Scalable recovery of polyhydroxyalkanoate (PHA) from a mixed microbial culture via a novel acidification-NaClO digestion process

Q1 Environmental Science
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Abstract

Polyhydroxyalkanoate (PHA) is a kind of cellular biopolymers, and a renewable alternative to conventional plastics. To promote low-cost PHA production, this study developed a simple and scalable process to recover this polymer from a phenol-fed mixed culture. Cultures containing >50 % PHA were first acidified then treated with NaClO, leading to digestion of cellular materials by HClO. NaClO dosage, HCl/NaClO ratio, and treatment time were tested for their effects on product Purity and Recovery rate. Compared with NaClO alone which obtained 55–74 % Purity and 57–73 % Recovery, acidification improved the extraction efficiency to 62–83 % Purity and 75–97 % Recovery of cellular PHA. Statistical analysis was performed on dosage, ratio and treatment time. The chemical cost of obtaining 1 kg pure PHA ranged $7–10, but can be greatly reduced by applying a denser culture. However, HClO reduced the molecular weight of the PHA products, which needs to be addressed in future studies.

Abstract Image

通过新型酸化-NaClO 消化工艺从混合微生物培养物中规模化回收聚羟基烷酸 (PHA)
聚羟基烷酸(PHA)是一种细胞生物聚合物,也是传统塑料的可再生替代品。为了促进 PHA 的低成本生产,本研究开发了一种简单、可扩展的工艺,从苯酚喂养的混合培养物中回收这种聚合物。首先酸化含有 50% PHA 的培养物,然后用 NaClO 处理,最后用 HClO 消解细胞物质。测试了 NaClO 用量、HCl/NaClO 比例和处理时间对产品纯度和回收率的影响。与单独使用 NaClO 所获得的 55-74 % 的纯度和 57-73 % 的回收率相比,酸化可将提取效率提高到 62-83 % 的纯度和 75-97 % 的回收率。对用量、比例和处理时间进行了统计分析。获得 1 千克纯 PHA 的化学成本为 7-10 美元,但通过采用更高密度的培养可大大降低成本。不过,HClO 会降低 PHA 产品的分子量,这需要在今后的研究中加以解决。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Bioresource Technology Reports
Bioresource Technology Reports Environmental Science-Environmental Engineering
CiteScore
7.20
自引率
0.00%
发文量
390
审稿时长
28 days
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