Shining a Light on How Soil Organic Carbon Behaves at Fine Scales under Long-Term Elevated CO2: An 8 Year Free-Air Carbon Dioxide Enrichment Study

二氧化碳 变性土 期限(时间) 环境化学 环境科学 土壤碳 碳循环 总有机碳 碳纤维 气候变化 化学 土壤水分 土壤科学 材料科学 生态系统 地质学 生态学 物理 海洋学 生物 复合材料 复合数 量子力学 有机化学
作者
Zhe Weng,Peter M. Kopittke,Steffen A. Schweizer,Jian Jin,Roger Armstrong,Michael T. Rose,Yunyun Zheng,Ashley E. Franks,Caixian Tang
出处
期刊:Environmental Science & Technology [American Chemical Society]
卷期号:58 (20): 8724-8735 被引量:7
标识
DOI:10.1021/acs.est.3c10680
摘要

Building and protecting soil organic carbon (SOC) are critical to agricultural productivity, soil health, and climate change mitigation. We aim to understand how mechanisms at the organo-mineral interfaces influence SOC persistence in three contrasting soils (Luvisol, Vertisol, and Calcisol) under long-term free air CO2 enrichment conditions. A continuous wheat-field pea-canola rotation was maintained. For the first time, we provided evidence to a novel notion that persistent SOC is molecularly simple even under elevated CO2 conditions. We found that the elevated CO2 condition did not change the total SOC content or C forms compared with the soils under ambient CO2 as identified by synchrotron-based soft X-ray analyses. Furthermore, synchrotron-based infrared microspectroscopy confirmed a two-dimensional microscale distribution of similar and less diverse C forms in intact microaggregates under long-term elevated CO2 conditions. Strong correlations between the distribution of C forms and O–H groups of clays can explain the steady state of the total SOC content. However, the correlations between C forms and clay minerals were weakened in the coarse-textured Calcisol under long-term elevated CO2. Our findings suggested that we should emphasize identifying management practices that increase the physical protection of SOC instead of increasing complexity of C. Such information is valuable in developing more accurate C prediction models under elevated CO2 conditions and shift our thinking in developing management practices for maintaining and building SOC for better soil fertility and future environmental sustainability.
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