Semina: Ciências Agrárias (Dec 2013)

Physical and chemical properties of substrates produced using macrophytes aquatics

  • Walda Monteiro Farias,
  • Leonaldo Alves de Andrade,
  • Elane Domingos Pereira ,
  • Bruno Oliveira Dias ,
  • Manoel Bandeira de Albuquerque,
  • Vânia da Silva Fraga

DOI
https://doi.org/10.5433/1679-0359.2013v34n6Supl1p3257
Journal volume & issue
Vol. 34, no. 6Supl1
pp. 3257 – 3270

Abstract

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Aquatic macrophytes are widely used as bioindicators of water quality because their proliferation usually occurs in eutrophic water sources and has hit several parts of Brazil and the world, restricted the multiple uses of aquatic ecosystems. However, this group of plants is able to retain considerable amounts of nutrients, presenting high productivity and high growth rate, thus, a good source of biomass for use in the production of substrates. In order to evaluate the potential of aquatic macrophytes water hyacinth (Eichhornia crassipes Solms.), water lettuce (Pistia stratiotes L.) and cattail (Typha domingensis Pers.) in the production of substrates was performed in this work, the physical and chemical characterization and evaluation of the degree of humification. The treatments were arranged in a 3 × 4 factorial, completely randomized design with three replications. All substrates produced with 100% macrophyte density present within the limits of 400 kg m-3, considered ideal. The composite substrates with water hyacinth and water lettuce are with the electrical conductivity of 0,79 a 2,49 dS m-1 within recommended. organic compounds produced are considered mature and have high levels of nitrogen phosphorus and potassium; The substrate produced with 70% water lettuce +30 % dung and 70% composed of cattail manure +20% +10% topsoil and 70 +30% cattail manure have C/N ratio within the considered ideal; the humification ratio and humification index, except for the four treatments (70 % water lettuce manure +30%), 5 (100% water hyacinth) and 8 (70% water hyacinth manure +30%) are within the considered ideal, the percentage of humic acids and polymerization rate, except for treatments 1 (100% water lettuce) and 12 (100% cattail), are shown below the ideal.

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