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From organic pollutants to bioplastics: insights into the bioremediation of aromatic compounds by Cupriavidus necator

机译:从有机污染物到生物塑料:Cupriavidus necator对芳香族化合物进行生物修复的见解

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Organic pollution by aromatic compounds is of increasing concern to our environment. Therefore, the transformation of aromatic pollutants into valuable aliphatic and biodegradable bioplastics was studied. Since benzoic acid was found to be the key compound for such bioremediation processes, its transformation, and metabolic pathways of digestion, by Cupriavidus necator were specifically analysed. It was found that the degradation of aromatic compounds follows the 2,3-dioxygenase pathway in this strain and that the batch transformations of benzoic acid with either fresh or adapted cells were limited to an initial concentration of 2.5 g/L of pollutant. The repeated fed-batch with partial withdrawal process, however, showed a 17.5-fold improvement, thus allowing the transformation of a total of 43.7 g/L in 12 weeks.
机译:芳香族化合物对有机物的污染日益引起我们环境的关注。因此,研究了将芳香族污染物转化为有价值的脂肪族和可生物降解的生物塑料。由于已发现苯甲酸是此类生物修复过程的关键化合物,因此专门分析了铜杯霉菌(Cupriavidus necator)对其转化和消化代谢途径的影响。发现该菌株中芳族化合物的降解遵循2,3-二加氧酶途径,并且苯甲酸与新鲜细胞或适应细胞的分批转化限于2.5g / L的污染物初始浓度。但是,重复的分批补料批次显示提高了17.5倍,因此在12周内转化总量为43.7 g / L。

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