School of Chemical Engineering, Engineering Campus, Universiti Sains Malaysia, 14300 Nibong Tebal, Penang, Malaysia.
Bioresour Technol. 2012 Sep;119:234-40. doi: 10.1016/j.biortech.2012.05.061. Epub 2012 May 22.
Microwave heating was used in the regeneration of methylene blue-loaded activated carbons produced from fibers (PFAC), empty fruit bunches (EFBAC) and shell (PSAC) of oil palm. The dye-loaded carbons were treated in a modified conventional microwave oven operated at 2450 MHz and irradiation time of 2, 3 and 5 min. The virgin properties of the origin and regenerated activated carbons were characterized by pore structural analysis and nitrogen adsorption isotherm. The surface chemistry was examined by zeta potential measurement and determination of surface acidity/basicity, while the adsorptive property was quantified using methylene blue (MB). Microwave irradiation preserved the pore structure, original active sites and adsorption capacity of the regenerated activated carbons. The carbon yield and the monolayer adsorption capacities for MB were maintained at 68.35-82.84% and 154.65-195.22 mg/g, even after five adsorption-regeneration cycles. The findings revealed the potential of microwave heating for regeneration of spent activated carbons.
微波加热用于从油棕纤维(PFAC)、空果串(EFBAC)和果壳(PSAC)中制备的负载亚甲基蓝的活性炭的再生。将负载染料的活性炭在 2450 MHz 下运行的改良常规微波炉中进行处理,辐射时间为 2、3 和 5 分钟。原始特性和再生活性炭的孔结构分析和氮气吸附等温线进行了表征。通过动电电势测量和表面酸度/碱度的测定来检查表面化学性质,同时使用亚甲基蓝(MB)定量吸附性能。微波辐射保留了再生活性炭的孔结构、原始活性位和吸附能力。即使经过五次吸附-再生循环,碳产率和 MB 的单层吸附容量仍保持在 68.35-82.84%和 154.65-195.22 mg/g。研究结果表明,微波加热在再生废活性炭方面具有潜力。