References
- Chander, K. and P.C. Brookes. 1991. Is the dehydrogenase assay invalid as a method to estimate microbial activity in copper-contaminated soils. Soil BioI. Biochem. 23: 909-915. https://doi.org/10.1016/0038-0717(91)90170-O
- Cho, S.H., Lee, I.B., and Chang, K.W. 1998. Study on the improvement of soil for high efficient and sustainable agriculture-I. effect of repeated application of chicken and pig manure composts on tomato growth and soil physico-chemical properties. J. K. Soc. Agri. Chem. Biotech. 41: 451-456.
- Garcia-Gil, J.C., C. Plaza, P. Soler-Rovira, and A. Polo. 2000. Long-term effects of municipal solid waste compost application on soil enzyme activities and microbial biomass. Soil Biol. Bioch. 32: 1907-1913. https://doi.org/10.1016/S0038-0717(00)00165-6
- Dinesh, R., R.P. Dubey. and G.S. Prasad. 1998. Soil microbial biomass and enzyme activities as influenced by organic manure incorporation into soils of a rice-rice system. J. Agro. Crop Sci. 181:173-178. https://doi.org/10.1111/j.1439-037X.1998.tb00414.x
- Gwag, H,G., G.S. Seong, N.J. Lee, S.B. Lee, M.S. Han, and G.A. No. 2003. Changes in chemical properties and fauna of plastic film house soil by application of chemical fertilizer and composted pig manure. K. J. Soil Sci. Fert. 36:304-310.
- Kwon, S.I., D.K. Lim. S.B. Lee, and J.J. Nam. 2003. Plant uptake and distribution of toxic elements by consecutive organic wastes application in soil-plant system. NIAST. Anual report.
- Kunito, T., K. Saeki, S. Goto, H. Hayashi, H. Oyaizu, and S. Matsumoto. 2001. Copper and zinc fractions affecting microorganisms in long-term sludge-amended soils. Biore. Tech.: 135-146.
- Lee, K. Y. 2008. Evaluation of ecological toxicity for heavy metals contamination soil in an abandoned mine used by microbial dehydrogenase activity. Master Thesis, Catholic University. Seoul, Korea.
- McBride, M.B. 1994. Trace and toxic elements in soils. Enviro. Chem. Soils. Oxford Univ. Press, New York. pp. 308-341.
- Min, K.B. , H.S. Cho, J.I. Lee, and Y.K. Nam. 1995. Effects of fermented pig manure-sawdust compost un the yield and mineral nutrition of tomato in the plastic film house. K. J. Soil Sci. Fert. 28:88-94.
- Ministry of Environment. 2003. Soil environmental conservation act. 3-23.
- Munson, G.P. , D.L. Lam, F.W. Oulten, and T.V. O'Halioran. 2000. Identification of a copper-responsive two-component system on the chromosome of Escherichia coli K-12. J. Bacteriol. 182:5864-5871. https://doi.org/10.1128/JB.182.20.5864-5871.2000
- Netherlands Ministry of Housing, Physical Planning and Environment. 1991. Environmental quality standards for soils and water. The Netherlands.
- Park, H. 1998. Investigation on forest soil dynamics at Onsan industrial extate and Mt. Mani by the assay of dehydrogenase activity, denitrifying and sulfur reducing bacteria. J. K. For. Soc. 87: 106-112.
- RDA. 1988. Methods for chemical analysis of soil. Institute of Agricultural Technology.
- Song, K.C. 1990. Andic properties of major soils in Cheju island. Ph. D. Thesis, Seoul National University. Suwon, Korea.
- Tiquia, S.M. 2005. Microbiological parameters as indicators of compost maturity. J. Appl. Micro. 99:816-828. https://doi.org/10.1111/j.1365-2672.2005.02673.x
- Tomoyoshi M., K.K. Masami, and T. Takejiro. 2005. Effects of Pb, Cu, Sb, In and Ag contamination on the proliferation of soil bacterial colonies, soil dehydrogenase activity, and phospholipid fatty acid profiles of soil microbial communities. Water Air soil poll. 164: 103-118. https://doi.org/10.1007/s11270-005-2254-x
- Won, H.Y., J.S. Kwon, J.S. Suh, and W.Y. Choi. 1999. Soil microbial flora and chemical properties as influenced by the application of pig manure compost. K. J. Soil Sci. Fert. 32:76-83.
- Won, H.Y, J.S. Kwon, Y.G. Sin, S.H. Kim, J.S. Soo, and W.Y. Choi. 2004. Effects of composled pig manure application on enzyme activities and microbial biomass of soil under chinese cabbage cultivation. K.J. Soil Sci. Fert. 37:109-115.
- Wyszkowska, J., J. Kucharski, and W. Lajszner. 2005. Enzymatic activities in different soils contaminated with copper. P. J. Environ. Stu. 14:659-664.
- Yang, J.E, K.Y You, W.I. Kim, G.B. Jung, and S.P. Lee. 2005. Ecotoxicological assessment of soil contaminated and remediation effect. NlAST. Anual report.
- Yruela, I. 2005. Copper in plants. Braz. J. Plant Physiol. 17: 145-156. https://doi.org/10.1590/S1677-04202005000100012
- Zagal, E., C. Munoz, M. Quirozb, and C. Cordovaa. 2009. Sensitivity of early indicators for evaluating quality changes in soil organic matter. Geoderma. 151:191-198. https://doi.org/10.1016/j.geoderma.2009.04.004