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The use of vermicompost in organic farming: overview, effects on soil and economics

Journal of the Science of Food and Agriculture · 2014 · Vol. 95(6) · pp. 1143–1156
Su Lin LimTa Yeong WuPei Nie LimKatrina Pui Yee Shak

Abstract

Vermicomposting is a process in which earthworms are used to convert organic materials into humus-like material known as vermicompost. A number of researchers throughout the world have found that the nutrient profile in vermicompost is generally higher than traditional compost. In fact, vermicompost can enhance soil fertility physically, chemically and biologically. Physically, vermicompost-treated soil has better aeration, porosity, bulk density and water retention. Chemical properties such as pH, electrical conductivity and organic matter content are also improved for better crop yield. Nevertheless, enhanced plant growth could not be satisfactorily explained by improvements in the nutrient content of the soil, which means that other plant growth-influencing materials are available in vermicomposts. Although vermicomposts have been shown to improve plant growth significantly, the application of vermicomposts at high concentrations could impede growth due to the high concentrations of soluble salts available in vermicomposts. Therefore, vermicomposts should be applied at moderate concentrations in order to obtain maximum plant yield. This review paper discusses in detail the effects of vermicompost on soil fertility physically, chemically and biologically. Future prospects and economy on the use of organic fertilizers in the agricultural sector are also examined.

Composting and Vermicomposting TechniquesConstructed Wetlands for Wastewater TreatmentSoil Carbon and Nitrogen DynamicsVermicompostCompostSoil fertilityAgronomyHumusBulk densityOrganic matterNutrientAgricultureEnvironmental science

MeSH terms

AnimalsFertilizersManureOligochaetaSoilBiomassCrops, AgriculturalOrganic Agriculture

Funding

  • Ministry of Higher Education, Malaysia
  • Monash University Malaysia
Citations
498
FWCI
23.83
field-weighted impact
References
135
Percentile
100%
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References
Biology and ecology of earthworms
Agriculture Ecosystems & Environment · 1997 · 1,598 citations
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