Rodríguez Escobar María Ignacia, Cadena Erasmo, Nhu Trang T, Cooreman-Algoed Margot, De Smet Stefaan, Dewulf Jo
Research Group Sustainable Systems Engineering (STEN), Department of Green Chemistry and Technology, Faculty of Bioscience Engineering, Ghent University, Coupure Links 653, 9000 Ghent, Belgium.
Laboratory for Animal Nutrition and Animal Product Quality, Department of Animal Sciences and Aquatic Ecology, Faculty of Bioscience Engineering, Ghent University, Coupure Links 653, 9000 Ghent, Belgium.
Foods. 2021 Nov 30;10(12):2941. doi: 10.3390/foods10122941.
Cultured meat has been presented as an environmentally friendlier option to conventional meat, but due to the limited data, the studies related to its performance are scarce and based on hypothetical production processes. This work provides a short literature review of the published environmental assessments of cultured meat. The main findings of this critical analysis showed that the lack of real data related to cultured meat decreased the level of accuracy of each study. The missing environmental profile of the process itself, including the proliferation and differentiation phases in bioreactors, along with key ingredients such as growth factors and other recombinant proteins, increase the difficulty of achieving reliable conclusions. In order to bridge the highlighted gaps, a complete production system is modelled and analysed from an engineering and life-cycle perspective. Furthermore, an overview of the supply chains of different products used in the process is provided, together with recommendations on how they should be considered in future life-cycle assessments. In essence, this work provides a structured pathway for upcoming consistent environmental assessments in this field, with the objective of setting the basis to understand the potential of cultured meat.
人造肉已被视为比传统肉类更环保的选择,但由于数据有限,关于其性能的研究稀缺且基于假设的生产过程。本文对已发表的人造肉环境评估进行了简短的文献综述。这一批判性分析的主要结果表明,缺乏与人造肉相关的实际数据降低了每项研究的准确性。该过程本身(包括生物反应器中的增殖和分化阶段)以及关键成分(如生长因子和其他重组蛋白)缺失的环境概况,增加了得出可靠结论的难度。为了弥补这些突出的差距,从工程和生命周期的角度对一个完整的生产系统进行了建模和分析。此外,还提供了该过程中使用的不同产品的供应链概述,以及关于在未来生命周期评估中应如何考虑这些产品的建议。本质上,本文为该领域即将进行的一致环境评估提供了一条结构化途径,目的是为理解人造肉的潜力奠定基础。