Alterations of the Chemical Compositions, Surface Functionalities, and Nitrogen Structures of Cage Layer Chicken Manure by Carbonization to Improve Nitrogen Bioavailability in Soil
Carbonization of cage layer chicken manure (CLCM) can improve its bio-recalcitrance which might improve nitrogen (N) bioavailability in soil. However, temperature(s) to exhibit appropriate variations in the chemical makeup of the manure during carbonization in order to achieve this objective is unkn...
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doaj-06c0c6605eec45eb9ba8e855ce4da2cf2021-04-02T15:53:14ZengMDPI AGAgronomy2073-43952020-07-01101031103110.3390/agronomy10071031Alterations of the Chemical Compositions, Surface Functionalities, and Nitrogen Structures of Cage Layer Chicken Manure by Carbonization to Improve Nitrogen Bioavailability in SoilMoses Ahmed Daramy0Ryoka Kawada1Shinya Oba2United Graduate School of Agricultural Science, Gifu University, Gifu 501-1193, JapanGraduate School of Natural Science and Technology, Gifu University, Gifu 501-1193, JapanUnited Graduate School of Agricultural Science, Gifu University, Gifu 501-1193, JapanCarbonization of cage layer chicken manure (CLCM) can improve its bio-recalcitrance which might improve nitrogen (N) bioavailability in soil. However, temperature(s) to exhibit appropriate variations in the chemical makeup of the manure during carbonization in order to achieve this objective is unknown. In this study, we investigated the alterations in chemical compositions, surface functionalities, and N speciation initiated by different carbonization temperatures (350, 500, and 650 °C) and the effects of these alterations on N bioavailability in soil. The objective was to identify suitable temperature condition(s) for the conversion of CLCM into a carbonized product of appropriate bio-recalcitrance that is capable of improving N bioavailability in soil more than the un-carbonized CLCM. The results showed an increased bio-recalcitrance of the manure with increasing carbonization temperatures due to drastic changes in the chemical makeup and accumulation of heterocyclic aromatic N structures. Subsequently, these alterations in the chemical makeup and state of the organic N species in the manure affected N bioavailability in soil. Notably, N bioavailability of CLCM and benefits on plants were improved when soil was supplied with CLCM that was altered at 350 °C. With these observations, we concluded that alterations in chemical and surface structural compositions and N speciation at 350 °C are optimum for instituting the required bio-recalcitrance to CLCM in order to improve N bioavailability in soil for plants.https://www.mdpi.com/2073-4395/10/7/1031cage layer chicken manurecarbonizationN availabilitybio-recalcitrancechemical propertiesmineral nitrogen |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Moses Ahmed Daramy Ryoka Kawada Shinya Oba |
spellingShingle |
Moses Ahmed Daramy Ryoka Kawada Shinya Oba Alterations of the Chemical Compositions, Surface Functionalities, and Nitrogen Structures of Cage Layer Chicken Manure by Carbonization to Improve Nitrogen Bioavailability in Soil Agronomy cage layer chicken manure carbonization N availability bio-recalcitrance chemical properties mineral nitrogen |
author_facet |
Moses Ahmed Daramy Ryoka Kawada Shinya Oba |
author_sort |
Moses Ahmed Daramy |
title |
Alterations of the Chemical Compositions, Surface Functionalities, and Nitrogen Structures of Cage Layer Chicken Manure by Carbonization to Improve Nitrogen Bioavailability in Soil |
title_short |
Alterations of the Chemical Compositions, Surface Functionalities, and Nitrogen Structures of Cage Layer Chicken Manure by Carbonization to Improve Nitrogen Bioavailability in Soil |
title_full |
Alterations of the Chemical Compositions, Surface Functionalities, and Nitrogen Structures of Cage Layer Chicken Manure by Carbonization to Improve Nitrogen Bioavailability in Soil |
title_fullStr |
Alterations of the Chemical Compositions, Surface Functionalities, and Nitrogen Structures of Cage Layer Chicken Manure by Carbonization to Improve Nitrogen Bioavailability in Soil |
title_full_unstemmed |
Alterations of the Chemical Compositions, Surface Functionalities, and Nitrogen Structures of Cage Layer Chicken Manure by Carbonization to Improve Nitrogen Bioavailability in Soil |
title_sort |
alterations of the chemical compositions, surface functionalities, and nitrogen structures of cage layer chicken manure by carbonization to improve nitrogen bioavailability in soil |
publisher |
MDPI AG |
series |
Agronomy |
issn |
2073-4395 |
publishDate |
2020-07-01 |
description |
Carbonization of cage layer chicken manure (CLCM) can improve its bio-recalcitrance which might improve nitrogen (N) bioavailability in soil. However, temperature(s) to exhibit appropriate variations in the chemical makeup of the manure during carbonization in order to achieve this objective is unknown. In this study, we investigated the alterations in chemical compositions, surface functionalities, and N speciation initiated by different carbonization temperatures (350, 500, and 650 °C) and the effects of these alterations on N bioavailability in soil. The objective was to identify suitable temperature condition(s) for the conversion of CLCM into a carbonized product of appropriate bio-recalcitrance that is capable of improving N bioavailability in soil more than the un-carbonized CLCM. The results showed an increased bio-recalcitrance of the manure with increasing carbonization temperatures due to drastic changes in the chemical makeup and accumulation of heterocyclic aromatic N structures. Subsequently, these alterations in the chemical makeup and state of the organic N species in the manure affected N bioavailability in soil. Notably, N bioavailability of CLCM and benefits on plants were improved when soil was supplied with CLCM that was altered at 350 °C. With these observations, we concluded that alterations in chemical and surface structural compositions and N speciation at 350 °C are optimum for instituting the required bio-recalcitrance to CLCM in order to improve N bioavailability in soil for plants. |
topic |
cage layer chicken manure carbonization N availability bio-recalcitrance chemical properties mineral nitrogen |
url |
https://www.mdpi.com/2073-4395/10/7/1031 |
work_keys_str_mv |
AT mosesahmeddaramy alterationsofthechemicalcompositionssurfacefunctionalitiesandnitrogenstructuresofcagelayerchickenmanurebycarbonizationtoimprovenitrogenbioavailabilityinsoil AT ryokakawada alterationsofthechemicalcompositionssurfacefunctionalitiesandnitrogenstructuresofcagelayerchickenmanurebycarbonizationtoimprovenitrogenbioavailabilityinsoil AT shinyaoba alterationsofthechemicalcompositionssurfacefunctionalitiesandnitrogenstructuresofcagelayerchickenmanurebycarbonizationtoimprovenitrogenbioavailabilityinsoil |
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