- جهانگیری، ش، ب. سوری و ه. بدخشان. 1390. رابطه خصوصیات مختلف فیزیکوشیمیایی برخی خاکهای آهکی حوزه آبخیز دشت قروه با آرسنیک خاک. مجله پژوهشهای خاک (پذیرش شده).
- خداکرمی، ل.، ع. سفیانیان، الف محمدی توفیق و ن. میرغفاری. 1390. بررسی غلظت عناصر سنگین مس، روی و آرسنیک خاک با استفاده از RS و GIS، مطالعه موردی: حوزه کبودرآهنگ، رزن و خونجین-تلخاب در استان همدان. مجله کاربرد سنجش از دور و GIS در علوم منابع طبیعی .سال دوم. شماره 1.صفحات 92-79
- سازمان زمینشناسی و اکتشافات معدنی کشور. 1999. نقشه 100000/1 زمینشناسی.
- سیاره، ع، م. فنودی و الف دادستان. 1386. بررسی های زمینشناسی زیست محیطی در قروه-بیجار، گزارش مقدماتی، سازمان زمینشناسی و اکتشافات معدنی کشور.
- محمدی، ج. 1385. آمار مکانی، انتشارات پلک، ص 279-262.
- Ayalew, L., H. Yamagishi, H. Marui and T. Kanno. 2005. GIS-based susceptibility mapping with comparisons of result from methods and verifications. The Journal of Engineering Geology, 81: 432-445 pp.
- Bai, Sh. J., Wang. G.N., Lu. P.G., Zhou. Sh.Sh., Ho and S.N., Xu. 2010. GIS based logistic regression for landslide susceptibility mapping of the Zhongxian segment in the Three gorges area, china. Geomorphology, 115:23-31.
- Beuerlein and W. Schmidt. 1993. Grid soil sampling and fertilization. The Ohio State University,. Agmnomy Technical Report 9302 .
- Blackmore, L.C., P.L. Searle and B.K. Daly. 1987. Methods for chemical analysis of soils. NZ Soil Bureau, Lower Hutt. New Zealand. Department of Scientific and Industrial Research.
- Brannon, J. M. & Patrick W. H. 1987. Fixation, transformation, and mobilization in sediments. Environmental Science and Technology. 21: 450-459.
- Cairney, T. 1987. Soil cover reclamations, in :Reclaiming contaminated land , ed.T. Cairney Blackie, Glasgow, pp.144-169.
- Cao, X., L.Q. Maa and A. Shiralipour. 2003. Effects of compost and phosphate amendments on arsenic mobility in soils and arsenic uptake by the hyperaccumulator, Pteris vittata L. Environmental Pollution, 126:157–167.
- Chau, K.T., R.H.C. Wong, J. Lin and C.F. Lee. 2004. Rock fall hazard analysis for Hong Kong based on Rock fall Inventory. Rock Engineering Journal, 36:383-408.
- Chau, K.T and J.E. Chan. 2005. Regional bias of landslide data in generating susceptibility maps using logistic regression for Hong Kong Island. Original Article, 280-290 pp.
- Day, P.R. 1965. Particle fractions and particle-size analysis. In Black, C.A. ed., Methods of soil analysis: Part1. American Society of Agronomy, 545-567
- Fazal, M.A. and T. Kawaci. 2001. Extent and severity of ground water arsenic contamination in Bangladesh. Water Int, 26(3): 370-37.
- Frost, R. R. & Griffin, R. A. 1977. Effect of pH on adsorption of arsenic and selenium from landfill leachate by clay minerals. Soil Science Society of American Journal. 41:53-57.
- Giacomino, A., M. Malandrino, O. Abollino, M. Velayutham, T. Chinnathangavel, and E. Mentasti. 2010. An approach for arsenic in a contaminated soil: speciation, fractionation, extraction and effluent decontamination. Environmental Pollution, 158: 416–423.
- Goldberg, S. 2002. Competitive adsorption of arsenate and arsenite on oxides and clay minerals. Soil Science. Soc. Am. J., 66:413-421.
- Hopkins, D.W. 2006. Carbon mineralization. In Carter, M.R. and Gregorich, E.G. eds., Soil Sampling and method of analysis, Taylor and Francis Group, 589-598.
- Ihuaku, A., J. Ingwersen, J. Utermann and T. 2009. Estimation of heavy metal sorption in German soils using artificial neural networks. Geoderma, 152:104–112.
- 1993. Procedures for soil analysis-vol. 4. International soil reference and information center, Food and Agriculture organization of the united nation.Technical paper 9.
- Iswar, D., S. Sashikant, V.W. Cees, S. Alfred and H. Robert. 2010. Landslide susceptibility assessment using logistic regression and its comparison with a rock mass classification system, along a road section in the northern Himalayas, India. Geomorphology, 114:627-637.
