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MAXIMUM RATE OF SOLID PIG SLURRY IN ORGANO-MINERAL FERTILIZER FORMULATION

Lotfi, Khiari, Itienne, Parent Lion, Antoine, Karam

First published: 2012-06-18https://doi.org/10.5593/sgem2012/s16.v4012View metrics

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Title
MAXIMUM RATE OF SOLID PIG SLURRY IN ORGANO-MINERAL FERTILIZER FORMULATION
Authors
Lotfi, Khiari, Itienne, Parent Lion, Antoine, Karam
Proceedings
SGEM International Multidisciplinary Scientific GeoConference EXPO Proceedings; SGEM2012 12th International Multidisciplinary Scientific GeoConference
Publisher
Stef92 Technology
Year
2012
Pages
133 - 140 pp
ISSN
1314-2704
ISBN
Not available yet
Language
en
Publication type
Conference Paper
References36
  1. Rochette P., MacDonald J.D., Angers D.A., Chantigny M.H., Gasser M.-O. & Bertrand N. Banding of urea increased ammonia volatilisation in a dry acidic soil. Journal of Environmental Quality, vol. 38, 1383–1390, 2009.

  2. Hountin J.A., Couillard D. & Karam A. Soil carbon, nitrogen and phosphorus contents in maize plots after 14 years of pig slurry applications. Journal of Agriculture and Science, Cambridge, vol. 129, 187–191, 1997.

  3. Moral R., Perez-Murcia M. D., Perez-Espinosa A., Moreno-Caselles J. & Paredes C. Estimation of nutrient values of pig slurries in southeast Spain using easily determined properties. Waste Management, vol. 25, pp 719–725, 2005.

  4. Liu M., Li Z.-P., Zhang T.-L., Jiang C.-Y. & Che Y.-P. Discrepancy in response of rice yield and soil fertility to long-term chemical fertilization and organic amendments in paddy soils cultivated from infertile upland in subtropical China. Agricultural Sciences in China, vol. 10, pp 259–266, 2011.

  5. Rico J.L., García H., Rico C. & Pérez N. Two-factor design for coagulant/flocculant doses effect for solid-liquid separation of dairy manure. Environmental Technology, vol. 27, pp 143–151, 2006.

  6. McCauley A., Jones C. & Jacobsen J. Commercial fertilizers and soil amendments. Nutrient Management Module No. 10. A self-study course from MSU extension continuing education series. Montana State University Extension, 2009. https://www.certifiedcropadviser.org/files/certifications/certified/education/self- study/exam-pdfs/40.pdf

  7. Tandon H.L.S., Cescas M.P. & Tyner E.H. An acid-free vanadate-molybdate reagent for the determination of total phosphorus in soils. Soil Science Society of America Proceedings, vol. 32, pp 48–51, 1968.

  8. Pourcher A.-M., Aktouche N., Côté C., Rousseau P., Godbout S. & Martinez J. Behaviour of enteric micro-organisms in Canadian and French swine manure treatments. In Petersen S.O. (ed.). Technology for recycling of manure and organic residues in a whole-farm perspective. 12 th RAMIRAN International Conference, SGEM2012 - DOI: 10.5593/sgem2012 www.sgem.org 12th International Multidisciplinary Scientific GeoConference SGEM 2012 Aarhus. Danish Institute of Agricultural Science. Report Plant Production, vol. 122, pp 135–138, 2006.

  9. Salvano E., Flaten D., Grant C. & Johnson G. 2006. Economic assessment of manure phosphorus regulations for Manitoba ’s pig industry: Part 1. Coasts of alternative manure management strategies. Final report. University of Manitoba, Canada, 2006. http://manure.mb.ca/projects/pdfs/05-01-02%20Final%20Report%20phase%201.pdf

  10. Buelna G., Dubé R. & Turgeon N. Pig manure treatment by organic bed biofiltration. Desalination, vol. 231, pp 297–304, 2008.

  11. Greenwood J., Rainey T. & Doherty W.O.S. Light scattering study on the size and structure of calcium phosphate/hydroxyapatite flocs formed in sugar solutions. Journal of Colloid and Interface Science, vol. 306, pp 66–71, 2007.

  12. Daumer M.-L., Picard S., Saint-Cast P. & Dabert P. Technical and economical assessment of formic acid to recycle phosphorus from pig slurry by a combined acidification-precipitation process. Journal of Hazardous Materials, vol. 180, pp 361 – 365, 2010.

  13. Yilmazel Y.D. & Demirer G.N. Removal and recovery of nutrients as struvite from anaerobic digestion residues of poultry manure. Environmental Technology, vol. 32, 783–794, 2011.

  14. Hjorth M., C hristensen K.V., Christensen M.L. & Sommer S.G. Solid–liquid separation of animal slurry in theory and practice. A review. Agronomy for Sustainable Development, vol. 30, pp 153–180, 2010.

  15. Christensen M.L., Hjorth M. & Keiding K. Characterization of pig slurry with reference to flocculation and separation. Water Research, vol. 43, pp 73–83, 2009.

  16. Abbès C., Parent L. E. & Karam A. Ammonia sorption by peat and N fractionation in some peat-ammonia-systems. Fertilizer Research, vol. 36, pp 249–257, 1993.

