...
首页> 外文期刊>Waste Management >Internal cycle modeling and environmental assessment of multiple cycle consumer products
【24h】

Internal cycle modeling and environmental assessment of multiple cycle consumer products

机译:多周期消费产品的内部周期建模和环境评估

获取原文
获取原文并翻译 | 示例
           

摘要

Dynamic annual flow models incorporating consumer discard and usage loss and featuring deterministic and stochastic end-of-cycle (EOC) return by the consumer are developed for reused or remanufactured products (multiple cycle products, MCPs), including fast and slow cycling, short and long-lived products. It is shown that internal flows (reuse and overall consumption) increase proportionally to the dimension-less internal cycle factor (ICF) which is related to environmental impact reduction factors. The combined reuse/recycle (or cycle) rate is shown capable for shortcut, albeit effective, monitoring of environmental performance in terms of waste production, virgin material extraction and manufacturing impacts of all MCPs, a task, which physical variables (lifetime, cycling frequency, mean or total number of return trips) and conventional rates, via which environmental policy has been officially implemented (e.g. recycling rate) cannot accomplish. The cycle rate is shown to be an increasing (hyperbolic) function of ICF. The impact of the stochastic EOC return characteristics on total reuse and consumption flows, as well as on eco-performance, is assessed: symmetric EOC return has a small, positive effect on performance compared to deterministic, while early shifted EOC return is more beneficial. In order to be efficient, environmental policy should set higher minimum reuse targets for higher trippage MCPs. The results may serve for monitoring, flow accounting and comparative eco-assessment of MCPs. They may be useful in identifying reachable and efficient reuse/recycle targets for consumer products and in planning return via appropriate labelling and digital coding for enhancing environmental performance, while satisfying consumer demand.
机译:针对重复使用或再制造的产品(多周期产品,MCP)(包括快速和慢速循环,短周期和短周期),开发了包含消费者丢弃和使用损失并具有消费者确定性和随机周期末(EOC)回报的动态年度流量模型。长寿命的产品。结果表明,内部流量(再利用和总消耗)与与环境影响降低因子有关的无量纲内部循环因子(ICF)成比例增加。显示了组合的再利用/循环(或循环)速率,可以有效地捷径(尽管有效)来监控废物产生,所有MCP的原始材料提取和制造影响方面的环境绩效,一项任务,物理变量(寿命,循环频率) ,返程的平均数或总次数)和常规费用(通过这些费用已正式实施环境政策)(例如回收率)无法实现。循环速率显示为ICF的递增(双曲线)函数。评估了随机EOC回报特性对总再利用和消费流量以及生态绩效的影响:与确定性EOC回报相比,对称EOC回报对绩效的影响较小,而早期转移的EOC回报更为有利。为了提高效率,环境政策应为跳闸较高的MCP设置更高的最低重用目标。结果可用于MCP的监控,流量核算和比较性生态评估。它们对于确定消费产品的可到达且有效的再利用/回收目标以及通过适当的标签和数字编码计划退货以增强环境性能,同时满足消费者的需求可能很有用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号