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Effect of fires on soil organic carbon pool and mineralization in a Northeastern China wetland

机译:火灾对中国东北湿地土壤有机碳库与矿化的影响

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摘要

Fire occurs frequently over wetland, but little is known of its impact on soil carbon variations and carbon mineralization, process that are potentially important in global carbon cycle. To investigate this issue, we have designed and implemented a two-year field campaign to quality the effects of fire seasonality and frequency on soil carbon abundance and carbon mineralization in a wetland of the Sanjiang Plain in Northeastern China. A total of 4 burning experiments were conducted over 12 wetland plots from autumn 2007 to spring 2009. Our results show that after burning soil organic carbon (OC) increased in the burned soils during the first two growing seasons. Fire effects on dissolved organic carbon (DOC) and microbial biomass carbon (MBC), however, were more subtle. During the first post-burning growing season, the levels of DOC and MBC were higher than in the unburned soil. The increase however was temporary, and there was no significant difference between the burned and unburned soils in the second growing season. Carbon mineralization rate increased after burning, and CO2 emission rates were higher from burned soils than from unburned soils. Our findings suggest that burning increased CO2 emission to the atmosphere not only during the combustion process, but also through biogeochemical processes in an extended post-burning period.
机译:火灾经常发生在湿地上,但众所周知,它对土壤碳变异和碳矿化的影响,在全球碳循环中可能重要的过程。为了调查这个问题,我们设计并实施了一个为期两年的实地运动,以质量在中国东北部三江平原湿地中的土壤碳丰盈和碳矿化对土壤碳丰度和碳矿化的影响。从2007年秋季到2009年秋季,共有4种燃烧实验。我们的研究结果表明,在前两个生长季节燃烧的土壤中燃烧土壤有机碳(OC)增加。然而,对溶解有机碳(DOC)和微生物生物质碳(MBC)的火灾作用更加微妙。在第一次燃烧后生长季节期间,DOC和MBC的水平高于未燃烧的土壤。然而,增加的是暂时的,第二个生长季节的烧伤和未燃烧的土壤之间没有显着差异。燃烧后碳矿化速率增加,燃烧的土壤中的二氧化碳排放率高于未燃烧的土壤。我们的研究结果表明,在燃烧过程中不仅在燃烧过程中,燃烧增加了CO 2的发射,而且还通过扩展后燃烧期的生物地球化学过程。

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