Partitioning of hydrophobic organic compounds to sorbed surfactants. 1. Experimental studies SO Ko, MA Schlautman, ER Carraway Environmental science & technology 32 (18), 2769-2775, 1998 | 198 | 1998 |
Characteristics of washed-off pollutants and dynamic EMCs in parking lots and bridges during a storm LH Kim, SO Ko, S Jeong, J Yoon Science of the total Environment 376 (1-3), 178-184, 2007 | 173 | 2007 |
Cyclodextrin-enhanced electrokinetic removal of phenanthrene from a model clay soil SO Ko, MA Schlautman, ER Carraway Environmental science & technology 34 (8), 1535-1541, 2000 | 163 | 2000 |
Modification of coagulation and Fenton oxidation processes for cost-effective leachate treatment HC Yoo, SH Cho, SO Ko Journal of Environmental Science and Health, Part A 36 (1), 39-48, 2001 | 139 | 2001 |
Heavy metal adsorption with biogenic manganese oxides generated by Pseudomonas putida strain MnB1 D Zhou, DG Kim, SO Ko Journal of Industrial and Engineering Chemistry 24, 132-139, 2015 | 102 | 2015 |
Partitioning of hydrophobic organic compounds to hydroxypropyl-β-cyclodextrin: Experimental studies and model predictions for surfactant-enhanced remediation applications SO Ko, MA Schlautman, ER Carraway Environmental science & technology 33 (16), 2765-2770, 1999 | 100 | 1999 |
Effects of thermal modification of a biochar on persulfate activation and mechanisms of catalytic degradation of a pharmaceutical DG Kim, SO Ko Chemical Engineering Journal 399, 125377, 2020 | 97 | 2020 |
Synergistic effects of biogenic manganese oxide and Mn (II)-oxidizing bacterium Pseudomonas putida strain MnB1 on the degradation of 17 α-ethinylestradiol TN Tran, DG Kim, SO Ko Journal of hazardous materials 344, 350-359, 2018 | 94 | 2018 |
Effects of solution chemistry on the partitioning of phenanthrene to sorbed surfactants SO Ko, MA Schlautman, ER Carraway Environmental science & technology 32 (22), 3542-3548, 1998 | 91 | 1998 |
Characterization of the biogenic manganese oxides produced by Pseudomonas putida strain MnB1 S Jiang, DG Kim, J Kim, SO Ko Environmental Engineering Research 15 (4), 183-190, 2010 | 76 | 2010 |
Removal of heavy metals by sawdust adsorption: equilibrium and kinetic studies J Lim, HM Kang, LH Kim, SO Ko Environmental Engineering Research 13 (2), 79-84, 2008 | 72 | 2008 |
Addition of biochar into activated sludge improves removal of antibiotic ciprofloxacin DG Kim, D Choi, S Cheon, SO Ko, S Kang, S Oh Journal of Water Process Engineering 33, 101019, 2020 | 71 | 2020 |
Oxidative degradation of the antibiotic oxytetracycline by Cu@ Fe3O4 core-shell nanoparticles DG Kim, SO Ko Science of the Total Environment 631, 608-618, 2018 | 64 | 2018 |
Cu@ Fe3O4 core-shell nanoparticle-catalyzed oxidative degradation of the antibiotic oxytetracycline in pre-treated landfill leachate DG Kim, SO Ko Chemosphere 191, 639-650, 2018 | 64 | 2018 |
Nonsacrificial template synthesis of magnetic-based yolk–shell nanostructures for the removal of acetaminophen in Fenton-like systems QC Do, DG Kim, SO Ko ACS applied materials & interfaces 9 (34), 28508-28518, 2017 | 64 | 2017 |
Effects of ozonation and coagulation on effluent organic matter characteristics and ultrafiltration membrane fouling K Jeong, DS Lee, DG Kim, SO Ko Journal of Environmental Sciences 26 (6), 1325-1331, 2014 | 58 | 2014 |
Catalytic activity enhancement of a Fe3O4@ SiO2 yolk-shell structure for oxidative degradation of acetaminophen by decoration with copper QC Do, DG Kim, SO Ko Journal of Cleaner Production 172, 1243-1253, 2018 | 56 | 2018 |
Kinetics of nitrate adsorption and reduction by nano-scale zero valent iron (NZVI): Effect of ionic strength and initial pH DG Kim, YH Hwang, HS Shin, SO Ko KSCE Journal of Civil Engineering 20, 175-187, 2016 | 55 | 2016 |
Advanced oxidative degradation of acetaminophen by carbon catalysts: Radical vs non-radical pathways DG Kim, SO Ko Environmental Research 188, 109767, 2020 | 49 | 2020 |
Partitioning of hydrophobic organic compounds to sorbed surfactants. 2. Model development/predictions for surfactant-enhanced remediation applications SO Ko, MA Schlautman Environmental science & technology 32 (18), 2776-2781, 1998 | 48 | 1998 |