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[1] Hu, Y., Feng, D., Peckmann, J., Zhang, X., Chen, L., Feng, J., Wang, H., Chen, D., 2023. The crucial role of deep-sourced methane in maintaining the subseafloor sulfate budget. Geoscience Frontiers 14, 101530.
[2] Hu, Y., Zhang, X., Feng, D., Peckmann, J., Feng, J., Wang, H., Yang, S. and Chen, D. (2022) Enhanced sulfate consumption fueled by deep-sourced methane in a hydrate-bearing area. Science Bulletin 67, 122-124.
[3] Guan, H., Liu, L., Hu, Y. *, Li, S., Li, N., Sun, Z., Wu, N., Somerville, I., 2022. Rising bottom-water temperatures induced methane release during the middle Holocene in the Okinawa Trough, East China Sea. Chemical Geology, 120707.
[4] Hu, Y., Feng, D., Peng, Y., Peckmann, J., Kasten, S., Wang, X., Liang, Q., Wang, H., Chen, D., 2020. A prominent isotopic fingerprint of nitrogen uptake by anaerobic methanotrophic archaea. Chemical Geology, 119972.
[5] Hu, Y., Feng, D., Peckmann, J., Gong, S., Liang, Q., Wang, H., Chen, D., 2020. The impact of diffusive transport of methane on pore-water and sediment geochemistry constrained by authigenic enrichments of carbon, sulfur, and trace elements: A case study from the Shenhu area of the South China Sea. Chemical Geology 553, 119805.
[6] Deng, Y., Chen, F., Hu, Y*., Guo, Q., Cao, J., Chen, H., Zhou, J., Jiang, X., Zhu, J., 2020. Methane seepage patterns during the middle Pleistocene inferred from molybdenum enrichments of seep carbonates in the South China Sea. Ore Geology Reviews 125, 103701.
[7] Hu, Y., Luo, M., Liang, Q., Chen, L., Feng, D., Yang, S., Liang, J., Chen, D., 2019. Pore fluid compositions and inferred fluid flow patterns at the Haima cold seeps of the South China Sea. Marine and Petroleum Geology 103, 29-40.
[8] Gong, S., Hu, Y#., Li, N., Feng, D., Liang, Q., Tong, H., Peng, Y., Tao, J., Chen, D., 2018. Environmental controls on sulfur isotopic compositions of sulfide minerals in seep carbonates from the South China Sea. Journal of Asian Earth Sciences 168, 96-105.
[9] Hu, Y., Luo, M., Chen, L., Liang, Q., Feng, D., Tao, J., Yang, S., Chen, D., 2018. Methane source linked to gas hydrate system at hydrate drilling areas of the South China Sea: Porewater geochemistry and numerical model constraints. Journal of Asian Earth Sciences 168, 87-95.
[10] Hu, Y., Chen, L., Feng, D., Liang, Q., Xia, Z., Chen, D., 2017. Geochemical record of methane seepage in authigenic carbonates and surrounding host sediments: A case study from the South China Sea. Journal of Asian Earth Sciences 138, 51-61.
[11] Liang, Q., Hu, Y#., Feng, D., Peckmann, J., Chen, L., Yang, S., Liang, J., Tao, J., Chen, D., 2017. Authigenic carbonates from newly discovered active cold seeps on the northwestern slope of the South China Sea: Constraints on fluid sources, formation environments, and seepage dynamics. Deep Sea Research Part I: Oceanographic Research Papers 124, 31-41.
[12] Chen, F., Hu, Y*., Feng, D., Zhang, X., Cheng, S., Cao, J., Lu, H., Chen, D., 2016. Evidence of intense methane seepages from molybdenum enrichments in gas hydrate-bearing sediments of the northern South China Sea. Chemical Geology 443, 173-181.
[13] Hu, Y., Feng, D., Chen, L., Zheng, G., Peckmann, J., Chen, D., 2015. Using iron speciation in authigenic carbonates from hydrocarbon seeps to trace variable redox conditions. Marine and Petroleum Geology 67, 111-119.
[14] Hu, Y., Feng, D., Liang, Q., Xia, Z., Chen, L., Chen, D., 2015. Impact of anaerobic oxidation of methane on the geochemical cycle of redox-sensitive elements at cold-seep sites of the northern South China Sea. Deep Sea Research Part II: Topical Studies in Oceanography 122, 84-94.
[15] Hu, Y., Feng, D., Peckmann, J., Roberts, H.H., Chen, D., 2014. New insights into cerium anomalies and mechanisms of trace metal enrichment in authigenic carbonate from hydrocarbon seeps. Chemical Geology 381, 55-66.