• Title/Summary/Keyword: 폴리하이드록시알카노에이트 생산

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Production of Polyhydroxyalkanoates (PHAs) from Sequencing Batch Reactor Using Synthetic Wastewater (연속회분식 처리시스템에서 인공하수를 이용한 Polyhydroxyalkanoates (PHAs)의 생산)

  • Son, Jae-hyup;Cha, Sang-Hyeop;Park, Jun-mo;Park, Hung-suck
    • Journal of Korean Society of Environmental Engineers
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    • v.37 no.6
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    • pp.363-370
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    • 2015
  • The production of polyhydroxyalkanoates (PHAs) using Sequencing Batch Reactor (SBR) was investigated. The experiments were performed in two fabricated SBRs (4 L) of different oxidation state. Synthetic wastewater was used as substrate, using C/N/P ratio of 42:10:1. SBR 1 and SBR 2 were operated in aerobic dynamic feeding (ADF) and anaerobic/oxic dynamic feeding (AODF) condition, respectively. ADF provide feast and famine in aerobic condition, while AODF in anaerobic/oxic condition. PHAs production was found high in AODF than AOF. Maximum PHAs content of 40.0% (w/w)of biomass were produced in AODF mode. Produced PHAs structural and thermal property were good.

Recent Trends in The Production of Polyhydroxyalkanoates Using Marine Microorganisms (해양 미생물에 의한 폴리하이드록시알카노에이트 생산의 최근 동향)

  • Seon Min Kim;Hye In Lee;Hae Su Jeong;Young Jae Jeon
    • Journal of Life Science
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    • v.33 no.8
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    • pp.680-691
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    • 2023
  • Peak oil, climate change, and microplastics caused by the production and usage of petroleum-based plastics have threatened the sustainability of our daily life, and this has emerged as a recent global issue. To solve this global issue, the production and usage of biodegradable eco-friendly bioplastics such as polyhydroxyalkanoates (PHAs) has been suggested as an alternative. Therefore, in this review, the present status of global PHA manufacturers, the advantages of the production of PHAs using marine-origin microorganisms (with their productivity potential) and further required research and development strategies for cost-competitive production of PHAs using marine-based microorganisms were investigated. In this review, PHAs produced from marine microorganisms were found to have similar physical properties to petroleum-based plastics but with several advantages that can reduce the costs of PHA production. Those advantages include, seawater used in the medium preparation step, and osmotic-based cell lysis technology used in the separation and purification steps. However, the PHA productivities from marine microorganisms showed somewhat lower efficiencies than those from the commercial strains isolated from terrestrial environments. In order to solve the problem, further research strategies using synthetic microbiology-based technology, the development of long-term continuous culture technology, and solutions to improve PHA efficiency are required to meet future market demands for alternative bioplastics.