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Research Article

The Age-Induced Quality Shift of Vermicompost Influenced the Biodegradation Kinetics in Soils

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Pages 2285-2294 | Received 19 Jul 2022, Accepted 06 May 2024, Published online: 13 May 2024

References

  • Aira, M., F. Monroy, and J. Domínguez. 2007. Microbial biomass governs enzyme activity decay during aging of worm-worked substrates through vermicomposting. Journal of Environmental Quality 36 (2):448–52. doi:10.2134/jeq2006.0262
  • Ajwa, H. A., and M. A. Tabatabai. 1994. Decomposition of different organic materials in soils. Biology & Fertility of Soils 18 (3):175–82. doi:10.1007/BF00647664
  • Alef, K., and P. Nannipieri. 1995. Methods in applied soil microbiology & biochemistry. New York: Academic Press.
  • Atiyeh, R. M., S. Lee, C. A. Edwards, N. Q. Arancon, and J. D. Metzger. 2002. The influence of humic acids derived from earthworm-processed organic wastes on plant growth. Bioresource Technology 84 (1):7–14. doi:10.1016/s0960-8524(02)00017-2
  • Barthod, J., M. F. Dignac, and C. Rumpel. 2021. Effect of decomposition products produced in the presence of epigeic earthworms and minerals on soil C stabilization. Soil Biology & Biochemistry 160:1–7. doi:10.1016/j.soilbio.2021.108308
  • Burt, R. 2004. Soil survey laboratory methods manual. Version 4.0. Soil survey investigation Report No 42, U.S. Government Print.
  • Gómez-Brandón, M., C. Lazcano, M. Lores, and J. Domínguez. 2010. Detritivorous earthworms modify microbial community structure and accelerate plant residue decomposition. Applied Soil Ecology 44 (3):237–44. doi:10.1016/j.apsoil.2009.12.010
  • Kundu, S., R. Bhattacharyya, V. Prakash, B. N. Ghosh, and H. S. Gupta. 2007. Carbon sequestration and relationship between carbon addition and storage under rainfed soybean–wheat rotation in a sandy loam soil of the Indian Himalayas. Soil & tillage Research 92 (1–2):87–95. doi:10.1016/j.still.2006.01.009
  • Lal, R., R. F. Follett, B. A. Stewart, and J. M. Kimble. 2007. Soil carbon sequestration to mitigate climate change and advance food security. Soil Science 172 (12):943–56. doi:10.1097/ss.0b013e31815cc498
  • Lim, S. S., J. H. Kwak, S. I. Lee, D. S. Lee, H. J. Park, X. Hao, and W. J. Choi. 2010. Compost type effects on nitrogen leaching from Inceptisol, Ultisol, and Andisol in a column experiment. Journal of Soils & Sediments 10 (8):1517–26. doi:10.1007/s11368-010-0263-x
  • Manna, M. C., S. Jha, P. K. Ghosh, and C. L. Acharya. 2003. Comparative efficacy of three Epigeic earthworms under different deciduous forest litters decomposition. Bioresource Technology 88 (3):197–206. doi:10.1016/s0960-8524(02)00318-8
  • Mondini, C., M. L. Cayuela, T. Sinicco, M. A. Sánchez-Monedero, E. Bertolone, and L. Bardi. 2008. Soil application of meat and bone meal, Short-term effects on mineralization dynamics and soil biochemical and microbiological properties. Soil Biology & Biochemistry 40 (2):462–74. doi:10.1016/j.soilbio.2007.09.010
  • Nahidan, S., and F. Nourbakhsh. 2010. Microbial indices related to soil carbon as affected by management practices in arid forest and agricultural ecosystems. Communications in Soil Science & Plant Analysis 41 (15):1863–72. doi:10.1080/00103624.2010.492443
  • Pascual, J. A., T. Hernandez, C. Garcia, and M. Ayuso. 1998. Carbon mineralization in an arid soil amended with organic wastes of varying degrees of stability. Communications in Soil Science & Plant Analysis 29 (7–8):835–46. doi:10.1080/00103629809369989
  • Rasool, R., S. S. Kukal, and G. S. Hira. 2008. Soil organic carbon and physical properties as affected by long-term application of FYM and inorganic fertilizers in maize–wheat system. Soil & tillage Research 101 (1–2):31–36. doi:10.1016/J.STILL.2008.05.015
  • Rochette, P., D. A. Angers, M. H. Chantigny, B. Gagnon, and N. Bertrand. 2006. In situ mineralization of dairy cattle manures as determined using soil-surface carbon dioxide fluxes. Soil Science Society of America Journal 70 (3):744–52. doi:https://doi.org/10.2136/sssaj2007.0093
  • Santana, N. A., R. J. S. Jaques, Z. I. Antoniolli, H. Martínez-Cordeiro, and J. Domínguez. 2020. Changes in the chemical and biological characteristics of grape marc vermicomposts during a two-year production period. Applied Soil Eiology 154:1–9. doi:10.1016/j.apsoil.2020.103587
  • Sissoko, A., and K. Kpomblekou-A. 2010. Carbon decomposition in broiler litter-amended soils. Soil Biology & Biochemistry 42 (4):543–50. doi:10.1016/j.soilbio.2009.10.007
  • Six, J., E. T. Elliott, and K. Paustian. 1999. Aggregate and soil organic matter dynamics under conventional and no-tillage systems. Soil Science Society of America Journal 63 (5):1350–58. doi:10.2136/sssaj1999.6351350x
  • Tayebi Sudkolai, S., and F. Nourbakhsh. 2017. Urease activity as an index of assessing the maturity of cow manure and wheat residue vermicomposts. Waste Management 64:63–66. doi:10.1016/j.wasman.2017.03.011
  • Van Soest, P. V., J. B. Robertson, and B. Lewis. 1991. Methods for dietary fiber, neutral detergent fiber, and nonstarch polysaccharides in relation to animal nutrition. Journal of Dairy Science 74 (10):3583–97. doi:10.3168/jds.S0022-0302(91)78551-2
  • Voković, A., M. Velki, S. Ečimović, R. Vuković, I. Š. Čamagajevac, and Z. Lončarić. 2021. Vermicomposting—facts, benefits and knowledge gaps. Agronomy 11 (10):1–15. doi:10.3390/agronomy11101952

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