Standard Standard

Bioleaching of pyrite by defined mixed populations of moderately thermophilic acidophiles in pH-controlled bioreactors. / Okibe, N.; Johnson, D.B.; Tsezos, M. (Editor) et al.
2004. 165-173 Paper presented at Biohydrometallurgy; a sustainable technology in evolution.

Research output: Contribution to conferencePaper

HarvardHarvard

Okibe, N, Johnson, DB, Tsezos, M (ed.), Hatzikioseyian, A (ed.) & Remoudaki, E (ed.) 2004, 'Bioleaching of pyrite by defined mixed populations of moderately thermophilic acidophiles in pH-controlled bioreactors.', Paper presented at Biohydrometallurgy; a sustainable technology in evolution, 1/01/04 pp. 165-173.

APA

Okibe, N., Johnson, D. B., Tsezos, M. (Ed.), Hatzikioseyian, A. (Ed.), & Remoudaki, E. (Ed.) (2004). Bioleaching of pyrite by defined mixed populations of moderately thermophilic acidophiles in pH-controlled bioreactors.. 165-173. Paper presented at Biohydrometallurgy; a sustainable technology in evolution.

CBE

Okibe N, Johnson DB, Tsezos M, Hatzikioseyian A, Remoudaki E, ed. 2004. Bioleaching of pyrite by defined mixed populations of moderately thermophilic acidophiles in pH-controlled bioreactors. Paper presented at Biohydrometallurgy; a sustainable technology in evolution.

MLA

Okibe, N. et al. Bioleaching of pyrite by defined mixed populations of moderately thermophilic acidophiles in pH-controlled bioreactors.. Biohydrometallurgy; a sustainable technology in evolution, 01 Jan 2004, Paper, 2004.

VancouverVancouver

Okibe N, Johnson DB, Tsezos M, (ed.), Hatzikioseyian A, (ed.), Remoudaki E, (ed.). Bioleaching of pyrite by defined mixed populations of moderately thermophilic acidophiles in pH-controlled bioreactors.. 2004. Paper presented at Biohydrometallurgy; a sustainable technology in evolution.

Author

Okibe, N. ; Johnson, D.B. ; Tsezos, M. (Editor) et al. / Bioleaching of pyrite by defined mixed populations of moderately thermophilic acidophiles in pH-controlled bioreactors. Paper presented at Biohydrometallurgy; a sustainable technology in evolution.

RIS

TY - CONF

T1 - Bioleaching of pyrite by defined mixed populations of moderately thermophilic acidophiles in pH-controlled bioreactors.

AU - Okibe, N.

AU - Johnson, D.B.

A2 - Tsezos, M.

A2 - Hatzikioseyian, A.

A2 - Remoudaki, E.

PY - 2004/1/1

Y1 - 2004/1/1

M3 - Paper

SP - 165

EP - 173

T2 - Biohydrometallurgy; a sustainable technology in evolution

Y2 - 1 January 2004

ER -