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( 2017 | 2016 | 2015 | 2014 | 2013 | 2012 | 2011 | 2010 | 2009 )
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    2017
  1. Zhang, L., Zhang, Z., Sun, R., Liang, S., Chen, G. H., & Jiang, F. (2018). Self-accelerating sulfur reduction via polysulfide to realize a high-rate sulfidogenic reactor for wastewater treatment. Water research, 130, 161-167.
  2. Zhang, L., Lin, X., Zhang, Z., Chen, G. H., & Jiang, F. (2018). Elemental sulfur as an electron acceptor for organic matter removal in a new high-rate anaerobic biological wastewater treatment process. Chemical Engineering Journal, 331, 16-22.
  3. Zhang, Y., Yu, M., Guo, J., Wu, D., Hua, Z. S., Chen, G. H., & Lu, H. (2017). Spatiotemporal heterogeneity of core functional bacteria and their synergetic and competitive interactions in denitrifying sulfur conversion-assisted enhanced biological phosphorus removal. Scientific Reports, 7(1), 10927.
  4. Wang, Y., Wang, C., Wang, Y., Xia, Y., Chen, G., & Zhang, T. (2017). Investigation on the anaerobic co-digestion of food waste with sewage sludge. Applied microbiology and biotechnology, 101(20), 7755-7766.
  5. Wei, Y., Dai, J., Mackey, H. R., & Chen, G. H. (2017). The feasibility study of autotrophic denitrification with iron sludge produced for sulfide control. Water Research.
  6. Jia, Y., Khanal, S. K., Zhang, H., Chen, G. H., & Lu, H. (2017). Sulfamethoxazole degradation in anaerobic sulfate-reducing bacteria sludge system. Water Research, 119, 12-20.
  7. Qiu, Y. Y., Guo, J. H., Zhang, L., Chen, G. H., & Jiang, F. (2017). A high-rate sulfidogenic process based on elemental sulfur reduction: Cost-effectiveness evaluation and microbial community analysis. Biochemical Engineering Journal, 128, 26-32.
  8. Li, X., Luo, J., Guo, G., Mackey, H. R., Hao, T., & Chen, G. (2017). Seawater-based wastewater accelerates development of aerobic granular sludge: A laboratory proof-of-concept. Water research, 115, 210-219.
  9. Xue, W., Hao, T., Mackey, H. R., Li, X., Chan, R. C., & Chen, G. (2017). The role of sulfate in aerobic granular sludge process for emerging sulfate-laden wastewater treatment. Water research, 124, 513-520.
  10. Zeng, Q., Hao, T., Mackey, H. R., Wei, L., Guo, G., & Chen, G. (2017). Alkaline textile wastewater biotreatment: A sulfate-reducing granular sludge based lab-scale study. Journal of Hazardous Materials, 332, 104-111.
  11. Zan, F., Dai, J., Hong, Y., Wong, M., Jiang, F., & Chen, G. (2017). The characteristics of household food waste in Hong Kong and their implications for sewage quality and energy recovery. Waste Management.
  12. Wang, B., Wu, D., Ekama, G. A., Huang, H., Lu, H., & Chen, G. H. (2017). Optimizing mixing mode and intensity to prevent sludge flotation in sulfidogenic anaerobic sludge bed reactors. Water Research.
  13. Guo, G., Wu, D., Hao, T., Mackey, H. R., Wei, L., & Chen, G. (2017). Denitrifying sulfur conversion-associated EBPR: The effect of pH on anaerobic metabolism and performance. Water research, 123, 687-695.
  14. Liang, G., Qin, X., Zou, J., Luo, L., Wang, Y., Wu, M., ... & Li, B. (2018). Electrosprayed silicon-embedded porous carbon microspheres as lithium-ion battery anodes with exceptional rate capacities. Carbon, 127, 424-431.
  15. Ruan B., Guo H.-P., Hou Y., Liu Q., Deng Y., Chen G., Chou S.-L., Liu H.-K., Wang J.-Z. (2018). Carbon-Encapsulated Sn at N-Doped Carbon Nanotubes as Anode Materials for Application in SIBs. ACS Applied Materials and Interfaces,9(43),37682-37693
  16. Gao, M., Zou, K., Deng, Y., Zhao, Z., Li, Y., & Chen, G. (2017). An Unprecedented Case: A Low Specific Surface Area Anatase/N-Doped Carbon Nanocomposite Derived from a New Single Source Precursor Affords Fast and Stable Lithium Storage. ACS applied materials & interfaces, 9(34), 28527-28536.
