Abbai, N.S., van Heerden, E., Piater, L.A. and Litthauer, D., 2011. A

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Abbai, N.S., van Heerden, E., Piater, L.A. and Litthauer, D., 2011. A deep gold mine
metagenome as a source of novel esterases. African Journal of Biotechnology,
10(32): 6090-6100. [1]
Allen, C.C., Oehler, D.Z., Etiope, G., Van Rensbergen, P., Baciu, C., Feyzullayev, A.,
Martinelli, G., Tanaka, K. and Van Rooij, D., 2013. Fluid expulsion in terrestrial
sedimentary basins: A process providing potential analogs for giant polygons and
mounds in the martian lowlands. Icarus, 224(2): 424-432. [1]
Andreani, M., Daniel, I. and Pollet-Villard, M., 2013. Aluminum speeds up the
hydrothermal alteration of olivine. American Mineralogist, 98(10): 1738-1744. [4]
Andreani, M., Escartin, J., Delacour, A., Ildefonse, B., Godard, M., Dyment, J., Fallick,
A.E. and Fouquet, Y., 2014. Tectonic structure, lithology, and hydrothermal signature
of the Rainbow massif (Mid-Atlantic Ridge 36 degrees 14 ' N). Geochemistry
Geophysics Geosystems, 15(9): 3543-3571. [0]
Andreani, M., Munoz, M., Marcaillou, C. and Delacour, A., 2013. mu XANES study of
iron redox state in serpentine during oceanic serpentinization. Lithos, 178: 70-83. [7]
Anovitz, L.M., Vlcek, L., Rother, G. and Cole, D.R., 2011. Nanometer to centimeter
scale analysis and modeling of pore stuctures. Abstracts of Papers of the American
Chemical Society, 242.
Argyris, D., Ho, T., Cole, D.R. and Striolo, A., 2011. Molecular Dynamics Studies of
Interfacial Water at the Alumina Surface. Journal of Physical Chemistry C, 115(5):
2038-2046. [33]
Arthur, M.A. and Cole, D.R., 2014. Unconventional Hydrocarbon Resources: Prospects
and Problems. Elements, 10(4): 257-264. [0]
Blanco, Y., Rivas, L.A., Garcia-Moyano, A., Aguirre, J., Cruz-Gil, P., Palacin, A., van
Heerden, E. and Parro, V., 2014. Deciphering the Prokaryotic Community and
Metabolisms in South African Deep-Mine Biofilms through Antibody Microarrays and
Graph Theory. PloS one, 9(12): e114180-e114180. [0]
Bontognali, T.R.R., Sessions, A.L., Allwood, A.C., Fischer, W.W., Grotzinger, J.P.,
Summons, R.E. and Eiler, J.M., 2012. Sulfur isotopes of organic matter preserved in
3.45-billion-year-old stromatolites reveal microbial metabolism. Proceedings of the
National Academy of Sciences of the United States of America, 109(38): 1514615151. [20]
Borgonie, G., Garcia-Moyano, A., Litthauer, D., Bert, W., Bester, A., van Heerden, E.,
Moeller, C., Erasmus, M. and Onstott, T.C., 2011. Nematoda from the terrestrial deep
subsurface of South Africa. Nature, 474(7349): 79-82. [26]
Boschetti, T., Etiope, G., Pennisi, M., Romain, M. and Toscani, L., 2013. Boron, lithium
and methane isotope composition of hyperalkaline waters (Northern Apennines,
Italy): Terrestrial serpentinization or mixing with brine? Applied Geochemistry, 32: 1725. [1]
Boschetti, T., Etiope, G. and Toscani, L., 2013. Abiotic methane in the hyperalkaline
springs of Genova, Italy. Proceedings of the Fourteenth International Symposium on
Water-Rock Interaction, Wri 14, 7: 248-251.
Boulart, C., Chavagnac, V., Monnin, C., Delacour, A., Ceuleneer, G. and Hoareau, G.,
2013. DIFFERENCES IN GAS VENTING FROM ULTRAMAFIC-HOSTED WARM
SPRINGS: THE EXAMPLE OF OMAN AND VOLTRI OPHIOLITES. Ofioliti, 38(2):
143-156. [0]
Breier, J.A., Gomez-Ibanez, D., Sayre-McCord, R.T., Sanger, R., Rauch, C., Coleman,
M., Bennett, S.A., Sheik, C.S., German, C.R. and Dick, G.J., 2014. A large volume
particulate and water multi-sampler with in situ preservation for microbial and
biogeochemical studies. Deep Sea Res. Part I, 94: 195–206. [0]
Bujakaite, M.I., Lavrushin, V.Y., Pokrovsky, B.G., Kikvadze, O.E. and Polyak, B.G.,
2014. Strontium and oxygen isotopic systems in waters of mud volcanoes of the
Taman Peninsula. Lithology and Mineral Resources, 49(1): 47-54. [0]
Chen, Y., Lehmann, K.K., Kessler, J., Sherwood Lollar, B., Couloume, G.L. and
Onstottt, T.C., 2013. Measurement of the C-13/C-12 of Atmospheric CH4 Using
Near-Infrared (NIR) Cavity Ring-Down Spectroscopy. Analytical Chemistry, 85(23):
11250-11257. [6]
Chialvo, A.A., Vlcek, L. and Cole, D.R., 2012. Aqueous CO2 Solutions at Silica
Surfaces and within Nanopore Environments. Insights from Isobaric-Isothermal
Molecular Dynamics. Journal of Physical Chemistry C, 116(26): 13904-13916. [5]
Chialvo, A.A., Vlcek, L. and Cole, D.R., 2013. Behavior of aqueous CO2 environments
under extreme silica confinement: Modeling challenges, molecular simulation
insights, and macroscopic implications. Abstracts of Papers of the American
Chemical Society, 245. [0]
Chialvo, A.A., Vlcek, L. and Cole, D.R., 2013. Acid Gases in CO2-rich Subsurface
Geologic Environments. In: D.J. DePaolo, D.R. Cole, A. Navrotsky and I.C. Bourg
(Editors), Geochemistry of Geologic Co2 Sequestration. Reviews in Mineralogy &
Geochemistry, pp. 361-398. [4]
Ciotoli, G., Etiope, G., Florindo, F., Marra, F., Ruggiero, L. and Sauer, P.E., 2013.
