Northeast Institute of Geography and Agroecology, Chinese Academy of Sciences, Changchun 130012, China.
Northeast Institute of Geography and Agroecology, Chinese Academy of Sciences, Changchun 130012, China.
Sci Total Environ. 2014 Jul 15;487:604-10. doi: 10.1016/j.scitotenv.2013.09.083. Epub 2013 Oct 14.
The carbon (C) pool of permafrost peatland is very important for the global C cycle. Little is known about how permafrost thaw could influence C emissions in the Great Hing'an Mountains of China. Through aerobic and anaerobic incubation experiments, we studied the effects of permafrost thaw on CH4 and CO2 emissions. The rates of CH4 and CO2 emissions were measured at -10, 0 and 10°C. Although there were still C emissions below 0°C, rates of CH4 and CO2 emissions significantly increased with permafrost thaw under aerobic and anaerobic conditions. The C release under aerobic conditions was greater than under anaerobic conditions, suggesting that permafrost thaw and resulting soil environment change should be important influences on C emissions. However, CH4 stored in permafrost soils could affect accurate estimation of CH4 emissions from microbial degradation. Calculated Q10 values in the permafrost soils were significantly higher than values in active-layer soils under aerobic conditions. Our results highlight that permafrost soils have greater potential decomposability than soils of the active layer, and such carbon decomposition would be more responsive to the aerobic environment.
多年冻土泥炭地的碳(C)库对全球碳循环非常重要。对于多年冻土解冻将如何影响中国大兴安岭的碳排放,人们知之甚少。通过好氧和厌氧培养实验,我们研究了多年冻土解冻对 CH4 和 CO2 排放的影响。在-10、0 和 10°C 下测量 CH4 和 CO2 排放速率。尽管在 0°C 以下仍有 C 排放,但在好氧和厌氧条件下,随着多年冻土解冻,CH4 和 CO2 的排放速率显著增加。好氧条件下的 C 释放量大于厌氧条件下的 C 释放量,这表明多年冻土解冻和由此导致的土壤环境变化可能是对 C 排放的重要影响因素。然而,多年冻土土壤中储存的 CH4 可能会影响对微生物降解产生的 CH4 排放的准确估计。在好氧条件下,多年冻土土壤的 Q10 值明显高于活动层土壤的 Q10 值。我们的研究结果表明,多年冻土土壤的可分解性大于活动层土壤,并且这种碳分解对好氧环境的响应更为敏感。