中国农业机械化科学研究院集团有限公司 主管

北京卓众出版有限公司 主办

生物炭制备改性及其应用研究进展

Research progress on biochar preparation modification and applications

  • 摘要: 生物炭作为一种可再生且环境友好的多功能碳材料,凭借优异的吸附性能、发达的孔隙结构及化学稳定性,在污染治理、土壤改良及农业可持续发展等领域具有广阔应用前景。系统综述生物炭主要制备方法(热解法、气化法和水热碳化法)及其关键参数对材料特性的影响,探讨化学改性、物理改性及复合改性在生物炭性能优化方面的作用。重点分析生物炭在水污染控制、重金属去除、土壤修复、农业增效及新兴领域的应用,总结当前技术研究瓶颈,如长期环境影响、规模化生产成本及产业化推广等问题。提出未来生物炭发展应聚焦低碳高效制备工艺、多功能改性策略、长期生态安全性评估及市场推广模式优化等方面建议,以推动其在环境治理与绿色低碳发展中的广泛应用。

     

    Abstract: As a renewable and environmentally friendly multifunctional carbon material, biochar exhibits excellent adsorption capacity, well-developed pore structure, and chemical stability, making it highly promising in pollution control, soil improvement, and sustainable agricultural development.Biochar's major preparation methods, including pyrolysis, gasification, and hydrothermal carbonization, and effects of key parameters on its material properties were reviewed systematically.And role of chemical, physical, and composite modification techniques in optimizing biochar performance was explored.Additionally, biochar application in water pollution control, heavy metal removal, soil improvement, agricultural efficiency enhancement, and other emerging fields were analyzed in detail, along with an overview of technical research bottlenecks, such as long-term environmental impact, large-scale production costs, and industrialization promotion issues.Proposals were also put forward for biochar future development, focusing on low-carbon and efficient preparation technologies, multifunctional modification strategies, long-term ecological safety assessments, and market promotion models optimization, to facilitate biochar broader application in environmental governance and green low-carbon development.

     

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