The mitigation of greenhouse gases from rice soils is one of the potential strategies to minimize the impact of climate change. This study focuses on the application of nano-zeolite based nitrogenous fertilizer in order to slow down the release of N from the fertilizer to reduce the emission of GHGs mainly methane. Nano-fertilizer carrying NO3- or NH4+ forms of nitrogen were synthesized using commercial nano-zeolite by fortifying two forms of N. Nitrogen release from the nano-zeolite loaded with (Nitrate and ammonical from of N were studied in percolation reactor. The data have shown that N release from the nano-fertilizer (NO3- or NH4+) forms of N were 11.6 and 20 days, respectively. While N release from conventional forms potassium nitrate and ammonium sulfate fertilizers were 8.7 and 12.9 days, respectively. Consequently, nano-fertilizer applied rice soil had lower N2O emission of (1.8) than conventional fertilizer (2.7 mg m-2 day-1). One of the striking effects was on methane emission was lower in nano-fertilizer applied soil (34.8) than control (36.8 mg m-2 day-1). These data clearly suggest that the nano-fertilizer assists in slow release of nitrogen that eventually resulted in reduction of emission of greenhouse gases (CH4 & N2O) from the rice soil ecosystem
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