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Feasibility study on production of biodegradable polymer and wastewater treatment using Aeromonas strains for materials recycling

机译:利用气单胞菌菌株回收可生物降解聚合物和废水处理的可行性研究

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摘要

With consideration of wastewater treatment and materials recycling for cradle-to-cradle (C2C) sustainable development, this treatability study analyzed the capability of poly 3-hydroxybutyrate (PHB) production in wastewater-laden media using indigenous dye-decolorizing Aeromonas hydrophila NIU01, KB23, Aeromonas salmonicida 741. Compared to paper-container, frozen food, wine manufacturing wastewater, wastewater generated from printing and dyeing industry was found to be more appropriate to efficiently produce PHB for materials recycling. Due to lack of sufficient essential inorganic nutrients provided for cell propagation, dye-decolorized wastewater with augmented MR media in different ratios was used to explore toxicity potency of mixed media and to present PHBproducing capability of cells. In particular, when MR media were completely replaced by decolorized culture broth, significant stimulating effect on PHA-production was shown (ca. 52.5% PHB content). This study clearly revealed the promising feasibility of simultaneous wastewater treatment and biopolymer production for cradle-to-cradle sustainable development.
机译:考虑到废水处理和从摇篮到摇篮(C2C)可持续发展的材料回收利用,该可处理性研究分析了使用本地染料脱色亲水嗜水气单胞菌NIU01,KB23在载有废水的介质中生产聚3-羟基丁酸酯(PHB)的能力。 ,Aeromonas salicida741。与纸容器相比,冷冻食品,葡萄酒制造业的废水,印染工业产生的废水被发现更适合有效地生产PHB用于材料回收。由于缺乏足够的必需无机营养素来促进细胞繁殖,因此使用染料MR培养基以不同比例的染料脱色废水来探索混合培养基的毒性,并展现细胞的PHB产生能力。特别是,当MR培养基完全被脱色的培养液代替时,显示出对PHA产生的显着刺激作用(约52.5%PHB含量)。这项研究清楚地揭示了废水同步处理和生物聚合物生产对于摇篮到摇篮可持续发展的有希望的可行性。

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