Field aging slows down biochar-mediated soil carbon dioxide emissions.

IF 8 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES Journal of Environmental Management Pub Date : 2024-10-07 DOI:10.1016/j.jenvman.2024.122811
Yue Pan, Yingjie Yin, Prabhakar Sharma, Sihang Zhu, Jianying Shang
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Abstract

Biochar is widely used due to its potential in direct or indirect soil carbon sequestration. However, there is a lack of comprehensive studies on the changes in the physicochemical properties of biochar after long-term application in different types of soils and the effects on CO2 emissions. In this study, paddy soil and fluvisol were selected as typical acidic and alkaline soils. Rice biochar (RB) and maize biochar (MB) were incorporated into paddy soil and fluvisol for one year, and characterizations (e.g., SEM-EDS, FTIR, 3D-EEM, and TG-DTG) of pristine and aged biochars were analyzed. Incubation experiments were conducted to assess the impact of aged biochar on CO2 emissions from paddy soil and fluvisol. Results indicated consistent trends in the physicochemical properties of biochar after one year of aging in both acidic and alkaline soils. Aged biochars exhibited significant structural degradation, increased specific surface area, and increased oxygen-containing functional groups. The DOM fluorescence intensity of biochar decreased and the thermal stability increased after aging. Compared to pristine biochar, aged biochar promoted soil carbon sequestration, resulting in varied reductions in cumulative CO2 emissions from paddy soil and fluvisol in the short term. Spearman's correlation coefficient analysis and PCA loading plot revealed that field-aged biochar primarily influenced CO2 emissions from soil and carbon sequestration by reducing biochar DOC release and bioavailability of DOM, while enhancing the humification of biochar DOM. These findings suggest that aged biochar favors soil carbon sequestration in the short term, both in acidic and alkaline soils.

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田间老化可减缓生物炭介导的土壤二氧化碳排放。
生物炭具有直接或间接固碳的潜力,因此被广泛使用。然而,关于生物炭在不同类型土壤中长期施用后理化性质的变化及其对二氧化碳排放的影响,目前还缺乏全面的研究。本研究选择了水稻土和氟维索尔作为典型的酸性和碱性土壤。将水稻生物炭(RB)和玉米生物炭(MB)掺入水稻土和氟硅醇中一年,分析原始生物炭和老化生物炭的特性(如 SEM-EDS、FTIR、3D-EEM 和 TG-DTG)。还进行了培养实验,以评估陈化生物炭对稻田土壤二氧化碳排放和氟硅醇的影响。结果表明,在酸性和碱性土壤中陈化一年后,生物炭的理化性质呈现出一致的趋势。老化的生物炭表现出明显的结构退化、比表面积增大和含氧功能基团增多。老化后,生物炭的 DOM 荧光强度降低,热稳定性提高。与原始生物炭相比,陈化生物炭能促进土壤固碳,从而在短期内减少水稻田土壤和氟硅醇的二氧化碳累积排放量。斯皮尔曼相关系数分析和 PCA 负载图显示,田间陈化生物炭主要通过减少生物炭 DOC 释放量和 DOM 的生物利用率,同时提高生物炭 DOM 的腐殖化作用,来影响土壤的二氧化碳排放量和固碳量。这些研究结果表明,无论是在酸性土壤还是碱性土壤中,陈化生物炭都有利于土壤的短期固碳。
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来源期刊
Journal of Environmental Management
Journal of Environmental Management 环境科学-环境科学
CiteScore
13.70
自引率
5.70%
发文量
2477
审稿时长
84 days
期刊介绍: The Journal of Environmental Management is a journal for the publication of peer reviewed, original research for all aspects of management and the managed use of the environment, both natural and man-made.Critical review articles are also welcome; submission of these is strongly encouraged.
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