Have a personal or library account? Click to login
Maturity indices of composting plant materials with Trichoderma asperellum as activator Cover

Maturity indices of composting plant materials with Trichoderma asperellum as activator

Open Access
|Jun 2020

References

  1. Adani F., Genevini P. L., Tambone F. (1995): A new index of organic matter stability. Compost Science Utilization 3: 25 – 37.10.1080/1065657X.1995.10701779
  2. Adediran J. A., Taiwo L. B., Akande M. O., Lawal B. O., Oluokun J. A. (2009): Working manual on compost Technology and Utilization. Institute of Agricultural Research and Training. ISBN 978-070-108-7.
  3. Adejuyigbe C. O., Tian G., Adeoye G. O. (2006): Influence of soil microarthropods on the decomposition of leguminous plant residues. ASSET series A 6: 259 – 269.
  4. Bernal M. P., Alburquerque J. A., Moral R. (2008): Composting of animal manure and chemical criteria for compost maturity assessment. Bioresource Technology 100: 5444 – 5453. (DOI): 10.1016/j.biortech.2008.11.027.10.1016/j.biortech.2008.11.027
  5. Biospark Corporation (2010): How to use Biospark Trichorderma; Steps in Composting with Trichoderma. A Technology Developed at UPLB College, Laguna, Philippines
  6. Brookes P. C. (1995): The use of microbial parameters in monitoring soil pollution by heavy metals. Biology and Fertility of Soils 19: 269 – 279, ISSN 0178 – 2762.10.1007/BF00336094
  7. Borken W., Muhs A., Reese F. (2002): Changes in microbial and soil properties following compost treatment of degraded temperate forest soils. Soil Biology and Biochemistry 34: 403 – 412.10.1016/S0038-0717(01)00201-2
  8. Boulter-Blitzer J. I., Trevor J. T., Boland G. J. (2006): A polyphasic approach for assessing maturity and stability in compost intended for suppression of plant pathogens. Applied Soil Ecology 34: 65 – 81.10.1016/j.apsoil.2005.12.007
  9. Castaldi P., Garau G., Melis P. (2008): Maturity assessment of compost from municipal solid waste through the study of enzyme activities and water-soluble fractions. Waste Management 28: 534 – 540.10.1016/j.wasman.2007.02.002
  10. Chukwujindu M. A., Iwegbue A. C., Egun F. N., Emuh, Isirimah N. O. (2006): Compost Maturity Evaluation and its Significance to Agriculture. Pakistan Journal of Biological Sciences 9: 2933 – 2944.10.3923/pjbs.2006.2933.2944
  11. Ciavatta C., Govi M., Vittori A. L., Sequi P. (1990): Characterization of humified compounds by extraction and fractionation on solid polyvinylpyrrolidone. Journal of Chromatography 509: 141 – 146.10.1016/S0021-9673(01)93248-0
  12. CIAS – Center for Integrated Agriculture System, (2002): The Art and Science of composting. Leslie Cooperband University of Wiscosin, Madison.
  13. Clancy M. J., Wilson R. K. (1966): Development and application of a new chemical method for predicting the digestibility and intake of herbage samples. Proceedings of the 5th International Grassland Congress, Helsinki, pp. 445 – 453.
  14. FAO, Food and Agriculture Organization of the United Nations (2012): Soil Proper ties and fertility improvement through composting using Trichorderma, Philippine/TECA. Published by the Philippines Department of Agriculture and FAO through MDG-F 1656 outcome 3.1 Project.
  15. Gazzetta Ufficiale (1992): Metodi Ufficiali di analisi chimica dei suoli. DM 11 Maggio 1992, suppl. G. U. 121, 25 Maggio 1992. [Official Gazette of the Italian Republic. Official methods for chemical analysis of soils. Ministerial Decree 05–25–1992].
  16. Gigliotti G., Kaiser K., Guggenberger G., Haumaier L. (2002): Differences in the chemical composition of dissolved organic matter from waste material of different sources. Biology and Fertility of Soils 36: 321 – 329.10.1007/s00374-002-0551-8
  17. Gulser C., Demir Z., Ic S. (2010): Changes in some soil properties at different incubation periods after tobacco waste application. Journal of Environmental Biology 31: 671 – 674.
  18. Henry C. L., Harrison R. B. (1996): Carbon Fraction in Compost and Compost Maturity Tests. In: Soil Organic Matter: Analysis and Interpretation. In Magdoff, F. R., M. A. Taabatabai and E. A. Harlon (Eds). SSA Special Publication No. 46, USA, pp. 51 – 67.10.2136/sssaspecpub46.c6
  19. Hermosa R., Viterbo A., Chet. I., Monte E. (2012): Plant-beneficial effects of Trichoderma and of its genes. Microbiology 158: 17 – 25.10.1099/mic.0.052274-021998166
  20. Kalamdhad A. S., Das Ayan (2011): Evaluation of Water Hyacinth Compost Stability Using Respirometric Techniques. International Journal of Research in Chemistry and Environment 1: 109 – 113. ISSN 2248–9649.
  21. Kutsanedzie F., Rockson G. N. K., Achio S. (2012): Comparison of compost maturity, microbial survival and health hazards in two composting systems. Journal of Microbiology, Biotechnology and Food Sciences 2: 175 – 193.
