Department of Biotechnology, College of Life Sciences and Biotechnology, Korea University, Seoul 02841, Republic of Korea.
Department of Biotechnology, College of Life Sciences and Biotechnology, Korea University, Seoul 02841, Republic of Korea.
Food Chem. 2024 Jan 15;431:137167. doi: 10.1016/j.foodchem.2023.137167. Epub 2023 Aug 15.
Corn starch dispersions were heated with ethanol (E) and reacted with phytic acid (E-PA), citric acid (E-CA), and a mixture of phytic and citric acid (E-PACA) under dry-heating to prepare heavy metal adsorbents. Microscopy images indicated that ethanol treatment induced the formation of porous structures on the surface; furthermore, treatment with phytic and citric acid induced indentations, pores, and irregular structures in E-PA, E-CA, and E-PACA starches. Phytic and citric acid were retained in the starch molecules through ester bonds with the phosphate and carboxyl groups, respectively. Starch esterification by phytic and citric acid induced a loss of crystallinity, high water absorption capacity, and low solubility. E-PACA starch exhibited more efficient Cu adsorption (38.13 mg/g) than native, E, E-PA, and E-CA starches (0.11, 0.49, 2.05, and 36.23 mg/g, respectively). Thus, modification with ethanol, phytic acid and citric acid can be applied to prepare natural starch-based heavy metal adsorbents.
玉米淀粉分散体用乙醇(E)加热,并用植酸(E-PA)、柠檬酸(E-CA)和植酸与柠檬酸的混合物(E-PACA)在干热下反应,制备重金属吸附剂。显微镜图像表明,乙醇处理诱导表面形成多孔结构;此外,用植酸和柠檬酸处理诱导 E-PA、E-CA 和 E-PACA 淀粉中的凹痕、孔和不规则结构。植酸和柠檬酸分别通过与磷酸和羧基的酯键保留在淀粉分子中。植酸和柠檬酸对淀粉的酯化作用导致结晶度降低、吸水性增加和溶解度降低。E-PACA 淀粉对 Cu 的吸附效率(38.13mg/g)高于天然淀粉、E、E-PA 和 E-CA 淀粉(分别为 0.11、0.49、2.05 和 36.23mg/g)。因此,用乙醇、植酸和柠檬酸改性可以用来制备天然淀粉基重金属吸附剂。