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远程氩
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  remote argon
     Research on the improvement mechanism of PVC bio-carrier surface forming biofilm property by remote argon plasma
     远程氩等离子体提高PVC生物填料挂膜性能的机理研究
短句来源
     After the PVC surface was treated for 3 min by remote argon plasma, the [w(O)+w (N)]/w (C) increases from 0.07 to 0.22, and the water contact angle decreases from 107° to 20°.
     经远程氩等离子体短时间(3 min)处理后,PVC表面的[w(O)+w(N)]/w(C)从0.07增大到0.22,表面的水接触角从107°减小到20°.
短句来源
     Microorganism adhesions on PVC bio-carrier and influence factors were investigated to determine the modification effects of remote argon plasma on PVC.
     采用接触角测定、电子扫描电镜(SEM)和X射线光电子能谱(XPS)研究了远程氩等离子体表面改性前后PVC填料表面结构性能的变化,以揭示远程氩等离子体提高PVC生物填料挂膜性能的机理,并对表面改性前后PVC填料进行了细菌挂膜试验.
短句来源
     The effects of remote argon plasma and argon plasma on medical polyvinyl chloride (PVC) surface modification were studied. The surface properties were characterized by the contact angle measurement, X-ray photoelectron spectroscopy (XPS) and scanning electron microscopy (SEM).
     运用远程氩等离子体对医用聚氯乙烯(PVC)进行了表面改性,采用扫描电子显微镜观察、接触角测量和X射线光电子能谱分析等手段,研究了改性前后PVC表面结构、性能的变化,并分析了远程氩等离子体和常规等离子体处理效果不同的原因.
短句来源
     The results show that the remote argon plasma treatments can modify the PVC surface in both morphology and composition, and the remote argon plasma is more effective than the argon plasma in PVC surface modification.
     结果表明:PVC表面经远程氩等离子体处理后,表面微观形态和表面化学成分均发生了变化,且处理效果优于常规氩等离子体.
短句来源
  “远程氩”译为未确定词的双语例句
     Study on immobilization of urease on PTFE membrane modified with argon remote-plasma
     远程氩等离子体改性膜固定化脲酶的研究
短句来源
     Effects of Wettability of Medical Polyvinyl Chloride by Remote Ar gon Plasma
     远程氩等离子体表面改性对聚氯乙烯润湿性的影响
短句来源
     Moreover, remote plasma treatment can enhance radical reaction and inhibit electrons and ions etching reaction.
     远程氩等离子体可以在一定程度上抑制电子、离子的刻蚀作用,强化自由基反应,使材料表面获得更好的改性效果.
短句来源
  相似匹配句对
     DISTANCE DEUCATION
     远程教育
短句来源
     Distance Learning
     远程教育
短句来源
     Study on immobilization of urease on PTFE membrane modified with argon remote-plasma
     远程等离子体改性膜固定化脲酶的研究
短句来源
     Effects of Wettability of Medical Polyvinyl Chloride by Remote Ar gon Plasma
     远程等离子体表面改性对聚氯乙烯润湿性的影响
短句来源
     ARGON DUOPLASMATRON ION SOURCE
     双等离子体离子源
短句来源
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  remote argon
The epitaxial process employs anex situ wet chemical clean, anin situ remote hydrogen plasma clean, followed by a remote argon plasma dissociation of silane and germane to generate the precursors for epitaxial growth.
      


Microorganism adhesions on PVC bio-carrier and influence factors were investigated to determine the modification effects of remote argon plasma on PVC. And then, modified surface structure of PVC bio-carrier was characterized by contact angle measurement, SEM and XPS. Finally the mechanism was further analyzed, and the role of all kinds of active species, e.g. electrons, ions and free radicals involved in plasma surface modification at a “remote plasma" field, was further evaluate. The results showed that some...

Microorganism adhesions on PVC bio-carrier and influence factors were investigated to determine the modification effects of remote argon plasma on PVC. And then, modified surface structure of PVC bio-carrier was characterized by contact angle measurement, SEM and XPS. Finally the mechanism was further analyzed, and the role of all kinds of active species, e.g. electrons, ions and free radicals involved in plasma surface modification at a “remote plasma" field, was further evaluate. The results showed that some functional groups were found in the PVC surface treated with remote argon plasma. The surface wettability of PVC film was improved by remote argon plasma, moreover, biocompatibility of PVC Bio-carrier, Bio-carrier adhesion rate and capacity on the modified surface were enhanced significantly. The remote argon plasma could restrain the ion and electron eroding effect and enhance free radical reaction.

采用接触角测定、电子扫描电镜(SEM)和X射线光电子能谱(XPS)研究了远程氩等离子体表面改性前后PVC填料表面结构性能的变化,以揭示远程氩等离子体提高PVC生物填料挂膜性能的机理,并对表面改性前后PVC填料进行了细菌挂膜试验.同时,利用“远程等离子体”场,评价了等离子体表面改性中电子、离子、自由基的贡献.结果表明,远程氩等离子体可以通过将含氧基团和含氮基团引入PVC填料表面,使其表面极性改变,提高表面润湿性能,使得填料的挂膜性能提高,从而增强了PVC填料的生物亲和性,加强了微生物的附着、固定作用.远程氩等离子体可以在一定程度上抑制电子、离子的刻蚀作用,强化自由基反应.

In the ideal tube-reactor, remote plasma-super pure and highly concentrated free radicals have been attained at certain position away from the plasma source by taking advantage of various active particles (such as electrons, ions, and free radicals) with the different life-spans. The effects of remote argon plasma and argon plasma on medical polyvinyl chloride (PVC) surface modification were studied. The surface properties were characterized by the contact angle measurement, X-ray photoelectron spectroscopy...

In the ideal tube-reactor, remote plasma-super pure and highly concentrated free radicals have been attained at certain position away from the plasma source by taking advantage of various active particles (such as electrons, ions, and free radicals) with the different life-spans. The effects of remote argon plasma and argon plasma on medical polyvinyl chloride (PVC) surface modification were studied. The surface properties were characterized by the contact angle measurement, X-ray photoelectron spectroscopy (XPS) and scanning electron microscopy (SEM). The results show that the remote argon plasma treatments can modify the PVC surface in both morphology and composition, and the remote argon plasma is more effective than the argon plasma in PVC surface modification. Moreover, remote plasma treatment can enhance radical reaction and inhibit electrons and ions etching reaction. After the PVC surface was treated for 3 min by remote argon plasma, the [w(O)+w (N)]/w (C) increases from 0.07 to 0.22, and the water contact angle decreases from 107° to 20°.

在理想管式反应器中,利用等离子体中各种活性粒子(电子、离子、自由基)具有不同存活寿命的特点,在距等离子体放电区一定距离处形成高浓度自由基氛围,即远程等离子体.运用远程氩等离子体对医用聚氯乙烯(PVC)进行了表面改性,采用扫描电子显微镜观察、接触角测量和X射线光电子能谱分析等手段,研究了改性前后PVC表面结构、性能的变化,并分析了远程氩等离子体和常规等离子体处理效果不同的原因.结果表明:PVC表面经远程氩等离子体处理后,表面微观形态和表面化学成分均发生了变化,且处理效果优于常规氩等离子体.远程氩等离子体可以在一定程度上抑制电子、离子的刻蚀作用,强化自由基反应,使材料表面获得更好的改性效果.经远程氩等离子体短时间(3 min)处理后,PVC表面的[w(O)+w(N)]/w(C)从0.07增大到0.22,表面的水接触角从107°减小到20°.

 
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