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Research Article

Chemical Characterization of Cow Manure and Poultry Manure after Composting with Privet and Cypress Residues

, , , , &
Pages 2854-2866 | Received 06 Nov 2018, Accepted 06 Nov 2018, Published online: 18 Nov 2018

References

  • Ahmad, R. , D. E. Habib , and A. Rehman . 2012. Complementary effects of organic manures on the agronomic traits of spring maize. Crop and Environment 3:28–31.
  • Anderson, J. M. , and J. S. I. Ingram . 1993. Tropical soil biology and fertility, a handbook of methods . 2nd ed. Wallingford, Oxon: CABI.
  • Anwar, Z. , M. Irshad , M. Bilal , F. Hafeez , U. Irshad , and G. Owen . 2017. Changes in availability of plant nutrients during composting of cow manure with poplar leaf litter. Compost Science and Utilization 25 (4):242–50. doi:10.1080/1065657X.2017.1300547.
  • AOAC . 1995. Official methods of analysis, association of official analytical chemists . 15th ed. Arlington, VA: The Association.
  • Asma, S. , M. Irshad , I. Fareed , Q. Mahmood , A. E. Eneji , and M. Shahzad . 2017. Transformations of phosphorus and other plant nutrients in poultry litter composted with sugarcane and cabbage wastes. Compost Science and Utilization 26 (2):114–27.
  • Bernal, M. P. , C. Paredes , M. A. Sánchez-Monedero , and J. Cegarra . 1998. Maturity and stability parameters of composts prepared with a wide range of organic wastes. Bioresource Technology 63:91–99. doi:10.1016/S0960-8524(97)00084-9.
  • Blackwell, P. , E. Krull , G. Butler , A. Herbert , and Z. Solaiman . 2013. Effect of banded biochar on dryland wheat production and fertiliser use in south-western Australia: An agronomic and economic perspective. Soil Research 48:531–45. doi:10.1071/SR10014.
  • Bolan, N. , D. Adriano , and S. Mahimairaja . 2004. Distribution and bioavailability of trace elements in livestock and poultry manure by-products. Critical Reviews in Environmental Science and Technology 34 (3):291–338. doi:10.1080/10643380490434128.
  • Brady, N. C. , and R. R. Weil . 2002. The nature and properties of soils , 760. 13th ed. New Jersey: Prentice- Hall Inc.
  • Cayuela, M. L. , M. A. Sanchez-Monedero , A. Roig , and T. Sinicco . 2012. Biochemical changes and GHG emissions during composting of lignocellulosic residues with different N-rich by products. Chemosphere 88:196–203. doi:10.1016/j.chemosphere.2012.03.001.
  • Cayuela, M. L. , T. Sinnico , and C. Mondini . 2009. Mineralization dynamics and biochemical properties during initial decomposition of plant and animal residues in soil. Applied Soil Ecology 4:118–27. doi:10.1016/j.apsoil.2008.10.001.
  • Dubeuxjr, J. C. , L. E. Sollenberger , N. B. Comerford , J. M. Scholberg , A. C. Ruggieri , J. M. Vendramini , S. M. Interrante , and K. M. Portier . 2006. Management intensity affects density fractions of soil organic matter from grazed bahiagrass swards. Soil Biology Biochemistry 38:2705–11. doi:10.1016/j.soilbio.2006.04.021.
  • Eneji, A. E. , S. Yamamoto , T. Honna , and A. Ishiguro . 2001. Physicochemical changes in livestock feces during composting. Communications in Soil Science and Plant Analysis 32 (3–4):477–89. doi:10.1081/CSS-100103023.
  • Eneji, A. E. , T. Honna , S. Yamamoto , T. Masuda , T. Endo , and M. Irshad . 2003. The relationship between total and available heavy metals in composted manure. Journal of Sustainable Agriculture 23 (1):125–34. doi:10.1300/J064v23n01_09.
  • Fang, M. , J. W. C. Wong , K. K. Ma , and M. H. Wong . 1999. Co-composting of sewage sludge and coal ash: Nutrient transformation. Bioresource Technology 67:19–24. doi:10.1016/S0960-8524(99)00095-4.
  • Farrell, M. , and D. L. Jones . 2009. Heavy metal contamination of a mixed waste compost: Metal speciation and fate. Bioresource Technology 100 (19):4423–32. doi:10.1016/j.biortech.2009.04.023.
  • Font-Palma, C. 2012. Characterisation, kinetics and modelling of gasification of poultry manure and litter: An overview. Energy Conversion and Management 53 (1):92–98. doi:10.1016/j.enconman.2011.08.017.
