Martins Pablo H S, Barros Maria A, Silva Caroline L, Ricci Poliana, Castilho Laís M B, Santos Allyson L R, Rodrigues Hugo S, Assunção Rosana M N, Faria Anizio M
Instituto de Química, Universidade Federal de Uberlândia 38304-402 Uberlândia MG Brazil
Instituto de Ciências Exatas e Naturais do Pontal, Universidade Federal de Uberlândia 38304-402 Ituiutaba MG Brazil.
RSC Adv. 2024 May 29;14(25):17380-17388. doi: 10.1039/d4ra02985b. eCollection 2024 May 28.
This work presents an eco-friendly approach for determining free glycerol in biodiesel samples, using a cellulose monolith stir bar in the sorptive extraction method with analysis by high-performance liquid chromatography and a refractive index detector. The cellulose monolith was produced from cellulose acetate by non-solvent-induced phase separation and subsequent alkaline deacetylation. The cellulose monolith presented a hierarchically porous structure, with 68% porosity and almost total deacetylation, with morphological and polarity characteristics that favor an efficient extraction of free glycerol from biodiesel. The sorptive extraction method using a cellulose monolith stir bar was optimized, obtaining a total extraction time of 30 min at 70 °C, using ultrapure water as the desorption solvent, and extraction of free glycerol of 93.6 ± 2.3%. The proposed method showed selectivity in free glycerol extraction, with limits of detection and quantification of 6.60 × 10% w/w and 2.18 × 10% w/w, respectively. Compared with the official reference method, the proposed one presented similar precision and accuracy, with few manipulations and any reagent/solvents. Furthermore, it is compatible with the principles of green chemistry and can be considered an eco-friendly method for determining free glycerol in biodiesel.
本研究提出了一种测定生物柴油样品中游离甘油的环保方法,该方法采用纤维素整体柱搅拌棒进行吸附萃取,并用高效液相色谱和示差折光检测器进行分析。纤维素整体柱由醋酸纤维素通过非溶剂诱导相分离及随后的碱性脱乙酰化制备而成。该纤维素整体柱呈现出分级多孔结构,孔隙率为68%,几乎完全脱乙酰化,其形态和极性特征有利于从生物柴油中高效萃取游离甘油。对使用纤维素整体柱搅拌棒的吸附萃取方法进行了优化,在70℃下以超纯水作为解吸溶剂,总萃取时间为30分钟,游离甘油的萃取率为93.6±2.3%。所提出的方法在游离甘油萃取方面具有选择性,检测限和定量限分别为6.60×10% w/w和2.18×10% w/w。与官方参考方法相比,该方法操作简便,无需使用任何试剂/溶剂,具有相似的精密度和准确度。此外,它符合绿色化学原则,可被视为一种测定生物柴油中游离甘油的环保方法。