  17. Deng, Y., Yang, C., Zou, K., Qin, X., Zhao, Z., & Chen, G. (2017). Recent Advances of Mn‐Rich LiFe1‐yMnyPO4 (0.5≤ y< 1.0) Cathode Materials for High Energy Density Lithium Ion Batteries. Advanced Energy Materials.
  18. Niu, L., Wang, W., Pan, S., Zhang, D., & Chen, G. (2017). Multiphase Transport Model for Freeze-drying of Porous Media with Prefabricated Porosity. Huagong Xuebao/CIESC Journal, 1833.
  19. Zhang, L., Chen, G., Berg, E. J., & Tarascon, J. M. (2017). Triggering the In Situ Electrochemical Formation of High Capacity Cathode Material from MnO. Advanced Energy Materials, 7(8).
  20. Zhang, L., Batuk, D., Chen, G., & Tarascon, J. M. (2017). Electrochemically activated MnO as a cathode material for sodium-ion batteries. Electrochemistry Communications, 77, 81-84.
  21. Xie, Y., Deng, Y., Yang, C., Zeng, Z., Li, Y., & Chen, G. (2017). CoO x functionalized IrO 2-Sb 2 O 5-SnO 2 anode with an enhanced activity and stability for electrocatalytic oxygen evolution. Journal of Alloys and Compounds, 696, 257-265.
  22. Yang, C., Deng, Y., Gao, M., Yang, X., Qin, X., & Chen, G. (2017). High-rate and long-life performance of a truncated spinel cathode material with off-stoichiometric composition at elevated temperature. Electrochimica Acta, 225, 198-206.
  23. Geng, P., & Chen, G. (2017). Antifouling ceramic membrane electrode modified by Magnéli Ti 4 O 7 for electro-microfiltration of humic acid. Separation and Purification Technology, 185, 61-71.
  24. Liu, B., Li, X., Zhao, Q., Hou, Y., & Chen, G. (2017). Self-templated formation of ZnFe 2 O 4 double-shelled hollow microspheres for photocatalytic degradation of gaseous o-dichlorobenzene. Journal of Materials Chemistry A, 5(19), 8909-8915.
  25. Yang, C., Tan, H., Deng, Y., Qin, X., Li, Y., & Chen, G. (2017). Importance of synergistic role of cobalt and aluminum on a greatly improved electrochemical performance of Li-rich oxyfluoride spinel at elevated-temperature. Journal of Alloys and Compounds, 728, 612-622.
  26. Yin, R., Fan, C., Sun, J., & Shang, C. (2017). Oxidation of iron sulfide and surface-bound iron to regenerate granular ferric hydroxide for in-situ hydrogen sulfide control by persulfate, chlorine and peroxide. Chemical Engineering Journal.
  27. Yin, R., Ling, L., Xiang, Y., Yang, Y., Bokare, A. D., & Shang, C. (2018). Enhanced photocatalytic reduction of chromium (VI) by Cu-doped TiO2 under UV-A irradiation. Separation and Purification Technology, 190, 53-59.
  28. Guo, K., Wu, Z., Shang, C., Yao, B., Hou, S., Yang, X., ... & Fang, J. (2017). Radical Chemistry and Structural Relationships of PPCP Degradation by UV/Chlorine Treatment in Simulated Drinking Water. Environmental Science & Technology, 51(18), 10431-10439.
  29. Aghdam, E., Xiang, Y., Sun, J., Shang, C., Yang, X., & Fang, J. (2017). DBP formation from degradation of DEET and ibuprofen by UV/chlorine process and subsequent post-chlorination. Journal of Environmental Sciences, 58, 146-154.
  30. Ling, L., Zhang, D., Fan, C., & Shang, C. (2017). A Fe (II)/citrate/UV/PMS process for carbamazepine degradation at a very low Fe (II)/PMS ratio and neutral pH: The mechanisms. Water research, 124, 446-453.