  • Gautam, S. P. , P. S. Bundela , A. K. Pandey , M. K. Awasthi , and S. Sarsaiya . 2010. Composting of municipal solid waste of Jabalpur city. Global Journal of Environmental Research 4:43–46.
  • Hao, X. , C. Chang , and F. J. Larney . 2004. Carbon, nitrogen balances and greenhouse gas emission during cattle feedlot manure composting. Journal of Environmental Quality 33:37–44. doi:10.2134/jeq2004.3700.
  • Herwijnen, V. R. 2007. Remediation of metal contaminated soil with mineral amended compost. Environmental Pollution 150:357–54.
  • Hu, T. J. , G. M. Zeng , and G. H. Huang . 2004. Produce and concentration change of ammonia in aerobic compost. Transactions of Nonferrous Metals Society of China 14 (1):109–15. (in Chinese). Huang.
  • Huang, G. F. , J. W. C. Wong , B. B. Nagar , Q. T. Wu , and F. B. Li . 2005. Bioavailability of heavy metals during humification of organic matter in pig manure compost. Accessed May 21, 2014. http://www.ecoweb.com/edi/050915.html.
  • Huang, G. F. , J. W. C. Wong , Q. T. Wu , and B. B. Nagar . 2004. Effect of C/N on composting of pig manure with sawdust. Waste Management 24 (8):805–13. doi:10.1016/j.wasman.2004.03.011.
  • Huang, G. F. , M. Fang , Q. T. Wu , L. X. Zhou , X. D. Liao , and J. W. C. Wong . 2001. Co-composting of pig manure with leaves. Environmental Technology 22:1203–12. doi:10.1080/09593332208618207.
  • Huang, G. F. , Q. T. Wu , J. W. C. Wong , and B. B. Nagar . 2006. Transformation of organic matter during co-composting of pig manure with sawdust. Bioresource Technology 97 (15):1834–42. doi:10.1016/j.biortech.2005.08.024.
  • Ingelmo, F. , M. J. Molina , M. D. Soriano , A. Gallardo , and L. Lapeña . 2012. Influence of organic matter transformations on the bioavailability of heavy metals in a sludge based compost. Journal of Environmental Management 95:S104–S109. doi:10.1016/j.jenvman.2011.04.015.
  • Irshad, M. , G. Shazia , A. E. Eneji , Z. Anwar , and M. Ashraf . 2014. Extraction of heavy metals from manure and their bioavailability to spinach (Spinacia oleracea L.) after composting. Journal of Plant Nutrition 37:1661–75. doi:10.1080/01904167.2014.888748.
  • Irshad, M. , M. Inoue , M. Shezadi , M. Tariq , and Faridullah . 2011. Investigating ammonium, phosphorus and potassium release from animal manure during composting. Journal of Food Agriculture and Environment 9:629–31.
  • Kumar, M. , Y. L. Ou , and J. G. Lin . 2010. Co-composting of green waste and food waste at low C/N ratio. Waste Management 30 (4):602–09. doi:10.1016/j.wasman.2009.11.023.
  • Lim, P. N. , T. Y. Wu , C. Clarke , and N. N. Daud . 2015. A potential bioconversion of empty fruit bunches into organic fertilizer using Eudriluseugeniae. International Journal of Environmental Science and Technology 12 (8):2533–44. doi:10.1007/s13762-014-0648-2.
  • Matthiesen, M. K. , F. J. Larney , L. B. Selinger , and A. F. Olson . 2005. Influence of loss‐on‐ignition temperature and heating time on ash content of compost and manure. Communications in Soil Science and Plant Analysis 36:2561–73. doi:10.1080/00103620500257242.
  • Miller, R. O. 1998. Nitric-perchloric acid wet digestion in an open vessel. In Handbook of Reference Methods for Plant Analysis, ed. by Y. P. Kalra, 57–61. London: CRC Press, Taylor & Francis.
  • Nelson, D. W. , and L. E. Sommers . 1982. Total carbon, organic carbon and organic matter. In Methods of soil analysis. Part 2 Chemical and MicrobiologicalProperties, ed. by A. L. Page, R. H. Miller and D.R. Keeney, 539–79.
  • Neves, L. , V. Ferreira , and R. Oliveira . 2009. Co-composting cow manure with food waste: The influence of lipid content. World Academy of Science, Engineering and Technology 58:986–91.
  • Nicholson, F. A. , B. J. Chambers , J. R. Williams , and R. J. Unwin . 1999. Heavy metal contents of livestock feeds and animal manures in England and Wales. Bioresource Technology 70:23–31. doi:10.1016/S0960-8524(99)00017-6.
  • Ogunwande, G. A. , J. A. Osunade , and L. A. O. Ogunjimi . 2008. Effects of carbon to nitrogen ratio and turning frequency on composting chicken litter in turned windrow piles. CIGR E-Journal X:1–16.
