研究員:駱尚廉 Dr. Shang-Lien Lo

Email: sllo@ntu.edu.tw 

學歷

Ph.D. , National Taiwan University

國立臺灣大學土木工程學博士

M.S. , Civil Engineering, National Taiwan University

國立臺灣大學土木工程碩士

B.S. , Civil Engineering, National Taiwan University

國立臺灣大學土木工程學士

經歷
  • Science and Technology Research Instiute for DE-Carbonization(STRIDE-C), NTU, Taiwan                        國立臺灣大學新碳勘科技研究中心
           研究員
  • Stanford University 美國史丹福大學
           博士後研究員
專業領域

           給水工程及汙水工程、水質控制、環境數學、土壤與地下水汙染、環境經濟分析

獲獎榮譽:
  • Best Academic Dissertation Award, Chinese Institute of Environmental Engineering, 2023
  • KKNN (KAIST-KU-NTU-NUS) Fellow, 2023
  • VEBLEO Fellow, Material Science, Engineering and Technology, 2022
  • Most Reader’s Article Award, Ministry of Corporate Affairs (MCA), India, 2022
  • IAAM Distinguished Fellow, International Association of Advanced Materials
  • 國立台灣大學優良教學獎(2021)
  • Innovative Leader Award, International Research and Development Centre for Publication, IRDCP, (2021)
  • ASCE Life Member, American Society of Civil Engineers
  • 中華民國環境工程學會Sustainable Environment Research論文被引用次數最高貢獻卓著獎
  • IETI Distinguished Fellow, International Engineering and Technology Institute
  • Outstanding Leadership and Contribution Award on Biomass/ Wastes Energy and Environment, BEE, Tianjin University
  • 台灣環境與資源經濟學會論文獎(博士論文指導)
  • Academician, European Academy of Sciences and Arts
  • 行政院弘揚師道獎章
  • 財團法人宗倬章先生教育基金會宗倬章先生講座
  • 教育部教學40年特優資深教師獎
  • IWA Distinguished Fellow
  • EWRI Fellow, Environmental & Water Resources Institute of ASCE
  • ASCE Fellow, American Society of Civil Engineers
  • Diplomate, WRE, American Academy of Water Resources Engineers
  • BCEEM, American Academy of Environmental Engineers
  • Best Poster Award, IWA World Water Congress
  • Best Paper Award, IWA-ASPIRE Conference & Exhibition
  • 中華民國環境工程學會會士
  • 東元科技文教基金會第18屆機械/能源/環境科技類東元獎
  • 中華水資源管理學會傑出水資源成就獎
  • 內政部下水道建設卓越成就獎
  • 經濟部第12屆全國標準化成就獎
  • 行政院環境保護署一等專業功勛獎章
  • 徐有庠先生紀念基金會綠色科技講座
  • 中國土木水利學會會士
  • ICCE Fellow, International Congress of Chemistry and Environment
  • 中華民國自來水協會卓越功勛獎章
  • 教育部教學傑出獎
  • 國家科學委員會傑出獎
  • 國家科學委員會特約研究人員獎
  • 環境工程學會工程獎章
  • 侯金堆傑出榮譽獎
  • 中國工程師學會十大傑出教授獎
  • 中工會工程論文獎
  • 環境工程學會論文獎
  • 中國土木水利學會學術論文獎
  • 中華水資源管理學會學術論文獎
  • 慶恩基金會綠色科技論文獎
  • 自來水協會研究論文獎
  • 中華民國環境工程學會卓越貢獻獎章
  • 臺灣大學傑出獎
  • 教育部優良教材獎

 

