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Microbially-mediated dissolution and synthesis of minerals in extremely acidic environments. / Johnson, D.B.
2012. Papur a gyflwynwyd yn Geomicrobiology and its significance for biosphere processes, Manchester.

Allbwn ymchwil: Cyfraniad at gynhadleddPapur

HarvardHarvard

Johnson, DB 2012, 'Microbially-mediated dissolution and synthesis of minerals in extremely acidic environments', Papur a gyflwynwyd yn Geomicrobiology and its significance for biosphere processes, Manchester, 3/01/01.

APA

Johnson, D. B. (2012). Microbially-mediated dissolution and synthesis of minerals in extremely acidic environments. Papur a gyflwynwyd yn Geomicrobiology and its significance for biosphere processes, Manchester.

CBE

Johnson DB. 2012. Microbially-mediated dissolution and synthesis of minerals in extremely acidic environments. Papur a gyflwynwyd yn Geomicrobiology and its significance for biosphere processes, Manchester.

MLA

Johnson, D.B. Microbially-mediated dissolution and synthesis of minerals in extremely acidic environments. Geomicrobiology and its significance for biosphere processes, Manchester, 03 Ion 0001, Papur, 2012.

VancouverVancouver

Johnson DB. Microbially-mediated dissolution and synthesis of minerals in extremely acidic environments. 2012. Papur a gyflwynwyd yn Geomicrobiology and its significance for biosphere processes, Manchester.

Author

Johnson, D.B. / Microbially-mediated dissolution and synthesis of minerals in extremely acidic environments. Papur a gyflwynwyd yn Geomicrobiology and its significance for biosphere processes, Manchester.

RIS

TY - CONF

T1 - Microbially-mediated dissolution and synthesis of minerals in extremely acidic environments

AU - Johnson, D.B.

PY - 2012/4/20

Y1 - 2012/4/20

M3 - Paper

T2 - Geomicrobiology and its significance for biosphere processes, Manchester

Y2 - 3 January 0001

ER -