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      Global adoption of novel aquaculture feeds could substantially reduce forage fish demand by 2030

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          Fish oil replacement in finfish nutrition

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            Is Open Access

            An Exploration on Greenhouse Gas and Ammonia Production by Insect Species Suitable for Animal or Human Consumption

            Background Greenhouse gas (GHG) production, as a cause of climate change, is considered as one of the biggest problems society is currently facing. The livestock sector is one of the large contributors of anthropogenic GHG emissions. Also, large amounts of ammonia (NH3), leading to soil nitrification and acidification, are produced by livestock. Therefore other sources of animal protein, like edible insects, are currently being considered. Methodology/Principal Findings An experiment was conducted to quantify production of carbon dioxide (CO2) and average daily gain (ADG) as a measure of feed conversion efficiency, and to quantify the production of the greenhouse gases methane (CH4) and nitrous oxide (N2O) as well as NH3 by five insect species of which the first three are considered edible: Tenebrio molitor, Acheta domesticus, Locusta migratoria, Pachnoda marginata, and Blaptica dubia. Large differences were found among the species regarding their production of CO2 and GHGs. The insects in this study had a higher relative growth rate and emitted comparable or lower amounts of GHG than described in literature for pigs and much lower amounts of GHG than cattle. The same was true for CO2 production per kg of metabolic weight and per kg of mass gain. Furthermore, also the production of NH3 by insects was lower than for conventional livestock. Conclusions/Significance This study therefore indicates that insects could serve as a more environmentally friendly alternative for the production of animal protein with respect to GHG and NH3 emissions. The results of this study can be used as basic information to compare the production of insects with conventional livestock by means of a life cycle analysis.
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              The benefits of publishing systematic quantitative literature reviews for PhD candidates and other early-career researchers

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                Author and article information

                Journal
                Nature Food
                Nat Food
                Springer Science and Business Media LLC
                2662-1355
                May 2020
                May 19 2020
                May 2020
                : 1
                : 5
                : 301-308
                Article
                10.1038/s43016-020-0078-x
                db1ce1c5-ac28-45f9-ad2a-aa117ffcbe28
                © 2020

                http://www.springer.com/tdm

                http://www.springer.com/tdm

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