Sudden deep gas eruption nearby Rome's airport of Fiumicino. Geophysical
Research Letters, 40(21): 5632-5636.
Cole, D.R., Ok, S., Phan, A., Rother, G., Striolo, A. and Vlcek, L., 2013. Carbon-bearing
fluids at nanoscale interfaces. Proceedings of the Fourteenth International
Symposium on Water-Rock Interaction, Wri 14, 7: 175-178.
Cole, D.R., Ok, S., Striolo, A. and Phan, A., 2013. Hydrocarbon Behavior at Nanoscale
Interfaces. In: R.M. Hazen, A.P. Jones and J.A. Baross (Editors), Carbon in Earth.
Reviews in Mineralogy & Geochemistry, pp. 495-545. [3]
Cole, D.R., Swift, A.M., Sheets, J.M., Welch, S.A., Anovitz, L.M., Rother, G. and
Murphy, M.V., 2013. Reactive surface area as a function of pore connectivity,
geometry, and size distribution in geologic CO2 storage reservoir formations.
Abstracts of Papers of the American Chemical Society, 246. [0]
Daniel, I. and Edwards, H.G.M., 2012. Raman spectroscopy in biogeology and
astrobiology. Applications of Raman Spectroscopy to Earth Sciences and Cultural
Heritage, 12: 391-413.
Debret, B., Andreani, M., Munoz, M., Bolfan-Casanova, N., Carlut, J., Nicollet, C.,
Schwartz, S. and Trcera, N., 2014. Evolution of Fe redox state in serpentine during
subduction. Earth and Planetary Science Letters, 400: 206-218. [0]
Debret, B., Koga, K.T., Nicollet, C., Andreani, M. and Schwartz, S., 2014. F, Cl and S
input via serpentinite in subduction zones: implications for the nature of the fluid
released at depth. Terra Nova, 26(2): 96-101. [3]
DePaolo, D.J. and Cole, D.R., 2013. Geochemistry of Geologic Carbon Sequestration:
An Overview. In: D.J. DePaolo, D.R. Cole, A. Navrotsky and I.C. Bourg (Editors),
Geochemistry of Geologic Co2 Sequestration. Reviews in Mineralogy &
Geochemistry, pp. 1-14. [5]
Deschamps, F., Guillot, S., Godard, M., Andreani, M. and Hattori, K., 2011.
Serpentinites act as sponges for fluid-mobile elements in abyssal and subduction
zone environments. Terra Nova, 23(3): 171-178. [29]
Drobniak, A., Schimmelmann, A. and Etiope, G., 2013. Origin of natural gas-fed "eternal
flames" in the northern Appalachian Basin, USA. Abstracts of Papers of the American
Chemical Society, 246. [0]
Dubacq, B., Bickle, M.J., Wigley, M., Kampman, N., Ballentine, C.J. and Sherwood
Lollar, B., 2012. Noble gas and carbon isotopic evidence for CO2-driven silicate
dissolution in a recent natural CO2 field. Earth and Planetary Science Letters, 341:
10-19. [10]
Dupraz, S., Fabbri, A., Joulian, C., Dictor, M.-C., Battaglia-Brunet, F., Menez, B.,
Crouzet, C., Henry, B. and Garrido, F., 2013. Impact of CO2 concentration on
autotrophic metabolisms and carbon fate in saline aquifers - A case study.
Geochimica et Cosmochimica Acta, 119: 61-76. [3]
Eiler, J.M., 2013. The Isotopic Anatomies of Molecules and Minerals. Annual Review of
Earth and Planetary Sciences, Vol 41, 41: 411-441. [5]
Eiler, J.M., Bergquist, B., Bourg, I., Cartigny, P., Farquhar, J., Gagnon, A., Guo, W.,
Halevy, I., Hofmann, A., Larson, T.E., Levin, N., Schauble, E.A. and Stolper, D.,
2014. Frontiers of stable isotope geoscience. Chemical Geology, 372: 119-143. [3]
Embriaco, D., Marinaro, G., Frugoni, F., Monna, S., Etiope, G., Gasperini, L., Polonia,
A., Del Bianco, F., Cagatay, M.N., Ulgen, U.B. and Favali, P., 2014. Monitoring of gas
and seismic energy release by multiparametric benthic observatory along the North
Anatolian Fault in the Sea of Marmara (NW Turkey). Geophysical Journal
International, 196(2): 850-866.
