Department of Chemistry, Southern University of Science and Technology, Shenzhen 518055, China.
Birmingham Centre for Energy Storage(BCES) & School of Chemical Engineering, University of Birmingham, United Kingdom B15 2TT, UK.
Bioresour Technol. 2022 Jun;354:127137. doi: 10.1016/j.biortech.2022.127137. Epub 2022 Apr 9.
In order to reduce environmental risks and fungus disease spread of banana waste, the high-pressure CO-hydrothermal treatment was developed to produce hydrochar as a precursor of activated carbon from banana pseudo-stem(BP). SEM, BET, XRD, Raman and FTIR was used to investigate the influence mechanism of the high-pressure CO-hydrothermal pretreatment on the yield and methylene blue(MB) adsorption capacities of the activated carbon. The results show that although the adsorption capacities of BP after high-pressure CO-hydrothermal pretreatment(BPx) is decrease due to decrease of oxygen-containing functional group and flatter spatial structure, that of BPx after KOH activation(BPx-A) significantly increase and is higher than that of BP by direct KOH activation(BP-A). Because BP-A presents honeycomb porous microstructures and has a higher mesoporous structure(138-472 m/g), plentiful active sites and rich the abundant influential adsorption group of MB adsorption. In addition, compared to BP-A(0.68%), the total yield of BPx-A(2.42-9.11%) is 356-1340%.
为了降低香蕉废弃物的环境风险和真菌病害传播,开发了高压 CO-水热处理技术,从香蕉假茎(BP)中生产水热炭作为活性炭的前体。采用 SEM、BET、XRD、Raman 和 FTIR 研究了高压 CO-水热预处理对活性炭产率和亚甲基蓝(MB)吸附容量的影响机制。结果表明,尽管高压 CO-水热预处理后的 BP(BPx)的吸附容量因含氧官能团减少和空间结构平坦化而降低,但经过 KOH 活化后的 BPx(BPx-A)的吸附容量显著增加,高于直接用 KOH 活化的 BP(BP-A)。这是因为 BP-A 呈现出蜂窝状多孔微观结构,具有更高的中孔结构(138-472 m/g),丰富的活性位点和丰富的影响 MB 吸附的官能团。此外,与 BP-A(0.68%)相比,BPx-A(2.42-9.11%)的总产率为 356-1340%。