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, angiogenesis and bacteria inhibition for dental implants [J]. Acta Biomater, 2017, 49: 590-603. [20] Mao Lin, Zhou Hao, Chen Li, Niu Jia-lin, Zhang Lei, Yuan Guang-yin, SONG Cheng-li. Enhanced biocompatibility......
that are beneficial to biological development, upwelling current promotes the growth of bacteria, algae and other organisms, causes the water body to be in a strong reducing environment, and promotes......
, it is necessary to promote further development of Mg-Zn-Ca alloys. Ag is an important trace element with a good biological safety in human body and Ag ion has bactericidal effect and prevents bacteria from......
A, HUAT B B K, ASADI A. Electrokinetic stabilization of soft soil using carbonate-producing bacteria [J]. Geotechnical and Geological Engineering, 2014, 32(4): 739-747. DOI: 10.1007/s10706-014-9753-8. [20......
remediation based on the synergistic effect between chemoautotrophic bacteria and sulfide minerals [J]. Ecotoxicology and Environmental Safety, 2019, 173: 118-130. DOI: 10.1016/j.ecoenv.2019.01.079.......
. Review of reductive leaching of iron by anaerobic bacteria[J]. Mineral Processing and Extractive Metallurgy Review, 2014, 35(2): 75-105. [60] JEONG S, NATEGHI F, NGUYEN T V, VIGNESWARAN S, TUAN, TU......
Ratering. Critical raw materials-Advanced recycling technologies and processes: Recycling of rare earth metals out of end of life magnets by bioleaching with various bacteria as an example of an intelligent......
, 369/370: 34-42. [99] KAFANTARIS F A, BORROK D M. Zinc isotope fractionation during surface adsorption and intracellular incorporation by bacteria[J]. Chem Geol, 2014, 366: 42-51. [100] PASAVA J......