|packaging||ampule of 1 mL|
|concentration||200 μg/mL in methanol|
|Hazard statements||H301 + H311 + H331-H370|
|Precautionary statements||P260-P280-P301 + P310-P311|
|Hazard Codes (Europe)||F,T|
|Risk Statements (Europe)||11-23/24/25-39/23/24/25|
|Safety Statements (Europe)||7-16-36/37-45|
|RIDADR||UN 1230 3/PG 2|
Effect of bromochloromethane on methane emission, rumen fermentation pattern, milk yield, and fatty acid profile in lactating dairy goats. Abecia L, Toral PG, Martín-García AI, et al. J. Dairy Sci. 95(4), 2027-36, (2012)
Quantitation and diversity analysis of ruminal methanogenic populations in response to the antimethanogenic compound bromochloromethane. Denman SE, Tomkins NW, and McSweeney CS FEMS Microbiol. Ecol. 62(3), 313-22, (2007)
Expression of mammalian glutathione S-transferase 5-5 in Salmonella typhimurium TA1535 leads to base-pair mutations upon exposure to dihalomethanes. Thier R, Taylor JB, Pemble SE, et al. Proc. Natl. Acad. Sci. U. S. A. 90(18), 8576-80, (1993)
Responses in digestion, rumen fermentation and microbial populations to inhibition of methane formation by a halogenated methane analogue. Mitsumori M, Shinkai T, Takenaka A, et al. Br. J. Nutr. 108(3), 482-91, (2012)
Inhibition of methanogens by bromochloromethane: effects on microbial communities and rumen fermentation using batch and continuous fermentations. Goel G, Makkar HP, and Becker K Br. J. Nutr. 101(10), 1484-92, (2009)
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