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Journal of the Korea Concrete Institute

J Korea Inst. Struct. Maint. Insp.
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  • Korea Citation Index (KCI)
1 
(2013), Hybrid ion exchange - Pressure driven membrane processes in water treatment: A review, Separation and Purification Technology, 116, 253-264.
2 
(1993), Electrochemical Chloride Removal and Protection of Concrete Bridge Components: Laboratory Studies
3 
(2011), Determination of Relevant Parameters Influencing Gas Permeability of Mortars, Construction and Building Materials, 25, 1248-1256.
4 
(2015), Chloride Binding of Synthetic Ca-Al-NO3 LDHs in Hardened Cement Paste, Construction and Building Materials, 93, 1051-1058.
5 
(2016), Self-healing Features in Cementitious Material with Urea-formaldehyde/ epoxy Microcapsules, Construction and Building Materials, 106, 608-617.
6 
(2013), Influence of Layered Double Hydroxides on Microstructure and Carbonation Resistance of Sulphoaluminate Cement Concrete, Construction and Building Materials, 48, 601-609.
7 
(2016), Solid-phase Extraction of Staphylococcal Enterotoxin A in Dairy Products Using an Ion Exchange Resin, Food Control, 1-6.
8 
(2015), Influence of Ion Exchange Resin in Chloride Binding for RC Structures Exposed to Marine Environment
9 
(2007), Equilibrium and Kinetics of Heavy Metal Ion Exchange, Journal of the chinese institute of chemical engineers, 38, 71-84.
10 
(2006), Influence of Compaction on the Interfacial Transition Zone and the Permeability of Concrete, Cement and Concrete Research, 36, 1425-1433.
11 
(2015), Metal Nanoparticles Immobilized on Ion-exchange Resins: A Versatile and Effective Catalyst Platform for Sustainable Chemistry, Chinese Journal of Catalysis, 36, 1157-1169.
12 
(2013), Corrosion of Steel in Concrete, 349-350.
13 
(2009), The Effect of Mechanical Stress on Permeability of Concrete: A review, Cement and Concrete Composites, 31, 213-220.
14 
(2004), Layered Double Hydroxide-like Materials: Nanocomposites for Use in Concrete, Cement and Concrete Research, 34, 1717-1724.
15 
(2003), Permeability and Self-healing of Cracked Concrete as a Function of Temperature and Crack Width, Cement and Concrete Research, 33, 981-985.
16 
(2016), X-ray Computed Microtomography to Study Autogenous Healing of Cementitious Materials Promoted by Superabsorbent Polymers, Cement and Concrete Composites, 65, 83-93.
17 
(2007), Is there a market for Self-healing cement based materials, 18-20.
18 
(2010), Use of Bacteria to Repair Cracks in Concrete, Cement and Concrete Research, 40, 157-166.
19 
(2015), Treatment and Disposal of Spent Radioactive Ion-exchange Resins Produced in the Nuclear Industry, Progress in Nuclear Energy, 78, 47-55.
20 
(2011), Quantification of Crack-healing in Novel Bacteria-based Self-healing Concrete, Cement and Concrete Composites, 33, 763-770.
21 
(2009), Autogenous Healing of Engineered Cementitious Composites Under Wet-dry Cycles, Cement and Concrete Research, 39, 382-390.
22 
(2014), Chloride Adsorption by Calcined Layered Double Hydroxides in Hardened Portland Cement Paste, Materials Chemistry and Physics, 145, 376-386.
23 
(2016), Experimental and Numerical Study on Chloride Transmission in Cracked Concrete, Construction and Building Materials, 127, 425-435.
24 
(2014), Preparation and Quality Assessment of High-purity Ginseng Tsotal Saponins by Ion Exchange Resin Combined with Macroporous Adsorption Resin Separation, Chinese, Journal of Natural Medicines, 12(5), 0382-0392.