首页> 外文期刊>Environmental Science and Pollution Research >Biodegradation of wheat straw by Ochrobactrum oryzae BMP03 and Bacillus sp. BMP01 bacteria to enhance biofuel production by increasing total reducing sugars yield
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Biodegradation of wheat straw by Ochrobactrum oryzae BMP03 and Bacillus sp. BMP01 bacteria to enhance biofuel production by increasing total reducing sugars yield

机译:小麦吸管的生物降解<重点型=“斜体”> Ochrobactrum oryzae Bmp03和<重点型=“斜体”> Bacillus Sp。 BMP01细菌通过增加总还原糖产量来提高生物燃料生产

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Pretreatment is a vital step to enhance the yield of total reducing sugars and biofuel production from lignocellulose biomass. An effective new lignin-degrading and polysaccharide-hydrolyzing bacteria, Ochrobactrum oryzae BMP03 and Bacillus sp. BMP01 strains, were isolated and identified from wood-feeding termite’s guts. Wheat straw was biodelignified by Ochrobactrum oryzae BMP03 bacteria strains to degrade lignin and to release the trapped cellulose and hemicellulose. The biodelignified wheat straw was hydrolyzed by Bacillus sp. BMP01 strains. Ochrobactrum oryzae BMP03- Bacillus sp. BMP01 consortia were also performed to analyze the effect of the simultaneous system. It was shown that the production of total reducing sugars in a separate hydrolysis system by Bacillus sp. BMP01 strain achieved 439?mg/g at 16?days of hydrolysis time, which is 9.45% higher than the simultaneous system. About 44.47% lignin was degraded by the Ochrobactrum oryzae BMP03 strain after 16?days of biotreatment. This also contributed for increment in cellulose content by 22.38% and hemicellulose content by 18.64%. The simultaneous system converted 368?mg of reducing sugars/g of wheat straw. Separate biodelignification and hydrolysis have an advantage over the simultaneous system in terms of hydrolysis efficiency and vice versa in terms of biotreatment time. Scanning electron microscope, mid-infrared analysis by Fourier transform infrared spectroscopy (FTIR) and X-ray diffraction analysis confirmed the change in composition due to biotreatment. The biotreatment improved hydrolysis efficiency, which reduces the cost of biofuel production and increases the yield of biofuel. These results indicate the possibilities of biofuel production from wheat straw by employing Ochrobactrum oryzae BMP03 and Bacillus sp. BMP01 bacteria strains.
机译:预处理是提高木质纤维素生物质总还原糖和生物燃料生产产量的重要步骤。一种有效的新木质素降解和多糖水解细菌,Ochrobactrum oryzae BMP03和Bacillus sp。 BMP01菌株被隔离并从木材喂食白蚁的肠道中鉴定。小麦秸秆由Ochrobactrum oryzae bmp03细菌菌株生物曲线,以降解木质素并释放被困纤维素和半纤维素。生物渗透的小麦秸秆由芽孢杆菌水解。 BMP01菌株。 Ochrobactrum oryzae bmp03-芽孢杆菌sp。还进行了BMP01的成分,以分析同时系统的效果。结果表明,通过芽孢杆菌SP将总还原糖中的还原糖中的产量。 BMP01应变在16℃下达到439毫克/克水解时间,比同时系统高9.45%。大约44.47%的木质素被Ochrobactrum Oryzae BMP03菌株降解了16?天的生物处理后。这也有助于纤维素含量的增量22.38%,半纤维素含量为18.64%。同时系统转换了368毫克还原糖/麦秸秆。在水解效率方面,单独的生物曲变和水解具有在同时系统上具有优势,反之亦然。扫描电子显微镜,傅立叶变换红外光谱(FTIR)和X射线衍射分析的中红外分析证实了由于生物处理引起的组成的变化。生物处理改善了水解效率,从而降低了生物燃料生产的成本,增加了生物燃料的产量。这些结果表明,通过使用Ochrobactrum Oryzae BMP03和Bacillus Sp,可以从麦子吸管中产生生物燃料生产的可能性。 BMP01细菌菌株。

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