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Research

Horticultural Characteristics Of Licorice Waste Compost

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Pages 163-169 | Published online: 23 Jul 2013

  • AvianiI., LaorY., MedinaSh., KrassnovskyA and RavivM. 2010. Cocomposting of solid and liquid olive mill wastes: Management aspects and the horticultural value of the resulting composts. Bioresource Technol., 101:6699–6706.
  • CayuelaM.L., Sánchez-MonederoM.A. and RoigA. 2006. Evaluation of two different aeration systems for composting two-phase olive mill wastes. Process Biochem., 41:616–623.
  • ChapmanH.D. and PrattP.E. 1961. Methods of analysis for soils, plants and waters. University of California, Davis, CA, p. 309.
  • ClesceriL.S., GreenbergA.E. and EatonA.D. 1998. Standard methods for the examination of water and wastewater. Amer. Public Health Association, 20th edition. Method 4-108.
  • EatonA.D., ClesceriL.S., RiceE.W. et al. 2005. Standard Methods for Examination of Water & Wastewater, 21st Ed. American Public Health Association, American Water Works Association, and Water Environment Federation, Washington DC, section 5210 D.
  • EladY. and ChetI. 1983. Improved selective media for isolation of Trichoderma spp. or Fusarium spp. Phytoparasitica, 11(1)55–58.
  • EminoE.R. and WarmanP.R. 2004. Biological assay for compost quality. Compost Sci. Util., 12(4):342–348.
  • FinsteinM.S. and HoganJ.A. 1993. Integration of composting process: microbiology, facility structure and decision-making. In: HoitinkHAJ, KeenerHM. (Eds.) Science and Engineering of Composting. Renaissance Publications, Worthington, OH.
  • GagnonB., RobitailleR. and SimardR.R. 1999. Characterization of several on-farm and industrial composted materials. Canadian Jour. Soil Sci., 79 (1): 201–210.
  • Hach. 1988. Plant tissue and sap analysis manual. Publication 3118. Hach Company Loveland CO, p. 252.
  • HadarY. and MandelbaumR. 1986. Suppression of Pythium aphanidermatum damping off in container media containing composted liquorice roots. Crop Protection, 5:88–92.
  • HoitinkH.A.J. and BoehmM.J. 1999. Biocontrol within the context of soil microbial communities: a substrate-dependent phenomenon. Annual Review of Phytopathology, 37:427–446.
  • Iglesias JiménezE. and Pérez GarcíaV. 1992. Relationships between organic carbon and total organic matter in municipal solid wastes and city refuse composts. Bioresource Technol., 41:265–272.
  • ItävaaraM., VikmanM., Maunuksela and VuorinenL.A. 2010. Maturity tests for composts-verification of a test scheme for assessing maturity. Compost Sci. Util., 18:174–183.
  • KusanoA., NikaidoT., KugeT., OhmotoT., Dell MonacheG., BottaB., BottaM. and SaitohT. 1991. Inhibition of adenosine 3′,5′-cyclic monophosphate phosphodiesterase by flavonoids from licorice roots and 4-arylcoumarins. Chem. Pharm. Bull. (Tokyo), 39(4):930–933.
  • LouX.F., NairJ. 2009. The impact of landfilling and composting on greenhouse gas emissions - A review. Bioresource technol., 100:3792–3798.
  • MaherM. J., PrasadM. and RavivM. 2008. Chapter 11: Organic soilless media components. pp. 459–504 in: RavivM. and LiethJ.H. (Editors): Soilless Culture: Theory and Practice. Elsevier, Amsterdam.
  • Merck RQflex plus, Manual 2000. Merck, Darmstadt, Germany, p. 34.
  • RavivM., TarreS., GelerZ. and ShelefG. 1987. Changes in some physical and chemical properties of fibrous solids from cow manure and digested cow manure during composting. Biological Wastes, 19:309–318.
  • RavivM. and MedinaSh. 1997. Physical characteristics of separated cattle manure compost. Compost Sci. Util., 5:44–47.
  • RavivM., ZaidmanB. and KapulnikY. 1998. The use of compost as a peat substitute for organic vegetable transplants production. Compost Sci. Util., 6(1):46–52.
  • RavivM., OkaY., KatanJ., HadarY., YogevA., MedinaSh., KrassnovskyA. and ZiadnaH. 2005. High-nitrogen compost as a medium for organic container-grown crops. Bioresource Technol., 96:419–427.
  • Ryo-IchiT., HarumiK., NozomuT. and MakioK. 2002. Antibacterial activity of Licochalcone A against spore-forming bacteria. Antimicrobial Agents Chemotherapy, 46(5):1226–1230.
  • Said-PullicinoD., ErriquensF.G. and GigliottiG. 2007. Changes in the chemical characteristics of water-extractable organic matter during composting and their influence on compost stability and maturity. Bioresource Technol, 98: 1822–1831.
  • ShiW., NortonJ.M., MillerB.E. and PaceM.G. 1999. Effects of aeration and moisture during windrow composting on the nitrogen fertilizer values of dairy waste composts. Applied Soil Ecology, 11(1): 17–28.
  • YogevA., RavivM., HadarY., CohenR. and KatanJ. 2006. Plant waste-based composts suppressive to diseases caused by pathogenic Fusarium oxysporum. Eur. J. Plant Pathol., 116:267–278.
  • YogevA., RavivM., KritzmanG., HadarY., CohenR., KirshnerB. and KatanJ. 2009. Suppression of bacterial canker of tomato by composts. Crop Protection, 28:97–103.

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