期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
岩石有机碳风化及其控制因素
1
作者 王野 陈旸 陈骏 《地学前缘》 EI CAS CSCD 北大核心 2024年第2期402-409,共8页
岩石有机碳为岩石地层中的有机碳,是地球上重要的碳储库。岩石有机碳的氧化、风化过程向大气排放二氧化碳,是地质碳循环过程的关键环节,对维持地球长尺度碳平衡以及表层环境的长期宜居性有重要意义。近年来,岩石有机碳氧化、风化过程的... 岩石有机碳为岩石地层中的有机碳,是地球上重要的碳储库。岩石有机碳的氧化、风化过程向大气排放二氧化碳,是地质碳循环过程的关键环节,对维持地球长尺度碳平衡以及表层环境的长期宜居性有重要意义。近年来,岩石有机碳氧化、风化过程的研究取得了显著发展,相关研究已经从剖面拓展到流域尺度,定量方法也在日益精确。本文系统综述了近些年国内外针对岩石有机碳自身结构性质、风化速率定量方法、控制因素和风化通量统计等问题的研究现状,以期对全球范围内岩石有机碳风化在研究地质碳循环过程中的关键性和当前进展及发展趋势有更加系统性的认识,并对相应的关键性科学问题进行更加深入系统的研究。 展开更多
关键词 岩石有机碳 地质循环 大陆风化 铼地球化学
下载PDF
对碳硫分析仪CS-230的探讨
2
作者 葛莎莎 《内蒙古石油化工》 CAS 2014年第11期49-50,共2页
通过剖析碳硫分析仪CS-230的原理和操作过程,可以得出结论CS-230的特点决定它比以往的碳硫分析仪先进,而且提高了分析的精密度和准确性。又因为其操作简单易懂,更加适用于岩石中有机碳的测定。
关键词 CS-230分析仪 岩石有机
下载PDF
Soil Organic Carbon Mineralization as Affected by Cyclical Temperature Fluctuations in a Karst Region of Southwestern China 被引量:12
3
作者 CI En Mahdi M.AL-KAISI +2 位作者 WANG Liange DING Changhuan XIE Deti 《Pedosphere》 SCIE CAS CSCD 2015年第4期512-523,共12页
The diurnal fluctuation in soil temperature may influence soil organic carbon (SOC) mineralization, but there is no consensus on SOC mineralization response to the cyclical fluctuation in soil temperature. A 56-d in... The diurnal fluctuation in soil temperature may influence soil organic carbon (SOC) mineralization, but there is no consensus on SOC mineralization response to the cyclical fluctuation in soil temperature. A 56-d incubation experiment was conducted to investigate the effects of constant and variable temperatures on SOC mineralization. Three soils were collected from the karst region in western Guizhou Province, southwestern China, including a limestone soil under forest, a limestone soil under crops and a yellow soil under crops. According to the World Reference Base (WRB) classification, the two limestone soils were classified as Haplic Luvisols and the yellow soil as a Dystric Luvisol. These soils were incubated at three constant temperatures (15, 20 and 25 ℃) and cyclically fluctuating temperatures (diurnal cycle between 15 and 25 ℃). The results showed that the 56-d cumulative SOC mineralized (C56) at the fluctuating temperatures was between those at constant 15 and 25 ℃, suggesting that the cumulative SOC mineralization was restricted by temperature range. The SOC mineralization responses to the fluctuating temperatures were different among the three soils, especially in contrast to those at constant 20 ~C. Compared with constant 20 ℃, significant (P 〈 0.05) decreases and increases in C56 value were found in the limestone soil under forest and yellow soil under crops at the fluctuating temperatures, respectively. At the fluctuating temperatures, the forest soil with lower temperature coefficient Q10 (the relative change in SOC mineralization rate as a result of increasing the temperature by 10 ℃) had a significantly (P 〈 0.05) lower SOC mineralization intensity than the two cropland soils. These indicated that differences in temperature pattern (constant or fluctuating) could significantly influence SOC mineralization, and SOC mineralization responses to the fluctuating temperatures might be affected by soil characteristics. Moreover, the warmer temperatures might improve the ability of soil microbes to decompose the recalcitrant SOC fraction, and cyclical fluctuations in temperature could influence SOC mineralization through changing the labile SOC pool size and the mineralization rate of the recalcitrant SOC in soils. 展开更多
关键词 labile C limestone soil recalcitrant C temperature coefficient (Q10) yellow soil
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部