Microbial reduction of nitrate in the presence of nanoscale zero-valent iron KH Shin, DK Cha Chemosphere 72 (2), 257-262, 2008 | 244 | 2008 |
Effect of kinetics of complexation by humic acid on toxicity of copper to Ceriodaphnia dubia H Ma, SD Kim, DK Cha, HE Allen Environmental Toxicology and Chemistry: An International Journal 18 (5), 828-837, 1999 | 240 | 1999 |
Influence of dissolved organic matter on the toxicity of copper to Ceriodaphnia dubia: Effect of complexation kinetics SD Kim, H Ma, HE Allen, DK Cha Environmental Toxicology and Chemistry: An International Journal 18 (11 …, 1999 | 183 | 1999 |
Adsorption characteristics of dye onto sludge particulates J Wang, CP Huang, HE Allen, DK Cha, DW Kim Journal of Colloid and Interface Science 208 (2), 518-528, 1998 | 180 | 1998 |
Enhanced reduction of nitrate by zero-valent iron at elevated temperatures SC Ahn, SY Oh, DK Cha Journal of Hazardous Materials 156 (1-3), 17-22, 2008 | 176 | 2008 |
A pilot-scale, bi-layer bioretention system with biochar and zero-valent iron for enhanced nitrate removal from stormwater J Tian, J Jin, PC Chiu, DK Cha, M Guo, PT Imhoff Water research 148, 378-387, 2019 | 157 | 2019 |
Enhancing Fenton oxidation of TNT and RDX through pretreatment with zero-valent iron SY Oh, PC Chiu, BJ Kim, DK Cha Water Research 37 (17), 4275-4283, 2003 | 147 | 2003 |
Graphite-mediated reduction of 2, 4-dinitrotoluene with elemental iron SY Oh, DK Cha, PC Chiu Environmental science & technology 36 (10), 2178-2184, 2002 | 135 | 2002 |
Microbial reduction of perchlorate with zero-valent iron A Son, J Lee, PC Chiu, BJ Kim, DK Cha Water research 40 (10), 2027-2032, 2006 | 130 | 2006 |
Zero‐valent iron pretreatment for enhancing the biodegradability of azo dyes JR Perey, PC Chiu, CP Huang, DK Cha Water Environment Research 74 (3), 221-225, 2002 | 121 | 2002 |
Process control factors influencing Nocardia populations in activated sludge DK Cha, D Jenkins, WP Lewis, WH Kido Water Environment Research 64 (1), 37-43, 1992 | 107 | 1992 |
Zero-valent iron pretreatment for enhancing the biodegradability of RDX SY Oh, PC Chiu, BJ Kim, DK Cha Water Research 39 (20), 5027-5032, 2005 | 106 | 2005 |
Reductive dehalogenation of chlorinated ethenes with elemental iron: the role of microorganisms KJ Lampron, PC Chiu, DK Cha Water Research 35 (13), 3077-3084, 2001 | 96 | 2001 |
Phenanthrene degradation in soils co‐inoculated with phenanthrene‐degrading and biosurfactant‐producing bacteria SM Dean, Y Jin, DK Cha, SV Wilson, M Radosevich Journal of environmental quality 30 (4), 1126-1133, 2001 | 95 | 2001 |
Microbial reduction of nitrate in the presence of zero-valent iron and biochar SY Oh, YD Seo, B Kim, IY Kim, DK Cha Bioresource technology 200, 891-896, 2016 | 84 | 2016 |
Biodiesel production from wet municipal sludge: Evaluation of in situ transesterification using xylene as a cosolvent OK Choi, JS Song, DK Cha, JW Lee Bioresource technology 166, 51-56, 2014 | 84 | 2014 |
The short-term toxic effects of TiO2 nanoparticles toward bacteria through viability, cellular respiration, and lipid peroxidation A Erdem, D Metzler, DK Cha, CP Huang Environmental science and pollution research 22, 17917-17924, 2015 | 77 | 2015 |
Heavy metal removal by activated sludge: influence of Nocardia amarae DW Kim, DK Cha, J Wang, CP Huang Chemosphere 46 (1), 137-142, 2002 | 74 | 2002 |
Microbial treatment of high-strength perchlorate wastewater SJ Nor, SH Lee, KS Cho, DK Cha, KI Lee, HW Ryu Bioresource technology 102 (2), 835-841, 2011 | 73 | 2011 |
Enhanced reduction of perchlorate by elemental iron at elevated temperatures SY Oh, PC Chiu, BJ Kim, DK Cha Journal of hazardous materials 129 (1-3), 304-307, 2006 | 72 | 2006 |