研討會論文

     SCI or SSCI Journal Papers

  • Chuang, W.K., Z.E. Lin, T.C. Lin, S.L. Lo, C.L. Chang, and P.T. Chiueh, 2023, “Spatial Allocation of LID Practices with a Water Footprint Approach”, Science of the Total Environment, 859: 160201.
  • Singh, S., R. Patidar, V.C. Srivastava, P. Kumar, A. Singh, and S.L. Lo, 2023, “Ellipsoid-shaped Copper Oxide as an Effective Peroxymonosulfate Activator for Perfluorooctanoic Acid Decomposition”, Materials Today Communications, 34: 105107.
  • Qiao, Q., S. Singh, R. Patidar, L. Wang, Y. Li, J. Shi, V.C. Srivastava, and S.L. Lo, 2023, “Contribution of Electrolyte in Parametric Optimization of Perfluorooctanoic Acid during Electro-oxidation: Active Chlorinated and Sulfonated By-products Formation and Distribution”, Chemosphere, 312: 137202.
  • Li, Y.F., T, Fang, Y.C. Lee, Y.J. Liu, C.Y. Hu, and S.L. Lo, 2023, “Cationic Surfactants Influencing the Enhancement of Energy Efficiency for Perfluorooctanoic Acid (PFOA) Removal in the Electrocoagulation-flotation (ECF) System”, Chemosphere, 318: 137932.
  • Fakour, H., M. Imani, S.L. Lo, M.H. Yuan, C.K. Chen, S. Mobasser and I. Muangthai, 2023, “Evaluation of Solar Photovoltaic Carport Canopy with Electric Vehicle Charging Potential”, Nature-Scientific Report, 13:2136. doi: 10.1038/s41598-023-29223-6.
  • Huang, Y.F., P.T. Chiueh, and S.L. Lo, 2023, “Carbon Capture of Biochar Produced by Microwave Co-pyrolysis: Adsorption Capacity, Kinetics and Benefits”, Environ. Sci. Pollut. Res., 30(9): 22211-22221.
  • Imani, M., H. Fakour, S.L. Lo, M.H. Yuan, C.K. Chen, S. Mobasser and I. Muangthai, 2023, “Aquavotaics Feasibility Assessment: Synergies of Solar PV Power Generation and Aquaculture Production”, Water, 15: 987; doi:10.3390/w15050967.
  • Singh, S., P. Kumar, R. Patidar, V.C. Srivastava, S.L. Lo, and U.L. Stangar 2023, “Catalytic Oxidation of Bisphenol A with Co3+ Rich Spinel Co3O4: Performance Evaluation with Peroxymonosulfate Activation and Mineralization Mechanism”, J. Environmental Chemical Engineering, 11: 110023.
  • Lin, W.H., H.Y. Wang, J. Kuo, and S.L. Lo, 2023, “Adsorption and Desorption Characteristics of Heavy Metals onto Conventional and Biodegradable Plastics”, Chemosphere, 333: 138920.
  • Kumar. A., E. Singh, R. Mishra, S.L. Lo, and S. Kumar, 2023, “Global Trends in Municipal Solid Waste Treatment Technologies Through the Lens of Sustainable Energy Development opportunity”, Energy, 275: 127471.
  • Chen, H.L., S.L. Lo, J. Kuo, and C.L. Huang, 2023, ‘Estimate Measurment Errors of Household Water Meters using a Large Amount of On-site Data Feedback”, Sustainable Environment Research, 33: 19.
  • Singh, S., R. Patidar, V.C. Srivastava, Q. Qiao, P. Kumar, A. Singh, and S.L. Lo, 2023, “Peroxymonosulfate Activation with α-MnO2/Mn2O3/Mn3O4 Hybrid System: Parametric Optimization and Oxidative Degradation of Organic Dye”, Environ. Sci. Pollut. Res., 30(31): 76660-76674.
  • Huang, Y.F., W.N. Hsia, and S.L. Lo, 2023, “Ultrasound-assisted Leaching and Supported Liquid Membrane Extraction of Waste Liquid Crystal Displays for Indium Recovery”, Sustainable Chemistry and Pharmacy, 35: 101227.
  • Thakur, V., S. Singh, P. Kumar, S. Rawat, V.C. Srivastava, S.L. Lo, and U.L. Štangar, 2023, “Photocatalytic Behaviors of Bismuth-based Mixed Oxides: Types, Fabrication Techniques and Mineralization Mechanism of Antibiotics”, Chemical Engineering J., 475: 146100.
  • Singh, S., R. Patidar, V.C. Srivastava, S.L. Lo, and P.V. Nidheesh, 2023, “A Critical Review on the Degradation Mechanism of Textile Effluent During Electrocatalytic Oxidation: Removal Optimization and Degradation Pathways”, Journal of Environmental Chemical Engineering, 11: 111277.
