一氧化二氮
甲烷
稻草
温室气体
化学
稻草
农学
二氧化碳
甲烷排放
动物科学
环境科学
环境化学
生态学
生物
有机化学
无机化学
作者
Yam Kanta Gaihre,Reiner Waßmann,Gina Villegas-Pangga,Joaquin Sanabria,E. Aquino,Pompe C. Sta. Cruz,Eduardo P. Paningbatan
摘要
We investigated the effect of increased temperatures of water and soil, together with the incorporation of rice straw, on emissions of methane ( CH 4 ) and nitrous oxide ( N 2 O ), and the daily variation in CH 4 emissions. Three temperature treatments (floodwater temperature), ambient, ambient +2° C and ambient +4° C , and two amounts of rice straw (0 and 6 t ha −1 ) were arranged in a randomized complete block design with four replications. The emissions of CH 4 and N 2 O and the soil's redox potential ( E h ) were measured weekly for two crop cycles. Daily variation in CH 4 emission rates was measured with and without rice straw incorporation in planted and unplanted soil (with no warming treatments) during four growth stages of the crop. Methane emissions increased by as much as 91% with increasing amounts of water and soil temperature (+2 and +4° C ), up to 34–35° C . Increases in temperature (+2 and +4° C above ambient) above 34–35° C decreased emissions by 30–36%. A decrease in soil E h to < −100 mV and in CH 4 emissions was observed earlier in the pots containing rice straw than in those without straw. Methane emissions varied daily; they were larger from 11:00 to 14:00 hours, particularly in unplanted soil. They showed positive correlations with the temperatures of both soil and air. In contrast, N 2 O emissions were negligible throughout the growing season. The emissions of CH 4 evidently depend on the background temperature range; in our experiment, CH 4 emissions increased up to 34° C and then they decreased above that. Highlights: GHG emissions were measured from flooded rice soil under elevated temperatures. Temperature, straw incorporation and rice plants affected daily variation in methane emissions. An increase in temperature increased methane emission by up to 91%. Increased temperature decreased methane emissions when background temperature was above 34–35° C .
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