a Department of Chemistry , Faculty of Arts and Science, Eskişehir Osmangazi University , Eskişehir , Turkey.
b Department of Chemistry , Graduate School of Natural and Applied Sciences, Eskişehir Osmangazi University , Eskişehir , Turkey.
Int J Phytoremediation. 2018 Jan 28;20(2):145-152. doi: 10.1080/15226514.2017.1337075.
Biosorption is an effective alternative method for the control of water pollution caused by different pollutants such as synthetic dyes and metals. A new and efficient biomass system was developed from the passively immobilized fungal cells. The spongy tissue of Phragmites australis was considered as the carrier for the immobilization of Neurospora sitophila cells employed for the biosorption of Basic Blue 7. This plant tissue was used for the first time as a carrier for fungal cells. The biosorption was examined through batch- and continuous-mode operations. The biosorption process conformed well to the Langmuir model. Maximum monolayer biosorption capacity of the biosorbent was recorded as 154.756 mg g. Kinetic findings showed a very good compliance with the pseudo-second-order model. The negative values of ΔG° indicated a spontaneous nature of the biosorption process and a positive value of ΔH° (14.69 kJ mol) concluded favorable decolorization at high temperature. The scanning electron microscopy analysis showed that a porous, rippled, and rough surface of biomass system was covered with BB7 molecular cloud. IR results revealed that functional groups like -OH, -NH, and C˭O participated to the decolorization. Breakthrough and exhausted points were found as 360 and 570 minutes, respectively. The biomass system was successfully applied to the treatment of real wastewater.
生物吸附是一种有效替代方法,可以控制不同污染物(如合成染料和金属)造成的水污染。从被动固定化真菌细胞中开发了一种新的、有效的生物质系统。芦苇的海绵组织被认为是固定化粗糙脉孢菌细胞的载体,用于吸附碱性蓝 7。这种植物组织是首次被用作真菌细胞的载体。通过分批和连续模式操作来研究生物吸附。生物吸附过程符合朗缪尔模型。生物吸附剂的最大单层生物吸附容量记录为 154.756 mg g。动力学研究结果表明,非常符合准二级模型。ΔG°的负值表明生物吸附过程是自发的,而ΔH°(14.69 kJ mol)的正值表明在高温下有利于脱色。扫描电子显微镜分析表明,生物质系统的多孔、波纹和粗糙表面覆盖着 BB7 分子云。IR 结果表明,-OH、-NH 和 C˭O 等官能团参与了脱色。突破点和耗尽点分别为 360 和 570 分钟。生物质系统成功地应用于实际废水的处理。