[HTML][HTML] Feed additives for methane mitigation: Modeling the impact of feed additives on enteric methane emission of ruminants—Approaches and recommendations

J Dijkstra, A Bannink, GFS Congio, JL Ellis… - Journal of Dairy …, 2025 - Elsevier
Over the past decade, there has been considerable attention on mitigating enteric methane
(CH 4) emissions from ruminants through the utilization of antimethanogenic feed additives …

[HTML][HTML] Rapid screening of methane-reducing compounds for deployment via water with a commercial livestock supplement using in vitro and FTIR-ATR analyses

RJ Batley, EP Romanzini, JB Johnson, WL De Souza… - Methane, 2024 - mdpi.com
The addition of methane-reducing compounds (MRCs) to livestock drinking water presents
an alternative method for enteric methane mitigation in extensive systems where these …

[HTML][HTML] Effects of storage time and temperature on the fermentation characteristics of rumen fluid from a high-forage diet

C Fu, M Qu, K Ouyang, Q Qiu - Agriculture, 2024 - mdpi.com
The objective of this experiment was to investigate the effects of storage temperature and
preservation time on the fermentation characteristics of rumen fluid collected from six Hu …

The essential oil blend Agolin Ruminant L reduces methane production in vitro and in vivo when included in the drinking water of cattle

RJ Batley, EP Romanzini, KD da Silva… - Journal of Animal …, 2024 - academic.oup.com
Two experiments were conducted to determine the potential for the essential oil blend
Agolin Ruminant L (Agolin) to reduce enteric methane (CH 4) emissions from beef cattle …

[HTML][HTML] Diet supplementation with a mixture of essential oils: Effects on enteric methane emissions, apparent total-tract nutrient digestibility, nitrogen utilization, and …

C Benchaar, F Hassanat - Journal of Dairy Science, 2025 - Elsevier
This study examined the effects of supplementing dairy cows with a mixture of essential oils
on enteric CH 4 emissions, apparent total-tract nutrient digestibility, N utilization, and …

Influence of Cuticular Waxes from Triticale on Rumen Fermentation: A Metabolomic and Microbiome Profiling Study

J Huang, J Xu, R Wu, J Wang, J Yang, Y Li… - Journal of Agricultural …, 2024 - ACS Publications
Cuticular wax, a critical defense layer for plants, remains a relatively unexplored factor in
rumen fermentation. We investigated the impact of cuticular wax on rumen fermentation …

Comparison of the Effects of Essential Oils from Cannabis sativa and Cannabis indica on Selected Bacteria, Rumen Fermentation, and Methane Production—In Vitro …

A Tabiś, A Szumny, J Bania, K Pacyga… - International Journal of …, 2024 - mdpi.com
This study aimed to evaluate the effects of essential oils (EOs) extracted from Cannabis
sativa L. and Cannabis indica Lam. on in vitro ruminal fermentation characteristics, selected …

Essential oil blend and monensin for feedlot steers consuming backgrounding and finishing diets: growth performance, methane emissions using the GreenFeed …

SA Terry, KA Beauchemin - Translational Animal Science, 2025 - academic.oup.com
A study was conducted to assess growth performance, methane (CH4) emissions and
feeding behavior of feedlot steers consuming backgrounding and finishing diets with an …

[HTML][HTML] Evaluation of methane mitigation by organic feed additives in dual-flow continuous culture

BA Wenner, G Praisler, K Mitchell, J Velez… - JDS Communications, 2024 - Elsevier
Sustainability is interwoven with consumer expectations of organic production systems, yet
there are few nutritional options for organic dairy systems to approach methane (CH 4) …

In vitro susceptibility testing of phytochemicals from essential oils against Prototheca species

H Nojo, SA Ishijima, M Morikawa, T Ito… - Journal of Veterinary …, 2024 - jstage.jst.go.jp
Phytochemicals isolated from essential oils are effective alternatives for inhibiting microbial
pathogens. Bovine protothecal mastitis is the cause of a reduction in milk production and the …