  • Singh, E., A. Kumar, and S.L. Lo, 2024, “Synergistic Roles of Carbon Dioxide Nanobubbles and Biochar for Promoting Direct CO2 Assimilation by Plants and Optimizing Nutrient Uptake Efficiency”, Environmental Research, 244: 117918.
  • Peng, S.H., and, S.L. Lo, 2024, “Hybrid (Optimal) Selection Model for Phase Change Materials Used in the Cold Energy Storage of Air Conditioning Systems”, Energies, 17: 63.
  • Li, Y.F., C.Y. Ho, Y.J. Liu, Y.C. Lee, C.Y. Hu, and S.L. Lo, 2023, “Enhance Electrocoagulation-Flotation (ECF) Removal Efficiency Perfluorohexanoic Acid (PFHxA) by Adding Surfactants”, Journal of Environmental Chemical Engineering, (Accepted).
  • Li, Y.F., C.W. Wang, C.K. Chen, M.W. Chen, Y.C. Fang, and S.L. Lo, 2023, “Recovering Phosphorus from Human Urine by Electrochemical Precipitation Using Magnesium Alloy Tailings as Electrodes – Lab Scale and Pilot Scale Studies”, Journal of Environmental Engineering (ASCE), (Accepted).
  • Lee, Y.C., Y.F. Li, S.L. Lo, J. Kuo, W. Sun, and C.Y. Hu, 2022, “Decomposition of Perfluorooctanic Acid by Carbon Aerogel with Persulfate Efficient”, Chemical Engineering J., 430: 132900.
  • Li, Y.F., C.Y. Hu, Y.C. Lee, and S.L. Lo, 2022, “Effects of Zinc Salt Addition on Perfluorooctanoic Acid (PFOA) Removal by Electrocoagulation with Aluminum Electrodes”, Chemosphere, 288: 132665.
  • Yuan, M.H., and S.L. Lo, 2022, “Principles of Food-energy-water Nexus Governance”, Renewable & Sustainable Energy Reviews, 155: 111937.
  • Lee, M.G., S.L. Lo, Y.C. Kan, C.H. Chiang, J.H. Chang, Y.M. Su, E.A. Yatsenko, and S.H. Hu, 2022, “Water Quenched Slag from Incinerator Ash Used as Artificial Stone”, Case Studies in Construction Materials, 16: doi:10.1016/ j.cscm.2021.e00827.
  • Imani, M., S.L. Lo, H. Fakour, C.Y. Kuo, and S. Mobasser, 2022, “Conceptual Framework for Disaster Management in Coastal Cities Using Climate Change Resilience and Coping Ability”, Atmosphere, 13(16): doi:10.3390/ atmos13010016.
  • Huang, Y.F., S.L. Chou, and S.L. Lo, 2022, “Gold Recovery from Waste Printed Circuit Boards of Mobile Phones by Using Microwave Pyrolysis and Hydrometallurgical Methods”, Sustainable Environment Research, 32(6): doi:10.1186/ s42834-022-00118-x.
  • Wu, C.I., S.L. Lo, and H.C. Chung, 2022, “Automated Monitoring of a High-Speed Flocculation Flat-Bottomed Sludge Blanket Clarifier Pond during Drought and Flood Conditions”, Water, 14: 1170; doi:10.3390/w14071170.
  • Yuan, M.H., F.C. Lo, C.P. Yu, H.H. Tung Y.S. Chang P.T. Chiueh, H.C. Huang, C.C. Chang, C.Y. Guan, C.W. Wu, Z.X. Xu, and S.L. Lo, 2022, “Nature-based Solutions for Securing Contributions of Water, Food, and Energy in an Urban Environment”, Environ. Sci. Pollut. Res., 29(38): 58222-58230.
  • Su, P.W., and S.L. Lo, 2022, “Satellite Imagery: A Way to Monitor Water Quality for the Future?”, Environ. Sci. Pollut. Res., 29(38): 57022-57029.
  • Lin, C.C., S.L. Lo, and S.Y.H. Liou, 2022, “Application of Synthetic Data to Establish the Working Framework for Multivariate Statistical Analysis of River Pollution Traceability – The Heavy Metals in Nankan River, Taiwan”, Environ. Sci. Pollut. Res., 29(46): 70479-70492.
  • Lin, W.H., J. Kuo, and S.L. Lo, 2022, “Corrigendum to Effect of Light Irradiation on Heavy Metal Adsorption onto Microplastics”, Chemosphere, 309: 136675.
  • Kumar. A., E. Singh, R. Mishra, S.L. Lo, and S. Kumar, 2022, “A Green Approach Towards Sorption of CO2 on Waste Derived Biochar”, Environmental Research, 214: 113954.
  • Mishra, R., E. Singh, A. Kumar, S.L. Lo, and S. Kumar, 2022, “Co-gasification of Solid Waste and Its Impact on Final Product Yields”, Journal of Cleaner Production, 374: 133989.
