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Chemosphere|November 15, 2002
Isotopic fractionation during reductive dechlorination of trichloroethene by zero-valent iron: influence of surface treatmentG F Slater, B Sherwood Lollar, R Allen King, et al.Nature|April 5, 2002
Abiogenic formation of alkanes in the Earth's crust as a minor source for global hydrocarbon reservoirsB Sherwood Lollar, T D Westgate, J A Ward, et al.Analytical Chemistry|October 29, 2013
Measurement of the 13C/12C of atmospheric CH4 using near-infrared (NIR) cavity ring-down spectroscopyY Chen, Kevin K Lehmann, J Kessler, et al.Astrobiology|May 13, 2006
Martian CH(4): sources, flux, and detectionT C Onstott, D McGown, J Kessler, et al.Nature|May 17, 2013
Deep fracture fluids isolated in the crust since the Precambrian eraG Holland, B Sherwood Lollar, L Li, et al.Environmental Science & Technology|May 12, 2001
Stable carbon isotope evidence for intrinsic bioremediation of tetrachloroethene and trichloroethene at area 6, Dover Air Force BaseB Sherwood Lollar, G F Slater, B Sleep, et al.Nature Communications|June 30, 2022
<sup>86</sup>Kr excess and other noble gases identify a billion-year-old radiogenically-enriched groundwater systemO Warr, C J Ballentine, T C Onstott, et al.Nature Communications|November 4, 2016
Sulfur mass-independent fractionation in subsurface fracture waters indicates a long-standing sulfur cycle in Precambrian rocksL Li, B A Wing, T H Bui, et al.Astrobiology|January 1, 2008
Hydrogeologic controls on episodic H2 release from precambrian fractured rocks--energy for deep subsurface life on earth and marsB Sherwood Lollar, K Voglesonger, L-H Lin, et al.Astrobiology|October 13, 2016
Hydrogen Isotopic Composition of Arctic and Atmospheric CH<sub>4</sub> Determined by a Portable Near-Infrared Cavity Ring-Down Spectrometer with a Cryogenic Pre-ConcentratorY Chen, Kevin K Lehmann, Y Peng, et al.Pageof 2