of airport waste classification and recycling strategies: An analysis of behavior in multi-agent systems
The classification and recycling of airport waste has become a key point in developing green airports. However, airport waste classification involves a large number of stakeholders. The influence factors are complex, and the interactions between the stakeholders are not clear. Based on the agent-based model, we sort out the behaviors and driving factors of the three main stakeholders, namely passengers, collectors, and managers, and construct a multi-agent system of airport waste classification and recycling with the coupling of the waste generation subsystem, the recycling subsystem and the strategy formulation subsystem. By the complex system, we analyze the comprehensive effects of different policy strategies. Using the life cycle assessment method, an environmental benefit assessment model for airport waste classification and recycling is established to analyze the environmental benefits of different strategies and find the best strategy for the airport. The results show that implementing policy strategies can significantly change passengers’ waste disposal behavior and more than double their willingness to use green products. The combined strategy of the full-factor change scenario demonstrates a significant effect in optimizing the waste metabolism structure and recyclables disposal structure at the airport, with a 76.9 % increase in the use of green products relative to the BAU scenario. Through the implementation of the combined strategy, recyclable waste recycling can reduce 10.6 t CO2e and 15.6 % of photochemical oxidant emissions, which is a significant environmental benefit.
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来源期刊
Resources, conservation & recycling advances
Resources, conservation & recycling advances Environmental Science (General)
CiteScore
11.70
自引率
0.00%
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审稿时长
76 days
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