  31. Hou, S., Ling, L., Shang, C., Guan, Y., & Fang, J. (2017). Degradation kinetics and pathways of haloacetonitriles by the UV/persulfate process. Chemical Engineering Journal, 320, 478-484.
  32. Ling, L., Zhang, D., Fang, J., Fan, C., & Shang, C. (2017). A novel Fe (II)/citrate/UV/peroxymonosulfate process for micropollutant degradation: Optimization by response surface methodology and effects of water matrices. Chemosphere.
  33. Fang, J., Zhao, Q., Fan, C., Shang, C., Fu, Y., & Zhang, X. (2017). Bromate formation from the oxidation of bromide in the UV/chlorine process with low pressure and medium pressure UV lamps. Chemosphere.
  34. Pan, Y., Cheng, S., Yang, X., Ren, J., Fang, J., Shang, C., ... & Zhang, X. (2017). UV/chlorine treatment of carbamazepine: Transformation products and their formation kinetics. Water research, 116, 254-265.

    2016
  35. Zan, F., Hao, T., Chi, K., Ekama, G.A., and Chen, G. H. 2016. Using sulfite pretreatment to improve the biodegradability of waste activated sludge. RSC Advances, 6, 71875-71881.
  36. Van Ben Brand, T.P.H., Roest, K., Chen, G.H., Brdjanovic, D. and Van Loosdrecht, M.C.M. 2016. Adaptation of Sulfate-Reducing Bacteria to Sulfide Exposure, Environmental Engineering Science, 33, 242-249.
  37. Qian., J., Wei, L., Liu, R., Jiang, F., Hao, X. and Chen, G.H. 2016. An exploratory study on the pathways of Cr (VI) reduction in sulfate-reducing Up-flow Anaerobic Sludge Bed (UASB) reactor. Scientific Reprts, 6, 23694.
  38. Van Ben Brand, T.P.H., Roest, K., Chen, G.H., Brdjanovic, D. and Van Loosdrecht, M.C.M. 2016. Adaptation of Sulfate-Reducing Bacteria to Sulfide Exposure, Environmental Engineering Science, 33, 242-249.
  39. Mackey, H.R., Rey Morito, G., Hao, T. and Chen, G.H. 2016. Pursuit of urine nitrifying granular sludge for decentralised nitrite production and sewer gas control. Chemical Engineering Journal, 289, 17-27.
  40. Guo, G., Wu, D., Hao, T., Mackey. H.R., Wei, L., Wang, H.G. and Chen, G.H. 2016. Functional bacteria and process metabolism of the Denitrifying Sulfur conversion-associated Enhanced Biological Phosphorus Removal (DS-EBPR) system: An investigation by operating the system from deterioration to restoration. Water Research, 85, 289-299.
  41. Zhang, L., Lin, X., Wang, J., Jiang, F., Wei, L., Chen, G.H. and Hao, X. 2016. Effects of Lead and Mercury on Sulfate-Reducing Bacterial Activity in a Biological Process for Flue Gas Desulfurization Wastewater Treatment. Scientific Reports, 6, 30455.
  42. Hao, T., Luo, J., Su, K., Wei, L., Mackey, H.R., Chi, K. and Chen G.H. 2016. Example study for granular bioreactor stratification: Three-dimensional evaluation of a sulfate-reducing granular bioreactor. Scientific Reports, 6, 31718.
  43. Wu. D., Ekama, G.A., Chui, H.K., Wang, B., Cui, Y.X., Hao, T.W., Van Loosdercht, M.C.M. and Chen, G.H. 2016. Large-scale demonstration of the sulfate reduction autotrophic denitrification nitrification integrated (SANI®) process in saline sewage treatment. Water Research, 100, 496-507.
  44. Gan, W., Huang, H., Yang, X., Peng, Z. and Chen, G.H. 2016. Emerging investigators series: Disinfection by-products in mixed chlorine dioxide and chlorine water treatment. Environmental Science: Water Research and Technology, 2, 838-847.
  45. Yin, C., Meng, F., Meng, Y. and Chen, G.H. 2016. Differential ultraviolet-visible absorbance spectra for characterizing metal ions binding onto extracellular polymeric substances in different mixed microbial cultures. Chemosphere, 159, 267-274.
