Apple pomace improves the quality of pig manure aerobic compost by reducing emissions of NH3 and N2O
Abstract In this study, the effects of apple pomace (AP) addition (0%, 5%, 10%, and 20% on a dry weight basis, named as control, AP1, AP2, and AP3) and citric acid (CA) addition on nitrogen conservation were investigated during aerobic composting of pig manure. Gaseous emissions of NH3 and N2O were...
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doaj-1a3073a1894d426b84ac9fd8f36793dc2020-12-08T01:33:17ZengNature Publishing GroupScientific Reports2045-23222017-04-01711810.1038/s41598-017-00987-yApple pomace improves the quality of pig manure aerobic compost by reducing emissions of NH3 and N2OHui Mao0Teng Zhang1Ronghua Li2Bingnian Zhai3Zhaohui Wang4Quan Wang5Zengqiang Zhang6College of Resources and Environment, Northwest A& F UniversityCollege of Resources and Environment, Northwest A& F UniversityKey Laboratory of Plant Nutrition and the Agri-environment in Northwest China, Ministry of AgricultureCollege of Resources and Environment, Northwest A& F UniversityKey Laboratory of Plant Nutrition and the Agri-environment in Northwest China, Ministry of AgricultureCollege of Resources and Environment, Northwest A& F UniversityCollege of Resources and Environment, Northwest A& F UniversityAbstract In this study, the effects of apple pomace (AP) addition (0%, 5%, 10%, and 20% on a dry weight basis, named as control, AP1, AP2, and AP3) and citric acid (CA) addition on nitrogen conservation were investigated during aerobic composting of pig manure. Gaseous emissions of NH3 and N2O were inhibited by AP and CA addition, with AP’s effect greater. The inhibition improved with increasing AP addition. The AP3 treatment was the most effective on NH3 adsorption and transformation to $${{\bf{NH}}}_{{\bf{4}}}^{{\boldsymbol{+}}}$$ NH 4 + -N, improved with subsequent transformation to $${{\bf{NO}}}_{{\bf{3}}}^{{\boldsymbol{-}}}$$ NO 3 − -N, and inhibition of N2O and $${{\bf{NO}}}_{{\bf{2}}}^{{\boldsymbol{-}}}$$ NO 2 − production. Compared with control, AP3 showed the highest inhibition of accumulated NH3 and N2O emission, by 57% and 24%, respectively, and with a 19% increase of total Kjeldahl nitrogen in the compost. The further pot experiment proved the application of the AP amendment compost could improve the yield and trace element nutrient accumulation in Chinese cabbage when planted in a typical Zn-deficient soil. This study illustrates that AP application benefits both compost nitrogen conservation and fertilizer quality.https://doi.org/10.1038/s41598-017-00987-y |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Hui Mao Teng Zhang Ronghua Li Bingnian Zhai Zhaohui Wang Quan Wang Zengqiang Zhang |
spellingShingle |
Hui Mao Teng Zhang Ronghua Li Bingnian Zhai Zhaohui Wang Quan Wang Zengqiang Zhang Apple pomace improves the quality of pig manure aerobic compost by reducing emissions of NH3 and N2O Scientific Reports |
author_facet |
Hui Mao Teng Zhang Ronghua Li Bingnian Zhai Zhaohui Wang Quan Wang Zengqiang Zhang |
author_sort |
Hui Mao |
title |
Apple pomace improves the quality of pig manure aerobic compost by reducing emissions of NH3 and N2O |
title_short |
Apple pomace improves the quality of pig manure aerobic compost by reducing emissions of NH3 and N2O |
title_full |
Apple pomace improves the quality of pig manure aerobic compost by reducing emissions of NH3 and N2O |
title_fullStr |
Apple pomace improves the quality of pig manure aerobic compost by reducing emissions of NH3 and N2O |
title_full_unstemmed |
Apple pomace improves the quality of pig manure aerobic compost by reducing emissions of NH3 and N2O |
title_sort |
apple pomace improves the quality of pig manure aerobic compost by reducing emissions of nh3 and n2o |
publisher |
Nature Publishing Group |
series |
Scientific Reports |
issn |
2045-2322 |
publishDate |
2017-04-01 |
description |
Abstract In this study, the effects of apple pomace (AP) addition (0%, 5%, 10%, and 20% on a dry weight basis, named as control, AP1, AP2, and AP3) and citric acid (CA) addition on nitrogen conservation were investigated during aerobic composting of pig manure. Gaseous emissions of NH3 and N2O were inhibited by AP and CA addition, with AP’s effect greater. The inhibition improved with increasing AP addition. The AP3 treatment was the most effective on NH3 adsorption and transformation to $${{\bf{NH}}}_{{\bf{4}}}^{{\boldsymbol{+}}}$$ NH 4 + -N, improved with subsequent transformation to $${{\bf{NO}}}_{{\bf{3}}}^{{\boldsymbol{-}}}$$ NO 3 − -N, and inhibition of N2O and $${{\bf{NO}}}_{{\bf{2}}}^{{\boldsymbol{-}}}$$ NO 2 − production. Compared with control, AP3 showed the highest inhibition of accumulated NH3 and N2O emission, by 57% and 24%, respectively, and with a 19% increase of total Kjeldahl nitrogen in the compost. The further pot experiment proved the application of the AP amendment compost could improve the yield and trace element nutrient accumulation in Chinese cabbage when planted in a typical Zn-deficient soil. This study illustrates that AP application benefits both compost nitrogen conservation and fertilizer quality. |
url |
https://doi.org/10.1038/s41598-017-00987-y |
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