Effect of biochar application on physiochemical properties and nitrate degradation rate in a Siliciclastic Riverine Sandy soil

IF 2.8 4区 环境科学与生态学 Q3 ENVIRONMENTAL SCIENCES Environmental Earth Sciences Pub Date : 2024-09-28 DOI:10.1007/s12665-024-11883-w
Luigi Alessandrino
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Abstract

This study investigated the efficacy of biochar as a soil amendment for enhancing soil physicochemical properties and solute transport dynamics, with implications for agricultural sustainability and environmental stewardship. Batch laboratory experiments and column studies were conducted to assess the effects of biochar application on soil parameters and solute transport under saturated conditions. The saturation soil extraction approach was employed in batch leaching tests, while column experiments replicated subsurface conditions. Transport modeling using CXTFIT 2.1 elucidated solute dispersion dynamics in biochar-amended soils. Batch experiments revealed significant alterations in soil pH, electrical conductivity, and nutrient release following biochar addition. Biochar exhibited adsorption capacity for fluoride ions and released dissolved organic carbon, highlighting its potential for soil carbon sequestration and microbial activity. Column studies demonstrated enhanced solute dispersion and increased microbial activity in biochar-amended soils, as evidenced by changes in breakthrough curves and degradation rates of nitrate. Indeed, nitrate first-order degradation coefficients were 9.08E-06 for the column with only sandy soil, 3.09E-05 and 1.47E-04 for the columns with minimum and maximum doses of biochar respectively. Biochar application significantly influenced soil physicochemical properties and solute transport dynamics, with potential implications for nutrient management and contaminant attenuation in agricultural systems. Despite limitations in laboratory-scale experiments, this research provides valuable insights into biochar-soil interactions. It underscores the need for further investigation under field conditions to validate findings and optimize biochar management practices for sustainable soil and environmental management.

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施用生物炭对硅质河沙土壤理化性质和硝酸盐降解率的影响
本研究调查了生物炭作为土壤改良剂在提高土壤理化性质和溶质迁移动力学方面的功效,以及对农业可持续性和环境管理的影响。研究人员进行了批量实验室实验和柱状研究,以评估在饱和条件下施用生物炭对土壤参数和溶质迁移的影响。批量浸出试验采用了饱和土壤提取法,而柱实验则复制了地下条件。使用 CXTFIT 2.1 建立的迁移模型阐明了生物炭改良土壤中的溶质分散动力学。批量实验显示,添加生物炭后,土壤的 pH 值、电导率和养分释放量都发生了显著变化。生物炭具有吸附氟离子和释放溶解有机碳的能力,突出了其在土壤固碳和微生物活动方面的潜力。柱状研究表明,生物炭改良土壤中的溶质分散性增强,微生物活性提高,硝酸盐的突破曲线和降解率的变化就是证明。事实上,在只有沙质土壤的土壤柱中,硝酸盐的一阶降解系数为 9.08E-06;在生物炭剂量最小和最大的土壤柱中,硝酸盐的一阶降解系数分别为 3.09E-05 和 1.47E-04。生物炭的应用极大地影响了土壤理化性质和溶质迁移动力学,对农业系统中的养分管理和污染物衰减具有潜在影响。尽管实验室规模的实验存在局限性,但这项研究为生物炭与土壤的相互作用提供了宝贵的见解。它强调了在实地条件下进行进一步调查的必要性,以验证研究结果并优化生物炭管理方法,从而实现可持续的土壤和环境管理。
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来源期刊
Environmental Earth Sciences
Environmental Earth Sciences 环境科学-地球科学综合
CiteScore
5.10
自引率
3.60%
发文量
494
审稿时长
8.3 months
期刊介绍: Environmental Earth Sciences is an international multidisciplinary journal concerned with all aspects of interaction between humans, natural resources, ecosystems, special climates or unique geographic zones, and the earth: Water and soil contamination caused by waste management and disposal practices Environmental problems associated with transportation by land, air, or water Geological processes that may impact biosystems or humans Man-made or naturally occurring geological or hydrological hazards Environmental problems associated with the recovery of materials from the earth Environmental problems caused by extraction of minerals, coal, and ores, as well as oil and gas, water and alternative energy sources Environmental impacts of exploration and recultivation – Environmental impacts of hazardous materials Management of environmental data and information in data banks and information systems Dissemination of knowledge on techniques, methods, approaches and experiences to improve and remediate the environment In pursuit of these topics, the geoscientific disciplines are invited to contribute their knowledge and experience. Major disciplines include: hydrogeology, hydrochemistry, geochemistry, geophysics, engineering geology, remediation science, natural resources management, environmental climatology and biota, environmental geography, soil science and geomicrobiology.
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