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Reduced turning frequency and delayed poultry manure addition reduces N loss from sugarcane compost

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dc.contributor.author S. Bryndum
dc.contributor.author R. Muschler
dc.contributor.author A. Nigussie
dc.date.accessioned 2020-12-12T08:52:51Z
dc.date.available 2020-12-12T08:52:51Z
dc.date.issued 2017
dc.identifier.uri http://10.140.5.162//handle/123456789/3285
dc.description.abstract Composting is an effective method to recycle biodegradable waste as soil amendment in smallholder farming systems. Although all essential plant nutrients are found in compost, a substantial amount of nitrogen is lost during composting. This study therefore investigated the potential of reducing N losses by (i) delaying the addition of nitrogen-rich substrates (i.e. poultry manure), and (ii) reducing the turning frequency during composting. Furthermore, we tested the effect of compost application method on nitrogen mineralization. Sugarcane-waste was composted for 54 days with addition of poultry manure at the beginning (i.e. early addition) or after 21 days of composting (delayed addition). The compost pile was then turned either every three or nine days. Composts were subsequently applied to soil as (i) homogeneously mixed, or (ii) stratified, and incubated for 28 days to test the effect of compost application on nitrogen mineralization. The results showed that delayed addition of poultry manure reduced total nitrogen loss by 33% and increased mineral nitrogen content by >200% compared with early addition. Similarly, less frequent turning reduced total N loss by 12% compared with frequent turning. Stratified placement of compost did not enhance N mineralization compared to a homogeneous mixing. Our results suggested that simple modifications of the composting process (i.e. delayed addition and/or turning frequency) could significantly reduce N losses and improve the plant-nutritional value of compost en_US
dc.language.iso en en_US
dc.subject Compost en_US
dc.subject Fertilizer-value en_US
dc.subject N-enrichment en_US
dc.subject Turning frequency en_US
dc.subject Soil incubation en_US
dc.subject N mineralization en_US
dc.title Reduced turning frequency and delayed poultry manure addition reduces N loss from sugarcane compost en_US
dc.type Article en_US


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