  46. Hao, T., Mackey, H.R., Guo, G., Liu, R. and Chen, G.H. 2016. Resilience of sulfate-reducing granular sludge against temperature, pH, oxygen, nitrite, and free nitrous acid. Applied Microbiology and Biotechnology, 100, 8563-8572.
  47. Tsui, T.H., Hao, T. and Chen, G.H. 2016. Gas-enhanced operation and stepwise organic stressing as a new alternative in realising successful sludge granulation in high-rate anaerobic bioreactor for wastewater treatment. HKIE Transactions Hong Kong Institution of Engineers, 23, 222-229.
  48. Guo, G., Wu, D., Hao, T., Mackey, H.R., Wei, L., Lu, H. and Chen, G.H. 2016. Granulation of susceptible sludge under carbon deficient conditions: A case of denitrifying sulfur conversion-associated EBPR process. Water Research, 103, 444-452.
  49. Yamg, W., Lu, H., Khanal, S.K., Zhao, Q., Meng, L. and Chen, G.H. 2016. Granulation of sulfur-oxidizing bacteria for autotrophic denitrification. Water Research, 104, 507-519.
  50. Tsui, T.H., Chen, L., Hao, T. and Chen, G.H. 2016. A super high-rate sulfidogenic system for saline sewage treatment. Water Research, 104, 147-155.
  51. Liu, X., Dai, J., Wu, D., Jiang, F., Chen, G.H., Chui, H.K. and van Loosdrecht, M.C.M. 2016. Sustainable application of novel water cycle using seawater for toilet flushing. Engineering, 2, 460-469.
  52. Mbaya, A.M.K., Dai, J. and Chen G.H. 2017. Potential benefits and environmental life cycle assessment of equipping buildings in dense cities for struvite production from source-separated human urine. Journal of Cleaner Production, 143, 288-302.
  53. Xiang, Y., Fang, J. and Shang, C. 2016. Kinetics and pathways of ibuprofen degradation by the UV/chlorine advanced oxidation process. Water Research, 90, 301-308.
  54. Chen, Z., Fang, J., Fan, C. and Shang, C. 2016. Oxidative degradation of N-Nitrosopyrrolidine by the ozone/UV process: Kinetics and pathways. Chemosphere, 150, 731-739.
  55. Yang, X., Sun, J., Fu, W., Shang, C., Li, Y., Chen Y., Guan, W. and Fang, J. 2016. PPCP degradation by UV/chlorine treatment and its impact on DBP formation potential in real waters. Water Research, 98, 309-318.
  56. Ling, L., Sun, J., Fang, J. and Shang, C. 2016. Kinetics and mechanisms of degradation of chloroacetonitriles by the UV/H2O2 process. Water Research, 99, 209-215.
  57. Ling, L., Wang, C., Ni, M. and Shang, C. 2016. Enhanced photocatalytic activity of TiO2/single-walled carbon nanotube (SWCNT) composites under UV-A irradiation. Separation and Purification Technology, 169, 273-278.
  58. Wu, Z, Fang, J, Xiang, Y., Shang, C., Li, X., Meng, F. and Yang, X. 2016. Roles of reactive chlorine species in trimethoprim degradation in the UV/chlorine process: Kinetics and transformation pathways. Water Research, 104, 272-282.

    2015
  59. C. Yin, F. G. Meng and G. H. Chen (2015). Spectroscopic characterization of extracellular polymeric substances from a mixed culture dominated by ammonia-oxidizing bacteria. Water Research, 68, pp. 740-749.
  60. J. Qian, H. Lu, and G. H. Chen (2015). Thiosulfate drives a new S cycle in wastewater treatment: Mechanisms and Kinetics. Water Research, 69, pp.295-306.
  61. J. Qian J., H. Lu, Feng, J., G. A. Ekama, and G. H. Chen (2015). Beneficiary co-treatment of simple wet flue gas desulfurization and freshwater sewage treatment through development of MD-SANI. Chemical Engineering Journal, 262, pp.109-118.
  62. T. W. Hao, J. H. Luo, H. R. Mackey, H. Lu, L. Wei, and G. H. Chen (2015). Physiochemical and biological characterization of long-term operated anaerobic granular sludge in the SANI process. Water Research, 71, 74-78.
