85
Views
5
CrossRef citations to date
0
Altmetric
Research

Effects of Green Manure and Compost Of Pea Plant on Wheat

, &
Pages 275-284 | Published online: 23 Jul 2013

  • AbdelhamidM.T., HoriuchiT. and ObaS. 2004. Composting of rice straw with oilseed rape cake and poultry manure and its effects on faba bean (Vicia faba L.) growth and soil properties. Biores. Technol., 93: 183–189.
  • AbrilA., BaleaniD., Casado-MurilloN. and NoeL. 2007. Effect of wheat crop fertilization on nitrogen dynamics and balance in the Humid Pampas, Argentina. Agric. Ecosyst. Environ., 119: 171–176.
  • ArjaH.V. and MarittaH.S. 1997. Evolution of microbiological and chemical parameters during manure and straw co-composting in drum composting system. Agric. Ecosyst. Environ., 66: 19–29.
  • ArkhipchenkoI.A., Salkinoja-SalonenM.S., KaryakinaJ.N. and TsitkoI. 2005. Study of three fertilizers produced from farm waste. Appl. Soil Ecol., 30: 126–132.
  • BabanaA.H. and AntounH. 2006. Effect of Tilemsi phosphate rock-solubilizing microorganisms on phosphorus uptake and yield of field-grown wheat (Triticum aestivum L.) in Mali. Plant Soil, 287: 51–58.
  • BlakeL., MercikS., KoerschensM., GouldingK.W.T., StempenS., WeigelA., PoultonP.R. and PowlsonD.S. 1999. Potassium content in soil, uptake in plants and the potassium balance in three European long-term field experiments. Plant Soil, 216: 1–14.
  • BowdenC., SpargoJ. and EvanyloG. 2007. Mineralization and N fertilizer equivalent value of composts. Compost Sci. Util, 15(2): 111–118.
  • BrayR.H. and KurtzL.T. 1945. Determination of total organic and available forms of phosphorus in soils. Soil Sci, 59: 39–45.
  • FortunaA., HarwoodR.R., RobertsonG.P., FiskJ.W. and PaulE.A. 2003. Seasonal changes in nitrification potential associated with application of N fertilizer and compost in maize systems of southwest Michigan. Agric. Ecosyst. Environ., 97: 285–293.
  • GrahamP.H. and VanceC.P. 2000. Nitrogen fixation in perspective: an overview of research and extension needs. Field Crops Res., 65: 93–106.
  • HirzelJ., WalterI., UndurragaP. and CartagenaM. 2007. Residual effects of poultry litter on silage maize (Zea mays L.) growth and soil properties derived from volcanic ash. Soil Sci. Plant Nutr., 53: 480–488.
  • JeyabalA. and KuppuswamyG. 2001. Recycling of organic wastes for the production of vermicompost and its response in rice-legume cropping system and soil fertility. Euro. J. Agron., 15: 153–170.
  • KostovO., TzvetkovY., KaloianovaN. and CleemputO. 1995. Cucumber cultivation on some waste during their aerobic composting. Biores. Technol., 53: 237–242.
  • KumarK. and GohK.M. 2002. Management practices of antecedent leguminous and non-leguminous crop residues in relation to winter wheat yields, nitrogen uptake, soil nitrogen mineralization and simple nitrogen balance. Euro. J. Agron., 16: 295–308.
  • LefroyR.B.D., ChaitepW. and BlairG.J. 1994. Release of sulfur from rice residue under flooded and non-flooded soil conditions. Aust. J. Agric. Res., 45: 657–667.
  • LiangC., DasK.C. and McClendonR.W. 2003. The influence of temperature and moisture contents regimes on the aerobic microbial activity of a biosolids composting blend. Biores. Technol., 86: 131–137.
  • MillerM.R., EngelR.E. and HolmesJ.A. 2006. Cropping sequence effect of pea and pea management on spring wheat in the Northern Great Plains. Agron J., 98: 1610–1619.
  • NicholsonF.A., ChambersB.J. and SmithK.A. 1996. Nutrient composition of poultry manures in England and Wales. Biores. Technol., 58: 279–284.
  • OscarsonP. 2000. The strategy of the wheat plant in acclimating growth and grain production to nitrogen availability. J. Experi. Bot., 51: 1921–1929.
  • PatilS.K., SinghU., SinghV.P., MishraV.N., DasR.O. and HenaoJ. 2001. Nitrogen dynamics and crop growth on an Alfisol and a Vertisol under a direct-seeded rainfed lowland rice-based system. Field Crops Res., 70: 185–199.
  • PimentelD. 1996. Green Revolution and chemical hazards. The Sci. Total Environ., 188(Suppl. 1): S86–S98.
  • PonnamperumaF.N. 1984. Straw as a source of nitrogen for wetland rice. BantaS. and MandozaC.V. (Eds). Organic Matter and Rice. IRRI, Los Banos, Philippines. pp.117–136.
  • RaisonR.J. 1979. Modification of the soil environment by vegetation fires, with particular reference to nitrogen transformation: a review. Plant Soil, 51: 73–108.
  • RochesterI.J., PeoplesM.B., HulugalleN.R., GaultR.R. and ConstableG.A. 2001. Using legumes to enhance nitrogen fertility and improve soil condition in cotton cropping systems. Field Crops Res., 70: 27–41.
  • SamarS., MalikR.K., MangatR., SinghS. and RamM. 1999. Effect of rice straw burning on the efficacy of the herbicides in wheat (Triticum aestivum). Indian J. Agron., 44: 361–366.
  • SharpeR.R., SchombergH.H., HarperL.A., EndaleD.M., JenkinsM.B. and FranzluebbersA.J. 2004. Ammonia volatilization from surface-applied poultry litter under conservation tillage management practices. J. Environ. Qual, 33: 1183–1188.
  • SturiteI., HenriksenT.M. and BrelandT.A. 2007. Winter losses of nitrogen and phosphorus from Italian ryegrass, meadow fescue and white clover in a northern temperate climate. Agric. Ecos. Environ., 120: 280–290.
  • TewariK., SatoT., AbikoM., OhtakeN., SueyoshiK., TakahashiY., NagumoY., TutidaT. and OhyamaT. 2007. Analysis of nitrogen nutrition of soybean plants with deep placement of coated urea and lime nitrogen. Soil Sci. Plant Nutr., 53: 772–781.
  • WongJ.W.C., MakK.F., ChanN.W., LanA., FangM., ZhouL.X., WuQ.T. and LiaoX.D. 2001. Co-composting of soybean residues and leaves in Hong Kong. Biores. Technol., 76: 99–106.
  • ZaidiA., KhanM.S. and AmilM. 2003. Interactive effect of rhizotrophic microorganisms on yield and nutrient uptake of chickpea (Cicer arietinum L.). Euro. J. Agron., 19: 15–21.
  • ZallerJ.G., MoserD., DrapelaT., SchmögerC. and FrankT. 2008. Effect of within-field and landscape factors on insect damage in winter oilseed rape. Agric. Ecos. Environ., 123: 233–238.
  • Zmora-NahumS., HadarY. and ChenY. 2007. Physicochemical properties of commercial composts varying in their source materials and country of origin. Soil Biol. Biochem, 39: 1263–1276.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.