Song Chunli, Li Hongyan, Yu Yikai
College of Chemistry and Chemical Engineering, Jiangxi Normal University Ziyang Road 99 Nanchang 330022 China
Key Laboratory of Chemical Biology of Jiangxi Province Ziyang Road 99 Nanchang 330022 China.
RSC Adv. 2019 Mar 25;9(17):9421-9434. doi: 10.1039/c9ra00690g. eCollection 2019 Mar 22.
A homologous-heterogeneous polycationic gel (HPCG) system was constructed by a waste-free synthesis process, to be used as a super-efficient adsorbent material for purifying dyeing wastewater. It is the first discovery of a new intelligent adsorption effect occurring in HPCG adsorption by detecting the homologous-heterogeneous structure transformations in HPCG adsorption using optical microscopy, scanning electron microscopy, X-ray diffraction, and X-ray photoelectron spectroscopy analysis technologies. The adsorption capacities of HPCG products were 532.55-605.45 times higher than that of the widely-used activated carbon, thereby being the greatest improvement of the adsorption ability for HPCG this existing adsorbent. Meanwhile, the adsorption capacities of HPCG were also improved by 3.67-46.05 times compared to that of all the similar polycationic cotton adsorbents reported in our previous serial works, demonstrating more efficient purification of dyeing wastewater than we could do before. In addition, through studying the adsorption models, it was further discovered that HPCG adsorption followed the new two-segment adsorption process, including a speed control segment and an acceleration segment, also confirming the existence of the intelligent adsorption effect for HPCG adsorption.
通过无废合成工艺构建了一种同源-异质聚阳离子凝胶(HPCG)体系,用作净化印染废水的超高效吸附材料。通过光学显微镜、扫描电子显微镜、X射线衍射和X射线光电子能谱分析技术检测HPCG吸附过程中的同源-异质结构转变,首次发现了HPCG吸附中出现的新型智能吸附效应。HPCG产品的吸附容量比广泛使用的活性炭高532.55-605.45倍,是现有吸附剂中HPCG吸附能力的最大提升。同时,与我们之前系列工作中报道的所有类似聚阳离子棉吸附剂相比,HPCG的吸附容量也提高了3.67-46.05倍,表明对印染废水的净化效率比以前更高。此外,通过研究吸附模型,进一步发现HPCG吸附遵循新的两段吸附过程,包括速度控制段和加速段,也证实了HPCG吸附存在智能吸附效应。