  63. G. H. Chen and Hiroaki Ozaki (2015). Newly developed treatment technology for saline Sewage and wastewater‐moving from Pilot to Full Scale Application of SANI® Process (invited article) . Journal of Environmental Conservation Engineering, published by J-Stage, Japan (in press).
  64. Jian Qian, R. L. Liu, W. Li, H. Lu, and G. H. Chen. (2015). System Evaluation and Microbial Analysis of a Sulfur Cycle-based Wastewater Treatment Process for Co-treatment of Simple Wet Flue Gas Desulfurization Wastes with Freshwater Sewage. Water Research, 80, pp.189-199.
  65. J. Wang, S.Y, Li, F. Jiang, K. Wu, G.L. Liu, H. Lu and G.H. Chen (2015). A modified oxic-settling-anaerobic activated sludge process using gravity thickening for exess sludge reduction. Scientific reports, 5.
  66. J. Luo, L. Wei, T. Hao, W. Xue, H.R. Mackey and G.H. Chen (2015). Effect of L-tyrosine on aerobic sludge granulation and its stability. RSC Advances, 105, pp.86513-86521.
  67. W.T. Tang, J. Dai, R. Liu, G.H. Chen (2015). Microbial ureolysis in sweater-catalsed urine phosphorus recovery system: Kinetic study and reactor verification . Water Research, 87, pp. 10-19.

  68. 2014
  69. F. Meng, G. Su, Y. Hu, H. Lu, L. N. Huang, and G. H. Chen (2014). A novel ANAMMOX biofilm reactor with enhanced mass transfer – Meeting more stringent discharge regulations of nitrogen . Water Research. 58, pp.82-91.
  70. D. Guan, W. C. Fung, F. T. K. Lau, C. Deng, A. Leung, J. Dai, and G. H. Chen (2014). Pilot trial of a compact macro-filtration membrane bioreactor for saline wastewater treatment. Water Science & Technology. 70(1), pp.120-124.
  71. Tessa P. H. van den Brand, K. Roest, D. Brdjanovic, G. H. Chen, and M. C. M. van Loosdrecht (2014). Temperature effect on acetate and propionate consumption by sulphate reducing bacteria in saline wastewater . Applied Microbiology and Biotechnology, 98(9), pp.4245-4255.
  72. Tessa P. H. van den Brand, K. Roest, D. Brdjanovic, G. H. Chen, and M. C. M. van Loosdrecht (2014). Influence of acetate and propionate on sulfate reducing bacteria activity . Journal of Applied Microbiology, 117(6), pp.1839-47.
  73. J. H. Luo, T. W. Hao, L. Wei, H. R. Mackey, Z. Q. Lin, and G. H. Chen (2014). Impact of influent COD/N ratio on stability of aerobic granule sludge . Water Research, 62, pp.127-135.
  74. T. W. Hao, P. Y. Xiang, H. R. Mackey, H. Lui, D. Wu, H. K. Chui, and G. H. Chen (2014). A review of biological sulfur conversions in wastewater treatment. Water Research, 65, pp.1-21.
  75. J. Dai, W. T. Tang, Y. S. Zheng, H. R. Mackey, M. C. M. van Loosdrecht and G. H. Chen (2014). An exploratory study on seawater-catalyzed urine phosphorus recovery . Water Research, 66, pp.75-84.
  76. H. R. Mackey, Y. S. Zheng, Dai. Ji, and G. H. Chen (2014). Combining seawater toilet flushing and urine separation for economic phosphorus recovery and space-saving nitrogen removal-a lab-scale trial. Water Science & Technology, 70 (6), pp 1065-1073.

  77. 2013
  78. D. Wu, G. Ekama, H. Lu, H. K. Chui, W. T. Liu, D. Brdjonovic, M. C. M. van Loosdrecht and G. H. Chen (2013). A new biological phosprorus removal process in association of sulfur cycle. Water Research, 47, pp.3057-3069.
  79. C. Wang, J. Dai, C. Shang and G. H. Chen (2013). Removal of aqueous fullerene nC60 from wastewater by alum-enhanced primary treatment. Separation and Purification Technology, 11, pp.61-66.
