Department of Chemical Engineering, Universitas Gadjah Mada, 55281 Yogyakarta, Indonesia.
Advanced Material and Sustainable Mineral Processing Research Group, Universitas Gadjah Mada, 55281 Yogyakarta, Indonesia.
Molecules. 2019 Apr 17;24(8):1507. doi: 10.3390/molecules24081507.
Suppressing the amount of ethylene during storage has been of interest as a method to enhance shelf life of fruit. In this work, ethylene removal by adsorption using cobalt oxide-impregnated nanoporous carbon has been studied. Nanoporous carbon with a high surface area up to 2400 m g was prepared by carbonization process biomass and synthetic polymer at 850 °C. Dispersion of cobalt oxide on porous carbon surface was carried out by an incipient wetness procedure followed by calcination process at 200 °C. Ethylene adsorption test was performed using a volumetric method in an ultrahigh vacuum rig constructed by Swagelok VCR® fittings. The results showed that the cobalt oxide/carbon system had significant ethylene adsorption capacity. Ethylene uptake increases with the increasing cobalt oxide loading on the carbon. The highest ethylene capacity of 16 mol kg adsorbent was obtained by using 30 wt.% (weight percentage) of cobalt oxide dispersed in polymer-derived carbon. In closed storage, the ratio of 15 g adsorbent/kg fruit may extend the storage life up to 12 d, higher than that without adsorbent (3 d). Therefore, the results demonstrate the great potential use of cobalt oxide-impregnated nanoporous carbon as an adsorbent for ethylene removal during storage of fruit.
抑制贮藏过程中乙烯的产生量一直是一种提高水果货架期的方法。在这项工作中,研究了通过吸附用氧化钴浸渍的纳米多孔碳来去除乙烯。通过在 850°C 下碳化生物质和合成聚合物,制备了具有高达 2400 m²/g 的高表面积的纳米多孔碳。通过浸渍法在多孔碳表面上分散氧化钴,然后在 200°C 下进行煅烧。乙烯吸附测试使用由 Swagelok VCR®配件构建的超高真空装置中的体积法进行。结果表明,氧化钴/碳体系具有显著的乙烯吸附能力。随着碳上氧化钴负载量的增加,乙烯的吸附量增加。在聚合物衍生碳中分散 30wt.%(重量百分比)的氧化钴时,乙烯的最大吸附量为 16 mol kg 吸附剂。在封闭储存中,每 15 g 吸附剂/kg 水果的比例可能将水果的储存寿命延长至 12 天,高于没有吸附剂的情况(3 天)。因此,结果表明,氧化钴浸渍的纳米多孔碳作为一种吸附剂,在水果贮藏过程中去除乙烯具有很大的应用潜力。