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生物质高效水解制取生物汽油和丁醇新技术研究报告
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作者 马隆龙 王铁军 +2 位作者 陈新德 章青 张素平 《科技创新导报》 2016年第1期161-162,共2页
该报告通过开展木质纤维素高温液态水-超低酸与酶高效水解技术,丙酮丁醇发酵技术及烷烃水相重整制备技术的研究,探索了不同工艺条件对纤维素转化率,糖产率、发酵抑制物生成量等影响,并建立了相应的数学模型。采用紫外谤变和化学谤... 该报告通过开展木质纤维素高温液态水-超低酸与酶高效水解技术,丙酮丁醇发酵技术及烷烃水相重整制备技术的研究,探索了不同工艺条件对纤维素转化率,糖产率、发酵抑制物生成量等影响,并建立了相应的数学模型。采用紫外谤变和化学谤变法研究和选育出具有较高耐受性、高转化率的已糖和戊糖共发酵丙酮丁醇梭茼,确定丙酮丁醇梭茼发酵的工艺条件。开发研制出高性能复合分子筛负载型水相重整镍基催化剂,探索出葡萄糖.木糖的水相催化转化工艺,并对水相重整的关键参数进行优化;设计建成了年产450t/年生物汽油和燃料丁醇的生产示范中试系统,探索了水解装置,丁醇丙酮发酵装置与生物汽油生产装置之间的偶联集成,并对系统进行了调试运行:在水解和发酵中试系统的运行阶段,半纤维素水解率达到90%以上,纤维素水解率达到80%以上,水解液中总糖浓度迭3%-10%;戊糖.己糖转化率均大于86%,总糖转化率为87%。对水解液经复合吸附剂脱毒和丙酮丁醇梭菌发酵后,产品中丁醇比例大于65%,最终总产品液度达到2.2wt.%,丁醇浓度达到1.4wt.%。而在水相重整制取生物汽油系统运行阶段,总碳转化率维持在85%左右;产物中C5.C6的选择性在80-90%之间,其中异构烷烃所占比例约为20%,催化剂连续使用72h活性未见下降。 展开更多
关键词 木质纤维素 酶高效水解 水相催化
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Deletion of a Non-Catalytic Region Increases the Enzymatic Activity of a β-Agarase from Flammeovirga sp. MY04 被引量:2
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作者 HAN Wenjun GU Jingyan +3 位作者 LIU Huihui LI Fuchuan WU Zhihong LI Yuezhong 《Journal of Ocean University of China》 SCIE CAS 2015年第5期841-848,共8页
A Glycoside hydrolase (GH) typically contains one catalytic module and varied non-catalytic regions (NCRs). However, effects of the NCRs to the catalytic modules remain mostly unclear except the carbohydrate-bindi... A Glycoside hydrolase (GH) typically contains one catalytic module and varied non-catalytic regions (NCRs). However, effects of the NCRs to the catalytic modules remain mostly unclear except the carbohydrate-binding modules (CBMs). AgaG4 is a GH16 endo-β-agarase of the agarolytic marine bacterium Flammeovirga sp. MY04. The enzyme consists of an extra sugar-binding peptide within the catalytic module, with no predictable CBMs but function-unknown sequences in the NCR, which is a new characteristic of agarase sequences. In this study, we deleted the NCR sequence, a 140-amino acid peptide at the C-terminus and expressed the truncated gene, agaG4-T140, in Escherichia coli. After purification and refolding, the trtmcated agarase rAgaG4-T140 retained the same catalytic temperature and pH value as rAgaG4. Using combined fluorescent labeling, HPLC and MS/MS techniques, we identified the end-products of agarose degradation by rAgaG4-T140 as neoagarotetraose and neoagarohexaose, with a final molar ratio of 1.53:1 and a conversion ratio of approximately 70%, which were similar to those of rAgaG4. However, the truncated agarase rAgaG4-T140 markedly decreased in protein solubility by 15 times and increased in enzymatic activities by 35 times. The oligosaccharide production of rAgaG4-T140 was approximately 25 times the weight of that produced by equimolar rAgaG4. This study provides some insights into the influences of NCR on the biochemical characteristics of agarase AgaG4 and implies some new strategies to improve the properties of a GH enzyme. 展开更多
关键词 AGARASE enzymatic characteristic Flammeovirga non-catalytic region OLIGOSACCHARIDE TRUNCATION
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