Bioplastic production in terms of life cycle assessment: A state-of-the-art review

生物塑料 生物制品 生命周期评估 持续性 循环经济 可再生能源 原材料 生产(经济) 环境友好型 可再生资源 环境经济学 自然资源经济学 业务 生物燃料 工程类 废物管理 经济 生态学 宏观经济学 电气工程 生物
作者
Sameh S. Ali,Esraa A. Abdelkarim,Tamer Elsamahy,Rania Al-Tohamy,Fanghua Li,Michael Kornaros,Antonio Zuorro,Daochen Zhu,Jianzhong Sun
出处
期刊:Environmental science & ecotechnology [Elsevier]
卷期号:15: 100254-100254 被引量:127
标识
DOI:10.1016/j.ese.2023.100254
摘要

The current transition to sustainability and the circular economy can be viewed as a socio-technical response to environmental impacts and the need to enhance the overall performance of the linear production and consumption paradigm. The concept of biowaste refineries as a feasible alternative to petroleum refineries has gained popularity. Biowaste has become an important raw material source for developing bioproducts and biofuels. Therefore, effective environmental biowaste management systems for the production of bioproducts and biofuels are crucial and can be employed as pillars of a circular economy. Bioplastics, typically plastics manufactured from bio-based polymers, stand to contribute to more sustainable commercial plastic life cycles as part of a circular economy in which virgin polymers are made from renewable or recycled raw materials. Various frameworks and strategies are utilized to model and illustrate additional patterns in fossil fuel and bioplastic feedstock prices for various governments' long-term policies. This review paper highlights the harmful impacts of fossil-based plastic on the environment and human health, as well as the mass need for eco-friendly alternatives such as biodegradable bioplastics. Utilizing new types of bioplastics derived from renewable resources (e.g., biowastes, agricultural wastes, or microalgae) and choosing the appropriate end-of-life option (e.g., anaerobic digestion) may be the right direction to ensure the sustainability of bioplastic production. Clear regulation and financial incentives are still required to scale from niche polymers to large-scale bioplastic market applications with a truly sustainable impact.
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