Chinese Academy of Meteorological Sciences, Beijing 100-081, China.
Institute of Environment and Sustainable Development in Agriculture, Chinese Academy of Agricultural Sciences, Beijing, China; Laboratory of Agricultural Environment and Climate Change, Ministry of Agriculture, Beijing 100-081, China.
Sci Total Environ. 2015 Jun 15;518-519:78-85. doi: 10.1016/j.scitotenv.2015.02.055. Epub 2015 Mar 5.
The effects of leaked CO2 on plant and soil constitute a key objective of carbon capture and storage (CCS) safety. The effects of leaked CO2 on trace soil gas (e.g., methane (CH4) and nitrous oxide (N2O) emissions in farmlands are not well-understood. This study simulated the effects of elevated soil CO2 on CH4 and N2O through pot experiments. The results revealed that significant increases of CH4 and N2O emissions were induced by the simulated CO2 leakages; the emission rates of CH4 and N2O were substantial, reaching about 222 and 48 times than that of the control, respectively. The absolute global warming potentials (GWPs) of the additional CH4 and N2O are considerable, but the cumulative GWPs of the additional CH4 and N2O only accounted for 0.03% and 0.06%, respectively, of the cumulative amount of leaked CO2 under high leakage conditions. The results demonstrate that leakage from CCS projects may lead to additional greenhouse gas emissions from soil; however, in general, the amount of additional CH4 and N2O emissions is negligible when compared with the amount of leaked CO2.
CO2 泄漏对植物和土壤的影响是碳捕获和封存 (CCS) 安全的一个关键目标。CO2 泄漏对痕量土壤气体(例如农田中甲烷 (CH4) 和氧化亚氮 (N2O) 的排放)的影响还没有得到很好的理解。本研究通过盆栽实验模拟了升高的土壤 CO2 对 CH4 和 N2O 的影响。结果表明,模拟 CO2 泄漏会显著增加 CH4 和 N2O 的排放;CH4 和 N2O 的排放速率很大,分别达到对照的约 222 倍和 48 倍。额外的 CH4 和 N2O 的绝对全球变暖潜势(GWP)相当可观,但在高泄漏条件下,额外的 CH4 和 N2O 的累积 GWP 仅分别占泄漏 CO2 累积量的 0.03%和 0.06%。结果表明,CCS 项目的泄漏可能导致土壤中额外的温室气体排放;然而,一般来说,与泄漏的 CO2 相比,额外的 CH4 和 N2O 排放量是微不足道的。