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http://dx.doi.org/10.5338/KJEA.2004.23.4.203

Assessment of Organic Compound and Bioassay in Soil Using Pharmaceutical Byproduct and Cosmetic Industry Wastewater Sludge as Raw Materials of Compost  

Lim, Dong-Kyu (Environmental and Ecology Division, National Institute of Agricultural Science and Technology)
Lee, Sang-Beom (Organic Farming Division, National Institute of Agricultural Science and Technology)
Lee, Seung-Hwan (Environmental and Ecology Division, National Institute of Agricultural Science and Technology)
Nam, Jae-Jak (Environmental and Ecology Division, National Institute of Agricultural Science and Technology)
Na, Young-Eun (Environmental and Ecology Division, National Institute of Agricultural Science and Technology)
Kwon, Jang-Sik (Applied Microbiology Division, National Institute of Agricultural Science and Technology)
Kwon, Soon-Ik (Environmental and Ecology Division, National Institute of Agricultural Science and Technology)
So, Kyu-Ho (Environmental and Ecology Division, National Institute of Agricultural Science and Technology)
Publication Information
Korean Journal of Environmental Agriculture / v.23, no.4, 2004 , pp. 203-210 More about this Journal
Abstract
This study was conducted to assessment organic compound and bioassay (density of inhabited animal, fluctuation of predominant fungi, and survival ratio of earthworm) for finding damage on red pepper by heavily amount application of sludges in soil, which was treated with 3 pharmaceutical byproducts and a cosmetic industry wastewater sludge as raw materials of compost, and for establishing estimation method. HEM contents in the soil treated with pharmaceutical byproducts sludge2 (PS2) and cosmetic sludge (CS) were 0.51, 1.10 mg/kg respectively. PAHs content of PS2 treatment in the soil was 3406.8 ug/kg on July 8. In abundance of soil faunas, the pharmaceutical byproducts sludge2 treatment was the most highest. The next was decreased in the order of pig manure (PM) and the cosmetic sludge treatment. However the other pharmaceutical sludge treatments were remarkably reduced populations of soil inhabited animals. In upland soil treated with organic sludges, the numbers of bacteria and fungi of the pharmaceutical sludge treatment were 736, 909 cfu/g and those of the cosmetic sludge treatment were 440, 236 cfu/g, respectively. The pharmaceutical sludge treatments and the cosmetic sludge treatment in identification of predominant bacteria were not any tendency to compare with non fertilizer and pig manure treatments, but they had diverse bacteria than NPK treatment. In microcosm tests, the survival of the tiger earthworm in five soil samples was hardly affected against the soil of PSI (20%) after three months treated in the upland But after six months, survival of PS1 was 80%. At present, raw material of compost was authorized by contents of organic matter, heavy metal (8 elements), and product processing according to 'The specified gist on possible materials of using after analysis and investigation among raw materials of compost', however, for preparing to change regulation of raw material of compost and for considering to possibility of application, this study was conducted to investigate toxic organic compound and bioassay methods using inhabited animal, fungi, and earthworm without current regulation.
Keywords
Pharmaceutical byproducts; Cosmetic wastewater sludge; HEM; PAHs;
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  • Reference
1 Weon, H. Y., Kwon, J. S., Suh, J. S. and Choi, W. Y. (1999) Soil microbial flora and chemical properties as influenced by the application of fig manure compost, J. Korean Soc. Soil Sci. Fert. 32(1), 76-83
2 Lee, H.J., Cho, J. S., Bahn, K. N., Heo, J. S. and Shin, W K. (1998) Changes of the physico-chemical and micro-biological properties during composting for composting of sewage sludge, Korean J. Environ. Avric. 17(1), 16-21
3 Nishio, M. and Kusano, S. (1980) Fluctuation patterns of microbial numbers in soil applied with compost, Soil Sci. Plant Nutr. 26(4), 581-593   DOI
4 加藤邦彦,森正克英 古藤, 實 杉本正行, 竹下'純則, 大森擪次. 都留信也 (1978) 家畜子ん流用土壤 における術生物7ロラの變化 日本土壤肥料學雜誌 49(5),353-356
5 Na,Y.E.(2004) Hazard assessirent of organic waste-contaminatd soil using earthworm Ph.D. Thesis, seoul National Universiy, Seoul, Korea
6 Korean Ministry of Environment (1991) Standard meth-ods of waste analysis, Chapter 9. n-Hexane extractable matehal
7 Environmental Protection Agency (EPA) (2000) CFR Title 40 : Protection of Environment, Chapter 1 -Environmental Protection Agency
8 Korean Ministry of Environment (1998) Waste Control Act, Enforcement regulations, Appendix 7
9 Korean Ministry of Environment (1998) Waste Control Act, Enforcement reguladons, Appendix 5
