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Strength and durability properties of concrete using incinerated biomedical waste ash
Kailash Narayan Katare, Nitin Kumar Samaiya, Yogesh IyerMurthy
Environmental Engineering Research 2023;28(2):220024  Published online April 11, 2022
doi: https://doi.org/10.4491/eer.2022.024
Leaching characteristics and curing mechanism of magnesium phosphate cement solidified zinc-contaminated soil in an acid rain environment
Zhe Wang, Hangjun Zhu, Xuehui Wu, Binpin Wei, Hongli Zhou, Sifa Xu
Environmental Engineering Research 2021;26(4):200256  Published online August 27, 2020
doi: https://doi.org/10.4491/eer.2020.256
Leaching losses of main nutrients by incorporating organic fertilisers into light texture soils Haplic Luvisol
Auksė Burakova, Eugenija Bakšiene
Environmental Engineering Research 2021;26(4):200190  Published online September 7, 2020
doi: https://doi.org/10.4491/eer.2020.190
Tunisian phosphogypsum tailings: Assessment of leaching behavior for an integrated management approach
Raja Zmemla, Ali Sdiri, Ikram Naifar, Mounir Benjdidia, Boubaker Elleuch
Environmental Engineering Research 2020;25(3):345-355.   Published online May 27, 2019
doi: https://doi.org/10.4491/eer.2019.046
Toward high recovery and selective leaching of zinc from electric arc furnace dust with different physicochemical properties
Han Saem Lee, Da So Mi Park, Yuhoon Hwang, Jong Gil Ha, Hyung Sang Shin
Environmental Engineering Research 2020;25(3):335-344.   Published online May 21, 2019
doi: https://doi.org/10.4491/eer.2019.132
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
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
CHROMIUM LEACHABILITY FROM STABILIZED/SOLIDIFIED SOILS UNDER MODIFIED SEMI-DYNEMIC LEACHING CONDITIONS
Deok Hyun Moon
Environmental Engineering Research 2005;10(6):294-305.   Published online December 30, 2005
doi: https://doi.org/10.4491/eer.2005.10.6.294
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
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
DECONTAMINATION OF HEAVY METALS FROM DEWATERED SLUDGE BY Acidithiobacillus ferrooxidans
Am Jang, Hyun-Young Jang, Sung-Min Kim, Jong-Un Lee, In S. Kim
Environmental Engineering Research 2002;7(4):199-206.   Published online December 30, 2002
doi: https://doi.org/10.4491/eer.2002.7.4.199
ASSESSMENT OF LEACHING POTENTIAL OF HAZARDOUS COMPOUNDS FROM DEMOLITION WASTE AND EFFECT OF ON-SITE LANDFILL IN DAM CONSTRUCTION SITE
Kyeong-Ho Lim, Eung-Ju Hwang, Hang-Sik Shin
Environmental Engineering Research 2002;7(2):59-66.   Published online June 30, 2002
doi: https://doi.org/10.4491/eer.2002.7.2.059
A NUMERICAL LEACH MODEL BASED ON EMPIRICAL EQUILIBRIUM RELATIONSHIPS
Joo-Yang Park
Environmental Engineering Research 2001;6(1):29-38.   Published online March 30, 2001
Immobilization of Ion-Exchange Resins with a Mixture of Cement and WEP/Zeolon 900-Na Additives and Radionuclides Leaching
Kwang-Soo Bae, Jae-Owan Lee
Environmental Engineering Research 1997;2(1):61-72.   Published online March 30, 1997
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