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首页> 外文期刊>Catena: An Interdisciplinary Journal of Soil Science Hydrology-Geomorphology Focusing on Geoecology and Landscape Evolution >Soil properties and combustion temperature: Controls on the decomposition rate of pyrogenic organic matter
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Soil properties and combustion temperature: Controls on the decomposition rate of pyrogenic organic matter

机译:土壤性质和燃烧温度:对热原有有机物分解率的对照

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Pyrogenic carbon (PyC) is the material left behind after incomplete combustion of biomass, including a spectrum of materials ranging from charcoal to lightly charred biomass. We investigated the roles of combustion temperature and properties of soil at two distinct landform positions on carbon dioxide (CO2) flux from soil and decomposition of PyC. Bark from Pima jeffreyi was charred at three temperatures (200 degrees C, 350 degrees C, and 500 degrees C) for an hour to create PyC before it was incubated with soil collected from eroding and depositional landform positions along the same hillslope. We determined the fraction of PyC in soil C at the beginning and end of the incubation using the Kurth-MacKenzie-Deluca digestion method. We found rates of microbial respiration in soil from the depositional landform position were over three times higher than from soil from the eroding landform position. The soil from the eroding landform position had less optimal decomposition conditions, including water holding capacity and organic matter content, compared with the soil from the depositional landform position. Furthermore, over the length of the incubation experiment, PyC concentrations decreased only in depositional soils that contained lower temperature chars, indicating that low temperature PyC has shorter residence times in soils from depositional landform positions, compared to eroding ones. Using scanning electron microscopy, we also observed physical decay of the low temperature chars. Previous research has shown that PyC is preferentially eroded from hillslopes post-fire. Here we show that erosion of PyC and deposition into depositional landform positions can cause the decay rate of PyC to significantly increase, exerting a significant control on the long-term fate of PyC in the soil system.
机译:热原碳(PYC)是生物质燃烧不完全燃烧后的材料,包括从木炭到轻微烧焦生物质的谱图。我们调查了土壤燃烧温度和土壤燃烧温度和性质在两种不同地貌位置对土壤和分解的不同地貌位置。 Pima Jeffreyi的树皮在三个温度(350摄氏度和500℃)下烧焦了一小时,以便在孵育和沿着相同的山坡沿着侵蚀和沉积地貌位置收集的土壤孵育之前进行一次。使用Kurth-Mackenzie-Deluca消化方法,在孵育开始和结束时确定土壤C中的PYC的级分。我们发现从沉积地貌位置的土壤中的微生物呼吸率超过从侵蚀地形位置的土壤高出三倍。与来自沉积地貌位置的土壤相比,来自腐蚀地位位置的土壤具有较少的最佳分解条件,包括水持有能力和有机物质含量。此外,在孵育实验的长度上,Pyc浓度仅在含有较低温度的沉积土壤中降低,表明低温Pyc与腐蚀地位位置的沉积地形位置的沉积土壤中的停留时间较短。使用扫描电子显微镜检查,我们还观察到低温折叠的物理衰减。以前的研究表明,Pyc优先从火后山坡侵蚀。在这里,我们显示Pyc的侵蚀和沉积到沉积地貌位置可能导致Pyc的衰减率显着增加,对土壤系统中Pyc的长期命运进行了显着控制。

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