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160 related items for PubMed ID: 16315977
1. [Dependence of the genotypic characteristics of Acidithiobacillus ferrooxidans on the physical, chemical, and electrophysical properties of pyrites]. Tupikina OV, Kondrat'eva TF, Samorukova VD, Rassulov VA, Karavaĭko GI. Mikrobiologiia; 2005; 74(5):596-603. PubMed ID: 16315977 [Abstract] [Full Text] [Related]
5. [Characteristics of the restriction profile of chromosomal DNA in strains of Acidithiobacillus ferroxidans, adapted to various oxidation substrates]. Kondrat'eva TF, Ageeva SN, Pivovarova TA, Karavaĭko GI. Mikrobiologiia; 2002; 71(4):514-20. PubMed ID: 12244722 [Abstract] [Full Text] [Related]
6. SEM and AFM images of pyrite surfaces after bioleaching by the indigenous Thiobacillus thiooxidans. Liu HL, Chen BY, Lan YW, Cheng YC. Appl Microbiol Biotechnol; 2003 Sep; 62(4):414-20. PubMed ID: 12719934 [Abstract] [Full Text] [Related]
7. Identification of IS elements in Acidithiobacillus ferrooxidans strains grown in a medium with ferrous iron or adapted to elemental sulfur. Kondrat'eva TF, Danilevich VN, Ageeva SN, Karavaiko GI. Arch Microbiol; 2005 Sep; 183(6):401-10. PubMed ID: 16027952 [Abstract] [Full Text] [Related]
9. Manipulation of pyrite colonization and leaching by iron-oxidizing Acidithiobacillus species. Bellenberg S, Barthen R, Boretska M, Zhang R, Sand W, Vera M. Appl Microbiol Biotechnol; 2015 Feb; 99(3):1435-49. PubMed ID: 25381488 [Abstract] [Full Text] [Related]
10. Evolution of biofilms during the colonization process of pyrite by Acidithiobacillus thiooxidans. González DM, Lara RH, Alvarado KN, Valdez-Pérez D, Navarro-Contreras HR, Cruz R, García-Meza JV. Appl Microbiol Biotechnol; 2012 Jan; 93(2):763-75. PubMed ID: 21773763 [Abstract] [Full Text] [Related]
11. Analysis of the surface proteins of Acidithiobacillus ferrooxidans strain SP5/1 and the new, pyrite-oxidizing Acidithiobacillus isolate HV2/2, and their possible involvement in pyrite oxidation. Klingl A, Moissl-Eichinger C, Wanner G, Zweck J, Huber H, Thomm M, Rachel R. Arch Microbiol; 2011 Dec; 193(12):867-82. PubMed ID: 21698546 [Abstract] [Full Text] [Related]
13. Synergistic effect between sulfide mineral and acidophilic bacteria significantly promoted Cr(VI) reduction. Gan M, Li J, Sun S, Ding J, Zhu J, Liu X, Qiu G. J Environ Manage; 2018 Aug 01; 219():84-94. PubMed ID: 29730593 [Abstract] [Full Text] [Related]
14. Scanning force microscopy studies of the colonization and growth of A. ferrooxidans on the surface of pyrite minerals. Pace DL, Mielke RE, Southam G, Porter TL. Scanning; 2005 Aug 01; 27(3):136-40. PubMed ID: 15934505 [Abstract] [Full Text] [Related]
17. Synergistic promotion of antimony transformation in the interaction of Acidithiobacillus ferrooxidans and pyrite by driving the formation of reactive oxygen species and secondary minerals. He P, Yang Q, Gu C, Liu M, Li P, Luo T, Chen J, Chen J, Zhu J, Gan M. Chemosphere; 2024 Sep 01; 363():142955. PubMed ID: 39069100 [Abstract] [Full Text] [Related]
18. Chemical and surface analysis during evolution of arsenopyrite oxidation by Acidithiobacillus thiooxidans in the presence and absence of supplementary arsenic. Ramírez-Aldaba H, Valles OP, Vazquez-Arenas J, Rojas-Contreras JA, Valdez-Pérez D, Ruiz-Baca E, Meraz-Rodríguez M, Sosa-Rodríguez FS, Rodríguez ÁG, Lara RH. Sci Total Environ; 2016 Oct 01; 566-567():1106-1119. PubMed ID: 27312277 [Abstract] [Full Text] [Related]
19. Effect of Nitrate Ions on Acidithiobacillus ferrooxidans-Mediated Bio-oxidation of Ferrous Ions and Pyrite. Liu FW, Qiao XX, Xing K, Shi J, Zhou LX, Dong Y, Bi WL, Zhang J. Curr Microbiol; 2020 Jun 01; 77(6):1070-1080. PubMed ID: 32036394 [Abstract] [Full Text] [Related]
20. The effect of the introduction of exogenous strain Acidithiobacillus thiooxidans A01 on functional gene expression, structure and function of indigenous consortium during pyrite bioleaching. Liu Y, Yin H, Zeng W, Liang Y, Liu Y, Baba N, Qiu G, Shen L, Fu X, Liu X. Bioresour Technol; 2011 Sep 01; 102(17):8092-8. PubMed ID: 21705214 [Abstract] [Full Text] [Related] Page: [Next] [New Search]