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深水低桩承台在沉船片石淤泥基底双壁钢围堰综合施工技术
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作者 邓珣 《中文科技期刊数据库(全文版)工程技术》 2021年第1期215-217,共3页
以广州南沙大岗区块项目上横沥大桥承台双壁钢围堰下沉施工为例,通过船载破碎锤水下破碎沉船片石,有效解决了双壁钢围堰在沉船片石淤泥基底中下放不到位的难题,达到了有效处理沉船片石淤泥基底中深水低桩承台快速施工的目的。
关键词 深水低桩承台 沉船片石 淤泥基底 双壁钢围堰
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Isolation and Genetic Analysis of Halophilous Bacteria from Marine Sediment Collected at Tianjin Port, China 被引量:1
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作者 ZHANG Guo-gang LIU Cheng-bao +4 位作者 JIA Mei-qing HUANG Jing XIE Li-na YIN Xue SUI Xin 《Agricultural Science & Technology》 CAS 2018年第5期50-58,共9页
[Objective] Marine sediment from Tianjin Port has a extremely high salinity.The bacteria which live in such habitats have evolved distinct physiological,metabolic,and morphological characteristics to survive.The objec... [Objective] Marine sediment from Tianjin Port has a extremely high salinity.The bacteria which live in such habitats have evolved distinct physiological,metabolic,and morphological characteristics to survive.The objective of this study is to identify all the specific salt-tolerant characteristics and the genetic evolution of the bacteria in the sediment.[Methods] In this study,the total DNA of sediment from Tianjin Port was extracted,and 16S rDNA was used to conduct an analysis of the fauna of sediment bacteria. We also isolated sediment bacteria using beef extract-peptone media with seven different NaCl concentrations (0,0.5%,2%,5%,10%,15%,and 20%),aiming to analyze the dominant species of halophilous bacteria under different salinities.[Results] 1) With each stepwise increase of salinity from 0.5% to 20%,the total number of isolated bacterial colonies decreased.14 strains of bacteria were identified and classified by the16S rDNA sequencing analysis.Of these,four could tolerate 0~2% salinity,four could tolerate 0~5% salinity,one could tolerate 0~15% salinity,and one tolerated within the full 0~20% salinity range.Further four strains were only able to tolerate within a few narrow salinity ranges.such as 5%~10%,10%~15%,10%~20% and 15%~20%;2) The quantity of bacteria strains that can be isolated from the marine sediment decreased with the increase of salinity. Also, the Shannon wiener index and species richness index of marine sediment bacteria decreased significantly from 5% salinity.However,there were no significant differences in the species evenness index;3) When the salinity was 0~10%,the dominant species was Bacillus.When the salinity was 15%, Halomonas was the dominant species.When the salinity was 20%,there were no significant differences in the proportions of these species.[Conclusion] Our results showed that some bacteria could tolerate living conditions with high salinity,and we even found a species which can tolerate a wide range of salinities (0~20%).In further study,it would be valuable to analyze these bacteria's unique physiological and biochemical functions that allow them to adapt to environments with high salinity.It can provide theories to promote the development of microbial population resources in marine sediment and the reclaimation of salinized soil by salt tolerant microorganisms. 展开更多
关键词 BACTERIA Marine sediment 16S rDNA gene sequence SALTTOLERANCE Genetic classification
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