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微藻生物膜作为一种促进环境可持续性的生物塑料环保方法的综述。

A review of microalgae biofilm as an eco-friendly approach to bioplastics, promoting environmental sustainability.

作者信息

Adamu Ugya Yunusa, Chen Hui, Sheng Yangyang, Ajibade Fidelis Odedishemi, Wang Qiang

机构信息

State Key Laboratory of Crop Stress Adaptation and Improvement, School of Life Sciences, Henan University, Kaifeng, China; Academy for Advanced Interdisciplinary Studies, Henan University, Kaifeng, China; Department of Environmental Management, Kaduna State University, Kaduna State, Nigeria.

State Key Laboratory of Crop Stress Adaptation and Improvement, School of Life Sciences, Henan University, Kaifeng, China; Academy for Advanced Interdisciplinary Studies, Henan University, Kaifeng, China.

出版信息

Environ Res. 2023 Nov 1;236(Pt 2):116833. doi: 10.1016/j.envres.2023.116833. Epub 2023 Aug 4.

Abstract

In this comprehensive review, we delve into the challenges hindering the large-scale production of microalgae-based bioplastics, primarily focusing on economic feasibility and bioplastic quality. To address these issues, we explore the potential of microalgae biofilm cultivation as a sustainable and highly viable approach for bioplastic production. We present a proposed method for producing bioplastics using microalgae biofilm and evaluate its environmental impact using various tools such as life cycle analysis (LCA), ecological footprint analysis, resource flow analysis, and resource accounting. While pilot-scale and large-scale LCA data are limited, we utilize alternative indicators such as energy efficiency, carbon footprint, materials management, and community acceptance to predict the environmental implications of commercializing microalgae biofilm-based bioplastics. The findings of this study indicate that utilizing microalgae biofilm for bioplastic production offers significant environmental sustainability benefits. The system exhibits low energy requirements and a minimal carbon footprint. Moreover, it has the potential to address the issue of wastewater by utilizing it as a carbon source, thereby mitigating associated problems. However, it is important to acknowledge certain limitations associated with the method proposed in this review. Further research is needed to explore and engineer precise techniques for manipulating microalgae biofilm structure to optimize the accumulation of desired metabolites. This could involve employing chemical triggers, metabolic engineering, and genetic engineering to achieve the intended goals. In conclusion, this review highlights the potential of microalgae biofilm as a viable and sustainable solution for bioplastic production. While acknowledging the advantages, it also emphasizes the need for continued synthetic studies to enhance the efficiency and reliability of this approach. By addressing the identified drawbacks and maximizing the utilization of advanced techniques, we can further harness the potential of microalgae biofilm in contributing to a more environmentally friendly and economically feasible bioplastic industry.

摘要

在这篇全面综述中,我们深入探讨了阻碍基于微藻的生物塑料大规模生产的挑战,主要聚焦于经济可行性和生物塑料质量。为解决这些问题,我们探索了微藻生物膜培养作为生物塑料生产的一种可持续且高度可行方法的潜力。我们提出了一种利用微藻生物膜生产生物塑料的方法,并使用生命周期分析(LCA)、生态足迹分析、资源流分析和资源核算等各种工具评估其环境影响。虽然中试规模和大规模的LCA数据有限,但我们利用能源效率、碳足迹、材料管理和社区接受度等替代指标来预测基于微藻生物膜的生物塑料商业化的环境影响。本研究结果表明,利用微藻生物膜生产生物塑料具有显著的环境可持续性优势。该系统能源需求低,碳足迹小。此外,它有潜力通过将废水用作碳源来解决废水问题,从而减轻相关问题。然而,必须承认本综述中提出的方法存在某些局限性。需要进一步研究来探索和设计精确技术,以操纵微藻生物膜结构,优化所需代谢物的积累。这可能涉及使用化学触发因素、代谢工程和基因工程来实现预期目标。总之,本综述强调了微藻生物膜作为生物塑料生产的一种可行且可持续解决方案的潜力。在认识到其优势的同时,也强调了持续进行综合研究以提高该方法的效率和可靠性的必要性。通过解决已确定的缺点并最大限度地利用先进技术,我们可以进一步挖掘微藻生物膜在推动更环保、经济上更可行的生物塑料产业方面的潜力。

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