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水稻覆膜节水综合高产技术对稻田CH4排放的影响

Effect of high-yield rice planting technique integrated with plastic mulching for water saving on methane emission from rice fields

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【作者】 张怡吕世华马静徐华袁江董瑜皎

【Author】 ZHANG Yi1,3,Lü Shihua2,MA Jing1,XU Hua1,YUAN Jiang2,DONG Yujiao2 1.State Key Laboratory of Soil and Sustainable Agriculture//Institution of Soil Science,Chinese Academy of Sciences,Nanjing 210008,China;2.Institute of Soil Fertilizer,Sichuan Agriculture Sciences Academy,Chengdu 610066,China;3.University of Chinese Academy of Sciences,Beijing 100049,China

【机构】 土壤与农业可持续发展国家重点实验室中国科学院南京土壤研究所中国科学院大学四川省农业科学院土壤肥料研究所

【摘要】 采用静态箱-气相色谱法观测了常规栽培和水稻覆膜节水综合高产技术下川中丘陵地区稻田的CH4排放通量,探究覆膜节水综合高产技术对稻田CH4排放的影响。结果表明:整个水稻生长期,常规栽培与水稻覆膜节水综合高产技术稻田CH4排放总量分别为(35.0±3.5)和(5.1±1.0)g.m-2,后者较前者减少稻田CH4季节排放量的(86±4)%。二者CH4平均排放通量在不同水稻生长时期存在如下关系:孕穗期>抽穗期>成熟期>分蘖期。水稻各生长时期,覆膜节水综合高产技术均降低稻田CH4排放,在稻田CH4排放盛期(孕穗期)降幅达79%。在不同土壤水分状况下,水稻覆膜节水综合高产技术稻田CH4平均排放通量存在如下关系:烤田期>烤田后>烤田前;而常规栽培则为烤田期>烤田前>烤田后。不同于常规栽培,烤田对水稻覆膜节水综合高产技术下稻田CH4排放无明显影响,烤田后降雨促进其CH4排放。土壤水分状况由低变高更易促使覆膜节水综合高产技术下稻田CH4排放。覆膜节水综合高产技术栽培全生育期内,厢面CH4排放通量与土温、土壤Eh无显著相关性(P>0.05)。厢沟CH4排放与土温显著正相关(r=0.447*,P<0.05)。水稻移栽至烤田前,厢面CH4排放通量与土壤Eh显著负相关(r=0.624*,P<0.05)。

【Abstract】 A field experiment using the method of static chamber-gas chromatogram was conducted to study CH4emissions in paddy fields using the conventional rice cultivation technology and a new high yield rice planting technique integrated with plastic mulching for water saving,separately,during the rice growing season in the hill region of Central Sichuan.Results show that the during the rice growing season,the total CH4emission was(35.0±3.5) g.m-2in the conventional field and(5.1±1.0) g.m-2in the field using the new technique and obviously,the latter was(86±4)% lower than the former.The average CH4 emissions of the two cultivation systems varied from growth stage to growth stage,but both followed the order of earring stage > heading stage > maturing stage > tillering stage.The new technique decreased CH4 emission at all the rice growth stages,especially at the earring stage,and when CH4 emission was the highest,it did by as much as 79%.The effect of the new technique also varied with the soil water regime and the mean CH4 emission displayed an order of mid-season aeration > post-aeration > pre-aeration,while in the conventional field,it followed the order of mid-season aeration > pre-aeration > post-aeration.Different from the situation in the conventional field,the mid-season aeration did not have much effect on CH4 emission in the field using the new planting technique.In that field,rainfall after the mid-season aeration stimulated CH4 emission,and change in soil moisture from low to high increased the emission,too.During the rice growing season,CH4 emission from the ridge had no significant correlation with soil Eh or soil temperature in the field using the new technique,whereas CH4 emission flux from the ditch did with soil temperature(r=0.447*,P<0.05).During the period from transplanting to mid-season aeration,CH4 flux from the ridge was negatively related to soil Eh(r=0.624*,P<0.05).

【关键词】 地膜覆盖CH4排放稻田减排措施烤田
【Key words】 plastic mulchingCH4emissionrice fieldmitigation optionaeration
【基金】 中国科学院战略性先导科技专项(XDA05020200);科技部国际科技合作项目(S2012GR0080);国家自然科学基金项目(41071169);公益性行业(农业)科研专项(201103039)
  • 【文献出处】 生态环境学报 ,Ecology and Environmental Sciences , 编辑部邮箱 ,2013年06期
  • 【分类号】S511
  • 【被引频次】25
  • 【下载频次】302
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