  • Singh, E., R. Mishra, A. Kumar. S.K. Shukla, S.L. Lo, and S. Kumar, 2022, “Circular Economy-based Environmental Management Using Biochar”, Process Safety and Environmental Protection, 163: 585 – 600.
  • Chuang, W.K., Z.E. Lin, T.C. Lin, S.L. Lo, C.L. Chang, and P.T. Chiueh, 2022, “Spatial Allocation of LID Practices with a Water Footprint Approach”, Science of the Total Environment, 859: 160201.
  • Singh, S., R. Patidar, V.C. Srivastava, P. Kumar, A. Singh, and S.L. Lo, 2022, “Ellipsoid-shaped Copper Oxide as an Effective Peroxymonosulfate Activator for Perfluorooctanoic Acid Decomposition”, Materials Today Communications, 34: 105107.
  • Qiao, Q., S. Singh, R. Patidar, L. Wang, Y. Li, J. Shi, V.C. Srivastava, and S.L. Lo, 2022, “Contribution of Electrolyte in Parametric Optimization of Perfluorooctanoic Acid during Electro-oxidation: Active Chlorinated and Sulfonated By-products Formation and Distribution”, Chemosphere, 312: 137202.
  • Li, Y.F., T, Fang, Y.C. Lee, Y.J. Liu, C.Y. Hu, and S.L. Lo, 2022, “Cationic Surfactants Influencing the Enhancement of Energy Efficiency for Perfluorooctanoic Acid (PFOA) Removal in the Electrocoagulation-flotation (ECF) System”, Chemosphere, 318: 137932.
  • Fakour, H., M. Imani, S.L. Lo, M.H. Yuan, C.K. Chen, S. Mobasser and I. Muangthai, 2022, “Evaluation of Solar Photovoltaic Carport Canopy with Electric Vehicle Charging Potential”, Nature-Scientific Report, 13:2136. doi: 10.1038/s41598-023-29223-6.
  • Huang, Y.F., P.T. Chiueh, and S.L. Lo, 2022, “Carbon Capture of Biochar Produced by Microwave Co-pyrolysis: Adsorption Capacity, Kinetics and Benefits”, Environ. Sci. Pollut. Res., doi:10.1007/s11356-022-23734-x.
  • Singh, S., S. Rawat, R. Patidar, and S.L. Lo, 2022, “Development of Bi2WO6 and Bi2O3-ZnO Heterostructure for Enhanced Phtocatalytic Mineralization of Bisphenol A”, Water Science & Technology, doi:10.2166/wst.2022.402
  • Yuan, M.H., P.T. Chiueh, and S.L. Lo, 2021, “Measuring Urban Food-Energy-Water Nexus Sustainability: Finding Solutions for Cities”, Science of the Total Environment752: 141954.
  • Imani, M., H. Fakour, and S.L. Lo, 2021, “Exploring Climate Disaster Resilience: Insight into City and Zone Levels of Southern Taiwan”, Agriculture11(2): 11020107.
  • Huang, Y.F., P.T. Chiueh, and S.L. Lo*, 2021, “Energy Recovery from Sewage Sludge: Product Characteristics, Heating Value Prediction and Reaction Kinetics”, Chemosphere268: 128783.
  • 10. Singh, S., S.L. Lo, V.C. Srivastava, Q. Qiao, and P. Sharma, 2021, “Mineralization of Perfluorooctanoic Acid by Combined Aerated Electrocoagulation and Modified Peroxi-coagulation Methods”, J. Taiwan Institute of Chemical Engineers118: 169-178.
  • Li, Y.F., W.Y. Chien, Y.J. Liu, Y.C. Lee, S.L. Lo, and C.Y. Hu, 2021, “Perfluorooctanoic Acid (PFOA) Removal by Flotation with Cationic Surfactants”, Chemosphere266: 128949.
  • Qiao, Q., S. Singh, S.L. Lo, J. Jin, Y. Yu, and L. Wang, 2021, “Effect of Current Density and pH on the Electrochemically Generated Active Chloro Species for the Rapid Mineralization of p-substituted Phenol”, Chemosphere275: 129848.
  • Qiao, Q., S. Singh, S.L. Lo, V.C. Srivastava, J. Jin, Y. Yu, and L. Wang, 2021, “Sorption/desorption of Aqueous Mercury ions (Hg2+) onto/from Sulfur-impregnated Attapulgite: Process Optimization, Coexisting Anions and Regeneration Studies”, J. Taiwan Institute of Chemical Engineers119: 204-212.
  • Lo, F.C., M.G. Lee, and S.L. Lo, 2021, “Effect of Coal Ash and Rice Husk Ash Partial Replacement in Ordinary Portland Cement on Pervious Concrete”, Construction & Building Materials286: 122947.
