化工进展
化工進展
화공진전
Chemical Industry and Engineering Progress
2015年
11期
4089-4095
,共7页
化学镀Ni-P%微生物污垢%黏液形成菌%抗垢性%耐蚀性
化學鍍Ni-P%微生物汙垢%黏液形成菌%抗垢性%耐蝕性
화학도Ni-P%미생물오구%점액형성균%항구성%내식성
electroless Ni-P%microbial fouling%slime-forming bacteria%anti-fouling%corrosion resistance
为了研究化学镀Ni-P换热器上黏液形成菌微生物污垢的特性,利用化学镀Ni-P的方式对低碳钢表面进行改性。采用微生物污垢对比实验,对低碳钢片和具有Ni-P镀层低碳钢片拍摄扫描电镜图,利用称重法记录污垢变化情况和光电比浊法记录黏液形成菌的数量变化情况。结果表明,Ni-P 镀层表面形貌明显好于低碳钢;Ni-P镀层相比于碳钢具有很好的耐蚀性和抗微生物污垢特性;黏液形成菌生长繁殖旺盛和细菌代谢产物多时,微生物污垢的形成就快。相反,微生物污垢形成就慢。
為瞭研究化學鍍Ni-P換熱器上黏液形成菌微生物汙垢的特性,利用化學鍍Ni-P的方式對低碳鋼錶麵進行改性。採用微生物汙垢對比實驗,對低碳鋼片和具有Ni-P鍍層低碳鋼片拍攝掃描電鏡圖,利用稱重法記錄汙垢變化情況和光電比濁法記錄黏液形成菌的數量變化情況。結果錶明,Ni-P 鍍層錶麵形貌明顯好于低碳鋼;Ni-P鍍層相比于碳鋼具有很好的耐蝕性和抗微生物汙垢特性;黏液形成菌生長繁殖旺盛和細菌代謝產物多時,微生物汙垢的形成就快。相反,微生物汙垢形成就慢。
위료연구화학도Ni-P환열기상점액형성균미생물오구적특성,이용화학도Ni-P적방식대저탄강표면진행개성。채용미생물오구대비실험,대저탄강편화구유Ni-P도층저탄강편박섭소묘전경도,이용칭중법기록오구변화정황화광전비탁법기록점액형성균적수량변화정황。결과표명,Ni-P 도층표면형모명현호우저탄강;Ni-P도층상비우탄강구유흔호적내식성화항미생물오구특성;점액형성균생장번식왕성화세균대사산물다시,미생물오구적형성취쾌。상반,미생물오구형성취만。
A new experiment was designed to investigate microbial fouling characteristics on heat exchanger of electroless plating of Ni-P. In this paper,the surface of low-carbon steel sheet,which is common for heat exchanger,was modified by using the method of electroless Ni-P and low-carbon steels before and after electroless Ni-P,and pictures were taken by scanning electron microscopy. A comparative experiment was designed to investigate microbial fouling characteristics of low-carbon steel sheet and low-carbon steel sheet with electroless plating of Ni-P. Slime-forming bacteria that was isolated and purified from Songhua River is chosen as the strains. The changes of fouling were recorded by the method of weighing,and the changes of bacterial counts were recorded by the method of optical turbidity. The results of the experimental show that the surface morphology of electroless plating of Ni-P is better than that of low-carbon steel after the low-carbon steel sheet was electroless plated. For the corrosion caused by slime-forming bacteria,the corrosion resistance of electroless plating of Ni-P is better than that of low-carbon steel sheet and the anti-microbial fouling of electroless plating of Ni-P is preferred. When the slime-forming bacteria grew and reproduced vigorously and metabolites were excessive,biofouling was formed soon; in contrast,biofouling was formed slowly.