<th id="5nh9l"></th><strike id="5nh9l"></strike><th id="5nh9l"><noframes id="5nh9l"><th id="5nh9l"></th><strike id="5nh9l"></strike>
<progress id="5nh9l"><noframes id="5nh9l"><th id="5nh9l"><noframes id="5nh9l">
<th id="5nh9l"></th> <strike id="5nh9l"><noframes id="5nh9l"><span id="5nh9l"></span>
<progress id="5nh9l"><noframes id="5nh9l"><span id="5nh9l"><noframes id="5nh9l"><span id="5nh9l"></span><strike id="5nh9l"><noframes id="5nh9l"><strike id="5nh9l"></strike>
<span id="5nh9l"><noframes id="5nh9l">
<span id="5nh9l"><noframes id="5nh9l">
<span id="5nh9l"></span><span id="5nh9l"><video id="5nh9l"></video></span>
<th id="5nh9l"><noframes id="5nh9l"><th id="5nh9l"></th>
<progress id="5nh9l"><noframes id="5nh9l">

大氣環境中金屬及其保護層霉菌腐蝕研究的進展

Research progress on fungal corrosion of metals and their protective layers in atmospheric environments

  • 摘要: 微生物及其生命特征嚴重影響著材料的服役性能與壽命.目前大量的研究集中在細菌腐蝕領域,對于大氣環境中真菌造成的腐蝕行為與機理研究較少.事實上,在大氣環境中存在著大量的霉菌,其生命活動對金屬及涂、鍍層的腐蝕也具有重要的影響.本文綜述了霉菌的生化特性與腐蝕的關系,討論了在大氣環境中霉菌對金屬及涂、鍍層材料腐蝕行為的影響,并歸納了霉菌腐蝕的相關機理;同時根據腐蝕特征的對比分析可知,霉菌腐蝕與細菌腐蝕具有一定的差異性,其主要原因在于兩類菌的代謝產物不同.目前,對金屬及涂、鍍層材料的霉菌腐蝕研究大多停留在對材料表面霉菌腐蝕現象的描述和產物的分析等方面,缺乏對霉菌生命活動與腐蝕速度的定量表征,缺乏對霉菌引起的腐蝕過程動力學規律的研究,這將是未來研究工作的重點.

     

    Abstract: Microorganisms and their characteristic metabolisms seriously affect the service performance and service life of materials. To date, most studies have concentrated on the bacterial corrosion of materials and comparatively few have focused on the corrosion behavior and mechanisms fungi exhibit in atmospheric environments. Many fungi exist in the atmosphere and their activities significantly influence the corrosion of metals and coatings. In this paper, the relationship was reviewed between the biochemical characteristics of fungi and the corrosion behaviors of these materials, the effects of fungal corrosion behavior were discussed on metal and coating materials in atmospheric environments, and the mechanism of fungal corrosion was described. By contrasting the features of two types of corrosion, It was found that fungal corrosion mainly differ from bacterial corrosion with respect to their respective metabolites. Currently, most fungal corrosion research has been limited to phenomenal description and corrosion product analysis and has lacked any quantitative characterization of fungal metabolism and corrosion kinetics, which merits greater emphasis in future research.

     

/

返回文章
返回
<th id="5nh9l"></th><strike id="5nh9l"></strike><th id="5nh9l"><noframes id="5nh9l"><th id="5nh9l"></th><strike id="5nh9l"></strike>
<progress id="5nh9l"><noframes id="5nh9l"><th id="5nh9l"><noframes id="5nh9l">
<th id="5nh9l"></th> <strike id="5nh9l"><noframes id="5nh9l"><span id="5nh9l"></span>
<progress id="5nh9l"><noframes id="5nh9l"><span id="5nh9l"><noframes id="5nh9l"><span id="5nh9l"></span><strike id="5nh9l"><noframes id="5nh9l"><strike id="5nh9l"></strike>
<span id="5nh9l"><noframes id="5nh9l">
<span id="5nh9l"><noframes id="5nh9l">
<span id="5nh9l"></span><span id="5nh9l"><video id="5nh9l"></video></span>
<th id="5nh9l"><noframes id="5nh9l"><th id="5nh9l"></th>
<progress id="5nh9l"><noframes id="5nh9l">
259luxu-164