Etiope, G., 2012. CLIMATE SCIENCE Methane uncovered. Nature Geoscience, 5(6):
373-374. [12]
Etiope, G., 2015. Natural Gas Seepage - The Earth’s Hydrocarbon Degassing, 199 pp.
Etiope, G., Baciu, C.L. and Schoell, M., 2011. Extreme methane deuterium, nitrogen
and helium enrichment in natural gas from the Homorod seep (Romania). Chemical
Geology, 280(1-2): 89-96. [12]
Etiope, G., Christodoulou, D., Kordella, S., Marinaro, G. and Papatheodorou, G., 2013.
Offshore and onshore seepage of thermogenic gas at Katakolo Bay (Western
Greece). Chemical Geology, 339: 115-126. [6]
Etiope, G., Drobniak, A. and Schimmelmann, A., 2013. Natural seepage of shale gas
and the origin of "eternal flames" in the Northern Appalachian Basin, USA. Marine
and Petroleum Geology, 43: 178-186. [3]
Etiope, G., Ehlmann, B.L. and Schoell, M., 2013. Low temperature production and
exhalation of methane from serpentinized rocks on Earth: A potential analog for
methane production on Mars. Icarus, 224(2): 276-285. [3]
Etiope, G., Nakada, R., Tanaka, K. and Yoshida, N., 2011. Gas seepage from
Tokamachi mud volcanoes, onshore Niigata Basin (Japan): Origin, post-genetic
alterations and CH4-CO2 fluxes. Applied Geochemistry, 26(3): 348-359. [18]
Etiope, G., Oehler, D.Z. and Allen, C.C., 2011. Methane emissions from Earth's
degassing: Implications for Mars. Planetary and Space Science, 59(2-3): 182-195. [6]
Etiope, G., Panieri, G., Fattorini, D., Regoli, F., Vannoli, P., Italiano, F., Locritani, M. and
Carmisciano, C., 2014. A thermogenic hydrocarbon seep in shallow Adriatic Sea
(Italy): Gas origin, sediment contamination and benthic foraminifera. Marine and
Petroleum Geology, 57: 283-293. [0]
Etiope, G. and Schoell, M., 2014. Abiotic Gas: Atypical, But Not Rare. Elements, 10(4):
291-296. [1]
Etiope, G., Schoell, M. and Hosgormez, H., 2011. Abiotic methane flux from the
Chimaera seep and Tekirova ophiolites (Turkey): Understanding gas exhalation from
low temperature serpentinization and implications for Mars. Earth and Planetary
Science Letters, 310(1-2): 96-104. [31]
Etiope, G. and Sherwood Lollar, B., 2013. Abiotic methane on Earth. Reviews of
Geophysics, 51(2): 276-299. [11]
Etiope, G., Tsikouras, B., Kordella, S., Ifandi, E., Christodoulou, D. and Papatheodorou,
G., 2013. Methane flux and origin in the Othrys ophiolite hyperalkaline springs,
Greece. Chemical Geology, 347: 161-174. [10]
Etiope, G., Vance, S., Christensen, L.E., Marques, J.M. and da Costa, I.R., 2013.
Methane in serpentinized ultramafic rocks in mainland Portugal. Marine and
Petroleum Geology, 45: 12-16. [8]
Fedorov, Y.N., Maslov, A.V., Ronkin, Y.L., Kutcherov, V.G. and Alekseev, V.P., 2010.
Geochemical investigation of crude oil samples from West Siberia Megabasin.
Geochimica et Cosmochimica Acta, 74(12): A283-A283. [0]
Feuillie, C., Daniel, I., Michot, L.J. and Pedreira-Segade, U., 2013. Adsorption of
nucleotides onto Fe-Mg-Al rich swelling clays. Geochimica et Cosmochimica Acta,
120: 97-108. [2]
Frunzeti, N., Baciu, C., Etiope, G. and Pfanz, H., 2012. GEOGENIC EMISSION OF
METHANE AND CARBON DIOXIDE AT BECIU MUD VOLCANO, (BERCAARBANASI HYDROCARBON-BEARING STRUCTURE, EASTERN CARPATHIANS,
ROMANIA). Carpathian Journal of Earth and Environmental Sciences, 7(3): 159-166.
[2]
Galvez, M.E., Beyssac, O., Martinez, I., Benzerara, K., Chaduteau, C., Malvoisin, B.
and Malavieille, J., 2013. Graphite formation by carbonate reduction during
subduction. Nature Geoscience, 6(6): 473-477. [11]
Galvez, M.E., Martinez, I., Beyssac, O., Benzerara, K., Agrinier, P. and Assayag, N.,
2013. Metasomatism and graphite formation at a lithological interface in Malaspina
(Alpine Corsica, France). Contributions to Mineralogy and Petrology, 166(6): 16871708. [3]
Gasperini, L., Polonia, A., Del Bianco, F., Etiope, G., Marinaro, G., Favali, P., Italiano, F.
and Cagatay, M.N., 2012. Gas seepage and seismogenic structures along the North
Anatolian Fault in the eastern Sea of Marmara. Geochemistry Geophysics
Geosystems, 13. [5]
Gasperini, L., Polonia, A., Del Bianco, F., Favali, P., Marinaro, G. and Etiope, G., 2012.
