Data

Mechanisms for the production and amelioration of ammonia (NH3) from cattle manure using in vitro methods

University of New England, Australia
Wilkes, Janelle ; Cowley, Frances ; Tait, Louise ; Creevey, Skye ; Meat and Livestock Australia ; LiveCorp ; Australian Government Department of Agriculture, Fisheries and Forestry ; Zeolite Australia
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ctx_ver=Z39.88-2004&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Adc&rfr_id=info%3Asid%2FANDS&rft_id=info:doi10.25952/p67q-3f30&rft.title=Mechanisms for the production and amelioration of ammonia (NH3) from cattle manure using in vitro methods&rft.identifier=10.25952/p67q-3f30&rft.publisher=University of New England&rft.description=The primary objectives of the current thesis were to develop an inexpensive, high-throughput method of quantifying NH3 in solution, and an in vitro method of quantifying NH3 production from manure that would (1) evaluate the optimal microchamber design to quantify NH3 production rates from manure; (2) quantify the effect of disturbance of manure on NH3 production rates; (3) succeed as an alternative method of testing NH3 production to reduce the need for, or better inform, large-scale animal experiments (4) successfully evaluate the effectiveness of mitigation techniques. This data represents NH3 production over time using the in-vitro method and colorimetric methods in this thesis.&rft.creator=Wilkes, Janelle &rft.creator=Cowley, Frances &rft.creator=Tait, Louise &rft.creator=Creevey, Skye &rft.creator=Meat and Livestock Australia &rft.creator=LiveCorp &rft.creator=Australian Government Department of Agriculture, Fisheries and Forestry &rft.creator=Zeolite Australia &rft.date=2023&rft_rights=Rights holder: Skye Creevey&rft_subject=Environmental studies in animal production&rft_subject=Animal production&rft_subject=AGRICULTURAL, VETERINARY AND FOOD SCIENCES&rft_subject=100101 Management of gaseous waste from animal production (excl. greenhouse gases)&rft.type=dataset&rft.language=English Access the data

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Rights holder: Skye Creevey

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screeve2@une.edu.au

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The primary objectives of the current thesis were to develop an inexpensive, high-throughput method of quantifying NH3 in solution, and an in vitro method of quantifying NH3 production from manure that would (1) evaluate the optimal microchamber design to quantify NH3 production rates from manure; (2) quantify the effect of disturbance of manure on NH3 production rates; (3) succeed as an alternative method of testing NH3 production to reduce the need for, or better inform, large-scale animal experiments (4) successfully evaluate the effectiveness of mitigation techniques. This data represents NH3 production over time using the in-vitro method and colorimetric methods in this thesis.

Issued: 2023-12-01

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