1,826
Views
15
CrossRef citations to date
0
Altmetric
Technical Paper

Influence of aeration rate and reactor shape on the composting of poultry manure and sawdust

, , , , &
Pages 633-645 | Received 13 Mar 2018, Accepted 09 Jan 2019, Published online: 19 Mar 2019

References

  • Ahn, H. K., T. L. Richard, and H. L. Choi. 2007. Mass and thermal balance during composting of a poultry manure—wood shavings mixture at different aeration rates. Process Biochem. 42 (2):215–23. doi:10.1016/j.procbio.2006.08.005.
  • APHA (1995) Standard Methods for the Examination of Water and Wastewater. 19th Edition, American Public Health Association Inc., New York.
  • Arslan, E. I., A. Ünlü, and M. Topal. 2011. Determination of the effect of aeration rate on composting of vegetable–Fruit wastes. CLEAN–Soil Air Water 39 (11):1014–21. doi:10.1002/clen.v39.11.
  • Barrington, S., D. Choinière, M. Trigui, and W. Knight. 2003. Compost convective airflow under passive aeration. Bioresour. Technol. 86 (3):259–66. doi:10.1016/S0960-8524(02)00155-4.
  • Beck, F. B., S. Smars, and H. Jonsson. 2001. Gaseous emissions of carbon dioxide, ammonia and nitrous oxide from organic household waste in a composting reactor under different temperature regimes. Agric. Eng. Res. 78 (4):423. doi:10.1006/jaer.2000.0662.
  • Benito, M., A. Masaguer, A. Moliner, N. Arrigo, and R. M. Palma. 2003. Chemical and microbiological parameters for the characterisation of the stability and maturity of pruning waste compost. Biol. Fertil. Soils 37 (3):184–89. doi:10.1007/s00374-003-0584-7.
  • Bernal, M. P., C. Paredes, M. A. Sanchez-Monedero, and J. Cegarra. 1998. Maturity and stability parameters of composts prepared with a wide range of organic wastes. Bioresour. Technol. 63 (1):91–99. doi:10.1016/S0960-8524(97)00084-9.
  • Bernal, M. P., J. A. Alburquerque, and R. Moral. 2009. Composting of animal manures and chemical criteria for compost maturity assessment. Rev. Bioresour. Technol. 100:5444e5453.
  • Chang, Z. 2004. Effects of temperature on the structure of a compost bed- compress, porosity and permeability. J. Agro-Environ. Sci. 23 (4):791–795.
  • Chen, J. H. (1999). Characteristic and applications of domestic animal wastes. Animal waste compost products quality and treatment alternatives manual. Soil Survey and Testing Center, Department of Soil and Environmental Science, National Chung Hsing University, Taiwan, 15–22.
  • Chen, Z., S. Zhang, Q. Wen, and J. Zheng. 2015. Effect of aeration rate on composting of penicillin mycelial dreg. J. Environ. Sci. 37:172–78. doi:10.1016/j.jes.2015.03.020.
  • Cunha, Q. A. C., H. M. Ribeiro, A. Ramos, and F. Cabral. 2007. Study of biochemical and microbiological parameters during composting of pine and eucalyptus bark. Bioresour. Technol. 98:3213–20. doi:10.1016/j.biortech.2006.07.006.
  • de Guardia, A., C. Petiot, D. Rogeau, and C. Druilhe. 2008. Influence of aeration rate on nitrogen dynamics during composting. Waste Manage. 28:575–87. doi:10.1016/j.wasman.2007.02.007.
  • Dewes, T. 1996. Effect of pH, temperature, amount of litter and storage density on ammonia emissions from stable manure. J. Agri. Sci. 127 (4):501–09. doi:10.1017/S0021859600078722.
  • Diaz, M. J., E. Madejón, F. López, R. López, and F. Cabrera. 2002. Optimization of the rate vinasse/grape marc for co-composting process. Process Biochem. 37 (10):1143–50. doi:10.1016/S0032-9592(01)00327-2.
  • Eklind, Y., and H. Kirchmann. 2000. Composting and storage of organic household waste with different litter amendments. II: Nitrogen turnover and losses. Bioresour. Technol. 74 (2):125–33. doi:10.1016/S0960-8524(00)00005-5.
  • Gao, M., B. Li, A. Yu, F. Liang, L. Yang, and Y. Sun. 2010. The effect of aeration rate on forced-aeration composting of chicken manure and sawdust. Bioresour. Technol. 101 (6):1899–903. doi:10.1016/j.biortech.2009.10.027.
