Modelling of manure production by pigs and NH3, N2O and CH4 emissions. Part I: animal excretion and enteric CH4, effect of feeding and performance

A mathematical model was developed from literature data to predict the volume and composition of pig’s excreta (dry and organic matter, C, N, P, K, Cu and Zn contents), and the emission of greenhouse gases (CH4 and CO2) though respiration and from the intestinal tract, for each physiological stage (...

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Main Authors: C. Rigolot, S. Espagnol, C. Pomar, J.-Y. Dourmad
Format: Article
Language:English
Published: Elsevier 2010-01-01
Series:Animal
Subjects:
pig
Online Access:http://www.sciencedirect.com/science/article/pii/S1751731110000492
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spelling doaj-1336b89699c340f191175edec929c8d62021-06-05T06:06:55ZengElsevierAnimal1751-73112010-01-014814011412Modelling of manure production by pigs and NH3, N2O and CH4 emissions. Part I: animal excretion and enteric CH4, effect of feeding and performanceC. Rigolot0S. Espagnol1C. Pomar2J.-Y. Dourmad3INRA, UMR1079 Systèmes d’Elevage, Nutrition Animale et Humaine, F-35000 Rennes, France; IFIP-Institut du Porc, F-35651 Le Rheu, France; INRA, UMR1080 Production du Lait, F-35000 Rennes, FranceIFIP-Institut du Porc, F-35651 Le Rheu, FranceAgriculture and Agro-Food Canada, Dairy and Swine Research and Development Centre, C.P. 90, Lennoxville, J1M 1Z3 Québec, CanadaINRA, UMR1079 Systèmes d’Elevage, Nutrition Animale et Humaine, F-35000 Rennes, FranceA mathematical model was developed from literature data to predict the volume and composition of pig’s excreta (dry and organic matter, C, N, P, K, Cu and Zn contents), and the emission of greenhouse gases (CH4 and CO2) though respiration and from the intestinal tract, for each physiological stage (post-weaning and fattening pigs and lactating and gestating sows). The main sources of variation considered in the model are related to animal performances (feed efficiency, prolificacy, body weight gain, etc.), to water and nutrient intakes and to housing conditions (ambient temperature). Model predictions were validated by using 19 experimental studies, most of them performed in conditions close to those of commercial farms. Validation results showed that the model is precise and robust when predicting slurry volume (R2 = 0.96), slurry N (R2 = 0.91), P (R2 = 0.95) and to a lesser extent dry matter (R2 = 0.75) contents. Faeces and urine composition (minerals and macronutrients) can also be precisely assessed, provided the composition and the digestibility of the feed are well known. Sensitivity analysis showed strong differences in CH4 emission and excretion amounts and composition according to physiological status, animal performance, temperature and diet composition. The model is an efficient tool to calculate nutrient balances at the animal level in commercial conditions, and to simulate the effect of production alternatives, such as feeding strategy or animal performance, on excreta production and composition. This is illustrated by simulations of three feeding strategies, which demonstrates important opportunities to limit environmental risks through diet manipulations.http://www.sciencedirect.com/science/article/pii/S1751731110000492excretionmethaneenvironmentmodellingpig
collection DOAJ
language English
format Article
sources DOAJ
author C. Rigolot
S. Espagnol
C. Pomar
J.-Y. Dourmad
spellingShingle C. Rigolot
S. Espagnol
C. Pomar
J.-Y. Dourmad
Modelling of manure production by pigs and NH3, N2O and CH4 emissions. Part I: animal excretion and enteric CH4, effect of feeding and performance
Animal
excretion
methane
environment
modelling
pig
author_facet C. Rigolot
S. Espagnol
C. Pomar
J.-Y. Dourmad
author_sort C. Rigolot
title Modelling of manure production by pigs and NH3, N2O and CH4 emissions. Part I: animal excretion and enteric CH4, effect of feeding and performance
title_short Modelling of manure production by pigs and NH3, N2O and CH4 emissions. Part I: animal excretion and enteric CH4, effect of feeding and performance
title_full Modelling of manure production by pigs and NH3, N2O and CH4 emissions. Part I: animal excretion and enteric CH4, effect of feeding and performance
title_fullStr Modelling of manure production by pigs and NH3, N2O and CH4 emissions. Part I: animal excretion and enteric CH4, effect of feeding and performance
title_full_unstemmed Modelling of manure production by pigs and NH3, N2O and CH4 emissions. Part I: animal excretion and enteric CH4, effect of feeding and performance
title_sort modelling of manure production by pigs and nh3, n2o and ch4 emissions. part i: animal excretion and enteric ch4, effect of feeding and performance
publisher Elsevier
series Animal
issn 1751-7311
publishDate 2010-01-01
description A mathematical model was developed from literature data to predict the volume and composition of pig’s excreta (dry and organic matter, C, N, P, K, Cu and Zn contents), and the emission of greenhouse gases (CH4 and CO2) though respiration and from the intestinal tract, for each physiological stage (post-weaning and fattening pigs and lactating and gestating sows). The main sources of variation considered in the model are related to animal performances (feed efficiency, prolificacy, body weight gain, etc.), to water and nutrient intakes and to housing conditions (ambient temperature). Model predictions were validated by using 19 experimental studies, most of them performed in conditions close to those of commercial farms. Validation results showed that the model is precise and robust when predicting slurry volume (R2 = 0.96), slurry N (R2 = 0.91), P (R2 = 0.95) and to a lesser extent dry matter (R2 = 0.75) contents. Faeces and urine composition (minerals and macronutrients) can also be precisely assessed, provided the composition and the digestibility of the feed are well known. Sensitivity analysis showed strong differences in CH4 emission and excretion amounts and composition according to physiological status, animal performance, temperature and diet composition. The model is an efficient tool to calculate nutrient balances at the animal level in commercial conditions, and to simulate the effect of production alternatives, such as feeding strategy or animal performance, on excreta production and composition. This is illustrated by simulations of three feeding strategies, which demonstrates important opportunities to limit environmental risks through diet manipulations.
topic excretion
methane
environment
modelling
pig
url http://www.sciencedirect.com/science/article/pii/S1751731110000492
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