  17. Vaillancourt N., Parent L. E., Buteau P., Parent V. & Karam A. Sorption of ammonia and release of humic substances as related to selected peat properties. Canadian Journal of Soil Science, vol. 79, pp 311–315, 1999.

  18. Xiong J.B. & Mahmood Q. Adsorptive removal of phosphate from aqueous media by peat. Desalination, vol. 259, pp 59–64, 2010. SGEM2012 - DOI: 10.5593/sgem2012 www.sgem.org

  19. Rochette P., MacDonald J.D., Angers D.A., Chantigny M.H., Gasser M.-O. & Bertrand N. Banding of urea increased ammonia volatilisation in a dry acidic soil. Journal of Environmental Quality, vol. 38, 1383–1390, 2009.

  20. Hountin J.A., Couillard D. & Karam A. Soil carbon, nitrogen and phosphorus contents in maize plots after 14 years of pig slurry applications. Journal of Agriculture and Science, Cambridge, vol. 129, 187–191, 1997.

  21. Moral R., Perez-Murcia M. D., Perez-Espinosa A., Moreno-Caselles J. & Paredes C. Estimation of nutrient values of pig slurries in southeast Spain using easily determined properties. Waste Management, vol. 25, pp 719–725, 2005.

  22. Liu M., Li Z.-P., Zhang T.-L., Jiang C.-Y. & Che Y.-P. Discrepancy in response of rice yield and soil fertility to long-term chemical fertilization and organic amendments in paddy soils cultivated from infertile upland in subtropical China. Agricultural Sciences in China, vol. 10, pp 259–266, 2011.

  23. Rico J.L., García H., Rico C. & Pérez N. Two-factor design for coagulant/flocculant doses effect for solid-liquid separation of dairy manure. Environmental Technology, vol. 27, pp 143–151, 2006.

  24. McCauley A., Jones C. & Jacobsen J. Commercial fertilizers and soil amendments. Nutrient Management Module No. 10. A self-study course from MSU extension continuing education series. Montana State University Extension, 2009. https://www.certifiedcropadviser.org/files/certifications/certified/education/self- study/exam-pdfs/40.pdf

  25. Tandon H.L.S., Cescas M.P. & Tyner E.H. An acid-free vanadate-molybdate reagent for the determination of total phosphorus in soils. Soil Science Society of America Proceedings, vol. 32, pp 48–51, 1968.

  26. Pourcher A.-M., Aktouche N., Côté C., Rousseau P., Godbout S. & Martinez J. Behaviour of enteric micro-organisms in Canadian and French swine manure treatments. In Petersen S.O. (ed.). Technology for recycling of manure and organic residues in a whole-farm perspective. 12 th RAMIRAN International Conference, SGEM2012 - DOI: 10.5593/sgem2012 www.sgem.org 12th International Multidisciplinary Scientific GeoConference SGEM 2012 Aarhus. Danish Institute of Agricultural Science. Report Plant Production, vol. 122, pp 135–138, 2006.

  27. Salvano E., Flaten D., Grant C. & Johnson G. 2006. Economic assessment of manure phosphorus regulations for Manitoba ’s pig industry: Part 1. Coasts of alternative manure management strategies. Final report. University of Manitoba, Canada, 2006. http://manure.mb.ca/projects/pdfs/05-01-02%20Final%20Report%20phase%201.pdf

  28. Buelna G., Dubé R. & Turgeon N. Pig manure treatment by organic bed biofiltration. Desalination, vol. 231, pp 297–304, 2008.

  29. Greenwood J., Rainey T. & Doherty W.O.S. Light scattering study on the size and structure of calcium phosphate/hydroxyapatite flocs formed in sugar solutions. Journal of Colloid and Interface Science, vol. 306, pp 66–71, 2007.

  30. Daumer M.-L., Picard S., Saint-Cast P. & Dabert P. Technical and economical assessment of formic acid to recycle phosphorus from pig slurry by a combined acidification-precipitation process. Journal of Hazardous Materials, vol. 180, pp 361 – 365, 2010.

  31. Yilmazel Y.D. & Demirer G.N. Removal and recovery of nutrients as struvite from anaerobic digestion residues of poultry manure. Environmental Technology, vol. 32, 783–794, 2011.

  32. Hjorth M., C hristensen K.V., Christensen M.L. & Sommer S.G. Solid–liquid separation of animal slurry in theory and practice. A review. Agronomy for Sustainable Development, vol. 30, pp 153–180, 2010.

  33. Christensen M.L., Hjorth M. & Keiding K. Characterization of pig slurry with reference to flocculation and separation. Water Research, vol. 43, pp 73–83, 2009.

  34. Abbès C., Parent L. E. & Karam A. Ammonia sorption by peat and N fractionation in some peat-ammonia-systems. Fertilizer Research, vol. 36, pp 249–257, 1993.

  35. Vaillancourt N., Parent L. E., Buteau P., Parent V. & Karam A. Sorption of ammonia and release of humic substances as related to selected peat properties. Canadian Journal of Soil Science, vol. 79, pp 311–315, 1999.

  36. Xiong J.B. & Mahmood Q. Adsorptive removal of phosphate from aqueous media by peat. Desalination, vol. 259, pp 59–64, 2010. SGEM2012 - DOI: 10.5593/sgem2012 www.sgem.org

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