  • Gray, R. K., K. Sherman, and A. J. Biddlestone. 1971. Review of composting to the practical process. Process Biochem. 6 (10):44–49.
  • Guo, R., G. Li, T. Jiang, F. Schuchardt, T. Chen, Y. Zhao, and Y. Shen. 2012. Effect of aeration rate, C/N ratio and moisture content on the stability and maturity of compost. Bioresour. Technol. 112:171–78. doi:10.1016/j.biortech.2012.02.099.
  • Hong, J. H., J. Matsuda, and Y. Ikeuchi. 1983. High rapid composting of dairy cattle manure with crop and forest residues. Trans. ASAE 26 (2):533–41. doi:10.13031/2013.33974.
  • Kulcu, R., and O. Yaldiz. 2004. Determination of aeration rate and kinetics of composting some agricultural wastes. Bioresource Technology 93 (1):49-57.
  • Kuter, G. A., H. A. J. Hoitink, and L. A. Rossman. 1985. Effects of aeration and temperature on composting of municipal sludge in a full-scale vessel system. J. Water Pollut. Control Fed. 309–15.
  • Lau, A. K., K. V. Lo, P. H. Liao, and J. C. Yu. 1992. Aeration experiments for swine waste composting. Bioresour. Technol. 41 (2):145–52. doi:10.1016/0960-8524(92)90185-Z.
  • Leth, M., H. Jensen, and J. Iversen. 2001. Influence of different nitrogen sources on composting of miscanthus in open & closed systems. Compost Sci. Util. 9 (3):197–205. doi:10.1080/1065657X.2001.10702036.
  • Li, X., R. Zhang, and Y. Pang. 2008. Characteristics of dairy manure composting with rice straw. Bioresour. Technol. 99 (2):359–67. doi:10.1016/j.biortech.2006.12.009.
  • Lin, C. 2008. A negative-pressure aeration system for composting food wastes. Bioresour. Technol. 99 (16):7651–56. doi:10.1016/j.biortech.2008.01.078.
  • Lu, S. G., T. Imai, H. F. Li, M. Ukita, M. Sekine, and T. Higuchi. 2001. Effect of enforced aeration on in-vessel food waste composting. Environ Technol 22 (10):1177–82. doi:10.1080/09593332208618200.
  • Magalhaes, A. M. T., P. J. Shea, M. D. Jawson, E. A. Wicklund, and D. W. Nelson. 1993. Practical simulation of composting in the laboratory. Waste Manage. Res. 11 (2):143–54. doi:10.1177/0734242X9301100206.
  • Mason, I. G., and M. W. Milke. 2005. Physical modelling of the composting environment: A review. Part 1: Reactor systems. Waste Manage. 25 (5):481–500. doi:10.1016/j.wasman.2005.01.015.
  • Nada, W. M. 2015. Stability and maturity of maize stalks compost as affected by aeration rate, C/N ratio and moisture content. J. Soil Sci. Plant Nutr. 15 (3):751–64. doi:10.4067/S0718-95162015005000051.
  • Novinscak, A., C. Surette, and M. Filion. 2007. Quantification of Salmonella spp. in composted biosolids using a TaqMan qPCR assay. J. Microbiol. Methods 70 (1):119–26. doi:10.1016/j.mimet.2007.03.019.
  • Ogunwande, G. A., J. A. Osunade, K. O. Adekalu, and L. A. O. Ogunjimi. 2008. Nitrogen loss in chicken litter compost as affected by carbon to nitrogen ratio and turning frequency. Bioresour. Technol. 99 (16):7495–503. doi:10.1016/j.biortech.2008.02.020.
  • Pagans, E., R. Barrena, X. Font, and A. Sánchez. 2006. Ammonia emissions from the composting of different organic wastes. Dependency on process temperature. Chemosphere 62 (9):1534–42. doi:10.1016/j.chemosphere.2005.06.044.
  • Paredes, C., M. P. Bernal, J. Cegarra, and A. Roig. 2002. Bio-degradation of olive mill wastewater sludge by its co-composting with agricultural wastes. Bioresour. Technol. 85 (1):1–8. doi:10.1016/S0960-8524(02)00078-0.
  • Partanen, P., J. Hultman, L. Paulin, P. Auvinen, and M. Romantschuk. 2010. Bacterial diversity at different stages of the composting process. BMC Microbiol. 10 (1):94. doi:10.1186/1471-2180-10-94.
  • Pecchia, J. A., D. M. Beyer, and P. J. Wuest. 2002. The effects of poultry manure based formulations on Odor generation during Phase i mushroom composting. Compost Sci. Util. 10 (3):188–96. doi:10.1080/1065657X.2002.10702080.
