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1.Zhuang, G.-C., Xu, L., Liang, Q., Fan, X., Xia, Z., Joye, S.B., Wang, F., 2019. Biogeochemistry, microbial activity and diversity in surface and subsurface deep-sea sediments of South China Sea, Limnology and Oceanography,64(5),2252-2270.
2.Zhuang, G.-C., Peña-Montenegro, T., Montgomery, A., Montoya, J.P., Joye, S.B., 2019. Significance of acetate as a microbial carbon and energy source in the water column of Gulf of Mexico: implication for marine carbon cycling. Global Biogeochemical Cycles, 33(2), 223-235.
3.Zhuang, G.-C., Montgomery, A., Samarkin, V.A., Song, M., Liu, J., Schubotz, F., Teske, A., Hinrichs, K.-U., Joye, S.B., 2019. Generation and utilization of volatile fatty acids and alcohols in hydrothermally altered sediments in the Guaymas Basin, Gulf of California. Geophysical Research Letters,46(5), 2637-2646.
4.Zhuang, G.-C., Montgomery, A., Joye, S.B., 2019.Heterotrophic metabolism of C1 and C2 low molecular weight compounds in northern Gulf of Mexico sediments: controlling factors and implications for organic carbon degradation. Geochimica et Cosmochimica Acta,247, 243-260.
5.Zhuang, G.-C., Peña-Montenegro, T., Nigro, L., Montgomery, A., Joye, S.B., 2018. Microbial metabolism of methanol and methylamine in the northern Gulf of Mexico: insights into marine carbon and nitrogen cycling. Environmental Microbiology, 20(12), 4543-4554.
6.Zhuang, G.-C., Montgomery, A., Sibert, R., Rogener, M.-K., Samarkin, V.A., Joye, S.B., 2018. Effects of pressure, methane concentration, sulfate reduction activity and temperature on methane productionin surface sediments of the Gulf of Mexico.Limnology and Oceanography, 63(5), 2080-2092.
7.Zhuang, G.-C., Heuer, V.B., Lazar, C.S., Goldhammer, T., Samarkin, V.A., Wendt, J., Elvert, M., Joye, S.B., Teske, A.P., Hinrichs, K.-U., 2018. Relative importance of methylotrophic methanogenesis in sediments of the Western Mediterranean Sea.Geochimica et Cosmochimica Acta, 224, 171-186.
8.Zhuang, G.-C., Lin, Y.-S., Bowles, M., Heuer, V.B.,Lever, M., Elvert, M., Hinrichs, K.-U., 2017. Distribution and isotopic composition of trimethylamine, dimethylsulfide anddimethylsulfoniopropionate in marine sediments. Marine Chemistry, 196, 35-46.
9.Zhuang, G.-C., Elling,F.J., Nigro, L.M., Samarkin, V.A., Joye, S.B., Teske, A.P., Hinrichs, K.-U., 2016.Multiple evidences for methylotrophic methanogenesis as the dominant methanogenic pathway in hypersaline sediments in hypersaline sediments from the Orca Basin, Gulf of Mexico.Geochimica et Cosmochimica Acta, 187, 1-20.
10. Zhuang, G.-C., Lin, Y.-S., Elvert, M., Heuer, V.B., Hinrichs, K.-U., 2014. Gas chromatographic analysis of methanol and ethanol in marine sediment pore waters: Validation and implementation of three pretreatment techniques.Marine Chemistry, 160, 82-90.
11.Zhuang, G.-C., Yang,G.-P., Yu J.,Gao, Y., 2011. Production of DMS and DMSP in different physiological stages and salinity conditions in two marine algae.Chinese Journal of Oceanology and Limnology, 29(2), 369-377.
12.Yang, G.-P., Zhuang, G.-C., Zhang, H.-H., Dong, Y., Yang, J., 2012. Distribution of DMS and DMSP in the Yellow Sea and the East China Sea during spring: spatio-temporal variability and controlling factors. Marine Chemistry, 138, 21-31.