Cold seeps, active faults and the earthquake cycle along the North Anatolian Fault
system in the Sea of Marmara (NW Turkey). Bollettino Di Geofisica Teorica Ed
Applicata, 53(4): 371-384. [4]
Gautam, S., Liu, T., Rother, G., Jalarvo, N., Mamontov, E., Welch, S. and Cole, D.,
2014. Effect of Temperature and Pressure on the Dynamics of Nanoconfined
Propane. Solid State Physics: Proceedings of the 58th Dae Solid State Physics
Symposium 2013, Pts a & B, 1591: 1353-1355. [N/A]
Girault, F., Perrier, F., Crockett, R., Bhattarai, M., Koirala, B.P., France-Lanord, C.,
Agrinier, P., Ader, M., Fluteau, F., Greau, C. and Moreira, M., 2014. The SyabruBensi hydrothermal system in central Nepal: 1. Characterization of carbon dioxide
and radon fluxes. Journal of Geophysical Research-Solid Earth, 119(5): 4017-4055.
[1]
Ho, T.A., Argyris, D., Cole, D.R. and Striolo, A., 2012. Aqueous NaCl and CsCl
Solutions Confined in Crystalline Slit-Shaped Silica Nanopores of Varying Degree of
Protonation. Langmuir, 28(2): 1256-1266. [20]
Ho, T.A., Argyris, D., Papavassiliou, D.V., Striolo, A., Lee, L.L. and Cole, D.R., 2011.
Interfacial water on crystalline silica: a comparative molecular dynamics simulation
study. Molecular Simulation, 37(3): 172-195. [20]
Ho, T.A., Papavassiliou, D.V., Lee, L.L. and Striolo, A., 2011. Water Can Slip on a
Hydrophilic surface. Proceedings of the National Academy of Sciences of the United
States of America, 108: 16170-16175. [42]
Holland, G., Sherwood Lollar, B., Li, L., Lacrampe-Couloume, G., Slater, G.F. and
Ballentine, C.J., 2013. Deep fracture fluids isolated in the crust since the
Precambrian era. Nature, 497(7449): 357-+. [12]
Hong, W.-L., Etiope, G., Yang, T.F. and Chang, P.-Y., 2013. Methane flux from
miniseepage in mud volcanoes of SW Taiwan: Comparison with the data from Italy,
Romania, and Azerbaijan. Journal of Asian Earth Sciences, 65: 3-12. [2]
Kang, M., Kanno, C.M., Reid, M.C., Zhang, X., Mauzerall, D.L., Celia, M.A., Chen, Y.
and Onstott, T.C., 2014. Direct measurements of methane emissions from
abandoned oil and gas wells in Pennsylvania. Proceedings of the National Academy
of Sciences of the United States of America, 111(51): 18173-18177. [0]
Kaszuba, J., Yardley, B. and Andreani, M., 2013. Experimental Perspectives of Mineral
Dissolution and Precipitation due to Carbon Dioxide-Water-Rock Interactions. In: D.J.
DePaolo, D.R. Cole, A. Navrotsky and I.C. Bourg (Editors), Geochemistry of Geologic
Co2 Sequestration. Reviews in Mineralogy & Geochemistry, pp. 153-188. [7]
Kharaka, Y.K., Campbell, P.L., Thordsen, J.J., Thomas, B. and Cole, D.R., 2011.
Environmental impacts of the geologic sequestration of CO2: Potential impacts from
mobilized organic species. Abstracts of Papers of the American Chemical Society,
242. [0]
Kharaka, Y.K., Cole, D.R., Thordsen, J.J., Gans, K.D. and Thomas, R.B., 2013.
