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侧深施控释氮肥运筹方式对水稻产量、NH_(3)挥发和温室气体排放的影响
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作者 郭松 郭慧婷 +9 位作者 张裕梁 钱紫慧 王子君 路佳明 汪源 赵灿 王维领 张洪程 杨凤萍 霍中洋 《作物学报》 CAS CSCD 北大核心 2024年第6期1525-1539,共15页
为建立机插稻高产低碳减排的控释氮肥施用技术,以迟熟中粳南粳9108、泰香粳1402为材料,选用控释期100 d、43%树脂包膜缓释氮肥与46%速效尿素为氮肥,分别设置基穗氮肥比例为100(NM1)∶、82(NM2)∶、73∶(NM3)与64(NM4)∶不同运筹方式处理... 为建立机插稻高产低碳减排的控释氮肥施用技术,以迟熟中粳南粳9108、泰香粳1402为材料,选用控释期100 d、43%树脂包膜缓释氮肥与46%速效尿素为氮肥,分别设置基穗氮肥比例为100(NM1)∶、82(NM2)∶、73∶(NM3)与64(NM4)∶不同运筹方式处理,基肥采用侧深施肥方法,控释氮肥与速效尿素比例均为55,∶穗氮肥为尿素,并设置常规施肥(FFT)与不施氮肥(0N)对照处理,研究不同氮肥运筹方式对水稻产量、NH_(3)挥发和温室气体排放的影响。结果表明:与FFT处理相比,侧深施控释氮肥推迟NH_(3)挥发峰值出现,避免分蘖期NH_(3)挥发峰值产生,穗期追施尿素后的NH_(3)挥发通量和平均NH_(3)挥发通量显著降低,NH_(3)累积损失总量降低25.33%~48.76%,NH_(3)排放系数降低29.14%~60.81%,单位产量NH_(3)排放强度显著降低29.60%~56.01%。与FFT处理相比,侧深施控释氮肥分蘖期和抽穗后的CH_(4)排放通量显著降低,搁田期和穗期追施尿素后的N_(2)O排放通量显著降低,CH_(4)排放累积总量降低20.20%~55.04%,CH_(4)减排率随基穗氮肥比例变小而降低,N_(2)O排放累积总量降低25.56%~61.56%,N_(2)O减排率表现为NM1>NM3>NM2>NM4,GWP和GHGI分别降低20.96%~53.35%、25.91%~55.40%。品种间NH_(3)挥发和温室气体规律一致,减排效果均表现为NM1>NM3>NM2>NM4。综合考虑经济、生态效益,NM1处理氨挥发和温室气体减排效果最佳,且比NM3和FFT处理减少施肥次数1~2次,利于水稻绿色轻简规模化生产;NM3处理增产率最高且NH_(3)挥发和温室气体减排效果仅次NM1,实现丰产减排协同进行。综上,本文探索出一套适配迟熟中粳减排增产的控释氮肥施肥方式,重点发现“轻简+减排”型施肥方式NM1和“丰产+减排”型施肥方式NM3。 展开更多
关键词 控释氮肥 运筹方式 NH_(3)挥发 CH_(4) N_(2)O 减排
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Effect of side deep placement of nitrogen on yield and nitrogen use efficiency of single season late japonica rice 被引量:9
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作者 ZHAO Can HUANG Heng +6 位作者 qian zi-hui JIANG Heng-xin LIU Guang-ming XU Ke HU Ya-jie DAI Qigen HUO Zhong-yang 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2021年第6期1487-1502,共16页
Side deep placement of nitrogen plays an important role in improving rice yield and nitrogen use efficiency.Few studies have examined the effects of reducing the times of nitrogen(RTN)application and reducing the nitr... Side deep placement of nitrogen plays an important role in improving rice yield and nitrogen use efficiency.Few studies have examined the effects of reducing the times of nitrogen(RTN)application and reducing the nitrogen rate(RNR)of application on rice yield and nitrogen use efficiency under side deep placement of nitrogen in paddy fields.Therefore,a field experiment of RNT and RNR treatments was conducted with nine fertilization modes during the 2018–2019 rice growing seasons in a rice–wheat cropping system of the lower reaches of the Yangtze River,China.Rice yield and nitrogen use efficiency were investigated under side deep placement of nitrogen.We found that under the same nitrogen application rate,the yield of RTN3 increased by 9.64 and 10.18%in rice varieties NJ9108 and NJ5718,respectively,compared with the farmers’fertilizer practices(FFP).The nitrogen accumulation of RTN3 was the highest at heading stage,at 11.30 t ha^(–1)across 2018 and 2019.Under the same nitrogen application rate,the N agronomic use efficiency(NAE),N physiological efficiency(NPE)and N recovery efficiency(NRE)of RTN3 were 8.1–21.28%,8.51–41.76%and 0.28–14.52%higher than those of the other fertilization modes,respectively.RNR led to decreases in SPAD value,leaf area index(LAI),dry matter accumulation,nitrogen accumulation,and nitrogen use efficiency.These results suggest that RTN3 increased rice yield and nitrogen use efficiency under the side deep placement of nitrogen,and RNR1 could achieve the goals of saving cost and increasing resource use efficiency.Two fertilization modes RTN3 and RNR1 both could achieve the dual goals of increasing grain yield and resource use efficiency and thus are worth further application and investigation. 展开更多
关键词 japonica rice(Oryza sativa L.) fertilization mode side deep placement of nitrogen grain yield nitrogen use efficiency
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