Uptake and leaching of sorbed ammonium during early growth of wheat

<strong>Purpose</strong> Sorption could be a way to concentrate nutrients in diluted waste streams to bring more nutrients back to agriculture. The aim of this work was to model the fate of sorbed NH<sub>4</sub><sup>+</sup> content in liquid waste streams by addin...

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Bibliographic Details
Main Authors: Bente Foereid, Emilio Alvarenga, Julia Szocs, Marianna Makadi
Format: Article
Language:English
Published: OICC Press 2020-06-01
Series:International Journal of Recycling of Organic Waste in Agriculture
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Online Access:http://ijrowa.khuisf.ac.ir/article_673356_53b36c77b58a8b24996039f401d86bcd.pdf
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Summary:<strong>Purpose</strong> Sorption could be a way to concentrate nutrients in diluted waste streams to bring more nutrients back to agriculture. The aim of this work was to model the fate of sorbed NH<sub>4</sub><sup>+</sup> content in liquid waste streams by adding nitrogen (N) sorbed to a sorbent, zeolite, and study its effect on early growth and potential leaching losses.<br /> <strong>Methods</strong> A pot experiment with two soil types and wheat as test crop was conducted. Mineral N in soil was measured, and a leaching experiment performed. <sup>15</sup>N labelled ammonium was sorbed to zeolite. The fertilizer effect was then compared to ammonium fertilizer applied the conventional way, with and without zeolite.<br /> <strong>Results </strong>Early uptake of sorbed ammonium was reduced by 56% compared to ammonium applied conventionally, and soil uptake compensated only very early. Nitrate concentration in leachates was reduced by 12% in sandy soil when N was applied sorbed to zeolite. However, leaching of water through the profile increased 71% when N was applied sorbed to zeolite, so that there was only a tendency to lower N losses when N was applied sorbed to zeolite.<br /> <strong>Conclusion</strong> Ammonium-N sorbed to zeolite is less plant available than conventionally applied N but may also be less prone to leaching losses.
ISSN:2195-3228
2251-7715