The biogeochemical sulfur cycle of marine sediments BB Jørgensen, AJ Findlay, A Pellerin
Frontiers in microbiology 10, 849, 2019
597 2019 Thermodynamics and kinetics of sulfide oxidation by oxygen: a look at inorganically controlled reactions and biologically mediated processes in the environment GW Luther III, AJ Findlay, DJ MacDonald, SM Owings, TE Hanson, ...
Frontiers in microbiology 2, 62, 2011
256 2011 Disguised as a Sulfate Reducer: Growth of the Deltaproteobacterium Desulfurivibrio alkaliphilus by Sulfide Oxidation with Nitrate C Thorup, A Schramm, AJ Findlay, KW Finster, L Schreiber
MBio 8 (4), 10.1128/mbio. 00671-17, 2017
132 2017 Dynamic hydrologic and biogeochemical processes drive microbially enhanced iron and sulfur cycling within the intertidal mixing zone of a beach aquifer SM McAllister, JM Barnett, JW Heiss, AJ Findlay, DJ MacDonald, CL Dow, ...
Limnology and Oceanography 60 (1), 329-345, 2015
127 2015 Nanoparticulate pyrite and other nanoparticles are a widespread component of hydrothermal vent black smoker emissions A Gartman, AJ Findlay, GW Luther III
Chemical Geology 366, 32-41, 2014
127 2014 Large sulfur isotope fractionation by bacterial sulfide oxidation A Pellerin, G Antler, SA Holm, AJ Findlay, PW Crockford, AV Turchyn, ...
Science Advances 5 (7), eaaw1480, 2019
90 2019 Microbial impact on polysulfide dynamics in the environment AJ Findlay
FEMS Microbiology Letters 363 (11), fnw103, 2016
85 2016 Boiling-induced formation of colloidal gold in black smoker hydrothermal fluids A Gartman, M Hannington, JW Jamieson, B Peterkin, D Garbe-Schönberg, ...
Geology 46 (1), 39-42, 2018
79 2018 Turnover Rates of Intermediate Sulfur Species ( , S0 , S2 , S4 , ) in Anoxic Freshwater and Sediments AJ Findlay, A Kamyshny
Frontiers in Microbiology 8, 2551, 2017
65 2017 Distribution and size fractionation of elemental sulfur in aqueous environments: The Chesapeake Bay and Mid-Atlantic Ridge AJ Findlay, A Gartman, DJ MacDonald, TE Hanson, TJ Shaw, ...
Geochimica et Cosmochimica Acta 142, 334-348, 2014
64 2014 Experimental determination of iron isotope fractionations among Feaq2+–FeSaq–Mackinawite at low temperatures: Implications for the rock record L Wu, G Druschel, A Findlay, BL Beard, CM Johnson
Geochimica et Cosmochimica Acta 89, 46-61, 2012
62 2012 The sulfur cycle below the sulfate-methane transition of marine sediments A Pellerin, G Antler, H Røy, A Findlay, F Beulig, C Scholze, AV Turchyn, ...
Geochimica et Cosmochimica Acta 239, 74-89, 2018
59 2018 Iron and sulfide nanoparticle formation and transport in nascent hydrothermal vent plumes AJ Findlay, ER Estes, A Gartman, M Yücel, A Kamyshny Jr, GW Luther III
Nature communications 10 (1), 1597, 2019
57 2019 Early diagenesis of iron and sulfur in Bornholm Basin sediments: The role of near-surface pyrite formation J Liu, A Pellerin, G Antler, S Kasten, AJ Findlay, I Dohrmann, H Røy, ...
Geochimica et Cosmochimica Acta 284, 43-60, 2020
56 2020 Impacts of hydrothermal plume processes on oceanic metal cycles and transport A Gartman, AJ Findlay
Nature Geoscience 13 (6), 396-402, 2020
53 2020 Trace metal concentration and partitioning in the first 1.5 m of hydrothermal vent plumes along the Mid-Atlantic Ridge: TAG, Snakepit, and Rainbow AJ Findlay, A Gartman, TJ Shaw, GW Luther III
Chemical Geology 412, 117-131, 2015
50 2015 Planktonic marine iron oxidizers drive iron mineralization under low‐oxygen conditions EK Field, S Kato, AJ Findlay, DJ MacDonald, BK Chiu, GW Luther III, ...
Geobiology 14 (5), 499-508, 2016
48 2016 The role of nanoparticles in mediating element deposition and transport at hydrothermal vents A Gartman, AJ Findlay, M Hannington, D Garbe-Schönberg, JW Jamieson, ...
Geochimica et Cosmochimica Acta 261, 113-131, 2019
41 2019 Isotopically “heavy” pyrite in marine sediments due to high sedimentation rates and non-steady-state deposition J Liu, G Antler, A Pellerin, G Izon, I Dohrmann, AJ Findlay, H Røy, S Ono, ...
Geology 49 (7), 816-821, 2021
38 2021 Quantification of sulphide oxidation rates in marine sediment AJ Findlay, A Pellerin, K Laufer, BB Jørgensen
Geochimica et Cosmochimica Acta 280, 441-452, 2020
38 2020