Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Enriched Rice Husk Biochar Minimizes Ammonia Loss from Applied Urea Fertilizer Under Waterlogged Environment [RESEARCH NOTE]

View through CrossRef
A laboratory-scale closed dynamic air flow system was carried out to assess the effect of enriched rice husk biochar on ammonia volatilization, soil exchangeable ammonium, and available nitrate from the applied urea in comparison to urea alone under waterlogged conditions. Treatments with enriched rice husk biochar (5, 10, 15, and 20 t ha-1) significantly minimized ammonia volatilization, however, only biochar with rates of 5, 10, and 15 t ha-1 had significantly retained more soil exchangeable ammonium by 14% – 43%. Additionally, soil available nitrate was lower in all treatments except in T1 (urea alone). This indicates that enriched rice husk biochar minimizes ammonia volatilization, retains more ammonium, and slows down the conversion of ammonium to nitrate under a waterlogged environment. Mixing urea with rice husk biochar at rates of 5 t ha-1 and 10 t ha-1 offers a significant advantage over urea alone by minimizing ammonia volatilization by > 33.8% over urea alone. The mixture successfully increased retention of ammonium ions and has the potential to minimize ammonia loss and increase nitrogen availability in the soil.
Title: Enriched Rice Husk Biochar Minimizes Ammonia Loss from Applied Urea Fertilizer Under Waterlogged Environment [RESEARCH NOTE]
Description:
A laboratory-scale closed dynamic air flow system was carried out to assess the effect of enriched rice husk biochar on ammonia volatilization, soil exchangeable ammonium, and available nitrate from the applied urea in comparison to urea alone under waterlogged conditions.
Treatments with enriched rice husk biochar (5, 10, 15, and 20 t ha-1) significantly minimized ammonia volatilization, however, only biochar with rates of 5, 10, and 15 t ha-1 had significantly retained more soil exchangeable ammonium by 14% – 43%.
Additionally, soil available nitrate was lower in all treatments except in T1 (urea alone).
This indicates that enriched rice husk biochar minimizes ammonia volatilization, retains more ammonium, and slows down the conversion of ammonium to nitrate under a waterlogged environment.
Mixing urea with rice husk biochar at rates of 5 t ha-1 and 10 t ha-1 offers a significant advantage over urea alone by minimizing ammonia volatilization by > 33.
8% over urea alone.
The mixture successfully increased retention of ammonium ions and has the potential to minimize ammonia loss and increase nitrogen availability in the soil.

Related Results

PEMANFAATAN LIMBAH JERAMI, SEKAM, DAN URINE SAPI SEBAGAI PUPUK ORGANIK UNTUK MENINGKATKAN PERTUMBUHAN DAN PRODUKSI PADI
PEMANFAATAN LIMBAH JERAMI, SEKAM, DAN URINE SAPI SEBAGAI PUPUK ORGANIK UNTUK MENINGKATKAN PERTUMBUHAN DAN PRODUKSI PADI
Rice cultivation activities can produce organic waste such as straw and husks which can be processed into solid organic fertilizer and liquid smoke. In addition to agricultural was...
Upgrading the Rice Husk Biochar Characteristics Through Microwave Assisted Phosphoric Acid Pretreatment Followed by Copyrolysis with Ldpe
Upgrading the Rice Husk Biochar Characteristics Through Microwave Assisted Phosphoric Acid Pretreatment Followed by Copyrolysis with Ldpe
In the present study, an attempt was made to upgrade the characteristics of rice husk biochar through a combination of two strategies: i) microwave assisted phosphoric acid pretrea...
Upgrading rice husk biochar characteristics through microwave‐assisted phosphoric acid pretreatment followed by co‐pyrolysis with LDPE
Upgrading rice husk biochar characteristics through microwave‐assisted phosphoric acid pretreatment followed by co‐pyrolysis with LDPE
AbstractIn the present study, an attempt was made to upgrade the characteristics of rice husk biochar through a combination of two strategies: (i) microwave‐assisted phosphoric aci...
Integrative Assessment of Biochar Effects on Greenhouse Gas Emissions, Soil Microbiome, and Soil Metabolomic Profiles
Integrative Assessment of Biochar Effects on Greenhouse Gas Emissions, Soil Microbiome, and Soil Metabolomic Profiles
Biochar application is increasingly recognized as a promising strategy to enhance soil health and mitigate greenhouse gas (GHG) emissions. However, the mechanisms by which biochar ...

Back to Top