UTM-MPRC Institute for Oil and Gas, School of Chemical and Energy Engineering, Faculty of Engineering, Universiti Teknologi Malaysia, Skudai, 81310, Johor Bahru, Malaysia.
Centre of Lipids Engineering and Applied Research (CLEAR), Universiti Teknologi Malaysia, Skudai, 81310, Johor Bahru, Malaysia.
Appl Biochem Biotechnol. 2022 Aug;194(8):3779-3801. doi: 10.1007/s12010-022-03932-6.
Nanostarch is unique in that it is highly soluble, thermally stable, non-toxic and inexpensive. Hence, it is utilized in numerous well-established applications, including drug delivery, cosmetics, textiles, foods, and enhanced oil recovery (EOR). These applications take advantage of the special functions that can be achieved through modifications to the structure and properties of native starch. The most common method for the preparation of nanostarch with a relatively higher crystallinity and stability is acid hydrolysis. Technically, the properties of nanostarch are highly dependent on several factors during the hydrolysis process, such as the acid, concentration of acid, reaction time, reaction temperature, and source of starch. The production of nanostarch with desired properties requires a detailed understanding on each of the factors as they are inevitably affected the physical and chemical properties of nanostarch. Hence, it is vital to incorporate optimization technique into the production process to achieve the full potential of nanostarch. Therefore, the current review comprehensively elaborates on the factors that affect acid hydrolysis as well as the optimization techniques used in the preparation of nanostarch.
纳米淀粉的独特之处在于其高溶解性、热稳定性、无毒和廉价。因此,它被广泛应用于许多成熟的领域,包括药物输送、化妆品、纺织品、食品和提高石油采收率(EOR)。这些应用利用了通过对天然淀粉的结构和性质进行修饰可以实现的特殊功能。用相对较高的结晶度和稳定性制备纳米淀粉的最常见方法是酸水解。从技术上讲,纳米淀粉的性质在水解过程中高度依赖于几个因素,例如酸、酸的浓度、反应时间、反应温度和淀粉的来源。生产具有所需性质的纳米淀粉需要详细了解每个因素,因为它们不可避免地会影响纳米淀粉的物理和化学性质。因此,将优化技术纳入生产过程中以充分发挥纳米淀粉的潜力至关重要。因此,本综述全面阐述了影响酸水解的因素以及在纳米淀粉制备中使用的优化技术。