4.7 Article

Dilution rates of cattle slurry affect ammonia uptake and protein production of duckweed grown in recirculating systems

期刊

JOURNAL OF CLEANER PRODUCTION
卷 357, 期 -, 页码 -

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ELSEVIER SCI LTD
DOI: 10.1016/j.jclepro.2022.131916

关键词

Duckweed; Cow slurry; Total ammonia nitrogen; Biomass and protein production

资金

  1. Swiss Federal Office for Agriculture (FOAG) [627000897]

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Duckweed, as a potential nitrogen collector and protein source, provides opportunities for circular economy systems. The study shows that both species of duckweed have optimal biomass and protein yield at a slurry dilution of 1:8 with a total ammonia nitrogen (TAN) concentration of 19 mg l(-1).
Duckweed is a potential collector of nitrogen from animal liquid manure and a source of protein suitable as feed for livestock and fish. Therefore, it provides opportunities for circular economy systems. Two duckweed species, Spirodela polyrhiza and Landoltia punctata, were grown in five recirculating systems each connected to a reservoir tank filled with water and graded organic cattle slurry concentrations. Fresh and dry biomass, protein production and amino acid profiles among the nitrogen removal were evaluated. Spirodela polyrhiza showed a significantly higher fresh biomass production but L. punctata dry matter content was generally higher resulting in similar dry biomass production for both species This study shows clearly that the crude protein content, ranging between 29.3 and 37.9% of dry matter, was positively correlated to slurry and total ammonia nitrogen (TAN) concentration of the substrate, independent of the duckweed species. Total crude protein yield was in the range of 1.37-1.95 g m(-2) d(-1), following a quadratic function regarding slurry and TAN concentrations, with marginal differences between species. Biomass and crude protein yields were optimal for both duckweed species at a TAN concentration of 19 mg l(-1), which corresponded to a slurry dilution of 1:8. The results of this study provide important information for operation of recirculating duckweed production systems on slurry and operators should aim to keep TAN concentrations in that range for optimization of protein production in conjunction with TAN removal.

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