- Jain, A. and R.H. Leopart. 2000. Effect of competing anions on the adsorption of arsenate and arsenite by ferrihydrite. Journal of Environmental Quality, 29(5):1422–1430.
- Lado, L.R., D.A. Polya and A. Hegan. 2008. A logistic regression method for mapping the arsenic hazard risk in shallow, reducing groundwater in combodia, the mineralogical Society. 22: 1-20.
- Lee‚ C.K., K.S. Low and N.S. Hew. 1991. Accumulation of arsenic by aquatic plants. The Science of the Total Environment‚ 103:215-227.
- Lee, S. 2005. Application of logistic regression model and its validation for landslide susceptibility mapping using GIS and remote sensing data. Remote Sensing 26(7):1477-1491
- Lee, S. 2004. Application of likelihood ratio and logistic regression models to landslide susceptibility mapping using GIS. The Journal of Environmental Management, 34: 223-232 .
- Lee, S. 2004. Application of frequency ratio and logistic regression models to landslide susceptibility mapping using GIS. Environmental Management 34(2):223–232.
- Lee, S. and T. Sambath. 2006. Landslide susceptibility mapping in the Damrei Romel area, Cambodia using frequency ratio and logistic regression models. Environmental Geology, 50:847-855
- Luo, W., T. Y. Wang, J.P. Lu, Y. Giesy, Y. Shi, Y. Zheng, Y. Xing, and G. Wu. 2007. Landscape ecology of the Guanting Reservoir, Beijing, China: Multivariate and geostatistical analyses of metal in soils. Environmental Pollution,146: 567-576.
- Mazumder, D.N.G. 2003. Chronic arsenic toxicity: clinical features, epidemiology, and treatment: experience in west Bengal.J.Environ. Sci. Health A. 38: 141-163.
- Masscheleyn, P.H., R.D. Delaune and W.H. Patrick.1991. Effect of redox potential and pH on arsenic speciation and solubility in a contaminated soil. Environ. Sci. Technol., 25:1414–1419.
- Mahimairaja, S., N.S. Bolan and D.C. Adriano. 2005. Arsenic contamination and its risk management in complex environmental settings. Adv. Agron., 86: 1-82.
- McLean, E. O. 1982. Soil pH and lime requirement. Agronomy, 9:199-223.
- Meng, X., P. Kofiatis and S. Bang. 2002. Combined effects of anions on arsenic removal by iron hydroxides. Toxicology Letters, 133(1):103-111.
- Mench, M., J. Vangronsveld, H. Clijsters, N.W. Lepp and R. Edwards. 2000. In situ metal immobilisation and phytostabilisation of contaminated In: Terry, N., Banuelos, G. (Eds.), Phytoremediation of contaminated soil and water. Lewis Publishers, Boca Raton, Florida,USA
- Peryea, F. J. 1991. Phosphate-induced release of arsenic from soils contaminated with lead arsenate. Soil Science Soc. Am. J., 55:1301-1306.
- Pradhan, B. 2010. Manifestation of an advanced fuzzy logic model coupled with Geo-information techniques to landslide susceptibility mapping and their comparison with logistic regression modeling. Environmental Ecology and Statistics (DOI 10.1007/s10651-010-0147-7), 23 pp.
- Quaghebeur, M, A. Rate, Z. Rengel, and C. Hinz. 2005. Desorption Kinetics of Arsenate from Kaolinite as Influenced by pH J. Environ. Qual., 34:479–486.
- Sadiq, M. 1997. Arsenic chemistry in soils: An overview of thermodyEnviron.namic predictions and field observations. Water Air and Soil Pollution, 93:117–136.
- Shaw, J. N. and. L.T. West. 2002. Sesquioxides. In Encyclopedia of soil science, ed. R. Lal,. New York: Marcel Dekker., 1192-1196
- Bai, S. 2010. GIS based logistic regression for landslide susceptibility mapping of the zhongxian segment in the three gorges area, China.Geomorpholgy, 115:23-31.
- Chauhan, S., M. Sharma and M.K. Arora. 2010. Landslide susceptibility zonation of the Chamoli region Garhwal Himalayas using logistic regression model. Landslides, 7:411-423.
- Sheppard, S.C. 1991. Summary of phytotoxic levels of soil arsenic. Environmental Science Branch,AECL Research , Whiteshell Laboratories,Pinawa,ROE ILO, Canada
- Smith, E., R. Naidu and A.M. Alston. 2002. Chemistry of inorganic arsenic in soils: ii. effect of phosphorus, sodium and calcium on arsenic sorption. Journal of Environmental Quality, 31: 557–563.
- Smedley, P. L. and D.G. Kinniburgh. 2002. A review of the source, behaviour and distribution of arsenic in natural waters. Applied Geochemistry, 17:517-568.
- Violante, A. and M. Pigna. 2002. Competitive sorption of arsenate and phosphate on different clay mineral and soils. Soil Science Am. J., 1788-1796.
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