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宏基因组测序法研究管材对生物膜致病菌的影响 被引量:1
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作者 李艺 彭宏熙 +1 位作者 陈环宇 柳景青 《哈尔滨工业大学学报》 EI CAS CSCD 北大核心 2021年第11期21-28,共8页
为研究供水管道材料对管道生物膜致病菌种的影响,以已稳定运行8年的中国东部某城市实际供水管道中试平台管道为实验对象,从平行设置的球墨铸铁管(DCIP)、高密度聚乙烯管(HDPE)、镀锌钢管(GSP)、不锈钢复合管(SSCP)和钢管(SP)管道中收集1... 为研究供水管道材料对管道生物膜致病菌种的影响,以已稳定运行8年的中国东部某城市实际供水管道中试平台管道为实验对象,从平行设置的球墨铸铁管(DCIP)、高密度聚乙烯管(HDPE)、镀锌钢管(GSP)、不锈钢复合管(SSCP)和钢管(SP)管道中收集13组生物膜样品,开展宏基因组测序分析,对比研究不同管道材料的致病菌种类分布情况。结果表明:DCIP生物膜中致病菌相对含量最为丰富,GSP致病菌相对含量最少;此外,世界卫生组织颁布的12种全球优先致病菌(priority pathogens)在本次供水管道中发现9种,在不同管道的相对丰度为0.079%~1.084%,表明供水管道生物膜对人类和环境的严重危害潜力;依据致病菌在5种管材中相对丰度的分布情况,发现与5种管材相关联的优势致病菌。研究结果为基于致病风险控制的供水管道管材选择提供了理论依据。 展开更多
关键词 供水管道 生物膜 致病菌分布 管材影响 宏基因组测序
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The Moisturein Capillaries of Building Materials
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作者 Jan Skramlik Miloslav Novotny Karel Suhajda 《Journal of Civil Engineering and Architecture》 2012年第11期1536-1543,共8页
The behavior of building materials in constructions of civil structures is influenced by the surrounding moisture and it is a crucial for intensively examined field of the construction physics. Most standard building ... The behavior of building materials in constructions of civil structures is influenced by the surrounding moisture and it is a crucial for intensively examined field of the construction physics. Most standard building materials are characterized by a porous structure, which results in the ability to receive water in a liquid as well as gaseous form in the inner pores. The water fills the storage space of pores under certain conditions; it is transported and transferred back to the surroundings. Many technical studies show that the moisture monitoring is prevailingly based on experiments. Previous calculating methods introduced, e.g., by Glaser, which became the basis for the standard calculations in many European countries in the 1960s, are not always sufficient with respect to the demands of the civil structures. The moisture influences thermo-insulating properties of the material. By a change of the thermo insulation properties of the construction also the thermal and diffusion scheme of the construction is changed and its thermal resistance is decreasing. Faults in the thermo-technical projects occur when thermal conductivity coefficient L values for material in a dry state are substituted.The aim of the research is to determine the capillary conductivity coefficient as a characteristic material moisture parameter of the building materials by the means of a non-destructive method using the experimentally assembled apparatus developed at the Department of Civil Engineering, Brno University of Technology. Keywords: Capillary conductivity coefficient, moisture transfer, EMWR (electromagnetic microwave radiation), diffusion 展开更多
关键词 Capillary conductivity coefficient moisture transfer EMWR (electromagnetic microwave radiation) diffusion.
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