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Authors: Magnin, JP Caire, JP Ozil, P
Citation: Jp. Magnin et al., Optimisation of the ferrous iron liquid growth medium for Thiobacillus ferrooxidans (DSM 583) by the Design of Experiment (DOE) methodology, PROCESS MET, 9, 1999, pp. 747-756

Authors: Matsumoto, N Yoshinaga, H Ohmura, N Ando, A Saiki, H
Citation: N. Matsumoto et al., Extension of logarithmic growth of Thiobacillus ferrooxidans using potential controlled electrochemical cultivation system, PROCESS MET, 9, 1999, pp. 757-766

Authors: Ohmura, N Matsumoto, N Sasaki, K Nagaoka, T Saiki, H
Citation: N. Ohmura et al., Growth of Thiobacillus ferrooxidans on hydrogen by the dissimilatory reduction of ferric iron under anaerobic conditions, PROCESS MET, 9, 1999, pp. 767-775

Authors: Rawlings, DE Coram, NJ Gardner, MN Deane, SM
Citation: De. Rawlings et al., Thiobacillus caldus and Leptospirillum ferrooxidans are widely distributedin continuous flow biooxidation tanks used to treat a variety of metal containing ores and concentrates, PROCESS MET, 9, 1999, pp. 777-786

Authors: Wentzien, S Sand, W
Citation: S. Wentzien et W. Sand, Polythionate metabolism in Thiomonas intermedia K12, PROCESS MET, 9, 1999, pp. 787-797

Authors: Bruhn, DF Thompson, DN Noah, KS
Citation: Df. Bruhn et al., Microbial ecology assessment of a mixed copper oxide/sulfide dump leach operation, PROCESS MET, 9, 1999, pp. 799-808
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