Geochemical Monitoring for Potential Environmental Impacts of Geologic
Sequestration of CO2. In: D.J. DePaolo, D.R. Cole, A. Navrotsky and I.C. Bourg
(Editors), Geochemistry of Geologic Co2 Sequestration. Reviews in Mineralogy &
Geochemistry, pp. 399-430. [2]
Kikvadze, O.E., Lavrushin, V.Y., Pokrovskii, B.G. and Polyak, B.G., 2014. Isotope and
chemical composition of gases from mud volcanoes in the Taman Peninsula and
problem of their genesis. Lithology and Mineral Resources, 49(6): 491-504. [0]
Kutcherov, V. and Kolesnikov, A., 2013. Hydrocarbon. InTech, 210 pp. [N/A]
Kutcherov, V.G., Kolesnikov, A.Y., Dyuzheva, T.I., Kulikova, L.F., Nikolaev, N.N.,
Sazanova, O.A. and Braghkin, V.V., 2010. Synthesis of complex hydrocarbon
systems at temperatures and pressures corresponding to the Earth's upper mantle
conditions. Doklady Physical Chemistry, 433: 132-135. [2]
Lang, S.Q., Frueh-Green, G.L., Bernasconi, S.M. and Wacker, L., 2013. Isotopic (delta
C-13, Delta C-14) analysis of organic acids in marine samples using wet chemical
oxidation. Limnology and Oceanography-Methods, 11: 161-175. [1]
Lau, M.C.Y., Cameron, C., Magnabosco, C., Brown, C.T., Schilkey, F., Grim, S.,
Hendrickson, S., Pullin, M., Sherwood Lollar, B., van Heerden, E., Kieft, T.L. and
Onstott, T.C., 2014. Phylogeny and phylogeography of functional genes shared
among seven terrestrial subsurface metagenomes reveal N-cycling and microbial
evolutionary relationships. Frontiers in microbiology, 5: 531-531. [N/A]
Le, T., Striolo, A. and Cole, D.R., 2015. Propane simulated in silica pores: Adsorption
isotherms, molecular structure, and mobility. Chemical Engineering Science, 121:
292-299. [N/A]
Lebeau, O., Busigny, V., Chaduteau, C. and Ader, M., 2014. Organic matter removal for
the analysis of carbon and oxygen isotope compositions of siderite. Chemical
Geology, 372: 54-61. [0]
Lee, S.S., Fenter, P. and Park, C., 2013. Optimizing a flow-through X-ray transmission
cell for studies of temporal and spatial variations of ion distributions at mineral-water
interfaces. Journal of Synchrotron Radiation, 20: 125-136. [4]
Li, L., Wing, B.A., Bui, T.H., Slater, G.F., Lacrampe-Couloume, G. and Sherwood Lollar,
B., in review. Archean S-MIF in subsurface fracture waters indicate an ancient sulfur
cycle in Precambrian rocks. Nature Geoscience. [N/A]
Li, Y.-L., Cole, D.R., Konhauser, K. and Chan, L.S., 2013. Quartz nanocrystals in the
2.48 Ga Dales Gorge banded iron formation of Hamersley, Western Australia:
Evidence for a change from submarine to subaerial volcanism at the end of the
Archean. American Mineralogist, 98(4): 582-587. [2]
Li, Y.-L., Konhauser, K.O., Cole, D.R. and Phelps, T.J., 2011. Mineral ecophysiological
data provide growing evidence for microbial activity in banded-iron formations.
Geology, 39(8): 707-710. [22]
Liang, X., Devine, C.E., Nelson, J., Sherwood Lollar, B., Zinder, S. and Edwards, E.A.,
2013. Anaerobic Conversion of Chlorobenzene and Benzene to CH4 and CO2 in
Bioaugmented Microcosms. Environmental Science & Technology, 47(5): 2378-2385.
[3]
Liang, X., Mundle, S.O.C., Nelson, J.L., Passeport, E., Chan, C.C.H., LacrampeCouloume, G., Zinder, S.H. and Sherwood Lollar, B., 2014. Distinct Carbon Isotope
Fractionation during Anaerobic Degradation of Dichlorobenzene Isomers.
Environmental Science & Technology, 48(9): 4844-4851. [2]
Lippmann-Pipke, J., Erzinger, J., Zimmer, M., Kujawa, C., Boettcher, M., Van Heerden,
E., Bester, A., Moller, H., Stroncik, N.A. and Reches, Z., 2011. Geogas transport in
fractured hard rock - Correlations with mining seismicity at 3.54 km depth, TauTona
gold mine, South Africa. Applied Geochemistry, 26(12): 2134-2146. [1]
Lippmann-Pipke, J., Sherwood Lollar, B., Niedermann, S., Stroncik, N.A., Naumann, R.,
van Heerden, E. and Onstott, T.C., 2011. Neon identifies two billion year old fluid
component in Kaapvaal Craton. Chemical Geology, 283(3-4): 287-296. [13]
Litthauer, S., Gargiulo, S., van Heerden, E., Hollmann, F. and Opperman, D.J., 2014.
Heterologous expression and characterization of the ene-reductases from
Deinococcus radiodurans and Ralstonia metallidurans. Journal of Molecular Catalysis
B-Enzymatic, 99: 89-95. [4]
Luquot, L., Andreani, M., Gouze, P. and Camps, P., 2012. CO2 percolation experiment
through chlorite/zeolite-rich sandstone (Pretty Hill Formation - Otway BasinAustralia). Chemical Geology, 294: 75-88. [16]
Mackintosh, S.J. and Ballentine, C.J., 2012. Using He-3/He-4 isotope ratios to identify
the source of deep reservoir contributions to shallow fluids and soil gas. Chemical
Geology, 304: 142-150. [3]
Macouin, M., Ader, M., Moreau, M.-G., Poitou, C., Yang, Z. and Sun, Z., 2012.
Deciphering the impact of diagenesis overprint on negative delta C-13 excursions
using rock magnetism: Case study of Ediacaran carbonates, Yangjiaping section,
South China. Earth and Planetary Science Letters, 351: 281-294. [3]
Magnabosco, C., Tekere, M., Lau, M.C.Y., Linage, B., Kuloyo, O., Erasmus, M., Cason,
E., van Heerden, E., Borgonie, G., Kieft, T.L., Olivier, J. and Onstott, T.C., 2014.
