- [1]Chen, W.; Qian, C.; Zhou, K.-G.; Yu, H.-Q.*.Molecular spectroscopic characterization of membrane fouling: A critical review[J].Chem, 2018, 4: 1-18.
- [2]Teng, C.-Y.; Zhou, K.-G.; Peng, C.-H.; Chen, W.*.Characterization and treatment of landfill leachate: A review[J].Water Res., 2021, 203: 117525.
- [3]Chen, W.; Yu, H.-Q.*.Advances in the characterization and monitoring of natural organic matter using spectroscopic approaches[J].Water Res., 2021, 190: 116759.
- [4]Chen, W.; Teng, C.-Y.; Qian, C.; Yu, H.-Q.*.Characterizing properties and environmental behaviors of dissolved organic matter using two-dimensional correlation spectroscopic analysis[J].Environ. Sci. Technol., 2019, 53 (9) : 4683–4694.
- [5]Guan, Y.-F.#; Qian, C.#; Chen, W.*; Huang, B.-C.; Wang, Y.-J.; Yu, H.-Q.*.Interaction between humic acid and protein in membrane fouling process: A spectroscopic insight[J].Water Res., 2018, 145: 146-152.
- [6]Chen, W.; Qian, C.; Hong, W.-L.; Cheng, J.-X.*; Yu, H.-Q.*.Evolution of membrane fouling revealed by label-free vibrational spectroscopic imaging[J].Environ. Sci. Technol., 2017, 51 (17) : 9580–9587.
- [7]Chen, W.; Habibul, N.; Liu, X.-Y.; Yu, H.-Q.*.FTIR and synchronous fluorescence heterospectral two-dimensional correlation analyses of the binding characteristics of copper to dissolved organic matter[J].Environ. Sci. Technol., 2015, 49: 2052-2058.
- [8]Chen, W.; Qian, C.; Liu, X.-Y.; Yu, H.-Q.*.Two-dimensional correlation spectroscopic analysis on the interaction between humic acids and TiO2 nanoparticles[J].Environ. Sci. Technol., 2014, 48 (19) : 11119-11126.
- [9]Liu, X.-Y.#; Chen, W.#; Qian, C.; Yu, H.-Q.*.Interaction between dissolved organic matter and long-chain ionic liquids: A microstructural and spectroscopic correlation study[J].Envrion. Sci. Technol., 2017, 51 (9) : 4812–4820.
- [10]Chen, W.*; Peng, L.; Hu, K.-R.; Zhang, Z.; Peng, C.-H.; Teng C.-Y.; Zhou K.-G.*.Spectroscopic response of soil organic matter in mining area to Pb/Cd heavy metal interaction: A mirror of coherent structural variation[J].J. Hazard. Mater., 2020, 393: 122425.
- [11]Teng, C.-Y.; Zhou, K.-G.; Yang, W.-H.; Zhang, X.-K.; Peng, C.-H.; Chen, W.*.Unveiling the degradation of membrane concentrated landfill leachate during enhanced photocatalysis using spectroscopic approaches[J].J. Water Process Eng., 2021, 43: 102220.
- [12]Teng, C.-Y.; Zhou, K.-G.; Zhang, Z.; Peng, C.-H.; Chen, W.*.Elucidating the structural variation of membrane concentrated landfill leachate during Fenton oxidation process using spectroscopic analyses[J].Environ. Pollut., 2020, 256: 113467.
- [13]Zhang, E.-J.; Zhou, K.-G.; Zhang, X.-K.; Peng, C.-H.; Chen, W.*; He, D.-W.*.Separation and recovery of arsenic from As, Cu, and Zn rich leaching liquor using a reduction-crystallization approach[J].RSC Adv., 2021, 11 (36) : 22426-22432.
- [14]Xing, Y.; Zhou, K.-G.; Zhang, X.-K.*; Lei, Q.-Y.; Peng, C.-H.; Shi, Y.; Chen, W.*.Application of recycled ferric chloride for alkalinity regulation of bauxite residue[J].J. Clean. Prod., 2021, 305: 127174.
- [15]Lei, Q.-Y.; He, D.-W.*; Zhou, K.-G.; Zhang, X.-K.; Peng, C.-H.; Chen, W.*.Separation and recovery of scandium and titanium from red mud leaching liquor through a neutralization precipitation-acid leaching approach[J].J. Rare Earth., 2021, 39 (9) : 1126-1132.
- [16]Zhang, X.-K.; Zhou, K.-G.; Lei, Q.-Y.; Xing, Y.; Peng, C.-H.; Chen, W.*.Stripping of Fe(III) from Aliquat 336 by NaH2PO4: Implication for rare-earth elements recovery from red mud[J].Sep. Sci. Technol., 2021, 56 (2) : 301-309.
- [17]Zhang, X.-K.; Zhou, K.-G.; Wu, Y.-H.-Z.; Lei, Q.-Y.; Peng, C.-H.; Chen, W.*.Separation and recovery of iron and scandium from acid leaching solution of red mud using D201 resin[J].J. Rare Earth., 2020, 38 (12) : 1322-1329.
- [18]Zhang, Z.; Teng, C.-Y.; Zhou, K.-G.; Peng, C.-H.; Chen, W.*.Degradation characteristics of dissolved organic matter in nanofiltration concentrated landfill leachate during electrocatalytic oxidation[J].Chemosphere, 2020, 255: 127055.
- [19]Qian, C.; Chen, W.; Gong, B.; Yu, H.-Q.*.Determination of saccharides in environments using a sulfuric acid-fluorescence approach[J].Environ. Sci. Technol., 2020, 54 (11) : 6632–6638.
- [20]Liu, X.-Y.; Chen, W.; Yu, H.-Q.*.Probing protein-induced membrane fouling with in-situ attenuated total reflectance fourier transform infrared spectroscopy and multivariate curve resolution-alternating least squares[J].Water Res., 2020, 183: 116052.