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1)  pre biooxidation
细菌吸附
1.
Measurements of bacterial protein were employed to study the influences of bacterial attachment on the pre biooxidation of an arsenic bearing gold concentrate using Thiobacillus ferrooxidans.
f菌 )和一种含砷金精矿研究了细菌吸附对含砷金精矿生物预氧化过程的影响·结果表明 ,T 。
2)  adsorption of bacteria
细菌吸附作用
3)  capillary absorption
毛细吸附
1.
Diffusivity of saturated concretes surface-treated without and with epoxy resin was studied by rapid permeation test,while capillary absorption of non.
分别采用氯离子快速渗透和吸水率试验来评价环氧树脂涂层后混凝土在饱水状态下抗氯离子渗透性能和非饱水状态下由浸湿过程中毛细吸附所引起的氯离子传输能力,并与有机硅、聚合物水泥基防水涂料及其复合涂层效果比较。
4)  bacterial adhesion
细菌粘附
1.
Study of bacterial adhesion on titanium alloy surface modified by plasma nitriding;
钛合金等离子氮化表面的细菌粘附研究
2.
Study on reduce bacterial adhesion of aluminum modified by cold-plasma;
低温等离子体改性铝片降低细菌粘附的研究
3.
The structure and anti-bacterial adhesion property of the coating and substrate was investigated and analyzed respectively, The results show that TiN coating was built up mainly by pure TiN phase with <111> preferred orientation, compared with the untreated sample, TiN coating can reduce the bacterial adhesion on titanium alloy surface significantly.
分析表面镀膜组织结构,探讨钛合金基材及表面镀层的抗细菌粘附性能。
5)  bacterial adhesion
细菌黏附
1.
Surface modification of expanded polytetrafluoroethylene membrane by oxygen plasma immersion ion implantation and its antibacterial adhesion efficiency
氧等离子注入对膨体聚四氟乙烯膜表面性能和细菌黏附影响的实验研究
6)  Bacteria adhesion
细菌黏附
1.
Influence of TiN coating on bacteria adhesion of Ti surface;
氮化钛膜对纯钛表面细菌黏附能力的影响
2.
Study on bacteria adhesion to intracardiac transplanted materials in vivo;
活体动物心脏植入材料细菌黏附的研究
补充资料:特性吸附与半胶束吸附


特性吸附与半胶束吸附
specifical adsorption and hemi-micelle adsorption

texing xifu yu banJ旧oshu xifu特性吸附与半胶束吸附(speeifieal adsorp-tion and hemi一mieelle adsorption)矿物一水界面的吸附的两种形式。特性吸附是因矿物表面与溶液中某种组分(离子或分子)有特殊的亲和力而产生的吸附,也称特殊吸附。特性吸附不仅可以改变电位的数量而且还可以改变电位的符号。例如,刚玉(A12O3)在NaZSO‘或RSO;Na(烷基硫酸钠)溶液中,电动电位随溶液浓度的增大由正值逐渐减小,直至变为负值,说明刚玉对50矛一或RSO不离子有特殊的吸引力。半胶束吸附是水溶液中的表面活性剂在矿物表面产生的吸附,当吸附量达到一定值以后,由于烃基的缔合作用,表面活性剂的离子或分子在矿物表面上形成紧密的吸附层,这类似于溶液中形成的胶束结构,但所形成的“胶束”与溶液中形成的胶束不同,只有二维空间,故称这类吸附为半胶束吸附。矿物表面对胺类捕收剂的吸附,当胺的浓度较大时,常可以产生半胶束吸附。 (龚焕高)
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