Comparisons of the composition and biogeographic distribution of the bacterial
communities occupying South African thermal springs with those inhabiting deep
subsurface fracture water. Frontiers in Microbiology, 5. [0]
Mazzini, A., Svensen, H., Etiope, G., Onderdonk, N. and Banks, D., 2011. Fluid origin,
gas fluxes and plumbing system in the sediment-hosted Salton Sea Geothermal
System (California, USA). Journal of Volcanology and Geothermal Research, 205(34): 67-83. [6]
McCollom, T.M. and Seewald, J.S., 2013. Serpentinites, Hydrogen, and Life. Elements,
9(2): 129-134. [9]
McCollom, T.M., Seewald, J.S. and German, C.R., 2015. Investigation of Extractable
Organic Compounds in Deep-sea Hydrothermal Vent Fluids along the Mid-Atlantic
Ridge. Geochimica Et Cosmochimica Acta, in review. [N/A]
Mehay, S., Frueh-Green, G.L., Lang, S.Q., Bernasconi, S.M., Brazelton, W.J., Schrenk,
M.O., Schaeffer, P. and Adam, P., 2013. Record of archaeal activity at the
serpentinite-hosted Lost City Hydrothermal Field. Geobiology, 11(6): 570-592. [0]
Menez, B., Pasini, V. and Brunelli, D., 2012. Life in the hydrated suboceanic mantle.
Nature Geoscience, 5(2): 133-137. [26]
Monnin, C., Chavagnac, V., Boulart, C., Menez, B., Gerard, M., Gerard, E., Pisapia, C.,
Quemeneur, M., Erauso, G., Postec, A., Guentas-Dombrowski, L., Payri, C. and
Pelletier, B., 2014. Fluid chemistry of the low temperature hyperalkaline hydrothermal
system of Prony Bay (New Caledonia). Biogeosciences, 11(20): 5687-5706. [0]
Navarre-Sitchler, A.K., Cole, D.R., Rother, G., Jin, L., Buss, H.L. and Brantley, S.L.,
2013. Porosity and surface area evolution during weathering of two igneous rocks.
Geochimica et Cosmochimica Acta, 109: 400-413. [5]
Ono, S., Wang, D.T., Gruen, D.S., Sherwood Lollar, B., Zahniser, M.S., McManus, B.J.
and Nelson, D.D., 2014. Measurement of a Doubly Substituted Methane
Isotopologue, (CH3D)-C-13, by Tunable Infrared Laser Direct Absorption
Spectroscopy. Analytical Chemistry, 86(13): 6487-6494. [0]
Onstott, T.C., Magnabosco, C., Aubrey, A.D., Burton, A.S., Dworkin, J.P., Elsila, J.E.,
Grunsfeld, S., Cao, B.H., Hein, J.E., Glavin, D.P., Kieft, T.L., Silver, B.J., Phelps, T.J.,
van Heerden, E., Opperman, D.J. and Bada, J.L., 2014. Does aspartic acid
racemization constrain the depth limit of the subsurface biosphere? Geobiology,
12(1): 1-19. [1]
Pasini, V., Brunelli, D., Dumas, P., Sandt, C., Frederick, J., Benzerara, K., Bernard, S.
and Menez, B., 2013. Low temperature hydrothermal oil and associated biological
precursors in serpentinites from Mid-Ocean Ridge. Lithos, 178: 84-95. [2]
Pasini, V., Brunelli, D., Dumas, P., Sandt, C., Frederick, J., Benzerara, K., Bernard, S.
and Menez, B., 2014. Low temperature hydrothermal oil and associated biological
precursors in serpentinites from Mid-Ocean Ridge (vol 178, pg 84, 2013). Lithos, 190:
521-521. [0]
Peters, C.A., Dobson, P.F., Oldenburg, C.M., Wang, J.S.Y., Onstott, T.C., Scherer,
G.W., Freifeld, B.M., Ramakrishnan, T.S., Stabinski, E.L., Liang, K. and Verma, S.,
2011. LUCI: A facility at DUSEL for large-scale experimental study of geologic carbon
sequestration. 10th International Conference on Greenhouse Gas Control
Technologies, 4: 5050-5057. [N/A]
Peuble, S., Godard, M., Luquot, L., Andreani, M., Martinez, I. and Gouze, P., 2015. CO2
geological storage in olivine rich basaltic aquifers: New insights from reactivepercolation experiments. Applied Geochemistry, 52: 174-190. [N/A]
Phan, A., Cole, D.R. and Striolo, A., 2013. Liquid Ethanol Simulated on Crystalline
Alpha Alumina. Journal of Physical Chemistry B, 117(14): 3829-3840. [4]
Phan, A., Cole, D.R. and Striolo, A., 2014. Preferential Adsorption from Liquid WaterEthanol Mixtures in Alumina Pores. Langmuir, 30(27): 8066-8077. [1]
Phan, A., Cole, D.R. and Striolo, A., 2014. Aqueous Methane in Slit-Shaped Silica
Nanopores: High Solubility and Traces of Hydrates. Journal of Physical Chemistry C,
118(9): 4860-4868. [1]
Phan, A., Ho, T.A., Cole, D.R. and Striolo, A., 2012. Molecular Structure and Dynamics
in Thin Water Films at Metal Oxide Surfaces: Magnesium, Aluminum, and Silicon
Oxide Surfaces. Journal of Physical Chemistry C, 116(30): 15962-15973. [26]
Polyak, B.G., Lavrushin, B.Y., Inguaggiato, S. and Kikvadze, O.E., 2011. Helium
Isotopes in Gases of Mineral Waters in the Western Caucasus. Lithology and Mineral
Resources, 46(6): 495-506. [0]
Quéméneur, M., Bes, M., Postec, A., Mei, N., Hamelin, J., Monnin, C., Chavagnac, V.,
Payri, C., Pelletier, B., Guentas-Dombrowsky, L., Gérard, M., Pisapia, C., Gérard, E.,
Ménez, B., Ollivier, B. and Erauso, G., 2014. Spatial distribution of microbial
communities in the shallow submarine alkaline hydrothermal field of the Prony Bay,
New Caledonia. Environmental Microbiology Reports, 6(6): 665-674. [2]
Rey, A., Etiope, G., Belelli-Marchesini, L., Papale, D. and Valentini, R., 2012. Geologic
carbon sources may confound ecosystem carbon balance estimates: Evidence from
a semiarid steppe in the southeast of Spain. Journal of Geophysical ResearchBiogeosciences, 117. [2]
Rother, G., Krukowski, E.G., Anovitz, L.M., Ilton, E.S., Cole, D.R. and Sposito, G., 2011.
