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Desorption Kinetics and Removal Characteristics of Pb-Contaminated Soil by the Soil Washing Method: Mixing Ratios and Particle Sizes
Yunhee Lee, Seong-Wook Oa
Environmental Engineering Research 2012;17(3):145-150.   Published online September 30, 2012
doi: https://doi.org/10.4491/eer.2012.17.3.145
Characterization of Bottom Ash as an Adsorbent of Lead from Aqueous Solutions
Joan B. Gorme, Marla C. Maniquiz, Soon Seok Kim, Young Gyu Son, Yun-Tae Kim, Lee-Hyung Kim
Environmental Engineering Research 2010;15(4):207-213.   Published online December 30, 2010
doi: https://doi.org/10.4491/eer.2010.15.4.207
Copper and Lead Concentrations in Water, Sediments, and Tissues of Asian Clams (Corbicula sp.) in Bung Boraphet Reservoir in Northern Thailand (2008)
Tinnapan Netpae, Chitchol Phalaraksh
Environmental Engineering Research 2010;15(1):35-40.   Published online March 30, 2010
doi: https://doi.org/10.4491/eer.2010.15.1.035
Development and Assessment of a Dynamic Fate and Transport Model for Lead in Multi-media Environment
Yeon Jeong Ha, Dong Soo Lee
Environmental Engineering Research 2009;14(1):53-60.   Published online March 30, 2009
doi: https://doi.org/10.4491/eer.2009.14.1.053
FIXATION OF LEAD CONTAMINANTS IN Pb-DOPED SOLIDIFIED WASTE FORMS
Dongjin Lee, David Chung, Jongyeon Hwang, Hyunjin Choi
Environmental Engineering Research 2007;12(3):101-108.   Published online July 30, 2007
doi: https://doi.org/10.4491/eer.2007.12.3.101
ADSORPTION OF Pb(II) ON METAL OXIDE PARTICLES CONTAINING ALUMINUM AND TITANIUM IN AQUEOUS SOLUTIONS
Moon-Sun Kim, Sung Chul Hong, Jaygwan G. Chung
Environmental Engineering Research 2006;11(2):63-76.   Published online April 30, 2006
doi: https://doi.org/10.4491/eer.2006.11.2.063
THE MICROSTRUCTURE OF Pb-DOPED SOLIDIFIED WASTE FORMS USING PORTLAND CEMENT AND CALCITE
Heechan Yoo, Dongjin Lee
Environmental Engineering Research 2006;11(1):54-61.   Published online March 30, 2006
doi: https://doi.org/10.4491/eer.2006.11.1.054
LEACHING OF LEAD FROM DISCARDED NOTEBOOK COMPUTERS USING THE SCALE-UP TCLP AND OTHER STANDARD LEACHING TESTS
Yong-Chul Jang, Timothy G Townsend
Environmental Engineering Research 2006;11(1):14-27.   Published online March 30, 2006
doi: https://doi.org/10.4491/eer.2006.11.1.014
LEAD LEACHABILITY FROM QUICKLIME TREATED SOILS IN A DIFFUSION CONTROLLED ENVIRONMENT
Deok Hyun Moon
Environmental Engineering Research 2005;10(3):112-121.   Published online June 30, 2005
doi: https://doi.org/10.4491/eer.2005.10.3.112
ADSORPTION OF Pb(II) ON METAL OXIDE PARTICLES CONTAINING ALUMINUM AND TITANIUM IN AQUEOUS SOLUTIONS
Moon-Sun Kim, Sung Chul Hong, Jaygwan G. Chung
Environmental Engineering Research 2005;10(2):45-53.   Published online April 30, 2005
doi: https://doi.org/10.4491/eer.2005.10.2.045
ELECTRON PROBE MICROANALYSIS (EPMA) INVESTIGATION OF LEAD LOCATION ON THE SOLIDIFICATION/STABILIZATION OF PB WASTES
Dongjin Lee
Environmental Engineering Research 2004;9(6):299-307.   Published online December 30, 2004
doi: https://doi.org/10.4491/eer.2004.9.6.299
pH EFFECTS ON LEACHABILITY OF PB-DOPED SOLIDIFIED WASTE FORMS USING PORTLAND CEMENT AND CALCITE
Dongjin Lee
Environmental Engineering Research 2004;9(5):231-237.   Published online October 30, 2004
doi: https://doi.org/10.4491/eer.2004.9.5.231
PERFORMANCE OF pH STATIC LEACHING TEST FOR EVALUATING LEACHABILITY OF SOLIDIFIED WASTE FORMS
Dongjin Lee
Environmental Engineering Research 2004;9(5):223-230.   Published online October 30, 2004
doi: https://doi.org/10.4491/eer.2004.9.5.223
LEACHABILITY OF Pb-DOPED SOLIDIFIED WASTE FORMS USING PORTLAND CEMENT AND CALCITE: III. INSIGHT OF LEACHING MECHANISM
Dongjin Lee
Environmental Engineering Research 2004;9(4):175-183.   Published online August 30, 2004
doi: https://doi.org/10.4491/eer.2004.9.4.175
LEACHABILITY OF PB-DOPED SOLIDIFIED WASTE FORMS USING PORTLAND CEMENT AND CALCITE: I. INVESTIGATION OF X-RAY DIFFRACTION
Dongjin Lee
Environmental Engineering Research 2004;9(3):103-112.   Published online July 30, 2004
doi: https://doi.org/10.4491/eer.2004.9.3.103
LEACHABILITY OF Pb-DOPED SOLIDIFIED WASTE FORMS USING PORTLAND CEMENT AND CALCITE : II. INVESTIGATION OF SEM/EDS
Dong Jin Lee
Environmental Engineering Research 2004;9(2):66-74.   Published online April 30, 2004
doi: https://doi.org/10.4491/eer.2004.9.2.066
The Selective Reaction of Lead and Amorphous Iron with EDTA in Lead Sulfate-contaminated Soil System
Chulsung Kim, Say Kee Ong
Environmental Engineering Research 1998;3(3):167-174.   Published online September 30, 1998
The Biosorption Rate of Lead by Aureobasidium pullulans
Jung-Ho Suh, Dong-Seog Kim, Sang-Jin Oh, Young-Seek Park, Seung-Koo Song
Environmental Engineering Research 1997;2(4):287-290.   Published online December 30, 1997
Numerical modeling of two-dimensional simulation of groundwater protection from lead using different sorbents in permeable barriers
Zehraa B. Masood, Ziad Tark Abd Ali
Published online August 30, 2019    Accepted Manuscript
doi: https://doi.org/10.4491/eer.2019.237
Assessment of the potential of duckweed (Lemna minor L.) in treating lead-contaminated water through phytoremediation in stationary and recirculated set-ups
Lanel Jane A Ubuza, Palcon Cres S Padero, Charie May N Nacalaban, Jasmin T Tolentino, Dominick C Alcoran, Janice C Tolentino, Alexander L Ido, Val Irvin F Mabayo, Renato O Arazo
Published online November 25, 2019    Accepted Manuscript
doi: https://doi.org/10.4491/eer.2019.258
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