All Issue

2017 Vol.54, Issue 5 Preview Page

Technical Report

31 October 2017. pp. 541-548
Abstract
References
1
Altundoğan, H.S., Altundoğan, S., Tümen, F., Bildik, M., 2000. Arsenic removal from aqueous solutions by adsorption on red mud. Waste Management, 20(8), 761-767.
10.1016/S0956-053X(00)00031-3
2
Bang, S., Choe, E.Y. and Kim, K.-W., 2005. Treatment technologies for arsenic removal from groundwater: review paper. Economic and Environmental Geology, 38(5), 599-606.
3
Berg, M., Tran, H.C., Nguyen, T.C., Pham, H.V., Schertenleib, R. and Giger, W., 2001. Arsenic contamination of groundwater and drinking water in Vietnam: A human health threat. Environ-mental Science and Technology, 35(13), 2621-2626.
10.1021/es010027y11452583
4
Bertocchi, A.F., Ghiani, M., Peretti, R., Zucca, A., 2006. Red mud and fly ash for remediation of mine sites contaminated with As, Cd, Cu, Pb and Zn. J. of Hazardous Materials, 134(2), 112-119.
10.1016/j.jhazmat.2005.10.04316326004
5
Bundschuh, J., Farias, B., Martin, R., Storniolo, A., Bhattacharya, P., Cortes, J., Bonorino, G. and Albouy, R., 2004. Groundwater arsenic in the Chaco-Pampean plain, Argentina: case study from Robles county, Santiago del Estero province. Applied Geochemistry, 19(2), 231-243.
10.1016/j.apgeochem.2003.09.009
6
Castro, C.S., Abreu, A.L., Silva, C.L. and Cuerreiro, M.C., 2011. Phenol adsorption by activated carbon produced from spent coffee ground. Water Science and Technology, 64(10), 2059-2065.
10.2166/wst.2011.78622105129
7
Chen, S.L., Dzeng, S.R., Yang, M.H., Chiu, K.H., Shieh, G.M. and Wai, C.M., 1994. Arsenic species in groundwaters of blackfoot disease areas, Taiwan. Environmental Science and Technology, 28(5), 877-881.
10.1021/es00054a01922191829
8
Daifullah, A.A.M., Yakout, S.M. and Elreefy, S.A., 2007. Adsorption of fluoride in aqueous solutions using KMnO4-modified activated carbon derived from steam pyrolysis of rice straw. J. of Hazardous Materials, 147(1-2), 633-643.
10.1016/j.jhazmat.2007.01.06217314006
9
Del Razo, L.M., Rellano, M.A. and Cebrián, M.E., 1990. The oxidation states of arsenic in well-water from a chronic arsenicism area of northern Mexico. Environmental Pollution, 64(2), 143-153.
10.1016/0269-7491(90)90111-O
10
Han, S.W., Kim, D.K., Hwang, I.G., Bae, J.H., 2002. Development of pellet-type adsorbents for removal of heavy metal ions from aqueous solutions using red mud. Industrial and Enginee-ring Chemistry, 8(2), 120-125.
11
Horm, T.R., Kelly, W.R., Wilson, S.D., Roadcap, G.S., Talbott, J.L. and Scott, J.W., 2004. Arsenic geochemistry and distribution in the Mahomet aquifer, Illinois. Illinois Waste Mangement and Research Center. Division of the Illinois Department of Natural Resources.
12
Jeong, E.-D, Kim, H.-S., Park, K.-W. and Paek, U.-H., 1999. A study on physical properties and adsorption characteristics of heavy metal ions of loess. International J. of Environmental Science and Technology, 8(4), 491-496.
13
JICA (Japan International Cooperation Agency) and MRD (Cambodia Ministry of Rural Development), 2002. The study on groundwater development in southern Cambodia. Final Report-summary report, Tokyo, Japan: Kokusai Kogyo Co. Ltd.
14
Kemp, K.C., Baek, S.B., Lee, W.-G., Meyyappan, M. and Kim, K.S., 2015. Activated carbon derived from waste coffee grounds for stable methane storage. Nanotechnology, 26(38), 385602.
10.1088/0957-4484/26/38/38560226329310
15
Ko, I., Lee, S.-W., Kim, J.-Y., Kim, K.-W. and Lee, C.-H., 2004. Removal of arsenite and arsenate by a sand coated with colloidal hematite particle. J. of Soil and Groundwater Environment, 9(1), 63-69.
16
Lee, J.-U., Lee, S.-W., Kim, K.-W., Lee, J.-S. and Chon, H.-T., 2006. Geomicrobiological effects on arsenic behavior in anaerobic sediment from abandoned gold mine area. J. of the Korean Society of Mineral and Energy Resources Engineers, 43(5), 448-457.
17
Maji, S.K., Pal, A. and Pal, T., 2008. Arsenic removal from real-life groundwater by adsorption on laterite soil. J. of Hazardous Materials, 151(2-3), 811-820
10.1016/j.jhazmat.2007.06.06017658682
18
