Chandak Ankita, Dhull Sanju Bala, Punia Bangar Sneh, Rusu Alexandru Vasile
Department of Food Science and Technology, Chaudhary Devi Lal University, Sirsa 125055, India.
Department of Food, Nutrition and Packaging Sciences, Clemson University, Clemson, SC 29631, USA.
Foods. 2022 Oct 3;11(19):3069. doi: 10.3390/foods11193069.
Lotus seed starch was cross-linked using sodium trimetaphosphate (STMP) in varying amounts (1, 3, and 5%), and its rheological, pasting, thermal, and physicochemical properties were investigated. These cross-linked lotus seed starches (CL-LS-1, CL-LS-3, CL-LS-5) were also used to produce films (CL-LSFs), which were then examined for their mechanical characteristics, water vapor permeability, moisture content, opacity, thickness, and water solubility. After cross-linking, the solubility, amylose content, and swelling power of all the starch samples decreased. Cross-linking resulted in an increased pasting temperature, while peak viscosity (PV) decreased, with CL-LS-5 exhibiting the lowest peak viscosity (1640.22 MPa·s). In comparison to native starch, the thermal characteristics of CL-LS demonstrated greater gelatinization temperatures (T, T, T) and gelatinization enthalpy (ΔH). The gelatinization enthalpy of CL-LS varied between 152.70 and 214.16 J/g, while for native LS the value was 177.91 J/g. Lower moisture content, water solubility, and water vapor permeability were observed in the CL-LSFs. However, the cross-linking modification did not produce much effect on the film thickness. The highest tensile strength (12.52 MPa) and lowest elongation at break (26.11%) were found in CL-LSF-5. Thus, the starch films' barrier and mechanical qualities were enhanced by cross-linking.
使用不同用量(1%、3%和5%)的偏磷酸钠(STMP)对莲子淀粉进行交联,并对其流变学、糊化、热学和物理化学性质进行了研究。这些交联莲子淀粉(CL-LS-1、CL-LS-3、CL-LS-5)还被用于制备薄膜(CL-LSFs),然后对其机械特性、水蒸气透过率、含水量、不透明度、厚度和水溶性进行了检测。交联后,所有淀粉样品的溶解度、直链淀粉含量和膨胀力均降低。交联导致糊化温度升高,而峰值粘度(PV)降低,CL-LS-5的峰值粘度最低(1640.22MPa·s)。与天然淀粉相比,CL-LS的热特性表现出更高的糊化温度(T₀、Tp、Tc)和糊化焓(ΔH)。CL-LS的糊化焓在152.70至214.16J/g之间变化,而天然莲子淀粉的值为177.91J/g。在CL-LSFs中观察到较低的含水量、水溶性和水蒸气透过率。然而,交联改性对薄膜厚度没有太大影响。CL-LSF-5的拉伸强度最高(12.52MPa),断裂伸长率最低(26.11%)。因此,交联提高了淀粉薄膜的阻隔性和机械性能。