  • Fakour, H., S.L. Lo, N.T. Yoashi, A.M. Massao, N.N. Lema, F.B. Mkhontfo, P.C. Jomalema, N.S. Jumanne, B.H. Mbuya, J.T. Mtweve, and M. Imani, 2021, “Quantification and Analysis of Microplastics in Farmland Soils: Characterization, Sources, and Pathways”, Agriculture11: doi:10.3390/agriculture11040330.
  • Huang, Y.F., S.Y. Wang, and S.L. Lo, 2021, “Indium Recovery from Spent Liquid Crystal Displays by using Hydrometallurgical Methods and Microwave Pyrolysis”, Chemosphere280: 130905.
  • Lin, W.H., J. Kuo, and S.L. Lo, 2021, “Effect of Light Irradiation on Heavy Metal Adsorption onto Microplastics”, Chemosphere285: 131457.
  • Liu, Y.J., C.Y. Hu, and S.L. Lo, 2021, “Comparison of the Degradation of Multiple Amine-containing Pharmaceuticals during Electroindirect Oxidation and Electrochlorination Processes in Continuous System”, Water Research203: 117517.
  • Su, P.W., and S.L. Lo, 2021, “Using Landsat 8 Imagery for Remote Monitoring of Total Phosphorus as a Water Quality Parameter of Irrigation Ponds in Taiwan”, Environ. Sci. Pollut. Res.28: 66687-66694.
  • Sharma, P., H. Joshi, V.C. Srivastava, S. Singh, and S.L. Lo, 2021, “Treatment of Biologically Treated Distillery Spent Wash Employing Electrocoagulation and Reverse-osmosis Treatment Train”, Environmental Technology, 1946596.
  • Chen, C.K., H.C. Liang, and S.L. Lo, 2020, “Feasibility Study of Activated Sludge/Contact Aeration Combined System Treating Oil-Containing Domestic Sewage”, Int. J. Environ. Res. Public Health17: 544; doi:10.3390/ijerph17020544.
  • Huang, Y.F., and S.L. Lo, 2020, “Predicting Heating Value of Lignocellulosic Biomass Based on Elemental Analysis”, Energy191: 116501, 1-7.
  • Yuan, M.H., and S.L. Lo, 2020, “Developing Indicators for Monitoring Food-Energy-Water Sustainability”, Renewable & Sustainable Energy Reviews119: 109565, 1-9.
  • Lee, Y.C., Y.F. Li, M.J. Chen, Y.C. Chen, J. Kuo, and S.L. Lo, 2020, “Efficient Decomposition of Perfluorooctanic Acid by Persulfate with Iron-modified Activated Carbon”, Water Research174: 115618, 1-8.
  • Huang, Y.F., Y.Y. Huang, P.T. Chiueh, and S.L. Lo, 2020, “Heterogeneous Fenton Oxidation of Trichloroethylene Catalyzed by Sewage Sludge Biochar: Experimental Study and Life Cycle Assessment”, Chemosphere249: doi:10.1016/i.chemosphere.2020.126139.
  • Wang, D., C. Wang, M. Ji, L.P. Sun, C.S. Qiu, and S.L. Lo, 2020, “Characterization of Dissolved Organic Matter Removal during Biological Treatment of Commingled Chemical Industrial Wastewater: Relationship with Fluorescent Dissolved Organic Matter Transformation”, Pol. J. Environ. Stud.29(1): 1-16.
  • Lo, F.C., S.L. Lo, and M.G. Lee, 2020, “Effect of Partially Replacing Ordinary Portland Cement with Municipal Solid Waste Incinerator Ashes and Rice Husk Ashes on Pervious Concrete Quality”, Environ. Sci. Pollut. Res., 27: 23742-23760.
  • Yeh, C.J., S.L. Lo, J. Kuo, and Y.C. Chou, 2020, “Optimization of Microwave-enhanced Oxidation of Landfill Leachate by Response Surface Methodology”, Desalination and Water Treatment191: 350-361.
  • Huang, Y.F., M.W. Pan, and S.L. Lo, 2020, “Hydrometallurgical Metal Recovery from Waste Printed Circuit Boards Pretreated by Microwave Pyrolysis”, Resources, Conservation & Recycling, 163: 105090, 1-7.
  • Liu, Y.J., Y.L. Huang, S.L. Lo, and C.Y. Hu, 2020, “Comparing the Effects of Types of Electrode on the Removal of Multiple Pharmaceuticals from Water by Electrochemical Methods”, Water12: 2332; doi:10.3390/w12092332.
  • Liu, Y.J., B. He, C.Y. Hu, and S.L. Lo, 2020, “Removal of Ketoprofen from Water by Sono-activated Persulfate Oxidation”, Water, Air, & Soil Pollution231: 353 doi:10.1007/ s11270-020-04719-3.
