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浓香型大曲中1株高液化力功能细菌的筛选与鉴定 被引量:7
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作者 陈晓旭 明红梅 +4 位作者 罗惠波 许德富 朱莉莉 姚霞 薛登文 《贵州农业科学》 CAS 2015年第7期110-113,共4页
为探寻大曲微生物与风味物质之间的相关性,为构建大曲功能菌群及实现制曲生产异地化奠定基础,采用平板筛选、固态发酵、16SrDNA鉴定及HS-SPME-GC-MS等方法对浓香型大曲中的高液化力菌株进行筛选与鉴定。结果表明:菌株X20与枯草芽孢杆菌... 为探寻大曲微生物与风味物质之间的相关性,为构建大曲功能菌群及实现制曲生产异地化奠定基础,采用平板筛选、固态发酵、16SrDNA鉴定及HS-SPME-GC-MS等方法对浓香型大曲中的高液化力菌株进行筛选与鉴定。结果表明:菌株X20与枯草芽孢杆菌的16SrDNA序列同源性高达99%,可确定其为枯草芽孢杆菌;该菌株的液化力高达11.756g/(g·h),其代谢产物含有吡嗪类物质、愈创木酚和苯甲醛等多种重要的大曲风味物质,可初步确定其为大曲的功能菌株。 展开更多
关键词 浓香型大曲 高液化力 细菌 功能菌株 HS-SPME-GC-MS 16SrDNA
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SCC evaluation of ultra-high strength steel in acidic chloride solution 被引量:6
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作者 吴凌飞 李松梅 +1 位作者 刘建华 于美 《Journal of Central South University》 SCIE EI CAS 2012年第10期2726-2732,共7页
The stress corrosion crack (SCC) susceptibility of ultra-high strength steel AerMet 100 was investigated by slow strain rate technique (SSRT), tensile with polarization and surface analysis technique. The curves o... The stress corrosion crack (SCC) susceptibility of ultra-high strength steel AerMet 100 was investigated by slow strain rate technique (SSRT), tensile with polarization and surface analysis technique. The curves of tf^Cl/tf^W -strain rate are divided into three regions: stress-dominated region, SCC-dominated region, and corrosion-dominated region, so as the curves of εf^Cl/εf^W - strain rate and tm/tf-strain rate. The results of tensile tests with polarization show that the main SCC mechanism of AerMet 100 is anodic dissolution, which controls the corrosion process. The three regions have been discussed according to the relationship between the rate of slip-step formation and the rate of dissolution. Fracture appearances in different environments were analyzed by scanning electron microscopy (SEM). SCC fracture appears as a mixture of intergranular and dimples, while it is totally dimples in the inert environment. The εf becomes the parameter to predict tf because the relationship between εf^Cl/εf^W and tf^Cl/tf^w is a straight line for AerMet 100. 展开更多
关键词 ultra-high strength steel stress corrosion crack slow strain rate technique strain rate anodic dissolution slip-stepformation DISSOLUTION
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