Carbon dioxide interactions with reservoir and cap rocks: A study combining sorption
and neutron scattering with MD simulations. Abstracts of Papers of the American
Chemical Society, 242. [0]
Rother, G., Krukowski, E.G., Wallacher, D., Grimm, N., Bodnar, R.J. and Cole, D.R.,
2012. Pore Size Effects on the Sorption of Supercritical CO2 in Mesoporous CPG-10
Silica. Journal of Physical Chemistry C, 116(1): 917-922. [11]
Rother, G., Vlcek, L., Gruszkiewicz, M.S., Chialvo, A.A., Anovitz, L.M., Banuelos, J.L.,
Wallacher, D., Grimm, N. and Cole, D.R., 2014. Sorption Phase of Supercritical CO2
in Silica Aerogel: Experiments and Mesoscale Computer Simulations. Journal of
Physical Chemistry C, 118(28): 15525-15533. [1]
Sansjofre, P., Ader, M., Trindade, R.I.F., Elie, M., Lyons, J., Cartigny, P. and Nogueira,
A.C.R., 2011. A carbon isotope challenge to the snowball Earth. Nature, 478(7367):
93-U103. [20]
Schlegel, M.E., Zhou, Z., McIntosh, J.C., Ballentine, C.J. and Person, M.A., 2011.
Constraining the timing of microbial methane generation in an organic-rich shale
using noble gases, Illinois Basin, USA. Chemical Geology, 287(1-2): 27-40. [11]
Schwarzenbach, E.M., Lang, S.Q., Früh-Green, G.L., Lilley, M.D., Bernasconi, S.M. and
Mehay, S., 2013. Sources and cycling of carbon in continental, serpentinite-hosted
alkaline springs in the Voltri Massif, Italy. Lithos, 177: 226–244. [3]
Sherwood Lollar, B., Onstott, T.C., Lacrampe-Couloume, G. and Ballentine, C.J., 2014.
The contribution of the Precambrian continental lithosphere to global H-2 production.
Nature, 516(7531): 379-+. [0]
Shilobreeva, S., Martinez, I., Busigny, V., Agrinier, P. and Laverne, C., 2011. Insights
into C and H storage in the altered oceanic crust: Results from ODP/IODP Hole
1256D. Geochimica et Cosmochimica Acta, 75(9): 2237-2255. [23]
Silver, B.J., Raymond, R., Sigman, D.M., Prokopeko, M., Sherwood Lollar, B.,
Lacrampe-Couloume, G., Fogel, M.L., Pratt, L.M., Lefticariu, L. and Onstott, T.C.,
2012. The origin of NO3- and N-2 in deep subsurface fracture water of South Africa.
Chemical Geology, 294: 51-62. [5]
Sissmann, O., Brunet, F., Martinez, I., Guyot, F., Verlaguet, A., Pinquier, Y. and Daval,
D., 2014. Enhanced Olivine Carbonation within a Basalt as Compared to SinglePhase Experiments: Reevaluating the Potential of CO2 Mineral Sequestration.
Environmental Science & Technology, 48(10): 5512-5519. [2]
Sissmann, O., Daval, D., Brunet, F., Guyot, F., Verlaguet, A., Pinquier, Y., Findling, N.
and Martinez, I., 2013. The deleterious effect of secondary phases on olivine
carbonation yield: Insight from time-resolved aqueous-fluid sampling and FIB-TEM
characterization. Chemical Geology, 357: 186-202. [5]
Smith, J.A. and Onstott, T.C., 2011. "Follow the Water": Steve Squyres and the Mars
Exploration Rovers. Journal of the Franklin Institute-Engineering and Applied
Mathematics, 348(3): 446-452. [0]
Stack, A.G., Fernandez-Martinez, A., Allard, L.F., Banuelos, J.L., Rother, G., Anovitz,
L.M., Cole, D.R. and Waychunas, G.A., 2014. Pore-Size-Dependent Calcium
Carbonate Precipitation Controlled by Surface Chemistry. Environmental Science &
Technology, 48(11): 6177-6183. [1]
Stolper, D.A., Lawson, M., Davis, C.L., Ferreira, A.A., Santos Neto, E.V., Ellis, G.S.,
Lewan, M.D., Martini, A.M., Tang, Y., Schoell, M., Sessions, A.L. and Eiler, J.M.,
2014. Formation temperatures of thermogenic and biogenic methane. Science,
344(6191): 1500-1503. [0]
Stolper, D.A., Sessions, A.L., Ferreira, A.A., Santos Neto, E.V., Schimmelmann, A.,
Shusta, S.S., Valentine, D.L. and Eiler, J.M., 2014. Combined C-13-D and D-D
clumping in methane: Methods and preliminary results. Geochimica Et
Cosmochimica Acta, 126: 169-191. [6]
Stotler, R.L., Frape, S.K., Freifeld, B.M., Holden, B., Onstott, T.C., Ruskeeniemi, T. and
Chan, E., 2011. Hydrogeology, Chemical and Microbial Activity Measurement
Through Deep Permafrost. Ground Water, 49(3): 348-364. [6]
Streit, E., Kelemen, P. and Eiler, J., 2012. Coexisting serpentine and quartz from
carbonate-bearing serpentinized peridotite in the Samail Ophiolite, Oman.
