DOI QR코드

DOI QR Code

환경경영 기법을 이용한 가금산업에 적용(I) - 화학제재를 첨가한 깔짚으로부터 수용성 중금속 저감에 관한 연구를 중심으로 -

Application of Poultry Industry Using Methods of Environmental Management - A Study on Decreasing Soluble Metals from Poultry Litter with Chemical Additives -

  • 발행 : 2009.12.31

초록

Recent studies have shown that alum addition to litter results in many environmental and economic advantages, such as reductions in metal runoff, lower ammonia emission and improved poultry performance. However, no research has been conducted to evaluate the effects of different types of alum on soluble metals in poultry litter. The objective of this study was conducted to investigate changes in soluble metal from poultry litter with different types of aluminum sulfate (alum) under laboratory condition. The treatments used in this study, which were mixed in the upper 1 cm of litter or sprayed onto the litter surface, were 4 g alum, 8 g alum, 8.66 g liquid alum, 17.3 g liquid alum, 11.2 g A7 (high acid alum), and 22.4 g A7 (high acid alum)/100 g litter. Applying different types of alum to poultry litter reduced (P<0.05) concentrations of soluble Fe (9 to 54%), Cu (9 to 49%) and Zn (11 to 40%), relative to untreated litter, whereas it increased Ca and Mg (P<0.05). Mean soluble Fe and Cu levels in poultry litter from different types of alum decreased in the order: 22.4 g A7 (54% and 49%) > 17.3 g liquid alum (48% and 42%) > 8 g alum (48% and 31%) > 4 g alum (28% and 10%) > 8.6 g liquid alum (10% and 9%) > 11.2 g A7 (8.6% and 9%). Additionally, the high reduction in soluble Zn concentration was 4 g alum (40%), followed by 8 g alum (26%), 22.4 g A7 (25%), 17.3 g liquid alum (23%), 8.66 g liquid alum (18%), and 11.2 g A7 (11%), respectively. In conclusion, the current studies suggest that treating poultry litter with different types of alum can be applied to reduce soluble metal (Fe, Cu, and Zn) and to develop a production to merchandise for poultry litter that would result in reduction in pollutants from these materials. Furthermore, in order to improve environmental management in the poultry industry, the use of alum, liquid alum and high acid alum all should be provided a valid means of reducing negative environmental impact.

키워드

참고문헌

  1. 양계연구, 1994, 양계장의 부산물 관리, 38-44
  2. 양계연구, 2003, 축산공해와 축산 전문 실험실의 역할, 54-59
  3. Nahm K. H., 2000, A strategy to solve the environmental concerns caused by poultry production, World's Poul. Sci., 56, 379-388 https://doi.org/10.1079/WPS20000026
  4. Fontenot J. P., L. W. Smith, and A. L. Sutton, 1983, Alternative utilization of animal wastes, J. Anim. Sci., 57, 221-233
  5. Choi I. H., S. J. Yi and C. M. Kim, 2008, A study on pH and soluble reactive phosphorus (SRP) from litter using various poultry litter amendments during short -term: a laboratory experiment, Korean Environ. Sci. Soc., 17, 233-237 https://doi.org/10.5322/JES.2008.17.2.233
  6. Kelly T. R., O. C. Pancorbo, S. A. Merka, S. A. Thompson, M. L. Cabrera and H. M. Barnhart, 1996, Elemental concentrations of stored whole and fractionated broiler litter., J. Appl. Poult. Res., 5, 276-281 https://doi.org/10.1093/japr/5.3.276
  7. Kpomblekou-A K., R. O. Ankumah and H. A. Ajwa, 2002, Trace and nontrace element contents of broiler litter, Commun. Soil Sci. Plant Anal., 33, 1799-1811 https://doi.org/10.1081/CSS-120004823
  8. van der Watt H. v. H. and M. E. Sumner, M. L. Cabrera, 1994, Heavy metals in the environment: Bioavailability of copper, manganese, and zinc in poultry litter, J. Environ. Qual., 23, 43-49 https://doi.org/10.2134/jeq1994.23143x
  9. Cabrera M. L. and J. T. Sims, 2000, Beneficial use of poultry by products: Challenges and opportunities, In Power J. F. and Dick W. A. (ed.) Land application of agricultural, industrial, and municipal by-products, SSSA, Madison, WI
  10. Jackson B. P., P. M. Bertsch, M. L. Cabrera, J. J. Camberato, J. C. Seaman and C. W. Wood, 2003, Trace element speciation in poultry litter, J. Environ. Qual., 32, 535-540 https://doi.org/10.2134/jeq2003.0535
  11. Kunkle W. E., L. E. Carr, T. A. Carter and E. H. Bossard, 1981, Effect of flock and flock type on the levels of nutrients and heavy metals in broiler litter, Poult. Sci., 60, 1160-1164 https://doi.org/10.3382/ps.0601160
  12. USPEA, 2002, List drinking water contaminants and MCLs (EPA 816-F-02-013), [Online] Available at http://www.epa.gov/OGWDW/mcl.html#mcls(accessed 25 May 2005; verified 24 May 2006)
  13. Pirani A. L., K. R. Byre, T. C. Daniel, B. E. Haggard, E. E. Gbur and J. D. Mattice, 2006, Soluble metat leaching from a poultry litter-amended udult under pasture vegetation, Vadose Zone J., 5, 1017-1034 https://doi.org/10.2136/vzj2005.0138
  14. Moore P. J. Jr., T. C. Daniel, J. T, Gilmour, B. R. Shreve, D. R. Edwards and B. H. Wood, 1998, Decreasing metal runoff from poultry litter with aluminum sulfate, J. Environ. Qual., 27, 92-99 https://doi.org/10.2134/jeq1998.27192x
  15. Sims J. T. and N. J. Luka-McCafferty, 2002, On-farm evaluation of aluminum sulfate (alum) as poultry litter amendment: effects on litter properties, J. Environ. Qual., 31, 2066-2073 https://doi.org/10.2134/jeq2002.2066
  16. SAS Institute, 1990, SAS/STAT user's guide, Version 6, 4th ed., SAS Institute Inc., Cary, NC
  17. Nicholson F. A., B. J. Chambers, J. R. Williams and R. J. Williams, 1999, Heavy metal contents of livestock feeds and animal manures in England and Wales, Bioresour. Technol., 70, 23-31 https://doi.org/10.1016/S0960-8524(99)00017-6