Environment and Plant Protection Institute, CATAS/Danzhou Scientific Observing and Experimental Station of Agro-Environment, Ministry of Agriculture and Rural Affairs, Haikou, 571101, Hainan, People's Republic of China.
Hubei Key Laboratory of Soil Environment and Pollution Remediation, College of Resources and Environment, Huazhong Agricultural University, No. 1 Lion Hill Street, Hongshan District, Wuhan, 430070, People's Republic of China.
Environ Sci Pollut Res Int. 2020 Jun;27(17):20675-20684. doi: 10.1007/s11356-020-08593-8. Epub 2020 Apr 10.
Biochar plays an important role in soil improvement, pollutant removal, and nitrogen reduction. The excellent adsorption performance of biochar is closely related to its pore structure. Therefore, this paper combines a large amount of literatures to investigate the principle and method of preparing carbon materials by using the template method, and the idea of preparing high porosity biochar by template method was proposed. The results show that: (1) The specific surface area of the carbon materials prepared by the template method is more than 400 m g, and the total pore volume is more than 0.3 cm g, which is much higher than the biochar materials prepared under the traditional high temperature anoxic pyrolysis. (2) Compared with the hard template method, a soft template method with simple operation, low toxicity of the compound, and low cost is selected. (3) The lignin, which is also a hydrophilic carbon source similar to phenolic resin, can be used as an ideal carbon precursor. (4) In the selection of templating agents, the specific surface area and total pore volume of carbon materials prepared by using F127 as a template are relatively large, showing more excellent pore size performance. (5) Finally, the idea of using template method to prepare high porosity biochar is proposed: lignin extracted from straw material is used as precursor, block polymer F127 is used as template, an appropriate amount of a cross-linking agent and a solvent is added, and finally the target biochar material is prepared by pyrolysis carbonization.
生物炭在土壤改良、污染物去除和氮减排方面发挥着重要作用。生物炭优异的吸附性能与其孔结构密切相关。因此,本文结合大量文献,研究了模板法制备碳材料的原理和方法,并提出了通过模板法制备高孔隙率生物炭的思路。结果表明:(1)模板法制备的碳材料比表面积大于 400m/g,总孔体积大于 0.3cm/g,远高于传统高温缺氧热解制备的生物炭材料。(2)与硬模板法相比,选择了操作简单、化合物毒性低、成本低的软模板法。(3)木质素也是一种与酚醛树脂类似的亲水性碳源,可作为理想的碳前体。(4)在模板剂的选择中,以 F127 为模板制备的碳材料具有较大的比表面积和总孔体积,表现出更优异的孔径性能。(5)最后,提出了利用模板法制备高孔隙率生物炭的思路:以秸秆材料中提取的木质素为前驱体,采用嵌段聚合物 F127 为模板,加入适量的交联剂和溶剂,最终通过热解碳化制备目标生物炭材料。