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将食品行业的生态标签范围扩大,以推动可持续农业实践以外的变革。

Extending the scope of eco-labelling in the food industry to drive change beyond sustainable agriculture practices.

机构信息

CONACYT-El Colegio de Michoacán, Sede La Piedad, Cerro de Nahuatzen 85, Fracc, Jardines del Cerro Grande, C.P. 59370, La Piedad, Michoacán, Mexico.

Laboratoire de Génie Chimique, Université de Toulouse, CNRS, INP, UPS, Toulouse, France.

出版信息

J Environ Manage. 2017 Dec 15;204(Pt 3):814-824. doi: 10.1016/j.jenvman.2017.05.027. Epub 2017 May 19.

Abstract

New consumer awareness is shifting industry towards more sustainable practices, creating a virtuous cycle between producers and consumers enabled by eco-labelling. Eco-labelling informs consumers of specific characteristics of products and has been used to market greener products. Eco-labelling in the food industry has yet been mostly focused on promoting organic farming, limiting the scope to the agricultural stage of the supply chain, while carbon labelling informs on the carbon footprint throughout the life cycle of the product. These labelling strategies help value products in the eyes of the consumer. Because of this, decision makers are motivated to adopt more sustainable models. In the food industry, this has led to important environmental impact improvements at the agricultural stage, while most other stages in the Food Supply Chain (FSC) have continued to be designed inefficiently. The objective of this work is to define a framework showing how carbon labelling can be integrated into the design process of the FSC. For this purpose, the concept of Green Supply Chain Network Design (GSCND) focusing on the strategic decision making for location and allocation of resources and production capacity is developed considering operational, financial and environmental (CO emissions) issues along key stages in the product life cycle. A multi-objective optimization strategy implemented by use of a genetic algorithm is applied to a case study on orange juice production. The results show that the consideration of CO emission minimization as an objective function during the GSCND process together with techno-economic criteria produces improved FSC environmental performance compared to both organic and conventional orange juice production. Typical results thus highlight the importance that carbon emissions optimization and labelling may have to improve FSC beyond organic labelling. Finally, CO emission-oriented labelling could be an important tool to improve the effects eco-labelling has on food product environmental impact going forward.

摘要

新的消费者意识正在促使行业转向更可持续的实践,通过生态标签在生产者和消费者之间建立良性循环。生态标签向消费者提供产品的具体特征,并已被用于推广更环保的产品。食品行业的生态标签主要集中在推广有机农业,将范围限制在供应链的农业阶段,而碳标签则告知产品整个生命周期的碳足迹。这些标签策略有助于在消费者眼中为产品增值。因此,决策者有动力采用更可持续的模式。在食品行业,这导致农业阶段的重要环境影响得到改善,而食品供应链(FSC)的大多数其他阶段仍然设计效率低下。这项工作的目的是定义一个框架,展示如何将碳标签纳入 FSC 的设计过程。为此,开发了绿色供应链网络设计(GSCND)的概念,该概念侧重于资源和生产能力的位置和分配的战略决策,并考虑了产品生命周期关键阶段的运营、财务和环境(CO 排放)问题。通过使用遗传算法实施的多目标优化策略应用于橙汁生产的案例研究。结果表明,在 GSCND 过程中,将 CO 排放最小化作为目标函数,与技术经济标准一起考虑,与有机和常规橙汁生产相比,可提高 FSC 的环境性能。典型结果因此强调了在有机标签之外,优化碳排放和标签可能对改善 FSC 的重要性。最后,面向 CO 排放的标签可能是提高生态标签对食品产品环境影响的重要工具。

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