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藻类生物塑料:当前市场趋势与技术层面

Algal bioplastics: current market trends and technical aspects.

作者信息

Nanda Neha, Bharadvaja Navneeta

机构信息

Plant Biotechnology Laboratory, Department of Biotechnology, Delhi Technological University, Shahbad Daulatpur, Main Bawana Road, Delhi, 110042 India.

出版信息

Clean Technol Environ Policy. 2022;24(9):2659-2679. doi: 10.1007/s10098-022-02353-7. Epub 2022 Jul 13.

Abstract

ABSTRACT

Plastics are undebatably a hot topic of discussion across international forums due to their huge ecological footprint. The onset of COVID-19 pandemic has exacerbated the issue in an irreversible manner. Bioplastics produced from renewable sources are a result of lookout for sustainable alternatives. Replacing a ton of synthetic plastics with biobased ones reduces 1.8 tons CO emissions. Here, we begin with highlighting the problem statement-Plastic accumulation and its associated negative impacts. Microalgae outperforms plants and microbes, when used to produce bioplastic due to superior growth rate, non-competitive nature to food, and simultaneous wastewater remediation. They have minimal nutrient requirements and less dependency on climatic conditions for cultivation. These are the reasons for current boom in the algal bioplastic market. However, it is still not at par in price with the petroleum-based plastics. A brief market research has been done to better evaluate the current global status and future scope of algal bioplastics. The objective of this review is to propose possible solutions to resolve the challenges in scale up of bioplastic industry. Various bioplastic production technologies have been comprehensively discussed along with their optimization strategies. Overall studies discussed show that in order to make it cost competitive adopting a multi-dimensional approach like algal biorefinery is the best way out. A holistic comparison of any bio-based alternative with its conventional counterpart is imperative to assess its impact upon commercialization. Therefore, the review concludes with the life cycle assessment of bioplastics and measures to improve their inclusivity in a circular economy.

摘要

摘要

由于塑料巨大的生态足迹,它无疑是国际论坛上讨论的热门话题。新冠疫情的爆发以不可逆转的方式加剧了这一问题。可再生资源生产的生物塑料是寻求可持续替代品的结果。用生物基塑料取代一吨合成塑料可减少1.8吨二氧化碳排放。在此,我们首先强调问题所在——塑料堆积及其相关负面影响。微藻在用于生产生物塑料时,其生长速度快、不与粮食竞争且能同时修复废水,因而优于植物和微生物。它们对养分需求极少,养殖对气候条件的依赖性较小。这些就是当前藻类生物塑料市场蓬勃发展的原因。然而,其价格仍不及石油基塑料。已开展简要的市场调研,以更好地评估藻类生物塑料的当前全球状况和未来前景。本综述的目的是提出可能的解决方案,以解决生物塑料产业扩大规模过程中的挑战。已全面讨论了各种生物塑料生产技术及其优化策略。所讨论的总体研究表明,为使其具有成本竞争力,采用藻类生物炼制等多维方法是最佳出路。对任何生物基替代品与其传统对应物进行全面比较,对于评估其商业化影响至关重要。因此,本综述最后进行了生物塑料的生命周期评估以及提高其在循环经济中包容性的措施。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4af2/9281343/4ac8c3672082/10098_2022_2353_Fig1_HTML.jpg

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