  80. J. Qian, F. Jiang, H. K. Chui, M. C. M. van Loosdrecht and G. H. Chen (2013). Industrial flue-gas desulphurisation waste may offer an opportunity to facilitate SANI application for significant sludge minimization in freshwater wastewater treatment . Water Science & Technology, 67(12), pp.2822-2826.
  81. F. Meng, Y. Wang, H. Li-Nan, J. Li, F. Jiang, S. Li, and G. H. Chen (2013). A novel nonwoven hybrid bioreactor (NWHBR) for enhancing simultaneous nitrification and denitrification. Bioengineering & Biotechnology, 110(7), pp.1903-1912.
  82. T. Hao, H. Lui, H.K. Chui, M. C. M. van Loosdrecht and G. H. Chen (2013). Granulation of sulfate-reducing sludge for compact SANI process for saline sewage treatment. Water Science & Technology, 68(3), pp.560-566.
  83. F. Jiang, L. Zhang, G.-L. Peng, S.-Y. Liang, J. Qian, L. Wei, and G. H. Chen (2013). A novel approach to realize SANI process for freshwater wastewater treatment- use of wet flue gas desulfurization effluent as sulfur source . Water Research, 47(15), pp.5573-5782.
  84. T. W. Hao, L. Wei, H. Lu, H. K. Chui, H. R. Mackey, M. C. M van Loosdrecht, and G. H. Chen (2013). Characterization of sulfate reducing granular sludge in the SANI process. Water Research, 47, pp.7042-7052.
  85. F. Jiang, Z.-S. Liang, G.-L. Peng, J. Qian and G. H. Chen (2013). Nitrogen removal capacity of simultaneously autotrophic and heterotrophic denitrification in a sewer receiving nitrified source-separated urine . Water Practice and Technology, 8(1), pp.33-40.
  86. J. Dai, C. Shang, K.-M. Chau, Y.-K. Tse, C.-F. Lee, G. H. Chen, J. Fang, and L. Zhai (2013). The Impact of chlorine disinfection on the BOD level in Chemically Enhanced Primary Treatment effluent . Water Science & Technology, 68(2), pp.380-386.
  87. K. Wu, S. Li, F. Jiang, J. Wang, G. Liu, and G. H. Chen (2013). A new Oxic-Setting-Anaerobic (NOSA®) activated sludge process for minimizing excess sludge in secondary biological treatment plant: a pilot scale evaluation on absorption-biodegradation Process. Water Science & Technology, 68(3), pp.530-536.
  88. D. Wu, G. Ekama, H. G. Wang, L. Wei, H. Lu, H. K. Chui, W. T. Liu, D. Brdjanovic, M. C. M. van Loosdrecht and G. H. Chen. (2013). Simultaneous nitrogen and phosphorus removal in the denitriifying sulfur cycle-associated EBPR process. Water Research, 49, pp. 251-264.

  89. 2012
  90. B. Yang, G. H. Chen, and Guohua Chen (2012). Submerged membrane bioreactor for treatment of simulated restaurant wastewater . Separation and Purification Tchnology, 88, pp.184-190.
  91. Lu H., Ekama G. A, Wu D., van Loosdrecht M. C. M. and G. H. Chen (2012). SANI process realizes sustainable saline sewage treatment for saline water supply: steady-state model-based evaluation of pilot scale trial of the process . Water Research, 46(2), pp.475-490.
  92. D. Wu, H. Lu, H. K. Chui, M. C. M. van Loosdrecht and G. H. Chen (2012). Phosphorus release and up-take during start-up of a covered and non-aerated sequencing batch reactor with separate feeding of VFA and sulfate. Water Science & Technology, 65(5), pp.840-844.
  93. J. Dai, C. Wang, C. Shang, N. Graham and G. H. Chen (2012). Comparison Escherichia coli (E. coli) AMC 198 cytotoxicity by different fullerene suspensions (nC60). Chemosphere, 87. pp.362-368.
  94. H. Lu, D. Wu, F. Jiang, G. A. Ekama, M. C. M., van Loosdrecht and G. H Chen (2012). SANI process realizes sustainable saline sewage treatment for saline water supply: pilot-scale evaluation of the process . Biotechnology & Bioengineering, 109, pp.2778-2789.
