Pagliano Giorgia, Galletti Paola, Samorì Chiara, Zaghini Agnese, Torri Cristian
Department of Chemistry "Giacomo Ciamician", University of Bologna, Ravenna, Italy.
CIRI-Fonti Rinnovabili, Ambiente, Mare ed Energia, Ravenna, Italy.
Front Bioeng Biotechnol. 2021 Feb 10;9:624021. doi: 10.3389/fbioe.2021.624021. eCollection 2021.
An overview of the main polyhydroxyalkanoates (PHA) recovery methods is here reported, by considering the kind of PHA-producing bacteria (single bacterial strains or mixed microbial cultures) and the chemico-physical characteristics of the extracted polymer (molecular weight and polydispersity index). Several recovery approaches are presented and categorized in two main strategies: PHA recovery with solvents (halogenated solvents, alkanes, alcohols, esters, carbonates and ketones) and PHA recovery by cellular lysis (with oxidants, acid and alkaline compounds, surfactants and enzymes). Comparative evaluations based on the recovery, purity and molecular weight of the recovered polymers as well as on the potential sustainability of the different approaches are here presented.
本文报道了主要的聚羟基脂肪酸酯(PHA)回收方法概述,其中考虑了PHA产生菌的种类(单一菌株或混合微生物培养物)以及提取聚合物的化学物理特性(分子量和多分散指数)。介绍了几种回收方法,并将其分为两种主要策略:用溶剂回收PHA(卤代溶剂、烷烃、醇、酯、碳酸盐和酮)和通过细胞裂解回收PHA(使用氧化剂、酸碱化合物、表面活性剂和酶)。本文还基于回收聚合物的回收率、纯度和分子量以及不同方法的潜在可持续性进行了比较评估。