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Showing posts with label nitrogen. Show all posts
Showing posts with label nitrogen. Show all posts

Sunday, 6 January 2019

Rice straw biochar reduces N loss



 

 

 

 

 

 

Abstract

Ammonia (NH3) volatilization is a major loss of nitrogen fertilizer in paddy fields. The incorporation of straw or biochar has been considered to be the alternative options for soil improvement and agriculture sustainability. A field experiment was conducted to evaluate the potential role of rice straw and rice straw derived biochar in controlling NH3 volatilization according to the conventional nitrogen fertilizer level (urea, 270 kg N ha−1) during one rice (Oryza sativa L., cv. Xiushui134) growing season. Four treatments comprised rice straw at the rate of 8 t ha−1 (RS); rice straw derived biochar at the rate of 2.8 t ha−1 (RSBL); rice straw derived biochar at the rate of 22.5 t ha−1 (RSBH) and a control (CK). Compared to straw application, biochar incorporation reduced the cumulative NH3 volatilization (about 20%) from paddy fields significantly (p < 0.05), promoted rice yields and plant N aboveground as well as increased the abundance of ammoxidation amoA genes. In contrast with control, the ratios of NH3-N and total N input for RS, RSBL and RSBH declined significantly 4.15%, 4.40% and 11.12%, respectively (p < 0.05). Reduced NH3 volatilization in RSB treatments were mainly attributed to the decrease of NH4+-N concentration in the surface water, which could resulted from the enhancement of rice growth and the promotion of ammonia oxidation in soil. The increase of soil pH and soil CEC with biochar amendment played an important role on nitrogen retention and nitrogen cycle in soil. These results indicated that the incorporation of rice straw derived biochar instead of rice straw could be a promising approach to control NH3 volatilization and improve rice yield.

Thursday, 13 April 2017

New research from Indonesia on low temp. biochar & N

Biochar as a Carrier for Nitrogen Plant Nutrition: The Release of Nitrogen from Biochar Enriched with Ammonium Sulfate and Nitrate Acid

E. I. Wisnubroto 1) , W.H. Utomo 2) and H.T. Soelistyari 1)
1)University Tribhuwana Tunggadewi, Malang, Indonesia.
2)International Research Centre for Management of Degraded and Mining Lands, University of Brawijaya, Malang, Indonesia.

Abstract

An experiment was conducted to study the characteristics and stability of biochar enriched with ammonium sulfate and nitrate acid. Two feedstuffs of biochar (namely poultry litter and corn-cobs) were enriched with ammonium sulfate and nitrate acid. To investigate the release of nitrogen from the enriched biochar, a lysimeter study was carried out. The results showed that either ammonium sulfate or nitrate acid was good enough to be used as the materials for enriching biochar. However, ammonium sulfate yielded a relative better enriched biochar compared to the nitrate acid enriched biochar. Nitrogen in ammonium enriched biochar was relatively more stable compared to that of nitrogen in nitrate enriched biochar. Until 120 days of incubation, nitrogen content in a soil applied with ammonium enriched biochar made from corn-cobs was 0,13 %, 0.15 %, and 0.14 % for acid, neutral and calcareous soil respectively. These were higher compared to nitrogen content applied with the same biochar feedstuffs enriched with nitrate, i.e.: 0.012 %; 0.11%; and 0.11 % in acid, neutral and calcareous soil. Biochar with diameter size of less than 0.5 mm was good enough used for enrichment.