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地熱水環境中PTFE/PPS復合涂層表面CaCO3垢成核行為

Nucleation behavior of CaCO3 scale on the surface of PTFE/PPS composite coatings in geothermal water environments

  • 摘要: 采用掃描電子顯微鏡和能譜儀等測試方法研究了聚四氟乙烯(PTFE)/聚苯硫醚(PPS)復合涂層在靜態模擬地熱水環境中的阻垢性能,分析了PTFE/PPS涂層表面的微觀結構對CaCO3垢成核行為的影響.結果表明:使用PTFE乳液摻雜PPS獲得的復合涂層的表面呈多孔結構,PTFE在涂層孔內外的分布不均導致CaCO3垢晶核趨于在孔內和孔壁處優先形成和生長;PTFE/PPS涂層的接觸角隨著浸泡時間的延長而變小,表面結垢速度要明顯小于304不銹鋼和PPS涂層.

     

    Abstract: The anti-scale performance of polytetrafluoroethylene (PTFE)/polyphenylene sulfide (PPS) composite coatings was studied by scanning electron microscopy (SEM) and energy dispersion spectrometry (EDS). The effect of the surface microstructure of PTFE/PPS coatings on the nucleation behavior of CaCO3 scale was analyzed. The results indicate that the surface microstructure of PTFE (latex)-blended PPS composite coatings is poriferous, and PTFE asymmetrically distributes inside and outside holes on the coating surface, inducing CaCO3 scale to nucleate firstly on the hole inside and wall. The contact angle of PTFE/PPS coatings decreases with prolonging immersion time. The increasing rate of scaling on PTFE/PPS coatings is obviously less than that of 304 stainless steel and PPS coatings.

     

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