Impact of harvest timing and cultivar on biogas outcome from winter wheat silage

Biogas can be produced from industrial by-products, household waste and raw materials of agricultural origin. Agricultural resources can be agricultural by-products, for example, manure as well as biomass of energy crops. The objective of the trial was to evaluate the methane outcome from the winter...

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Hauptverfasser: Jansone, I., Latvia Univ. of Agriculture, Jelgava (Latvia), State Stende Inst. of Cereal Breeding, Dizstende, Talsu reg. (Latvia), Gaile, Z., Latvia Univ. of Agriculture, Jelgava (Latvia)
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creator Jansone, I., Latvia Univ. of Agriculture, Jelgava (Latvia)
State Stende Inst. of Cereal Breeding, Dizstende, Talsu reg. (Latvia)
Gaile, Z., Latvia Univ. of Agriculture, Jelgava (Latvia)
description Biogas can be produced from industrial by-products, household waste and raw materials of agricultural origin. Agricultural resources can be agricultural by-products, for example, manure as well as biomass of energy crops. The objective of the trial was to evaluate the methane outcome from the winter wheat (Triticum aestivum L.) silage depending on the variety and the growth stage during the harvest. The trial was carried out in State Stende Cereals Breeding Institute in the autumn of 2009. The biomass of three varieties of winter wheat, harvested at three stages of maturity - at the beginning of flowering (GS 60-62), early milk ripeness (GS 70-72), and early yellow ripeness (GS 80-82) - was ensiled in laboratory conditions. The silage was analysed 180 days after it had been ensiled. The biogas and methane outcome in laboratory conditions (in Germany) was determined for samples of silage made from winter wheat variety ‘Skalmeje’ at all harvesting times according to VDI 4630 method. The theoretically obtainable methane outcome was calculated for silage samples of all varieties by using the results of chemical composition analysis (crude protein, crude fibre, crude fat, N-free-extracts). The highest methane outcome from one ton of winter wheat silage was acquired by harvesting and ensiling the biomass during the flowering stage. However, evaluating the methane yield from one hectare, the best results were obtained by harvesting and ensiling the biomass at the early milk stage of ripeness and at the stage of early yellow ripeness.
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The biomass of three varieties of winter wheat, harvested at three stages of maturity - at the beginning of flowering (GS 60-62), early milk ripeness (GS 70-72), and early yellow ripeness (GS 80-82) - was ensiled in laboratory conditions. The silage was analysed 180 days after it had been ensiled. The biogas and methane outcome in laboratory conditions (in Germany) was determined for samples of silage made from winter wheat variety ‘Skalmeje’ at all harvesting times according to VDI 4630 method. The theoretically obtainable methane outcome was calculated for silage samples of all varieties by using the results of chemical composition analysis (crude protein, crude fibre, crude fat, N-free-extracts). The highest methane outcome from one ton of winter wheat silage was acquired by harvesting and ensiling the biomass during the flowering stage. 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The biomass of three varieties of winter wheat, harvested at three stages of maturity - at the beginning of flowering (GS 60-62), early milk ripeness (GS 70-72), and early yellow ripeness (GS 80-82) - was ensiled in laboratory conditions. The silage was analysed 180 days after it had been ensiled. The biogas and methane outcome in laboratory conditions (in Germany) was determined for samples of silage made from winter wheat variety ‘Skalmeje’ at all harvesting times according to VDI 4630 method. The theoretically obtainable methane outcome was calculated for silage samples of all varieties by using the results of chemical composition analysis (crude protein, crude fibre, crude fat, N-free-extracts). The highest methane outcome from one ton of winter wheat silage was acquired by harvesting and ensiling the biomass during the flowering stage. 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source Elektronische Zeitschriftenbibliothek - Frei zugängliche E-Journals
subjects ANALYTICAL METHODS
BIOMASA
BIOMASS
BIOMASSE
BLE D'HIVER
CALCUL
CALCULATION
CALCULO
CHEMICAL COMPOSITION
COMPOSICION QUIMICA
COMPOSITION CHIMIQUE
CONTENIDO DE MATERIA SECA
DATE DE RECOLTE
DRY MATTER CONTENT
ENSILADO
ENSILAGE (PRODUIT)
ETAPAS DE DESARROLLO DE LA PLANTA
EXPERIMENTACION EN CAMPO
EXPERIMENTACION EN LABORATORIO
EXPERIMENTATION AU CHAMP
EXPERIMENTATION EN LABORATOIRE
FECHA DE RECOLECCION
FIELD EXPERIMENTATION
HARVESTING DATE
http://www.fao.org/aos/agrovoc#c_12103
http://www.fao.org/aos/agrovoc#c_1513
http://www.fao.org/aos/agrovoc#c_15989
http://www.fao.org/aos/agrovoc#c_1794
http://www.fao.org/aos/agrovoc#c_2398
http://www.fao.org/aos/agrovoc#c_29464
http://www.fao.org/aos/agrovoc#c_33990
http://www.fao.org/aos/agrovoc#c_4784
http://www.fao.org/aos/agrovoc#c_50119
http://www.fao.org/aos/agrovoc#c_5959
http://www.fao.org/aos/agrovoc#c_6513
http://www.fao.org/aos/agrovoc#c_7060
http://www.fao.org/aos/agrovoc#c_8157
http://www.fao.org/aos/agrovoc#c_8412
http://www.fao.org/aos/agrovoc#c_8488
http://www.fao.org/aos/agrovoc#c_926
INVESTIGACION
LABORATORY EXPERIMENTATION
LATVIA
LETONIA
LETTONIE
METANO
METHANE
PLANT DEVELOPMENTAL STAGES
RECHERCHE
RENDEMENT
RENDIMIENTO
SILAGE
STADE DE DEVELOPPEMENT VEGETAL
TECHNIQUE ANALYTIQUE
TECNICAS ANALITICAS
TENEUR EN MATIERE SECHE
TRIGO DE INVIERNO
VARIEDADES
VARIETE
VARIETIES
WINTER WHEAT
YIELDS
title Impact of harvest timing and cultivar on biogas outcome from winter wheat silage
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