  • Olsen, S. R. , and L. E. Sommers . 1982. Phosphorus. Page AL , ed. Methods of soil analysis, Part 2 . 2nd ed. Agronomy Monograph 9 ASA and ASSA: Madison. 403–30.
  • Pare, T. , H. Dinel , and M. Schnitzer . 1999. Extractability of trace metals during co composting of biosolids and municipal solid wastes. Biology and Fertility of Soils 29:31–37. doi:10.1007/s003740050521.
  • Petric, I. , A. Šestan , and I. Šestan . 2009. Influence of wheat straw addition on composting of poultry manure. Process Safety and Environmental Protection 87 (3):206–12. doi:10.1016/j.psep.2009.02.002.
  • Pichtel, J. R. 1990. Microbial respiration in fly ash-sewage sludge amended soils. Environmental Pollution 63 (3):225–27.
  • Pramanik, P. , G. K. Ghosh , P. K. Ghosal , and P. Banik . 2007. Changes in organic–C, N, P and K and enzyme activities in vermicompost of biodegradable organic wastes under liming and microbial inoculants. Bioresource Technology 98 (13):2485–94. doi:10.1016/j.biortech.2006.09.017.
  • Preusch, P. L. , F. Takeda , and T. J. Tworkoski . 2004. N and P uptake by strawberry plants grown with composted poultry litter. Scientia Horticulturae 102:91–103. doi:10.1016/j.scienta.2003.12.005.
  • Rodrıguez, E. G. , J. Alonso , M. J. Melgar , and M. Vazquez . 2006. Evaluation of heavy metal contents in co-composts of poultry manure with barley wastes or chestnut burr/leaf litter. Chemosphere 65:1801–05. doi:10.1016/j.chemosphere.2006.04.056.
  • Rodriguez, E. G. , M. Vazquez , and M. D. Ravina . 2000. Co-composting of barley wastes and solid poultry manure. Bioresource Technology 75:223–25. doi:10.1016/S0960-8524(00)00069-9.
  • Schroder, J. 2005. Revisiting the agronomic benefits of manure: A correct assessment and exploitation of its fertilizer value spare the environment. Bioresource Technology 96:253–61. doi:10.1016/j.biortech.2004.05.015.
  • Singh, J. , and A. S. Kalamdhad . 2014. Uptake of heavy metals by natural zeolite during agitated pile composting of water hyacinth composting. International Journal of Environmental Sciences 5 (1):1–15.
  • Smith, S. R. 2009. A critical review of the bioavailability and impacts of heavy metals in municipal solid waste composts compared to sewage sludge. Environment International 35:142–56. doi:10.1016/j.envint.2008.06.009.
  • Smithson, J. B. , O. T. Edje , and K. E. Giller . 1993. Diagnosis and correction of soil nutrient problems of common bean (Phaseolus vulgaris) in the Usambara Mountains of Tanzania. The Journal of Agricultural Science 120 (2):233–40. doi:10.1017/S0021859600074281.
  • Thomas, G. W. 1982. Exchangeable cations, In Methods of soil analysis Part 2, Chemical and microbiological methods, Agronomy monograph No. 9 (2), ed. by A. L. Page, 159–166. Madison, WI: ASA-SSSA.
  • Tiquia, S. M. , J. W. C. Wan , and N. F. Y. Tam . 2001. Extracellular enzyme profile during co-composting of poultry manure and yard trimmings. Process Biochemistry 36:813–20. doi:10.1016/S0032-9592(00)00281-8.
  • Turan, N. G. 2008. The effects of natural zeolite on salinity level of poultry litter compost. Bioresource Technology 99 (7):2097–101. doi:10.1016/j.biortech.2007.11.061.
  • Wong, J. W. C. , and A. Selvam . 2006. Speciation of heavy metals during co-composting of sewage sludge with lime. Chemosphere 63:980–86. doi:10.1016/j.chemosphere.2005.08.045.
  • Wong, J. W. C. , K. F. Mak , N. W. Chan , A. Lam , M. Fang , L. X. Zhou , Q. T. Wu , and X. D. Liao . 2001. Co-composting of soybean residues and leaves in Hong Kong. Bioresource Technology 76:99–106. doi:10.1016/S0960-8524(00)00103-6.
  • Zhang, Y. , and Y. He . 2006. Co-composting solid swine manure with pine sawdust as organic substrate. Bioresource Technology 97:2024–31. doi:10.1016/j.biortech.2005.10.004.
  • Zorpas, A. A. , and M. Loizidou . 2008. Sawdust and natural zeolite as a bulking agent for improving quality of a composting product from anaerobically stabilized sewage sludge. Bioresource Technology 99 (16):7545–52. doi:10.1016/j.biortech.2008.02.014.

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