This study investigated the effects of feeding system on diurnal enteric methane (CH4) emissions from individual cows on commercial farms. Data were obtained from 830 cows across 12 farms, and data collated included production records, CH4 measurements (in the breath of cows using CH4 analysers at robotic milking stations for at least seven days) and diet composition. Cows received either a partial mixed ration (PMR) or a PMR with grazing. A linear mixed model was used to describe variation in CH4 emissions per individual cow and assess the effect of feeding system. Methane emissions followed a consistent diurnal pattern across both feeding systems, with emissions lowest between 05:00 and 08:59, and with a peak concentration between 17:00 a...
Organic dairy cows in Denmark are often kept indoors during the winter and outside at least part ti...
Organic dairy cows in Denmark are often kept indoors during the winter and outside at least part tim...
Diet manipulation and genetic selection are two important mitigation strategies for reducing enteric...
This study investigated the effects of feeding system on diurnal enteric methane (CH4) emissions fro...
This study investigated the effects of feeding system on diurnal enteric methane (CH4) emissions fro...
This study investigated the effects of feeding system on diurnal enteric methane (CH4) emissions fro...
This study investigated the effects of feeding system on diurnal enteric methane (CH4) emissions fro...
This study investigated the effects of feeding system on diurnal enteric methane (CH4) emissions fro...
The aim of this study was to investigate variability in enteric CH4 emission rate and emissions per ...
The aim of this study was to investigate variability in enteric CH4 emission rate and emissions per ...
Diet manipulation and genetic selection are two important mitigation strategies for reducing enteric...
Diet manipulation and genetic selection are two important mitigation strategies for reducing enteric...
Methane (CH4) emissions by dairy cows vary with feed intake and diet composition. Even when fed on t...
Methane (CH4) emissions by dairy cows vary with feed intake and diet composition. Even when fed on t...
Methane (CH4) emissions by dairy cows vary with feed intake and diet composition. Even when fed on t...
Organic dairy cows in Denmark are often kept indoors during the winter and outside at least part ti...
Organic dairy cows in Denmark are often kept indoors during the winter and outside at least part tim...
Diet manipulation and genetic selection are two important mitigation strategies for reducing enteric...
This study investigated the effects of feeding system on diurnal enteric methane (CH4) emissions fro...
This study investigated the effects of feeding system on diurnal enteric methane (CH4) emissions fro...
This study investigated the effects of feeding system on diurnal enteric methane (CH4) emissions fro...
This study investigated the effects of feeding system on diurnal enteric methane (CH4) emissions fro...
This study investigated the effects of feeding system on diurnal enteric methane (CH4) emissions fro...
The aim of this study was to investigate variability in enteric CH4 emission rate and emissions per ...
The aim of this study was to investigate variability in enteric CH4 emission rate and emissions per ...
Diet manipulation and genetic selection are two important mitigation strategies for reducing enteric...
Diet manipulation and genetic selection are two important mitigation strategies for reducing enteric...
Methane (CH4) emissions by dairy cows vary with feed intake and diet composition. Even when fed on t...
Methane (CH4) emissions by dairy cows vary with feed intake and diet composition. Even when fed on t...
Methane (CH4) emissions by dairy cows vary with feed intake and diet composition. Even when fed on t...
Organic dairy cows in Denmark are often kept indoors during the winter and outside at least part ti...
Organic dairy cows in Denmark are often kept indoors during the winter and outside at least part tim...
Diet manipulation and genetic selection are two important mitigation strategies for reducing enteric...