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Title: | Impact of Zootechnical Additive of the Nitrooxypropanol to Minimize Methane Emission in Cattle: A Review |
Authors: | Sami Mshary, Ghasaq Castillo, Cristina Hernandez, Joaquin Muiño, Rodrigo |
Keywords: | Fermentation, Greenhouse gas, Ruminal methanogens, Methane cattle. |
Issue Date: | 30-ديس-2024 |
Publisher: | University of Diyala / College of Agriculture |
Citation: | https://journal.djas.uodiyala.edu.iq/ |
Abstract: | A significant impediment to reducing worldwide enteric CH4 emissions is the problem of adapting mitigation measures to grazing ruminants; this area requires additional investigation. This study aimed to investigate the impact and explore the relationship between raising and lowering levels of 3-NOP in bovine diets in order to impede methanogenesis. The sole CH4 contributor is the end-user process of ruminant fermentation and faeces, especially those of beef and dairy cattle. The amount of carbon dioxide emission from the human body during its lifetime constitutes a small part of the carbon balance in the atmosphere. Their dose-level potential must be assessed whenever feed additives become available in ruminant diets. Feed additives are managed in trace amounts to impact on rumen metabolism. Designed and produced around 2012, 3-Nitrooxypropanol is a synthetic, non-toxic chemical molecule that inhibits the CH4 pathway. Its molecular structure is like that of the methyl coenzyme M. The zootechnical supplement 3-NOP lowers the amount of enteric methane CH4 that cattle release during milk production and reproduction while raising the milk fat concentration. In conclusion, the 3-NOP is established to be a practical CH4 mitigator at elevated and intermediate dosages, recommending that it may have application as an enteric CH4 mitigator. |
URI: | https://journal.djas.uodiyala.edu.iq/ http://148.72.244.84/xmlui/handle/xmlui/15646 |
ISSN: | 2073-9524 2310-8746 |
Appears in Collections: | مجلة ديالى للعلوم الزراعية / Diyala Agricultural Sciences Journal (DASJ) |
Files in This Item:
File | Description | Size | Format | |
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Artic. Tex. 3 - V.16_No. 2 Final (27-39).pdf | 1.16 MB | Adobe PDF | View/Open |
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