Ghosh Sabyasachi, Majumdar Deepanjan, Jain M C
Office of the Soil Conservation Officer, Detailed Soil Survey, MCADP, Suri, West Bengal 731101, India.
Chemosphere. 2003 Apr;51(3):181-95. doi: 10.1016/S0045-6535(02)00822-6.
Upland rice was grown in the kharif season (June-September) under irrigated condition in New Delhi, India (28 degree 40'N and 77 degree 12'E) to monitor CH4 and N2O emission, as influenced by fertilizer urea, ammonium sulphate and potassium nitrate alone (at 120 kg ha-1) and mixed with dicyandiamide (DCD), added at 10% of applied N. The experimental soil was a typic ustochrept (Inceptisol), clay loam, in which rice (Oryza sativa L., var. Pusa-169, duration: 120-125 days) was grown and CH4 and N2O was monitored for 105 days by closed chamber method, starting from the 5 days and 1 day after transplanting, respectively. Methane fluxes had a considerable temporal variation (CV=52-77%) and ranged from 0.05 (ammonium sulphate) to 3.77 mg m-2 h-1 (urea). There was a significant increase in the CH4 emission on the application of fertilizers while addition of DCD with fertilizers reduced emissions. Total CH4 emission (105 days) ranged from 24.5 to 37.2 kg ha-1. Nitrous oxide fluxes were much lower than CH4 fluxes and had ranged from 0.18 to 100.5 g m-2 h-1 with very high temporal variation (CV=69-143%). Total seasonal N2O emission from different treatments ranged from 0.037 to 0.186 kg ha-1 which was a N loss of 0.10-0.12% of applied N. All the fertilizers significantly increased seasonal N2O emission while application of DCD reduced N2O emissions significantly in the range of 10-53%.
在印度新德里(北纬28度40分,东经77度12分)的灌溉条件下,于雨季(6月至9月)种植旱稻,以监测单独施用尿素、硫酸铵和硝酸钾(施用量均为120千克/公顷)以及与双氰胺(DCD)混合施用(添加量为施氮量的10%)对CH4和N2O排放的影响。试验土壤为典型的湿暖变性土(始成土),质地为粘壤土,在该土壤中种植水稻(Oryza sativa L.,品种为Pusa - 169,生育期:120 - 125天),从移栽后第5天和第1天开始,采用密闭箱法对CH4和N2O进行105天的监测。甲烷通量具有显著的时间变化(变异系数=52 - 77%),范围从0.05(硫酸铵)至3.77毫克/平方米·小时(尿素)。施肥后CH4排放显著增加,而肥料中添加DCD则减少了排放。CH4总排放量(105天)范围为24.5至37.2千克/公顷。氧化亚氮通量远低于CH4通量,范围从0.18至100.5克/平方米·小时,时间变化很大(变异系数=69 - 143%)。不同处理的季节性N2O总排放量范围为0.037至0.186千克/公顷,占施氮量的0.10 - 0.12%。所有肥料均显著增加了季节性N2O排放,而施用DCD则显著减少了N2O排放,减少幅度在10 - 53%之间。