  • Huang, Y.F., and S.L. Lo, 2020, “Energy Recovery from Waste Printed Circuit Boards Using Microwave Pyrolysis: Product Characteristics, Reaction Kinetics, and Benefits”, Environ. Sci. Pollut. Res.27: 43274-43282.
  • Chen, H.Y., S.L. Lo, and H.L. Chang, 2020, “Microwave-assisted Synthesis of Titanate Nanotubes Loaded with Platinum with Enhanced Selectivity for Photocatalytic H2 Evolution from Methanol”, Nano15 (10): 2050129; doi: 10.1142/ S1793292020501295.
  • Yuan, M.H., and S.L. Lo, 2020, “Ecosystem Services and Sustainable Development: Perspectives from the Food-energy-water Nexus”, Ecosystem Services46: doi:10.1016/ j.ecoser.2020.101217.
  • Huang, Y.F., P.T. Chiueh, and S.L. Lo, 2020, “Energy Recovery from Sewage Sludge: Product Characteristics, Heating Value Prediction and Reaction Kinetics”, Chemosphere, doi:10.1016/ j.chemosphere.2020.128783.
  • Li, Y.F., W.Y. Chien, Y.J. Liu, Y.C. Lee, S.L. Lo, and C.Y. Hu, “Perfluorooctanoic Acid (PFOA) Removal by Flotation with Cationic Surfactants”, Chemosphere, doi:10.1016/ j.chemosphere. 2020.128949.
  • Fakour, H., and S.L. Lo, 2019, “Formation and Risk Assessment of Trihalomethanes through Different Tea Brewing Habits”, International Journal of Hygiene and Environmental Health222 : 117-124.
  • Zheng, Z.J., M.Y.. Lin, P.T. Chiueh, and S.L. Lo, 2019, “Framework for Determining Optimal Strategy for Sustainable Remediation of Contaminated Sediment: A Case Study in Northern Taiwan”, Science of the Total Environment654 : 822-831.
  • Liu, Y.J., C.Y. Hu, and S.L. Lo, 2019, “Direct and Indirect Electrochemical Oxidation of Amine-containing Pharmaceuticals using Graphite Electrodes”, J. of Hazardous Materials366 : 592-605.
  • Liu, Y.J., H.S. Liu, C.Y. Hu, and S.L. Lo, 2019, “Simultaneous Aqueous Chlorination of Amine-containing Pharmaceuticals”, Water Research155 : 56-65.
  • Yuan, M.H., and S.L. Lo, 2019, “Embedding Scarcity in Urban Water Tariffs: Mapping Supply and Demand in North Taiwan”, Environmental Earth Sciences78 : 325. doi: 10.1007/ s12665-019-8318-9.
  • Yuan, M.H., P.T. Chiueh, and S.L. Lo, 2019, “Understanding Synergies and Trade-offs Between Water and Energy Production at Landfill Sites”, Science of the Total Environment687 : 152-160.
  • Xu, J., and S.L. Lo, 2019, “A Case Study on Gravel-contact- aeration-oxidation System to Treat the Combined Sewage and Rainwater Flowing into Keelung River, Taiwan”, Desalination and Water Treatment156 : 32-37.
  • Lin, Y.C., C.C. Lin, M. Lee, P.T. Chiueh, S.L. Lo, and M.L. Liou, 2019, “Comprehensive Assessment of Regional Food-Energy- Water Nexus with GIS-based Tool”, Resources, Conservation & Recycling151: 104457, 1-7.
  • Cheng, Y.Y., S.L. Lo, C.C. Ho, J.Y. Lin, and S.L. Yu, 2019, “Field Testing of Porous Pavement Performance on Runoff and Temperature Control in Taipei City”, Water11: 2635; doi:10.3390/w11122635.
  • Wang, D., C. Wang, M. Ji, L.P. Sun, C.S. Qiu, and S.L. Lo, 2019, “Characterization of Dissolved Organic Matter Removal during Biological Treatment of Commingled Chemical Industrial Wastewater: Relationship with Fluorescent Dissolved Organic Matter Transformation”, Pol. J. Environ. Stud.29(1) : 1-16.
  • Chen, C.K., H.C. Liang, and S.L. Lo, 2019, “Feasibility Study of Activated Sludge/Contact Aeration Combined System Treating Oil-Containing Domestic Sewage”, Int. J. Environ. Res. Public Health17: 544; doi:10.3390/ijerph17020544.
  • Yuan, M.H., and S.L. Lo, 2019, “Developing Indicators for Monitoring Food-Energy-Water Sustainability”, Renewable & Sustainable Energy Reviews, doi:10.1016/j.rser. 2019.109565.
  • Huang, Y.F., and S.L. Lo, 2019, “Predicting Heating Value of Lignocellulosic Biomass Based on Elemental Analysis”, Energy191: 116501, 1-7.
 

