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生物钢
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作者 吴艳红 《现代科技译丛(哈尔滨)》 1999年第4期22-22,共1页
关键词 生物钢 蛋白质丝 开发
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硫酸盐还原菌对耐微生物腐蚀钢腐蚀行为的影响 被引量:1
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作者 游家庆 丁浪勇 +7 位作者 刘冉冉 赵春雨 田富全 李衍铖 雷浩然 郭倩倩 江丰 李雅颖 《腐蚀与防护》 北大核心 2025年第2期14-21,共8页
在硫酸盐还原菌(SRB)和CO_(2)共存环境中对耐微生物腐蚀钢进行了浸泡腐蚀试验和电化学试验,并通过扫描电镜(SEM)、能谱(EDS)和X射线衍射(XRD)等观察和分析了腐蚀后试样的腐蚀形貌和腐蚀产物成分。结果表明:SRB和CO_(2)共存时,SRB的存在... 在硫酸盐还原菌(SRB)和CO_(2)共存环境中对耐微生物腐蚀钢进行了浸泡腐蚀试验和电化学试验,并通过扫描电镜(SEM)、能谱(EDS)和X射线衍射(XRD)等观察和分析了腐蚀后试样的腐蚀形貌和腐蚀产物成分。结果表明:SRB和CO_(2)共存时,SRB的存在可抑制CO_(2)腐蚀,且SRB含量越多,均匀腐蚀速率越小,但SRB会促进点蚀的发生和发展;当SRB含量足够多时,试样表面会生成一层致密的具有保护性的Fe S膜,腐蚀速率和点蚀坑尺寸明显减小;随着SRB含量增多,阻抗弧半径增大,耐微生物腐蚀钢的耐蚀性提高,当SRB接种量为0.2%时,阳极反应以活化溶解为主,腐蚀速率受阴极反应控制,当SRB接种量增加到2%和20%时,致密FeS腐蚀产物膜生成,阳极反应受到抑制,腐蚀速率受阳极反应控制。 展开更多
关键词 耐微生物腐蚀 硫酸盐还原菌(SRB) CO_(2)腐蚀 电化学测试
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Effect of cathode protection on Desulfovibrio desulfuricans corrosion of X80 steel in a marine tidal environment
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作者 ZHOU Xiao-bao WANG Zi-hao +4 位作者 OU-YANG Ze-lun SU Hui WANG Yong LI Zhi WU Tang-qing 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第10期3612-3627,共16页
The study systematically investigated the impact of zinc sacrificial anode(Zn-SA)cathode protection on the corrosion of X80 steel caused by Desulfovibrio desulfuricans(D.desulfuricans)in a marine tidal environment.Uti... The study systematically investigated the impact of zinc sacrificial anode(Zn-SA)cathode protection on the corrosion of X80 steel caused by Desulfovibrio desulfuricans(D.desulfuricans)in a marine tidal environment.Utilizing weight-loss analysis,electrochemical measurements,Raman spectroscopy,and 3D morphology microscopy,the research unveiled significant findings.Unprotected steel suffered pronounced localized corrosion in the presence of D.desulfuricans in the marine tidal environment.However,the implementation of Zn-SA cathode protection notably reduced the activity of both planktonic and sessile D.desulfuricans cells.Over time,the accumulation of calcareous deposits within the corrosion products increased,as evidenced by a rise in the resistance of the corrosion produt film(Rf).Remarkably,Zn-SA cathode protection demonstrated substantial inhibition of the steel’s corrosion rate,albeit exhibiting reduced efficiency as the vertical height of the steel within the tidal environment increased. 展开更多
关键词 X80 pipeline steel microbial corrosion marine tidal corrosion Desulfovibro desulfuricans cathode protection
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Corrosion of Q235 steel affected by Pseudodesulfovibrio cashew differed with electron acceptors
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作者 GAO Yao-hua WU Jia-jia +8 位作者 ZHANG Dun WANG Peng WANG Yi LI Ce ZHU Li-yang WANG Wen-kai ZHENG Ri-kuan SUN Chao-min SAND Wolfgang 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第10期3352-3368,共17页
Sulfate and nitrate reducing bacteria are important culprits for microbiologically influenced corrosion(MIC)using sulfate and nitrate as electron acceptors,respectively.Sulfate and nitrate hold different standard elec... Sulfate and nitrate reducing bacteria are important culprits for microbiologically influenced corrosion(MIC)using sulfate and nitrate as electron acceptors,respectively.Sulfate and nitrate hold different standard electrode potentials,which may lead to differences in corrosion,but their effects on corrosion by the same bacteria have not been reported.The corrosion of Q235 steel affected by Pseudodesulfovibrio cashew(P.cashew)in the sulfate and nitrate media under carbon starvation was studied.It was found that sulfate and nitrate did not lead to differences in corrosion under abiotic conditions.However,P.cashew promoted corrosion in both cases,and the consumption of H_(2)was the main mechanism for MIC.In addition,corrosion was more severe in the sulfate media.The higher corrosivity of P.cashew with sulfate as the electron acceptor is closely related to the higher number of sessile cells in the biofilm,higher bacterial motility,more hydrogen production pathways,and the increased gene expression of enzymes related to energy synthesis. 展开更多
关键词 Q235 steel electron acceptors microbiologically influenced corrosion P.cashew
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Physico-chemical properties and microstructure of hydroxyapatite-316L stainless steel biomaterials 被引量:5
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作者 邹俭鹏 阮建明 +2 位作者 黄伯云 刘建本 周小霞 《Journal of Central South University of Technology》 2004年第2期113-118,共6页
Sintering shrinkage, compressive strength, bending strength, metallurgical morphology, microstructure and chemical composition diffusion of hydroxyapatite-316L stainless steel(HA-316L SS) composites were investigated.... Sintering shrinkage, compressive strength, bending strength, metallurgical morphology, microstructure and chemical composition diffusion of hydroxyapatite-316L stainless steel(HA-316L SS) composites were investigated. The results show that the sintering shrinkage of HA-316L SS composites decreases from 27.38% to 8.87% for cylinder sample or from 27.18% to 8.62% for cuboid sample with decreasing the volume ratio of HA to 316L SS, which leads to higher sintering activity of HA compared with that of 316L SS. The compressive strength of HA-316L SS composites changes just like parabolic curve (245.3→126.3→202.8 MPa) with reducing the volume ratio of HA to 316L SS. Bending strength increases from 86.3MPa to 124. 2 MPa with increasing the content of 316L SS. Furthermore, comprehensive mechanical properties of 1.0∶3.0 (volume ratio of HA to 316L SS) composite are optimal with compressive strength and bending strength equal to 202.8 MPa and 124.2 MPa, respectively. The (microstructure) and metallurgical structure vary regularly with the volume ratio of HA to 316L SS. Some chemical reaction takes place at the interface of the composites during sintering. 展开更多
关键词 hydroxyapatite-316L stainless steel biomaterial sintering activity mechanical property MICROSTRUCTURE SEM EDXA
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