1) Gan S., Guo P., Wu Y. and Zhao Y. (2021) A Novel Method for Unraveling the Black Box of Dissolved Organic Matter in Soils by FT-ICR-MS Coupled with Induction-Based Nanospray Ionization. Environ. Sci. Technol. Lett. 8, 356–361. (JCR Q1, TOP, IF5=12.024)
2) Gan S., Schmidt F., Heuer V. B., Goldhammer T., Witt M. and Hinrichs K. U. (2020) Impacts of redox conditions on dissolved organic matter (DOM) quality in marine sediments off the River Rh?ne, Western Mediterranean Sea. Geochim. Cosmochim. Acta 276, 151–169. (JCR Q1, TOP, IF5=6.1)
3) Gan S, Heuer V., Schmidt F., W?rmer L and Hinrichs K.-U. (2022) A simple guideline to apply Excitation Emission Matrix Spectroscopy (EEMs) for the characterization of dissolved organic matter (DOM) in anoxic marine sediment, Acta Oceanol. Sin. doi: 10.1007/s13131-022-2050-0
4) Gan S, Wu P., Song Y., Guo P., Cai N., Yuan F., Yang Q., Wu Y., Liu N., Pan J. (2022) Non-targeted analysis of wastewater DOM characterized by FT-ICR-MS from a wastewater treatment plant – a case study of hospital wastewater, J. Water Process. Eng.48, 102834. (JCR Q1, IF5=7.01)
5) Gan S., Wu Y. and Zhang J. (2016) Bioavailability of dissolved organic carbon linked with the regional carbon cycle in the East China Sea. Deep Sea Res. Part II Top. Stud. Oceanogr. 124, 19–28. (JCR Q2)
6) Wu Y., Koch B.P., Wang X.,. Witt M., Wang X., Bao H., Gan S, Kattner G. and Zhang J. (2022). Molecular Composition of Dissolved Organic Matter in the Changjiang (Yangtze River) – Imprints of Anthropogenic Impact. Front. Mar. Sci. (JCR Q1)
7) Guo, Z., Zhang, Y., Gan, S., He, H., Cai, N., Xu, J., Guo, P., Chen, B., Pan, X. (2022). Effective degradation of COVID-19 related drugs by biochar-supported red mud catalyst activated persulfate process: Mechanism and pathway. J. Clean. Prod. 340, 130753. (JCR Q1, TOP)
8) Zhao Y., Cui J., Fang L., An Y., Gan S., Guo P. and Chen J. (2021) Roxarsone transformation and its impacts on soil enzyme activity in paddy soils: A new insight into water flooding effects. Environ. Res., 111636.. (JCR Q1)
9) Huang Z., Lin Q., Cai N., Weng Q., Xu J., Gan S., Chen C., Zhong Q., Fu H., Xia Y. and Guo P. (2021) Coexistence of free radical and nonradical mechanisms for triclosan degradation by CuO/HNTs. Sep. Purif. Technol., 119318. (JCR Q1, TOP)
10) Zhang T., Qian C., Guo P., Gan S., Dong L., Bai G. and Guo Q. (2020) A Novel Reduced Graphene Oxide-Attapulgite (RGO-ATP) Supported Fe2O3 Catalyst for Heterogeneous Fenton-like Oxidation of Ciprofloxacin: Degradation Mechanism and Pathway. Catalysts 10, 189. (JCR Q2)
11) Zhao Y., Wu R., Cui J., Gan S., Pan J. and Guo P. (2020) Improvement of water quality in the Pearl River Estuary, China: a long-term (2008–2017) case study of temporal-spatial variation, source identification and ecological risk of heavy metals in surface water of Guangzhou. Environ. Sci. Pollut. Res. 27, 21084–21097. (JCR Q2)
12) Imachi H., Tasumi E., Takaki Y., Hoshino T., Schubotz F., Gan S., Tu T.-H., Saito Y., Yamanaka Y., Ijiri A., Matsui Y., Miyazaki M., Morono Y., Takai K., Hinrichs K.-U. and Inagaki F. (2019) Cultivable microbial community in 2-km-deep, 20-million-year-old subseafloor coalbeds through ~1000 days anaerobic bioreactor cultivation. Sci. Rep. 9, 2305. (JCR Q1)
13) Zhao Y., Song Y., Cui J., Gan S., Yang X., Wu R. and Guo P. (2019) Assessment of Water Quality Evolution in the Pearl River Estuary (South Guangzhou) from 2008 to 2017. Water 12, 59. (JCR Q2)
14) Wang X., Wu Y., Bao H., Gan S. and Zhang J. (2019) Sources, Transport, and Transformation of Dissolved Organic Matter in a Large River System: Illustrated by the Changjiang River, China. J. Geophys. Res. Biogeosciences 124, 3881–3901. (JCR Q1)
15) Wu Y., Zhu Z., Bao H., Gan S. and Zhang J. (2015) Organic Matter and Biomarkers of the Changjiang Estuary and East China Sea Shelf. In Springer International Publishing. pp. 119–135.
16) 甘淑钗, 吴莹, 鲍红艳 and 张经 (2013) 长江溶解有机质三维荧光光谱的平行因子分析. 中国环境科学 33, 655–662.