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通过施用铁改性生物炭与植物促生细菌相结合提高城市绿地土壤肥力和碳固存

Enhanced Soil Fertility and Carbon Sequestration in Urban Green Spaces through the Application of Fe-Modified Biochar Combined with Plant Growth-Promoting Bacteria.

作者信息

Niu Guoyao, He Chiquan, Mao Shaohua, Chen Zongze, Ma Yangyang, Zhu Yi

机构信息

School of Environmental and Chemical Engineering, Shanghai University, Shanghai 200444, China.

Key Laboratory of National Forestry and Grassland Administration on Ecological Landscaping of Challenging Urban Sites, Shanghai Engineering Research Center of Landscaping on Challenging Urban Sites, Shanghai Academy of Landscape Architecture Science and Planning, Shanghai 200232, China.

出版信息

Biology (Basel). 2024 Aug 12;13(8):611. doi: 10.3390/biology13080611.

Abstract

The soil of urban green spaces is severely degraded due to human activities during urbanization, and it is crucial to investigate effective measures that can restore the ecological functions of the soil. This study investigated the effects of plant growth promoting bacteria () and Fe-modified biochar on soil fertility increases and mechanisms of carbon sequestration. Additionally, the effects on C-cycling-related enzyme activity and the bacterial community were also explored. Six treatments included no biochar or suspension added (CK), only suspension (BC), only biochar (B), only Fe-modified biochar (FeB), biochar combined with (BBC), and Fe-modified biochar combined with (FeBBC). Compared with other treatments, the FeBBC treatment significantly decreased soil pH, alleviated soil alkalization, and increased the alkali-hydro nitrogen content in the soil. Compared to the individual application of FeB and BC, the FeBBC treatment significantly improved aggregates' stability and positively improved soil fertility and ecological function. Additionally, compared to the individual application of FeB and BC, the soil organic carbon (SOC), particulate organic carbon (POC), and soil inorganic carbon (SIC) contents for the FeBBC-treated soil increased by 28.46113.52%, 66.99434.72%, and 7.34~10.04%, respectively. In the FeBBC treatment, FeB can improve soil physicochemical properties and provide bacterial attachment sites, increase the abundance and diversity of bacterial communities, and promote the uniform distribution of carbon-related bacteria in the soil. Compared to a single ecological restoration method, FeBBC treatment can improve soil fertility and carbon sequestration, providing important reference values for urban green space soil ecological restoration.

摘要

由于城市化进程中的人类活动,城市绿地土壤严重退化,因此研究能恢复土壤生态功能的有效措施至关重要。本研究调查了植物促生细菌()和铁改性生物炭对土壤肥力增加及碳固存机制的影响。此外,还探讨了其对碳循环相关酶活性和细菌群落的影响。六种处理包括不添加生物炭或 悬浮液(CK)、仅添加 悬浮液(BC)、仅添加生物炭(B)、仅添加铁改性生物炭(FeB)、生物炭与 组合(BBC)以及铁改性生物炭与 组合(FeBBC)。与其他处理相比,FeBBC处理显著降低了土壤pH值,缓解了土壤碱化,并增加了土壤中的碱解氮含量。与单独施用FeB和BC相比,FeBBC处理显著提高了团聚体稳定性,积极改善了土壤肥力和生态功能。此外,与单独施用FeB和BC相比,FeBBC处理土壤的土壤有机碳(SOC)、颗粒有机碳(POC)和土壤无机碳(SIC)含量分别增加了28.46%113.52%、66.99%434.72%和7.34%~10.04%。在FeBBC处理中,FeB可改善土壤理化性质并提供细菌附着位点,增加细菌群落的丰度和多样性,并促进与碳相关细菌在土壤中的均匀分布。与单一生态修复方法相比,FeBBC处理可提高土壤肥力和碳固存能力,为城市绿地土壤生态修复提供重要参考价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f364/11351680/804acdecfece/biology-13-00611-g001.jpg

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