  95. F. Xiao, X. R. Zhang, H. Y. Zhai, I. M. C. Lo, G. H. Chen, and G. L. Tipoe (2012). New halogenated disinfection byproducts in swimming pool water and their permeability across skin. Environmental Science and Technology, 46, pp.7112-7119.
  96. Z. Zhou, F. Meng, S-R. Chae, G. Huang, W. Fu, X. Jia, S. Li, and G. H. Chen (2012). Microbial transformation of biomacromolecules in a membrane bioreactor: Implications for membrane. PLos One, 7(8), e40819 22859954.
  97. M. C. M. van Loosdrecht, D. Brdjonovic, H. K. Chui and G. H. Chen (2012). A source for toilet flusing and for cooling, sewage treatment benefits and phorphrous recovery: direct use of seawater in an age of rapid urbanization . Water 21, October, pp. 17-20.
  98. G. H. Chen, H. K Chui, H. Lui, and J. Feng (2012). An innovative Triple Water Supply system and a novel SANI® process to alleviate water shortage and pollution problem for water-scarce coastal areas in China . Journal of Water Sustainability, 2(2), pp.121-129.

  99. 2011
  100. H. Lu, D. Wu, Daniel, T. W. Tang, G. H. Chen, and M. C. M. van Loosdrecht (2011). Pilot evaluation of SANI process for sludge minimization and greenhouse gas reduction in saline sewage treatment. Water Science & Technology, 63(10), pp. 2149-2154.
  101. P. Bai, J. Wang, and G. H. Chen (2011). A Real Trial of a long-term non-fouling membrane bioreactor for saline sewage treatment. Water Science & Technology: Water Supply, 63(7), pp.1519-1523.
  102. F. Jiang, Y. Chen, H. R. MacKey, G. H. Chen and M. C. M. van Loosdrecht (2011). Urine Nitrification and Sewer Discharge to Realize In-sewer Denitrification to Simplify Sewage Treatment in Hong Kong. Water Science & Technology, 64(3), pp.618-626.
  103. G. A. Ekama, J. A. Wilsenach and G. H. Chen (2011). Saline sewage treatment and source separation of urine for more sustainable urban development. Water Science & Technology, 64(6), pp.1307-1316.
  104. J. Wang, M. Shi, D. Wu, H. Lu, M. F. Shao, T. Zhang, M. C. M. van Loosdrecht and G. H. Chen (2011). Microbial community of sulfate-reducing up-flow sludge bed in the SANI process for saline sewage treatment. Applied Microbiology and Biotechnology, 90(6), pp.2015-25.
  105. R. W. K. Leung, D. C. H. Li, W. K. Yu, H. K. Chui, T. O. Lee, M. C. M. van Loosdrecht and G. H. Chen (2011). Integration of seawater and grey water reuse to maximize alternative water resource for coastal Areas: The Case of the Hong Kong International Airport. Water Science & Technology, 65(3), pp.410-417.

  106. 2010
  107. Abdeen, Wu Di, Lu Hui, G. H. Chen and M. C. M van Loosdrecht (2010). Fecal coli removal in SANI process for saline sewage treatment . Water Science & Technology/ Water Science & Technology: Water Supply, 62(11), pp. 2564-2570.
  108. P. Bai, J. Wang, X. Chen, H. Ying, and G. H. Chen (2010). An innovative membrane bioreactor for saline sewage treatment . Desalination and Water Treatment, 18, pp.297-301.
  109. K. Roest, D. Brdjanovic, G. H. Chen, and M. C.M. van Loosdrecht (2010). Saline water as alternative water resource (in Dutch) (invited paper). H2O, 11, 2010.
  110. X. H. Guan, D. He, J. Ma, G. H. Chen (2010). Application of permanganate in the oxidation of micropollutants: a mini review. Frontiers of Environmental Science and Engineering in China, 4 (4), pp. 405-413.

  111. 2009
  112. H. Lui, J. Wang, S. Li, G. H. Chen, M. C. M. van Loosdrecht and G. Eakma (2009). Steady state model-based evaluation of a novel sulfate reduction-autotrophic denitrification-nitrification integrated (SANI) process for saline wastewater treatment. Water Research, 43, pp.3613-3621.
 
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