Adhikari Sirjana, Timms Wendy, Mahmud M A Parvez
School of Engineering, Deakin University, Geelong, Victoria 3216, Australia.
School of Electrical, Mechanical and Infrastructure Engineering, The University of Melbourne, Grattan Street, Parkville, Victoria 3010, Australia.
Sci Total Environ. 2022 Dec 10;851(Pt 1):158043. doi: 10.1016/j.scitotenv.2022.158043. Epub 2022 Aug 17.
Biochar is a product of the thermal treatment of biomass, and it can be used for enhancing soil health and productivity, soil carbon sequestration, absorbance of pollutants from water and soil, and promoting environmental sustainability. Extensive research has been done on applications of biochar to enhance the Water Holding Capacity (WHC) of biochar amended soil. However, a comprehensive road map of biochar optimised for enhanced WHC, and reduced hydrophobicity is not yet published. This review is the first to provide not only quantitative information on the impacts of biochar properties in WHC and hydrophobicity, but also a road map to optimise biochar for enhanced WHC when applied as a soil amendment. The review shows that straw or grass-derived biochar (at 500-600 °C) increases the WHC of soil if applied at 1 to 3 % in the soil. It is clear from the review that soil of varying texture requires different particle sizes of biochar to enhance the WHC and reduce hydrophobicity. Furthermore, the review concludes that ageing biochar for at least a year with enhanced oxidation is recommended for improving the WHC and reducing hydrophobicity compared to using biochar immediately after production. Additionally, while producing biochar a residence time of 1 to 2 h is recommended to reduce the biochar's hydrophobicity. Finally, a road map for optimising biochar is presented as a schematic that can be a resource for making decisions during biochar production for soil amendment.
生物炭是生物质热处理的产物,可用于改善土壤健康和生产力、土壤碳固存、吸收水和土壤中的污染物以及促进环境可持续性。关于生物炭在提高生物炭改良土壤持水能力(WHC)方面的应用,已经开展了广泛的研究。然而,针对提高持水能力并降低疏水性而优化的生物炭综合路线图尚未发布。本综述不仅首次提供了关于生物炭性质对持水能力和疏水性影响的定量信息,还提供了一张路线图,用于在将生物炭用作土壤改良剂时优化生物炭以提高持水能力。该综述表明,如果以1%至3%的比例施用于土壤中,秸秆或草衍生的生物炭(在500 - 600°C下)会增加土壤的持水能力。从该综述中可以清楚地看出,不同质地的土壤需要不同粒径的生物炭来提高持水能力并降低疏水性。此外,该综述得出结论,与生产后立即使用生物炭相比,建议将生物炭陈化至少一年并增强氧化作用,以提高持水能力并降低疏水性。另外,在生产生物炭时,建议停留时间为1至2小时以降低生物炭的疏水性。最后,作为示意图展示了优化生物炭的路线图,可作为在生产用于土壤改良的生物炭过程中进行决策的参考资源。