10 Nam, J, J., Song, B. H., Eom, K. C, Lee, S, H. and Smith, A. (2003) Distribution of polycyclic aromatic hydrocarbons in agricultural soils in South Korea, Chemosphere. 50, 1281-1289   DOI   ScienceOn
11 ReaIey, K. A., Banks, M. K. and Schwab, A. P. (1996) Dissipation of polycyclic aromatic hydrocarbons in the rhizosphere, J. Environ. Qual. 25, 212-219   DOI   ScienceOn
12 Lee, S. B., Lim, D. K. and Kwon, S. I. (2003) Assessments of soil inhabited animals in agricultural upland influenced by waste contaminants, Agro-Environment Research 2003, National Institute of Agricultural Science & Technology, R.D.A., p.536- 553
13 Bonkowski M., Cheng W., GiifBths B. S., Alphei J. and Scheu, S. (2000) Microbial-faunal interactions in the rhizosphere and effects on plant growth, Eur. J. Soil Biol. 36, 135-147   DOI   ScienceOn
14 Cortet, J., Vauflery, A. G, Pomsot-Balaguer, N., Gomot, L, Texier, C and duzeau, D. (1999) The use of invertebrate soil fauna in monitering pollutant effects, Eur. J. Soil Biol. 35, 115-135   DOI   ScienceOn
15 Environmental Protection Agency (EPA) (1996) Test Methods for Evaluating Solid Waste, Physical/Chemical Methods, SW-846, Method 3630C : Silica gel cleanup
16 Nakasald, K, Aold, N. and Kubota, H. (1991) Accelerated composting of grass clipping by controlling moisture level, Waste Manag. Res. 12, 13-20
17 Blakely, J. K., Neher, D. A. and Spongberg, A. L (2002) Soil invertebrate and microbial communities, and decomposition as indicators of poly-cyclic aromatic hydrocarbon contamination, Appl Soil Ecol. 21, 71-88   DOI   ScienceOn
18 Environmental Protection Agency (EPA) (1994) Test methods for evaluating solid waste, physical/chemical methods. SW-846, Revision 2, Offce of Solid Waste and Emergency Response, Wahington, DC, USA
19 Environmental Protection Agency (EPA) (1996) Test Methods for Evaluating Solid Waste, Physical/ Chemical Msthods, SW-846, Mithod 8270C : Semivolatile Organic Compounds by Gas Chromatography/Mass Spectrometry (GC/NG), Washington, DC, VSA
20 Lee, S. B., Lim, D. K., Kwon, S. I. and Koh, M. H. (2004) A modified Tullgren apparatus for isoladon of soil inhabited animals in agroecosysteins, Eurosoil 2004, 365-366
21 Tullgren, A. (1917) Ein sehr einfacher Ausleseapparat fuer terricole tierformen, Z. Angew. Ent. 4, 149-150
22 National Institute of Aghcultural Science & Technology (2000) Offcial Methods of Soil and Plant Analysis
23 Weisburg, W. G, Bams, S. M., Pelletier, D. A and Lane, D. J. (1991) 165 ribosomal DNA anmlification for phylogenetic study, J. Bacteriol. 173, 697-703
24 Burrows, L. A. and Edwards, C. A. (2002) The use of integrated soil microcosms to predict effects of pesti-ddes on soil ecosystems, Eur. J. Soil Biol 38, 245-249   DOI   ScienceOn
25 Harms, H. (1996) Bioaccumulation and metabalic fate of sewage sludge derived organic xenobiotics in plants, Sci. Total Enuiron. 185, 83-92   DOI   ScienceOn
26 Environmental Protection Agency (EPA) (1994) Test methods for evaluating solid waste, physical/chemical methods (SW-846), Mehtod 9071B
27 Hembrock-Heger, A. (1992) Persistent organic con-taminants in soils, plants and food, p. 78-89. In : Hall, J. E, Sauerbeck, D. R., and L'Hermite, P. (eds.), Effects of organic contaminants in sewage sludge on soil fertility, plants and animals, Commission of the European Communities, Luxembouig, Belgium
28 Hall, J. E, Sauerbeck, D. R. and L'Hermite, P. (1992) Effects of organic contaminants in sewage sludge on soil fertility, plants and animals, Commission of the European Communities, Luxembourg, Belgium
29 Boonchan, S., Britz, M. L and Stanley, G. A. (2000) Degradation and mineralization of high-molecular-weight polycyclic aromatic hydrocarbons by defined fungal-bacterial cocultures, Appl. Environ. Micmbiol. 66, 1007-1019   DOI   ScienceOn
30 Goleman, D. C and Crssley, D. A (1996) Fundamentals of soil ecology, Academic Press, New York, USA
31 Bmggen, A. H. and Semenov, A. M (2000) In search of biological indicators for soil health and disease suppression, Appl. Soil Ecol. 15, 13-24   DOI   ScienceOn
32 Herrick, J. E. (2000) Soil quality: an indicator of sustainable land management, Appl. Soil Ecol. 15, 75-83   DOI   ScienceOn
33 Wolters, V. (2001) Biodiversity of soil animals and its function, Eur. J. Soil Biol 37, 221-227   DOI   ScienceOn
34 Ministry of Agnculture and Forestry (2004) Fertilizer Gontrol Act
35 Banerjee, M. R., Burton, D. L and Depoe, S. (1997) Impact of sewage sludge application on soil biological characteristics, Agric. Ecosyst. Enuiron. 66, 241-249   DOI   ScienceOn
36 Ministry of Environment. (2003) Environmental Stati-sties Yearbook
37 Ministry of Environment (2001) Waste Control Act
38 Rural Development Administration (2004) Official Specification of Fertilizer
39 National Institute of Agricultural Science & Technology (2004) The specified gist on possibile materials of using after analysis and investigation among raw materials of compost