Masscheleyn, P.H., DeLaune, R.D. and Patrick, W.H., 1991. Effect of redox potential and pH on arsenic speciation and solubility in a contaminated soil. Environmental Science and Technology, 25(8), 1414-1419.
10.1021/es00020a008
19
Namane, A., Mekarzia, A., Benrachedi, K, Belhaneche, -B.N. Hellal, A., 2005. Determination of the adsorption capacity of activated carbon made from coffee grounds by chemical activation with ZnCl2 and H3PO4. J. of Hazardous Materials, 119(1-3), 189-194.
10.1016/j.jhazmat.2004.12.00615752865
20
Nriagu, J.O., 1994. Arsenic in the Environment. Part I, Cycling and Characterization. Wiley Interscience, New York, p. 430.
21
Paramguru, R.K., Rath, P.C., Misra, V.N., 2005. Trends in Red Mud Utilization - A Review. Mineral Processing and Extractive Metallurgy Review, 26(1), 1-29.
10.1080/08827500490477603
22
Ponnamperuma, F.N., Tianco, E.M. and Loy, T., 1967. Redox equilibrium in flooded soils: I. The iron hydroxide systems. Soil Science, 103(6), 374-382.
10.1097/00010694-196706000-00002
23
Rahman, I.M.M., Iwakabe, K. and Kawasaki, J., 2008. Laterite-A potential alternative for removal of groundwater arsenic. J. of Applied Sciences and Environmental Management, 12(1), 93-100.
24
Rubinos, D.A. and Barral, M.T., 2013. Fractionation and mobility of metals in bauxite red mud. Environmental Science and Pollution Research, 20(11), 7787-7802.
10.1007/s11356-013-1477-423361174
25
Shin, H.-G. and Kim, C.-G., 2014. Removal of heavy metal in wastewatr with coffee ground. J. of the Korea Organic Resource Recycling Association, 22(4), 44-49.
26
Smedley, P.L. and Kinniburgh, D.G., 2002. A review of the source, behaviour and distribution of arsenic in natural waters. Applied Geochemistry, 17(5), 517-568.
10.1016/S0883-2927(02)00018-5
27
Smedley, P.L., Zhang, M., Zhang, G. and Luo, Z., 2003. Mobilisation of arsenic and other trace elements in fluviola-custrine aquifers of the Huhhot basin, Inner Mongolia. Applied Geochemistry, 18(9), 1453-1477.
10.1016/S0883-2927(03)00062-3
28
Smith, A.H., Goycolea, M., Haque, R. and Biggs, M.L., 1998. Marked increase in bladder and lung cancer in a region of northern Chile due to arsenic in drinking water. American J. of Epidemiology, 147(7), 660-669.
10.1093/oxfordjournals.aje.a0095079554605
29
Tseng, W.P., Chu, H.M., How, S.W., Fong, J.M., Lin, C.S. and Yeh, S., 1968. Prevalence of skin cancer in an endemic area of chronic arsenicism in Taiwan. J. of the National Cancer Institute, 40(3), 453-463.
5644201
30
USGS, 2009. Mineral Commodity Summaries. January 2009, U.S. Geological Survey.
31
Varsanyi, I., Fodre, Z. and Bartha, A., 1991. Arsenic in drinking water and mortality in the southern Great Plain, Hungary. Environmental Geochemistry and Health, 13(1), 14-22.
10.1007/BF0178349124202725
32
Wang, X.S. and Qin, Y., 2005. Equilibrium sorption isotherms for of Cu2+ on rice bran. Process Biochemistry, 40(2), 677-680.
10.1016/j.procbio.2004.01.043
33
Welch, A.H., Westjohn, D.B., Helsel, D.R. and Wanty, R.B., 2000. Arsenic in ground water of the United States: occurrence and geochemistry. Groundwater, 38(4), 589-604.
10.1111/j.1745-6584.2000.tb00251.x
34
Wong, K.K., Lee, C.K., Low, K.S. and Haron, M.J., 2003. Removal of Cu and Pb from electroplating wastewater using tartaric acid modified rice husk. Process Biochemistry, 39(4), 437–445.
10.1016/S0032-9592(03)00094-3
35
Yim, S., Kim, J. and Song, H., 2011. Removal characteristics of Cd and Pb by adsorption on red mud. J. of the Korean Geotechnical Society, 12(7), 39-47.
36
Yin, Y., Herbert, E.A and Huang, C.P., 1997. Kinetics of mercury(II) adsorption and desorption on soil. Environmental Science and Technology, 31(2), 496-503.
10.1021/es9603214
Information
  • Publisher :The Korean Society of Mineral and Energy Resources Engineers
  • Publisher(Ko) :한국자원공학회
  • Journal Title :Journal of the Korean Society of Mineral and Energy Resources Engineers
  • Journal Title(Ko) :한국자원공학회지
  • Volume : 54
  • No :5
  • Pages :541-548
  • Received Date : 2017-08-01
  • Revised Date : 2017-10-19
  • Accepted Date : 2017-10-23