  22. Lax A., Roig A., Costa F. (1986): A method for determining the cation-exchange capacity of organic materials. Plant and Soil 94: 349 – 355.10.1007/BF02374329
  23. Mahimairaja S. P., Dooraisamy A., Lakshmanan G., Rajannan, C., Udayasoorian Natarajan S. (2008): Composting technology and organic waste utilization in Agriculture. A. E. Publications, P. N. Pudur, Coimbatore 641 041.
  24. Navarro A. F., Cegarra J., Roig A., Garcia D. (1993): Relationships between organic matter and carbon contents of organic wastes. Bioresource Technology 44: 203 – 207.10.1016/0960-8524(93)90153-3
  25. Nusrat J., Sabiha S., Adhikary S. K., Sanzida R., Suraiya Y. (2013): Evaluation of the growth performance of Trichoderma harzianum (Rifai.) on different culture media. IOSR Journal of Agriculture and Veterinary Sciences 3:44 – 50.10.9790/2380-0344450
  26. Ofosu-Budu G. K., Horgarh J. N., Fobil N., Quaye A., Danso S. K. A., Carboo D. (2010): Harmonizing procedure for the evaluation of compost maturity in two compost types in Ghana. Resource Conservation and Recycling 54: 205 – 209.10.1016/j.resconrec.2009.08.001
  27. Rabia B., Iqra A ., Saima I., Shabnum S. (2014): Comparative effect of composts with and without microbial inoculants on the growth of Vigna radiata. Inter national Journal of Advances in Pharmacy, Biology and Chemistry 3: 100 – 105; ISSN 2277 – 4688.
  28. Raghavendra R. B., Radhakrishna D., Shanth S. L. (2009): Activity of Mineralizing Enzymes during composting of urban solid waste. Electronic Journal of Environmental Agricultural and food Chemistry (EJEACHe) ISSN: 1579-4377.
  29. Roca-Pérez L., Martínez C., Marcilla P., Boluda R. (2009): Composting rice straw with sewage sludge and compost effects on t he soil plant system. Chemosphere 75: 781 – 78710.1016/j.chemosphere.2008.12.058
  30. Rynk, R., van de Kamp, M., Willson, G. B., Singley, M. E., Richard, T. L., Kolega, J. L., Gouin, F. R., Laliberty and L. Jr (1992): On Farm Composting Handbook. New York: Cornell University.
  31. Sanchez-Monedero M. A ., Roig A., Paredes C., Bernal M. P. (2001): Nitrogen Transformation during organic waste composting by Rutgers system and its effect on pH. EC and maturity of composting mixtures. Bioresource Technology 78: 301 – 308.10.1016/S0960-8524(01)00031-1
  32. Saviozzi, A., Levi-Minz R., Riffaldi R. (1988): Maturity evaluation of organic wastes. BioCycle 198: 54 – 179.
  33. Seal A., Datta A. Saha S., Chatterjee A. K., Barik A. K., Bhattacharya S., Levin Y., Nain A. S., Asthana A, Bera R. (2016): Soil Microbial Rejuvenation through Soil Resource Recycling as a part of Sustainable Management. Programme: A Case Study from Lakhipara Tea Estate, Dooars, West Bengal, India Research & Reviews: Journal of Agricultural Science and Technology, pp. 18 – 34.
  34. Sommer S. G., Kjellerup V., Kristjansen O. (1992): Determination of total ammonium nitrogen in pig and cattle slurry: sample preparation and analysis. Acta Agronomica Scandinaviae B–SP 42: 146 – 151.10.1080/09064719209417969
  35. Suzuki T., Ikumi Y., Okamoto S., Watanabe I., Fujitake N., Otsuka H. (2004): Aerobic composting of chips from clear cut trees with various co-materials. Bioresource Technology 95: 121 – 128.10.1016/j.biortech.2004.02.020
  36. Tiquia S. M. (20 02): Microbial transformation of nitrogen during composting. In: H Insam, N. Riddech and S. Klammer (Eds): Microbiology of other Biodegradation Processes, Springer Verlag, Berlin, Heidelberg, pp. 237 – 245.10.1007/978-3-662-08724-4_20
  37. Tiwari, V. N. (1998): Composting of dairy farm wastes and evaluation of its manorial value. Proceedings of the National Academy of Sciences, India. 593
  38. Vance E. D., Brookes P. C., Jenkinson D. S. (1987): An extraction method for measuring soil microbial biomass C. Soil Biology 19: 703 – 707.10.1016/0038-0717(87)90052-6
  39. Xi B., Liu H. (2002): Composting MSW and sewage sludge with effective complex microorganisms, Journal of. Environmental Science 14: 264 – 268.
  40. Zaha C., Dumitrescu L ., Manciulea I. (2013): Correlations between composting conditions and characteristics of compost as biofertilizer. Bulletin of the Transilvania University of Brasov. Series 1, Engineering Sciences 6(55): 51 – 58
DOI: https://doi.org/10.2478/ats-2020-0003 | Journal eISSN: 1801-0571 | Journal ISSN: 0231-5742
Language: English
Page range: 19 - 27
Submitted on: Aug 4, 2019
Accepted on: May 4, 2020
Published on: Jun 12, 2020
Published by: Mendel University in Brno
In partnership with: Paradigm Publishing Services
Publication frequency: 1 issue per year
Related subjects:

© 2020 Adenike Fisayo Komolafe, Christopher Olu Adejuyigbe, Adeniyi Adebowale Soretire, Isaac OreOluwa Olatokunbo Aiyelaagbe, published by Mendel University in Brno
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.