  • Petric, I., A. Šestan, and I. Šestan. 2009. Influence of wheat straw addition on composting of poultry manure. Process Saf. Environ. Prot. 87 (3):206–12. doi:10.1016/j.psep.2009.02.002.
  • Phillip, E. A. 2010. The design and construction of a pilot-scale compost reactor for the study of gas emissions from compost under different physical conditions. Masters Abstr. Int. 49 (05).
  • Prescot, L. M., J. P. Harley, and D. A. Kleon. 1996. Microbiology, 498–502. Chichester: WCB Publishers.
  • Qasim, W., B. E. Moon, M. Phonsuwan, J. S. Jo, M. H. Lee, M. Nafees, and H. T. Kim. 2017. Effects of an aluminum sulfate and ferric chloride blend on poultry litter characteristics in vitro. J. Appl. Poult. Res. 27 (1):92–102. doi:10.3382/japr/pfx046.
  • Ryckeboer, J., J. Mergaert, J. Coosemans, K. Deprins, and J. Swings. 2003. Microbiological aspects of biowaste during composting in a monitored compost bin. Journal Of Applied Microbiology 94 (1):127-137.
  • Schloss, P. D., B. Chaves, and L. P. Walker. 2000. The use of the analysis of variance to assess the influence of mixing during composting. Process Biochem. 35 (7):675–84. doi:10.1016/S0032-9592(99)00117-X.
  • Sesay, A. A., K. E. Lasaridi, and E. I. Stentiford. 1998. Aerated static pile composting of municipal solid waste (MSW): A comparsion of positive pressure aeration with hybrid positive and negative aeration. Waste Manage. Res. 16 (3):264–72. doi:10.1177/0734242X9801600308.
  • Strauch, D., and G. Ballarini. 1994. Hygienic aspects of the production and agricultural use of animal wastes. Zoonoses Public Health 41 (1‐10):176–228. doi:10.1111/j.1439-0450.1994.tb00222.x.
  • Sweeten, J. M., and B. W. Auvermann. 2008. Composting manure and sludge. Agrilife Extension 479:06e08.
  • Tiquia, S. M. 2010. Reduction of compost phytotoxicity during the process of decomposition. Chemosphere 79 (5):506–12. doi:10.1016/j.chemosphere.2010.02.040.
  • Troy, S. M., T. Nolan, W. Kwapinski, J. J. Leahy, M. G. Healy, and P. G. Lawlor. 2012. Effect of sawdust addition on composting of separated raw and anaerobically digested pig manure. J. Environ. Manage. 111:70-77.
  • USDA. 2017. www.fas.usda.gov/data/south-korea-poultry-and-products-annual-2
  • VanderGheynst, J. S., and F. Lei. 2003. Microbial community structure dynamics during aerated and mixed composting. Trans. ASAE 46 (2):577–84. doi:10.13031/2013.12912.
  • VanderGheynst, J. S., J. M. Gossett, and L. P. Walker. 1997. High-solids aerobic decomposition: Pilot-scale reactor development and experimentation. Process Biochem. 32 (5):361–75. doi:10.1016/S0032-9592(96)00073-8.
  • Venglovsky, J., N. Sasakova, M. Vargova, Z. Pacajova, I. Placha, M. Petrovsky, and D. Harichova. 2005. Evolution of temperature and chemical parameters during composting of the pig slurry solid fraction amended with natural zeolite. Bioresour. Technol. 96 (2):181–89. doi:10.1016/j.biortech.2004.05.006.
  • Walker, L. P., T. D. Nock, J. M. Gossett, and J. S. VanderGheynst. 1999. The role of periodic agitation and water addition in managing moisture limitations during high-solids aerobic decomposition. Process Biochem. 34 (6):601–12. doi:10.1016/S0032-9592(98)00122-8.
  • Wong, J. W. C., S. W. Y. Li, and M. H. Wong. 1995. Coal fly ash as a composting material for sewage sludge: Effects on microbial activities. Environ Technol 16 (6):527–37. doi:10.1080/09593331608616294.
  • Zhang, H., G. Li, J. Gu, G. Wang, Y. Li, and D. Zhang. 2016. Influence of aeration on volatile sulfur compounds (VSCs) and NH3 emissions during aerobic composting of kitchen waste. Waste Manage. 58:369–75. doi:10.1016/j.wasman.2016.08.022.
  • Zucconi, F., A. Pera, M. Forte, and M. A. R. C. De Bertoldi. 1981. Evaluating toxicity of immature compost. BioCycle 22:54–7.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.