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231226s2023    xx |||||o     00| ||eng c | 
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|a 10.1016/j.wasman.2023.05.023 
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|a eng 
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|a Viaene, J 
  |e verfasserin 
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|a Biochar amendment to cattle slurry reduces NH3 emissions during storage without risk of higher NH3 emissions after soil application of the solid fraction 
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|c 2023 
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|a Text 
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|a ƒa Online-Ressource 
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|a Date Completed 16.06.2023 
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|a Date Revised 16.06.2023 
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|a published: Print-Electronic 
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|a Citation Status MEDLINE 
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|a Copyright © 2023 Elsevier Ltd. All rights reserved. 
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|a Cattle slurry storage is a major source of gaseous N emissions. The aim of this study was to evaluate the effects of biochar, clinoptilolite and elemental sulfur (S°) on (1) NH3 and greenhouse gas emissions during storage of cattle slurry and (2) after soil application of the enriched solid fractions; and (3) on the agronomic quality of the solid and liquid fractions. In the first phase, biochar was added to the slurry (10 g L-1); subsequently in the second phase, clinoptilolite (50 g L-1), S° (1 g L-1) and 40 g L-1 extra biochar were added. Gaseous emissions were monitored by a semi-continuous multi-gas analyzer and the agronomic quality of solid and liquid fractions was assessed after separation. The enriched solid fractions were applied to soil to study the effects on gaseous emissions, N and C mineralization. Amendment of biochar reduced NH3 emissions during cattle slurry storage by 12% during the first 7 days. Extra amendment of biochar, clinoptilolite and S° in combination with biochar resulted in a decrease of NH3 emissions of approximately 20%. The N sorbed from the slurry by the biochar was not released as NH3 during soil application of the solid fractions and was not released as mineral N in the short term (within 28 days). A short-term positive priming effect of biochar on the C mineralization of manure and biochar-manure mixture applied to soil was observed. The biochar-enriched solid fractions contained more C, total and organic N and water-available P with a slow release 
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|a Journal Article 
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|a Biochar 
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|a Clinoptilolite, elemental sulfur 
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|a Greenhouse gas emissions 
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|a N sorption 
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|a NH(3) emissions 
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|a Soil 
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|a clinoptilolite 
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|a Manure 
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|a Nitrogen 
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|a Peiren, N 
  |e verfasserin 
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|a Vandamme, D 
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|a Lataf, A 
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|a Cuypers, A 
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|a Jozefczak, M 
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|a Vandecasteele, B 
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| 773 | 
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|i Enthalten in 
  |t Waste management (New York, N.Y.) 
  |d 1999 
  |g 167(2023) vom: 15. Juli, Seite 39-45 
  |w (DE-627)NLM098197061 
  |x 1879-2456 
  |7 nnas 
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| 773 | 
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|g volume:167 
  |g year:2023 
  |g day:15 
  |g month:07 
  |g pages:39-45 
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|u http://dx.doi.org/10.1016/j.wasman.2023.05.023 
  |3 Volltext 
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|d 167 
  |j 2023 
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  |h 39-45 
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