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采用光电化学方法研究了模拟冷却水中硫离子对不锈钢钝化膜的破坏作用.结果表明,不锈钢钝化膜显示n-型光响应,最大吸收峰出现在310 nm处.不锈钢钝化膜在电位约-0.35 V开始出现光电流,随电位升高,光电流增大.钝化膜禁带宽度Eg随电位的升高而减小,并逐渐向铁氧化物的Eg靠近.模拟冷却水中加入硫离子使不锈钢钝化膜的光电流增大,Eg减小.硫离子的浓度越大,测得的光电流越大,而Eg越小,这可归因于钝化膜膜电阻的降低及钝化膜中氧化铬含量的减少. 相似文献
44.
深井油管H2S腐蚀规律实验研究 总被引:2,自引:0,他引:2
应用动态高压釜,研究了模拟油田地层环境下油管的动态腐蚀规律,并对腐蚀速率及产物进行了分析.结果表明:模拟条件下同一口井不同井段,油管腐蚀特征表现出较大差异,在高温下出现点蚀倾向,相同浓度下腐蚀速率随深度增加而加大,油管的硫化氢腐蚀速率是各因素的协同效应的结果,建立腐蚀预测模型,应用支持向量机方法可以较好预测腐蚀速率.
相似文献
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用单一的生物反应器处理硫化氢时,微生物容易受到硫化氢的毒害作用而使细胞活力受损,废气处理效率迅速降低。为此,提出生物和化学二级反应器处理硫化氢的新工艺,并对微生物的生长、分布、最适工艺运行条件和影响因素等做了研究。结果表明,生物反应器中微生物对亚铁离子的氧化速率对硫化氢的去除效果有着重要的影响,二级反应器工艺大大提高了硫化氢去除效率,反应的主要产物为单质硫,同时便于对硫沉淀的分离,在操作温度31℃,pH值1.5—1.8,水力停留时间2.5 h,进气质量浓度8 g/m3,硫化氢承载负荷2 000 g/(m3.h)以下时,系统可以稳定运行,硫化氢的脱除率可达99%以上。 相似文献
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In this study, styrene‐b‐ethylene/butylene‐b‐styrene triblock copolymer (SEBS) and maleic anhydride grafted SEBS (SEBS‐g‐MA) were used as compatibilizers for the blends of polyphenylene sulfide/nylon 66 (PPS/PA66). The mechanical properties, including impact and tensile properties and morphology of the blends, were investigated by mechanical properties measurements and scanning electron microscopy. Impact measurements indicated that the impact strength of the blends increases slowly with elastomer (SEBS and SEBS‐g‐MA) content upto 20 wt %; thereafter, it increases sharply with increasing elastomer content. The impact energy of the elastomer‐compatibilized PPS/PA66 blends exceeded that of pure nylon 66, implying that the nylon 66 can be further toughened by the incorporation of brittle PPS minor phase in the presence of SEBS or SEBS‐g‐MA. The compatibilization efficiency of SEBS‐g‐MA for nylon‐rich PPS/PA66 was found to be higher than SEBS due to the in situ forming SEBS interphase between PPS and nylon 66. The correlation between the impact property and morphology of the SEBS‐g‐MA compatibilized PPS/PA66 blends is discussed. The excellent impact strength of the nylon‐rich blends resulted from shield yielding of the matrix. © 2007 Wiley Periodicals, Inc. J Appl Polym Sci, 2007 相似文献
48.
By adding a small amount of clay into poly(p‐phenylene sulfide) (PPS)/polyamide 66 blends, the morphology was found to change gradually from sea–island into cocontinuity and lamellar supramolecular structure, as increasing of clay content. Clay was selectively located in the PA66 phase, and the exfoliated clay layers formed an edge‐contacted network. The change of morphology is not caused by the change of volume ratio and viscosity ratio but can be well explained by the dynamic interplay of phase separation between PPS and PA66 through preferential adsorption of PA66 onto the clay layers and through layer–layer repulsion. This provides a means of manipulating the phase morphology for the immiscible polymer blends. The mechanical and tribological properties of PPS/PA66 blends with different phase morphologies (different clay contents) were studied. Both tensile and impact strength of the blends were found obviously increased by the addition of clay. The antiwear property was greatly improved for the blends with cocontinuous phase form. Our work indicates that the phase‐separating behavior of polymer blends contained interacting clay can be exploited to create a rich diversity of new structures and useful nanocomposites. © 2007 Wiley Periodicals, Inc. J Appl Polym Sci 2007 相似文献
49.
Microbial aspects of acid mine drainage and its bioremediation 总被引:1,自引:0,他引:1
K.A.NATARAJAN 《中国有色金属学会会刊》2008,18(6):1352-1360
The role of chemolithotrophs such as Acidithiobacillus ferrooxidans, Acidithiobacillus thiooxidans and Leptospirillum ferrooxidans which were isolated from some abandoned mines and processed waste tailings in the generation of acid mine drainage and toxic metal dissolution was discussed. Mechanisms of acid formation and dissolution of copper, zinc, iron and arsenic from copper, lead-zinc and arsenopyrite-bearing sulfide ores and railings were established in the presence of Acidithiobacillus group of bacteria. Sulphate Reducing Bacteria(SRB) isolated from the above mine sites could be used to precipitate dissolved metals such as copper, zinc, iron and arsenic. Arsenic bioremediation was demonstrated through the use of native microorganisms such Thiomonas spp. which could oxidize arsenite to arsenate. Bioremoval of arsenic through the use of jarosite precipitates generated by Acidithiobacillus ferrooxidans and Leptospirillum ferrooxidans was also found to be very effective. Biotechnological processes hold great promise in the remediation of acid mine drainage and efficient removal of toxic metal ions such as copper, zinc and arsenic. 相似文献
50.
谢广宇 《中国腐蚀与防护学报》2008,28(2):86
用三点弯曲方法及SEM?TEM等手段研究了不同组织类型的X70级管线钢硫化物应力腐蚀开裂(SSCC)行为?结果表明,显微组织以均匀细小的针状铁素体为主的管线钢具有优良的抗SSCC性能;这主要是源于针状铁素体内高密度缠结的位错和碳氮化物在位错网络上的沉淀析出起到了强烈的氢陷阱作用? 相似文献