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首页> 外文期刊>Journal of Cleaner Production >Production of bioplastic (poly-3-hydroxybutyrate) using waste paper as a feedstock: Optimization of enzymatic hydrolysis and fermentation employing Burkholderia sacchari
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Production of bioplastic (poly-3-hydroxybutyrate) using waste paper as a feedstock: Optimization of enzymatic hydrolysis and fermentation employing Burkholderia sacchari

机译:使用废纸作为原料生产生物塑料(聚-3-羟基丁酸酯):利用糖衣伯克霍尔德氏菌进行酶解和发酵的优化

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The global demand for bio-plastic particularly polyhydroxyalkanoate (PHA) have been increased in the last few decades as a substitute of petrochemical-based plastic. Utilization of waste paper, the primary constituent of municipal solid waste (MSW), as a carbon source for polyhydroxybutyrate (PHB) production is not only an alternative, environmental friendly route of waste management but also helps to valorize the waste. In this study, hydrogen peroxide pretreated waste paper saccharification has been optimized using central composite design (CCD). The maximum hydrolysis (88.18%) occurred at paper loading 5.0 g/L, agitation 242 rpm, working volume 20%, cellulase 49.82 U/g, fi-glucosidase 20.9 U/g and hemicellulase 29.5 1.I/g. PHB synthesis and biomass accumulation by xylose-utilizing Burkholderia sacchari using waste paper hydrolysate were studied using different nitrogen sources and carbon to nitrogen (C/N) ratios. Maximum PHB and dry cell weight (DCW) occurred with ammonium sulfate and a C/N ratio of 20. The highest biomass (3.63 g/L), the maximum PHB accumulation (44.2%) and the maximum reducing sugar utilization (92.1%) were observed after 48 h of cultivation using diluted hydrolysate. The physicochemical properties of the extracted PHB were compatible with the standard PHB. Hence, the waste paper could be exploited as a renewable feedstock for the sustainable production of PHB. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在过去的几十年中,全球对生物塑料特别是聚羟基链烷酸酯(PHA)的需求有所增加,以替代基于石油化学的塑料。利用废纸作为城市固体废物(MSW)的主要成分,作为生产聚羟基丁酸酯(PHB)的碳源,不仅是废物管理的一种替代性,环境友好的途径,而且还有助于废物的增值。在这项研究中,使用中央复合设计(CCD)对过氧化氢预处理的废纸糖化进行了优化。最大水解(88.18%)发生在载纸量5.0g / L,搅拌242r​​pm,工作量20%,纤维素酶49.82U / g,葡糖苷酶20.9U / g和半纤维素酶29.51.1I / g下。使用不同的氮源和碳氮比(C / N),研究了利用废纸水解物利用木糖的伯克霍尔德氏菌糖代谢PHB的合成和生物量的积累。硫酸铵和C / N比为20时,出现最大的PHB和干细胞重量(DCW)。最大的生物量(3.63 g / L),最大的PHB累积(44.2%)和最大的还原糖利用率(92.1%)在使用稀释的水解液培养48小时后观察到。提取的PHB的理化性质与标准PHB相容。因此,废纸可作为可再生原料用于PHB的可持续生产。 (C)2019 Elsevier Ltd.保留所有权利。

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