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http://dx.doi.org/10.14249/eia.2014.23.2.75

Environmental impact of livestock manure and organic fertilizer use on the Masan stream watershed  

Jeong, Dong-Hwan (National Institute of Environmental Research)
Lee, Youngjoon (National Institute of Environmental Research)
Lee, Chulgu (National Institute of Environmental Research)
Choi, Sung-Ah (National Institute of Environmental Research)
Kim, Minyoung (National Institute of Environmental Research)
Lee, Youngseon (National Institute of Environmental Research)
Kim, Mijin (National Institute of Environmental Research)
Yu, Soonju (National Institute of Environmental Research)
Publication Information
Abstract
In order to analyze environmental impact of livestock manure and organic fertilizers, this study investigated livestock-breeding and pollution loads, the status of individual and public livestock manure treatment facilities, and the status of production, supply and components of compost and liquid fertilizers in the Nonsan area. Also, on a trial basis, this study investigated the life cycle of the environmental impact of livestock manure and its organic fertilizers on stream, groundwater, and agricultural soil. The results are as follows. Firstly, were detected the range of $0.13{\sim}1.32{\mu}g/L$ of As, $0.004{\sim}0.467{\mu}g/L$ of Cd and $0.5{\sim}9.2{\mu}g/L$ of Pb as a harmful substances which show lower concentrations than person preservation criteria of water qualities and aquatic ecosystem. However, it is not clear that heavy metals affect environment such as stream, groundwater and agricultural soil. Secondly, this influence could change according to investigation time and treatment efficiency. As were detected large amounts of persistent organic pollutants(e.g. $14.24{\sim}38.47{\mu}g/L$ of acetylsalicylic acid, $1.17{\sim}2.96{\mu}g/L$ of sulfamethazine, and $2.25{\sim}174.09{\mu}g/L$ of sulfathiazole) in effluent from livestock farms and small amounts of sulfathiazole($ND{\sim}1.63{\mu}g/L$) in the stream, it is necessary to monitor POPs at individual and public livestock manure treatment facilities. However, significant environmental impact did not appear at groundwater and agricultural soil in the test area supplied with liquid fertilizers. These results could be applied to investigate the environmental impact of livestock manure through a comprehensive livestock manure management information system.
Keywords
Livestock manure; Organic fertilizer; Metal ion; POPs;
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Times Cited By KSCI : 3  (Citation Analysis)
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1 임재명, 이영신, 한기봉, 2009, 농지 주입시 배출특성에 대한 축분자원화물 연구, 유기물자원화, 17(4), 91-102.
2 최홍림, 손재호, 류순호, 1996, 가축분뇨수의 무단방류가 샛강오염에 미치는 영향, 농촌계획, 2(1), 69-78.   과학기술학회마을
3 환경부, 2003, 축산폐수 배출시설 및 처리시설 관리개선 방안 연구.
4 환경부, 2012a, 환경백서.
5 환경부, 2012b, 가축분뇨 관리 선진화 종합대책.
6 Alberta Agriculture and Agri-Food Canada, 2006, A survey of nutrients and major ions in shallow groundwater of Alberta's agricultural areas.
7 환경부, 2013, 가축분뇨 에너지화 대책.
8 梅本英之, 宮川修, 2003, 施肥法別水田窒素排出量の定量的評価, 日土肥誌, 74, 665-668.
9 園田敬太朗, 德田祐二, 岡本佐知子, 田中靖志, 北野毫, 大橋恭一, 1997, 水田からの筞養塩類發生負荷量(第1報), 水田作付期間の水田群筞養塩類發生負荷量について, 滋賀縣農業試驗報告, 38, 57-65.
10 Ontario Ministry of the Environment, 1989, Impacts of livestock manure on water quality in Ontario(An appraisal of current knowledge).
11 Peters, J., Combs, S., Hoskins, B., Jarman, J., Kovar, J., Watson, M., Wolf, A., Wolf, N., 2003, Recommended methods of manure analysis, The Board of Regents of the University of Wisconsin System.
12 Vu, T.K.V., Tran, M.T., Dang, T.T.S., 2007, A survey of manure management on pig farms in Northern Vietnam, Livestock Science, 112, 288-297.   DOI   ScienceOn
13 Waithaka, M.M., Thornton, P.K., Shepherd, K.D., Ndiwa, N.N., 2007, Factors affecting the use of fertilizers and manure by smallholders: the case of Vihiga, western Kenya, Nutr. Cycl. Agroecosyst, 78, 211-224.   DOI
14 국립환경과학원, 2006, 환경중 의약물질 분석방법 및 노출실태 조사(I).
15 경기개발연구원, 1998, 가축분뇨가 하천의 수질에 미치는 영향분석 및 개선대책의 제시.
16 고한종, 최홍림, 김기연, 이용기, 김치년, 2006, 액상 가축분뇨의 처리 및 토양환원에 따른 악취 및 악취물질의 평가, 한국동물자원과학회지, 48(3), 453-466.   과학기술학회마을   DOI
17 국립농업과학원, 2012, 가축분뇨의 농경지 투입에 따른 수질특성 변화양상 구명.
18 국립환경과학원, 2011a, 낙동강 축산계 오염원 TOC 원단위 마련 및 오염물질 배출경로 규명 개선연구.
19 국립환경과학원, 2011b, 잔류의약물질 분석방법 연구 및 실태조사(IV).
20 김민경, 권순익, 강성수, 한민수, 정구복, 강기경, 2011, 돈분뇨 액비가 시용된 논토양 특성 변화, 유기물자원화, 19(4), 97-105.
21 김필주, 이용복, 이연, 윤홍배, 이경동, 2008, OECD 양분수지를 이용한 축산선진국의 농경지 축산분뇨 이용실태 평가, 한국환경농학회지, 27(4), 337-342.   과학기술학회마을   DOI
22 농림수산식품부, 국립수의과학검역원, 2011, 2010년도 축산 항생제내성균 감시체계 구축 보고서.
23 농촌진흥청, 2010, 가축분뇨 퇴.액비 이용기술 매뉴얼.
24 농촌진흥청, 2010.03.29, 비료 공정규격 설정 및 지정, 고시 제2010-8호.
25 안태웅, 최이송, 오종민, 2008, 가축분뇨의 자원화 용량평가에 관한 연구, 환경영향평가, 17(5), 311-320.
26 US EPA, 1992, Technical support document for land application of sewage sludge, Volume I. Eastern research group, Lexington.
27 금강수계관리위원회, 국립환경과학원, 2008-2009, 가축분뇨 자원화물의 유출특성 및 저감방안 연구.
28 McGrath, S.P., Chang, A.C., Page, A.L., 1994, Land application of sewage sludge: Scientific perspective of heavy metal loading limits in Europe and the United States, Environmental Review, 2, 108-118.   DOI
29 금강수계관리위원회, 국립환경과학원, 2011, 퇴비.액비 살포 시 수질에 미치는 영향 조사 및 최적 관리방안 연구.