Faculty of Sciences, Chemistry Department, Alexandria University, Moharem bey, Alexandria, Egypt.
Faculty of Sciences, Chemistry Department, Alexandria University, Moharem bey, Alexandria, Egypt.
Bioresour Technol. 2020 Jul;308:123263. doi: 10.1016/j.biortech.2020.123263. Epub 2020 Mar 27.
Assembly of novel ecofriendly and sustainable (N-PSPB/SHGL) nanosorbent was fabricated based on encapsulation of derived nanoscale spherical biochar from Pisum sativum pods (N-PSPB) with starch hydrogel (SHGL). The mass ratio between starch and N-PSPB was examined and 2% (w/w) was selected as the optimum percentage for fabrication of the assembled hydrogel. High swelling capacity was characterized by N-PSPB/SHGL nanosorbent (500.0%) at room temperature (25 °C), excellent stability for ten cycles with respect to regeneration by 0.1 mol L HCl. Additionally, characterizations of N-PSPB/Starch nanosorbent were established by SEM and BET measurement to characterize surface area (226.94 m/g) and pore volume (9.88 cm/g). The N-PSPB/SHGL nanosorbent was subjected to extensive investigations to evaluate its efficiency for removal of naproxen drug (NAP) and chromium (VI). The Cr(VI) and NAP drug adsorptions were fitted to pseudo-second kinetic and correlated with Langmuir isotherm. The adsorption processes were spontaneous and endothermic based on thermodynamic study.
基于豌豆荚衍生的纳米级球形生物炭(N-PSPB)与淀粉水凝胶(SHGL)的封装,制备了新型环保可持续的(N-PSPB/SHGL)纳米吸附剂。考察了淀粉与 N-PSPB 的质量比,选择 2%(w/w)作为组装水凝胶的最佳比例。N-PSPB/SHGL 纳米吸附剂在室温(25°C)下具有高的溶胀能力(500.0%),经过 0.1mol·L HCl 再生十次后的稳定性良好。此外,通过 SEM 和 BET 测量对 N-PSPB/Starch 纳米吸附剂进行了表征,以表征表面积(226.94 m/g)和孔体积(9.88 cm/g)。对 N-PSPB/SHGL 纳米吸附剂进行了广泛的研究,以评估其对萘普生药物(NAP)和六价铬(Cr(VI))的去除效率。Cr(VI)和 NAP 药物的吸附均符合准二级动力学,并与 Langmuir 等温线相关。根据热力学研究,吸附过程是自发和吸热的。