Your search for Creator "Schweitzer, Hannah D." resulted in 4 records.
- Effect of an algal amendment on the microbial conversion of coal to methane at different sulfate concentrations from the Powder River Basin, USA Heidi J. Smith, Hannah D. Schweitzer, E. P. Barnhart, W. Orem, Robin Gerlach, and Matthew W. Fields
- Activity-based, genome-resolved metagenomics uncovers key populations and pathways involved in subsurface conversions of coal to methane Luke J. McKay, Heidi J. Smith, Elliott P. Barnhart, Hannah D. Schweitzer, Rex R. Malmstrom, Danielle Goudeau, and Matthew W. Fields
- In Situ Enhancement and Isotopic Labeling of Biogenic Coalbed Methane Elliott P. Barnhart, Leslie F. Ruppert, Randy Hiebert, Heidi J. Smith, Hannah D. Schweitzer, Arthur C. Clark, Edwin P. Weeks, William H. Orem, Matthew S. Varonka, George Platt, Jenna L. Shelton, Katherine J. Davis, Robert J. Hyatt, Jennifer C. Mcintosh, Kilian Ashley, Shuhei Ono, Anna M. Martini, Keith C. Hackley, Robin Gerlach, Lee Spangler, Adrienne J. Phillips, Mark Barry, Alfred B. Cunningham, and Matthew W. Fields
- Algal amendment enhances biogenic methane production from coals of different thermal maturity George A. Platt, Katherine J. Davis, Hannah D. Schweitzer, Heidi J. Smith, Matthew W. Fields, Elliott P. Barnhart, and Robin Gerlach