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The application of system dynamics in different practices of a waste management system

机译:系统动力学在废物管理系统不同实践中的应用

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The continuous increase in waste generation warrants global management of waste to reduce the adverse economic, social, and environmental impact of waste while achieving goals for sustainability. The complexity of waste management systems due to different waste management practices renders such systems difficult to analyze. System dynamics (SD) approach aids in conceptualizing and analyzing the structure, interactions, and mode of behavior of the complex systems. The impact of the underlying components can therefore be assessed in an integrated way while the impact of possible policies on the system can be studied to implement appropriate decisions. This review summarizes various applications of SD pertinent to the waste management practices in different countries. Practices may include waste generation, reduction, reuse/recovery, recycling, and disposal. Each study supports regional-demanding targets in environmental, social, and economic scopes such as expanding landfill life span, implementing proper disposal fee, global warming mitigation, energy generation/saving, etc. The interacting variables in the WMS are specifically determined based on the defined problem, ultimate goal, and the type of waste. Generally, population and gross domestic product can increase the waste generation. An increase in waste reduction, source separation, and recycling rate could decrease the environmental impact, but it is not necessarily profitable from an economic perspective. Incentives to separate waste and knowledge about waste management are variables that always have a positive impact on the entire system.
机译:废物发电的持续增加保证浪费的全球管理,以减少废物的不利经济,社会和环境影响,同时实现可持续性目标。由于不同的废物管理实践,废物管理系统的复杂性使得这些系统难以分析。系统动态(SD)方法有助于概念化和分析复杂系统的结构,交互和行为模式。因此,可以以综合方式评估底层组件的影响,同时可以研究可能对系统的政策的影响来实施适当的决策。本综述总结了SD的各种应用与不同国家的废物管理实践相关。实践可包括废弃物产生,减少,重用/恢复,回收和处置。每项研究都支持在环境,社会和经济范围内的区域苛刻的目标,例如扩大垃圾填埋场寿命,实施适当的处置费,全球变暖缓解,能源生成/储蓄等。基于以下的WMS中的相互作用变量定义的问题,终极目标和浪费的类型。一般来说,人口和国内生产总值都可以增加浪费。减少废物减少,源分离和回收率的增加可能会降低环境影响,但不一定从经济角度盈利。分离废物管理的激励和对废物管理的知识是始终对整个系统产生积极影响的变量。

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