Contributions to Mineralogy and Petrology, 164(5): 821-837. [5]
Streit, K., Bennett, S.A., Van Dover, C.L. and Coleman, M., 2015. Sources of organic
carbon for Rimicaris hybisae: tracing individual fatty acids at two hydrothermal vent
fields in the Mid-Cayman rise. Deep Sea Res. Part I.
Striolo, A., 2014. Understanding Interfacial Water and Its Role on Various Practical
Applications Using Molecular Simulations - invited article. MRS Bulletin, 39: 10621068. [0]
Telling, J., Lacrampe-Couloume, G. and Lollar, B.S., 2013. Carbon and Hydrogen
Isotopic Composition of Methane and C2+ Alkanes in Electrical Spark Discharge:
Implications for Identifying Sources of Hydrocarbons in Terrestrial and Extraterrestrial
Settings. Astrobiology, 13(5): 483-490. [0]
Tolstikhin, I., Marty, B., Porcelli, D. and Hofmann, A., 2014. Evolution of volatile species
in the earth's mantle: A view from xenology. Geochimica et Cosmochimica Acta, 136:
229-246. [1]
Tolstikhin, I., Waber, H.N., Kamensky, I., Loosli, H.H., Skiba, V. and Gannibal, M., 2011.
Production, redistribution and loss of helium and argon isotopes in a thick
sedimentary aquitard-aquifer system (Molasse Basin, Switzerland). Chemical
Geology, 286(1-2): 48-58. [2]
Tolstikhin, I.N., Skiba, V.I., Sevost'yanov, A.Y., Kamensky, I.L. and Vetrin, V.R., 2014.
Residence sites and origin of noble gases in minerals as exemplified by ilmenite from
the alkaline granites of the Kola Peninsula. Geochemistry International, 52(12): 10491056. [0]
Vandersteen, A.A., Mundle, S.O.C., Lacrampe-Couloume, G., Sherwood Lollar, B. and
Kluger, R., 2013. Carbon Kinetic Isotope Effects Reveal Variations in Reactivity of
Intermediates in the Formation of Protonated Carbonic Acid. Journal of Organic
Chemistry, 78(23): 12176-12181. [1]
Wang, H.-W., Anovitz, L.M., Burg, A., Cole, D.R., Allard, L.F., Jackson, A.J., Stack, A.G.
and Rother, G., 2013. Multi-scale characterization of pore evolution in a combustion
metamorphic complex, Hatrurim basin, Israel: Combining (ultra) small-angle neutron
scattering and image analysis. Geochimica et Cosmochimica Acta, 121: 339-362. [2]
Wanger, G., Moser, D., Hay, M., Myneni, S., Onstott, T.C. and Southam, G., 2012.
Mobile hydrocarbon microspheres from > 2-billion-year-old carbon-bearing seams in
the South African deep subsurface. Geobiology, 10(6): 496-505. [0]
Wilkins, M.J., Daly, R.A., Mouser, P.J., Trexler, R., Sharma, S., Cole, D.R., Wrighton,
K.C., Biddle, J.F., Denis, E.H., Fredrickson, J.K., Kieft, T.L., Onstott, T.C., Peterson,
L., Pfiffner, S.M., Phelps, T.J. and Schrenk, M.O., 2014. Trends and future
challenges in sampling the deep terrestrial biosphere. Frontiers in Microbiology, 5. [0]
Yan, H., Park, C., Ahn, G., Hong, S., Keane, D.T., Kenney-Benson, C., Chow, P., Xiao,
Y. and Shen, G., 2014. Termination and hydration of forsteritic olivine (010) surface.
Geochimica et Cosmochimica Acta, 145: 268-280. [0]
Yethiraj, A. and Striolo, A., 2013. Fracking: What Can Physical Chemistry Offer? invited
commentary. J. Phys. Chem. Lett., 4: 687-690. [7]
Yeung, L.Y., Ash, J.L. and Young, E.D., 2015. Rapid photochemical equilibration of
isotope bond ordering in O2. J. Geophys Res. Atmos., 119. [0]
Zhou, Z., Ballentine, C.J., Schoell, M. and Stevens, S.H., 2012. Identifying and
quantifying natural CO2 sequestration processes over geological timescales: The
Jackson Dome CO2 Deposit, USA. Geochimica et Cosmochimica Acta, 86: 257-275.
[7]
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