EI Journal Papers

  • Lin, C.C., and S.L. Lo, “The Suspended Solid Induced Impact on Farmland Soil Heavy Metal Accumulation in a Drainage-converged Irrigation Channel – in Changhua County, Taiwan”, J. of the Chinese Institute of Civil and Hydraulic Engineering, 35(7): 731-742.
  • Wu, C.I., H.C. Chung, and S.L. Lo, 2023, “Real-time Precision Multi-Layer Sensor for Sludge Thickness Detection in Water Treatment Plant”, J. of the Chinese Institute of Civil and Hydraulic Engineering, 35(2): 131-139.
  • Wu, C.I., H.C. Chung, and S.L. Lo, 2022, “Real-time Precision Multi-Layer Sensor for Sludge Thickness Detection in Water Treatment Plant”, J. of the Chinese Institute of Civil and Hydraulic Engineering, 34(6): 440-451.
  • Cheng, Y.Y., and S.L. Lo, 2021, “The Real Time Water Quality and Alerting for Wastewater Treatment Plant by Intelligent System”, J. of the Chinese Institute of Civil and Hydraulic Engineering33(6): 451-459.
  • Chen, C.K., G.Y. Chen, H.C. Liang, and S.L. Lo, 2021, “Treating Hotel Wastewater using a Combined Activated Sludge/Contact Aeration System”, Journal of Earth and Environmental Sciences5: 100193.
  • Ho, C.I., and S.L. Lo, 2020, “A Strategic Approach for Water Safety Plan Implementation in Data Mining Technique”, J. of the Chinese Institute of Civil and Hydraulic Engineering32(3): 271-283.
  • Huang, Y.F., P.T. Chiueh, and S.L. Lo, 2019, “CO2 Adsorption on Biochar from Co-torrefaction of Sewage Sludge and Leucaena Wood using Microwave Heating”, Energy Procedia, 158 : 4435-4440.
  • Huang, Y.F., P.T. Chiueh, S.L. Lo, L.P. Sun, C.S. Qiu, and D. Wang, 2019, “Torrefaction of Sewage Sludge by using Microwave Heating”, Energy Procedia, 158 : 67-72.
 
Other Journal Papers
    • Wu, B.C., C.H. Hou, C.H. Lai, W.H. Kuan, S.L. Lo, J.J. Tsai, L.C. Chang, and C.M. Yen, 2021, “Assessment of Innovative Physicochemical Treatment Methods for Removal of Ammonia and Nitrate”, Industrial Pollution Prevention and Control, 153: 1-22.
    • 李育輯、駱尚廉, 2019, “淨水污泥再利用於混凝土之研究”, 自來水, 38(3): 33-40.