Area of research
Environmental Chemistry · Ecology
Research interest
Research interests include Biology, Archaea, Environmental chemistry, Methane, Environmental science, and Methanogenesis.
The Clumped Isotope Signatures of Multiple Methanogenic Metabolisms
Sulfide Toxicity as Key Control on Anaerobic Oxidation of Methane in Eutrophic Coastal Sediments
Microbiota of pest insect <i>Nezara viridula</i> mediate detoxification and plant defense repression
Anaerobic methanotrophy is stimulated by graphene oxide in a brackish urban canal sediment
Methanogenic archaea use a bacteria-like methyltransferase system to demethoxylate aromatic compounds
Enrichment of novel <i>Verrucomicrobia</i> , <i>Bacteroidetes</i> , and <i>Krumholzibacteria</i> in an oxygen‐limited methane‐ and iron‐fed bioreactor inoculated with Bothnian Sea sediments
A novel methoxydotrophic metabolism discovered in the hyperthermophilic archaeon <i>Archaeoglobus fulgidus</i>
Current production by non-methanotrophic bacteria enriched from an anaerobic methane-oxidizing microbial community
Roles of Thermokarst Lakes in a Warming World
Anaerobic methanotrophic archaea of the ANME-2d clade feature lipid composition that differs from other ANME archaea
High-Level Abundances of<i>Methanobacteriales</i>and<i>Syntrophobacterales</i>May Help To Prevent Corrosion of Metal Sheet Piles
Increases in temperature and nutrient availability positively affect methane‐cycling microorganisms in Arctic thermokarst lake sediments
Mimicking microbial interactions under nitrate‐reducing conditions in an anoxic bioreactor: enrichment of novel Nitrospirae bacteria distantly related to <i>Thermodesulfovibrio</i>
Nutrient and acetate amendment leads to acetoclastic methane production and microbial community change in a non‐producing Australian coal well
Electron transport during aceticlastic methanogenesis by <i><scp>M</scp>ethanosarcina acetivorans</i> involves a sodium‐translocating <scp>R</scp>nf complex