The corrosion behaviors of Al-6Mg-Zr and Al-6Mg-Zr-Sc in the sulfate-reducing bacteria (SRB) solution in anaerobic environment were studied using electrochemical, microbiological, and surface analysis methods. It wa...The corrosion behaviors of Al-6Mg-Zr and Al-6Mg-Zr-Sc in the sulfate-reducing bacteria (SRB) solution in anaerobic environment were studied using electrochemical, microbiological, and surface analysis methods. It was found that the oxide film was more compact owing to the addition of Sc resulting in the open circuit potential shifting by about 100mV positively. On the other hand, it was seen that the pitting sensitivity of Al-6Mg-Zr-Sc alloy in SRB solution decreased and its microbiologically influenced corrosion resistance was improved. Pitting corrosion occurring on the surface of the two alloys under the comprehensive action of the metabolism of SRB was observed by SEM. It was obtained by EDS that the corrosion degree increased with time and corrosion was furthered by deposition of the product.展开更多
Background: Culturable bacterial species from the respiratory tract and ileocecal junction of Meriones meridianus(midday gerbils) captured in the Xinjiang Luntai area were isolated and identified to confirm the microf...Background: Culturable bacterial species from the respiratory tract and ileocecal junction of Meriones meridianus(midday gerbils) captured in the Xinjiang Luntai area were isolated and identified to confirm the microflora and develop approaches for biological purification of laboratory animals and relevant microbial precautions.Methods: Bacteria from respiratory tracts and ileocecal junctions of 30 wild M. meridianus were harvested and isolated by inoculation into culture media. Isolated strains were confirmed by mass spectrometry and 16 S rRNA sequencing.Results: Thirty-nine bacterial species from 20 families and 27 genera were identified and isolated from wild M. meridianus. Typical bacteria were Enterobacteriaceae,Enterococcus, and Staphylococcus aureus, and the most common microflora were Vibrio, Staphylococcus aureus, and Pseudomonas aeruginosa.Conclusion: Wild M. meridianus carries multiple bacteria, most of which are pathogenic or conditional pathogens. This study provides a basis for the development of animal models and laboratory animals from wild M. meridianus.展开更多
Bacillus velezensis M3-1 strain isolated from the sediment of Myriophyllum aquatium con-structedwetlandswas found to efficiently convert NO_(3)^(-)-N to NO_(2)^(−)-N,and the requirements for carbon source additionwere...Bacillus velezensis M3-1 strain isolated from the sediment of Myriophyllum aquatium con-structedwetlandswas found to efficiently convert NO_(3)^(-)-N to NO_(2)^(−)-N,and the requirements for carbon source additionwere not very rigorous.Thiswork demonstrates,for the first time,the feasibility of using the synergy of anammox and Bacillus velezensis M3-1 microorganisms for nitrogen removal.In this study,the possibility of M3-1 that converted NO_(3)^(−)-N produced by anammox to NO_(2)^(−)-N was verified in an anaerobic reactor.The NO_(3)^(−)-N reduction ability of M3-1 and denitrifying bacteria in coupling system was investigated under different C/N conditions,and it was found that M3-1 used carbon sources preferentially over denitrifying bacteria.By adjusting the ratio of NH4+-N to NO_(2)^(−)-N,it was found that the NO_(2)^(−)-N con-verted from NO_(3)^(−)-N by M3-1 participated in the original anammox.The nitrogen removal efficacy(NRE)of the coupled system was increased by 12.1%,compared to the control group anammox system at C/N=2:1.Functional gene indicated that itmight be a nitrate reducing bacterium.This study shows that the nitrate reduction rate achieved by the Bacillus velezensis M3-1 can be high enough for removing nitrate produced by anammox process,which would enable improve nitrogen removal from wastewater.展开更多
基金Project supported by the National Natural Science Foundation of China (50571003)
文摘The corrosion behaviors of Al-6Mg-Zr and Al-6Mg-Zr-Sc in the sulfate-reducing bacteria (SRB) solution in anaerobic environment were studied using electrochemical, microbiological, and surface analysis methods. It was found that the oxide film was more compact owing to the addition of Sc resulting in the open circuit potential shifting by about 100mV positively. On the other hand, it was seen that the pitting sensitivity of Al-6Mg-Zr-Sc alloy in SRB solution decreased and its microbiologically influenced corrosion resistance was improved. Pitting corrosion occurring on the surface of the two alloys under the comprehensive action of the metabolism of SRB was observed by SEM. It was obtained by EDS that the corrosion degree increased with time and corrosion was furthered by deposition of the product.
