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Biodegradation of kraft lignin by a bacterial strain Sphingobacterium sp.HY-H

机译:用细菌菌株Sp.Hy-H生物降解牛皮纸木质素

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A lignin-degrading bacterium was isolated on mineral salt medium amended by lignosulfonate (L-MSM) agar from the activated sludge of a pulp and paper mill wastewater treatment plant and identified as Sphingobacterium sp. HY-H by biochemical tests and 16S rRNA gene sequencing. The maximum kraft lignin (KL) degradation capability of strain HY-H was determined to be 28.2% on a COD basis under the optimal conditions of pH 7.0, temperature 30°C, and KL to nitrogen (as NH_4Cl) ratio of 2 by mass. Moreover, growth kinetic studies showed the KL tolerance of strain HY-H was relatively high and the analysis of KL degradation products by GC-MS revealed the formation of low-molecular-weight aromatic compounds (LMWACs), such as guaiacol, vanillin and vanillyl alcohol, indicating that the strain HY-H can oxidize guaiacyl (G) units and syringyl (S) units in lignin structure. In addition, some low molecular ketone compounds such as 4-hydroxy-2-butanone and methyl vinyl ketone were detected in the inoculated sample after 48h, further validating the partial but possible degradation of KL by strain HY-H.
机译:在由木质素磺酸盐(L-MSM)琼脂修正的矿物盐培养基中,从纸浆和造纸废水处理厂的活性污泥修正的矿物盐培养基上分离了木质素降解细菌,并将其鉴定为鞘氨酸SP。通过生化试验和16S rRNA基因测序的HY-H.在pH 7.0,温度30℃和K1的最佳条件下,测定菌株Hy-H的最大磷酸盐木质素(KL)降解能力为28.2%,在pH 7.0,温度30℃和K1至氮气(作为NH_4Cl)比例为2质量。此外,增长动力学研究表明,应变Hy-H的KL耐受性相对较高,并且通过GC-MS分析K1降解产物,显示出低分子量芳族化合物(LMWAC),如愈菌醇,香草醛和Vanillyl醇,表明菌株Hy-H可以氧化木质素结构中的愈菌(G)单位和注射器单元。此外,如4-羟基-2-丁酮和甲基乙烯基酮48小时后接种的样品中进行检测,进一步证实通过应变HY-H KL的部分,但可能的降解一些低分子量酮化合物。

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