Soils Laboratory, Nicholas School of the Environment, Duke University, Durham, NC, United States of America.
PLoS One. 2019 Aug 28;14(8):e0220176. doi: 10.1371/journal.pone.0220176. eCollection 2019.
Here we present novel method development and instruction in the construction and use of Field Portable Gas Analyzers study of belowground aerobic respiration dynamics of deep soil systems. Our Field-Portable Gas Analysis (FPGA) platform has been developed at the Calhoun Critical Zone Observatory (CCZO) for the measurement and monitoring of soil O2 and CO2 in a variety of ecosystems around the world. The FPGA platform presented here is cost-effective, lightweight, compact, and reliable for monitoring dynamic soil gasses in-situ in the field. The FPGA platform integrates off-the-shelf components for non-dispersive infrared (NDIR) CO2 measurement and electro-chemical O2 measurement via flow-through soil gas analyses. More than 2000 soil gas measurements have been made to date using these devices over 4 years of observations. Measurement accuracy of FPGAs is consistently high as validated via conventional bench-top gas chromatography. Further, time series representations of paired CO2 and O2 measurement under hardwood forests at the CCZO demonstrate the ability to observe and track seasonal and climatic patterns belowground with this FPGA platform. Lastly, the ability to analyze the apparent respiratory quotient, the ratio of apparent CO2 accumulation divided by apparent O2 consumption relative to the aboveground atmosphere, indicates a high degree of nuanced analyses are made possible with tools like FPGAs. In sum, the accuracy and reliability of the FPGA platform for soil gas monitoring allows for low-cost temporally extensive and spatially expansive field studies of deep soil respiration.
我们在此提出了一种新的方法,用于构建和使用现场便携式气体分析仪,以研究深层土壤系统的地下好氧呼吸动态。我们的现场便携式气体分析(FPGA)平台是在卡尔霍恩关键带观测站(CCZO)开发的,用于测量和监测世界各地各种生态系统中的土壤 O2 和 CO2。这里提出的 FPGA 平台具有成本效益、重量轻、紧凑可靠的特点,可用于现场原位监测动态土壤气体。FPGA 平台集成了现成的组件,用于通过土壤气体的流通式分析进行非分散性红外(NDIR)CO2 测量和电化学 O2 测量。迄今为止,这些设备已经进行了超过 2000 次土壤气体测量,观察时间超过 4 年。通过传统的台式气相色谱法验证,FPGA 的测量精度始终很高。此外,CCZO 硬木林的 CO2 和 O2 测量时间序列表示,表明该 FPGA 平台能够观察和跟踪地下的季节性和气候模式。最后,能够分析表观呼吸商,即相对于地上大气的表观 CO2 积累与表观 O2 消耗的比值,表明可以使用 FPGA 等工具进行高度细致的分析。总之,FPGA 平台用于土壤气体监测的准确性和可靠性允许对深层土壤呼吸进行低成本、时间广泛和空间广泛的现场研究。