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Sampling guidelines and analytical optimization for direct greenhouse gas emissions from tropical rice and upland cropping systems

机译:热带稻米和旱地种植系统直接温室气体排放的采样准则和分析优化

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摘要

We describe a modified manual closed-chamber approach with detachable lid and vertically stackable chambers for sampling followed by simultaneous analysis of nitrous oxide (N2O) and methane (CH4) for measuring greenhouse gas flux from rice and upland cropping systems in peninsular India. A meta-analysis of leading internationally/regionally recommended approaches to monitor agricultural GHG emissions is presented to put our sampling choices (e.g., chamber design, sampling intensity, sample storage and analytical corrections) into perspective. Given our set-up, the sample retention capacity of polypropylene syringes and crimped glass vials with grey butyl-rubber septa was approximate to 6hours and 10days, respectively; and temperature correction of N2O and CH4 concentrations was essential but plant volume correction did not affect the flux rates substantially. Optimization of gas flow rates, pre-column sample retention period, oxygen venting and temperature/current were found to reduce run time from >14 to 7min per sample and enhance sensitivity by 30-40% while improving analytical precision from 15-30% to < 2% relative standard deviation (RSD). We suggest an alternative to the linear interpolation approach of integrating the area under the N2O peak because linear interpolation can overestimate the cumulative seasonal N2O emissions by 50-100%, especially after fertilization and/or rain events.
机译:我们描述了一种改进的手动封闭室方法,该方法具有可拆卸的盖子和垂直可堆叠的室,用于采样,然后同时分析一氧化二氮(N2O)和甲烷(CH4),以测量印度半岛上的水稻和旱地种植系统的温室气体通量。提出了对领先的国际/区域推荐方法进行农业温室气体排放监测的荟萃分析,以透视我们的抽样选择(例如,分庭设计,抽样强度,样品存储和分析校正)。根据我们的设置,聚丙烯注射器和带有灰色丁基橡胶隔垫的卷曲玻璃小瓶的样品保留能力分别约为6小时和10天。 N2O和CH4浓度的温度校正是必不可少的,但设备体积校正并没有实质性地影响通量率。优化的气体流速,柱前样品保留时间,氧气排放和温度/电流可将每个样品的运行时间从> 14分钟减少到7分钟,并将灵敏度提高30-40%,同时将分析精度从15-30%提高到15%。 <2%相对标准偏差(RSD)。我们建议对线性插值方法进行积分N2O峰下面积的积分的替代方法,因为线性插值可以高估累积的季节性N2O排放量50-100%,尤其是在施肥和/或降雨事件之后。

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  • 来源
    《Carbon Management》 |2015年第4期|169-184|共16页
  • 作者单位

    Envirom Def Fund, Boulder, CO 80302 USA|ADATS, Fair Climate Network, Chikaballapura 56120, Karnataka, India;

    Envirom Def Fund, Boulder, CO 80302 USA;

    Envirom Def Fund, Boulder, CO 80302 USA;

    Lincoln Univ, Lincoln, NE 68583 USA;

    Envirom Def Fund, Boulder, CO 80302 USA;

    Envirom Def Fund, Boulder, CO 80302 USA|ADATS, Fair Climate Network, Chikaballapura 56120, Karnataka, India;

    Envirom Def Fund, Boulder, CO 80302 USA;

    Acc Fraterna Ecol Ctr, Anantapur 515002, Andhra Pradesh, India;

    Social Animat Ctr Rural Educ & Dev, Ramanagara 562109, Karnataka, India;

    Bharath Environm Seva Team, Pudukkottai 622101, Tamil Nadu, India;

    Social Animat Ctr Rural Educ & Dev, Ramanagara 562109, Karnataka, India;

    Acc Fraterna Ecol Ctr, Anantapur 515002, Andhra Pradesh, India;

    Palmyrah Workers Dev Soc, Tirunelveli 627452, Tamil Nadu, India;

    Bharath Environm Seva Team, Pudukkottai 622101, Tamil Nadu, India;

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  • 入库时间 2022-08-17 23:19:39

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