基金National Science Foundation of China,Grant/Award Number:31460579
文摘Background: Culturable bacterial species from the respiratory tract and ileocecal junction of Meriones meridianus(midday gerbils) captured in the Xinjiang Luntai area were isolated and identified to confirm the microflora and develop approaches for biological purification of laboratory animals and relevant microbial precautions.Methods: Bacteria from respiratory tracts and ileocecal junctions of 30 wild M. meridianus were harvested and isolated by inoculation into culture media. Isolated strains were confirmed by mass spectrometry and 16 S rRNA sequencing.Results: Thirty-nine bacterial species from 20 families and 27 genera were identified and isolated from wild M. meridianus. Typical bacteria were Enterobacteriaceae,Enterococcus, and Staphylococcus aureus, and the most common microflora were Vibrio, Staphylococcus aureus, and Pseudomonas aeruginosa.Conclusion: Wild M. meridianus carries multiple bacteria, most of which are pathogenic or conditional pathogens. This study provides a basis for the development of animal models and laboratory animals from wild M. meridianus.
文摘目的:建立同步速测食品中沙门氏菌、金黄色葡萄球菌、单核细胞增生性李斯特菌的多重聚合酶链式反应(polymerase chain reaction,PCR)方法。方法:利用基因组比对法寻找3种致病菌的特异性序列——沙门氏菌的invA基因、金黄色葡萄球菌的nuc基因和单增李斯特菌的prs基因,运用Primer Premier 5.0分别设计3对片段大小不同的特异性引物;通过优化反应体系,建立3种致病菌的多重PCR检测体系。结果:建立的多重PCR方法灵敏度测试结果分别为7.6、3.8、5.1pg/μL,在此灵敏度下可以扩增出全部特异性引物条带,验证性实验结果出现相应的目的条带且未发生交叉影响。结论:初步建立能同步、简便、快速、灵敏地检测食品中沙门菌、金黄色葡萄球菌和单核细胞增生性李斯特菌的三重PCR方法。
基金supported by the National Natural Sci-ence Foundation of China(Nos.42177099,91951108,and 21976197)the Knowledge Innovation Program of Shenzhen(No.JSGG20191129112812329),and the CAS International Part-nership Program(No.121311KYSB20200017)the special fund of State Key Joint Laboratory of Environment Simula-tion and Pollution Control(No.21Z02ESPCR).
文摘Bacillus velezensis M3-1 strain isolated from the sediment of Myriophyllum aquatium con-structedwetlandswas found to efficiently convert NO_(3)^(-)-N to NO_(2)^(−)-N,and the requirements for carbon source additionwere not very rigorous.Thiswork demonstrates,for the first time,the feasibility of using the synergy of anammox and Bacillus velezensis M3-1 microorganisms for nitrogen removal.In this study,the possibility of M3-1 that converted NO_(3)^(−)-N produced by anammox to NO_(2)^(−)-N was verified in an anaerobic reactor.The NO_(3)^(−)-N reduction ability of M3-1 and denitrifying bacteria in coupling system was investigated under different C/N conditions,and it was found that M3-1 used carbon sources preferentially over denitrifying bacteria.By adjusting the ratio of NH4+-N to NO_(2)^(−)-N,it was found that the NO_(2)^(−)-N con-verted from NO_(3)^(−)-N by M3-1 participated in the original anammox.The nitrogen removal efficacy(NRE)of the coupled system was increased by 12.1%,compared to the control group anammox system at C/N=2:1.Functional gene indicated that itmight be a nitrate reducing bacterium.This study shows that the nitrate reduction rate achieved by the Bacillus velezensis M3-1 can be high enough for removing nitrate produced by anammox process,which would enable improve nitrogen removal from wastewater.