Ibrahim Khalid A, Naz Muhammad Y, Sulaiman Shaharin A, Ghaffar Abdul, Jamil Yasir, Abdel-Salam Nasser M
College of Engineering, Muzahimiyah Branch, King Saud University, Riyadh 11451, Saudi Arabia.
Department of Chemical Engineering, Faculty of Engineering, Al-Hussein Bin Talal University, Ma'an 71111, Jordan.
Polymers (Basel). 2017 Sep 6;9(9):361. doi: 10.3390/polym9090361.
Although starch based materials have an array of fascinating industrial applications, the native starches do not show good mechanical strength, thermal stability, and rheological properties for their use in the mainstream processing industry. For example, the use of starches for producing controlled release fertilizers is a new research endeavor with detailed knowledge still to come. The thermal processing of native starches with water as a plasticizer results in poor physical and pasting properties of the final product. Therefore in this study, corn starch was thermally processed with urea and borate in a water medium. The pure starch (PS), starch-urea (SU), starch-borate (SB), and starch-urea-borate (SUB) samples were prepared and characterized for their rheological traits. The PS sample exhibited a peak viscosity of 299 cP after 17 min of thermal processing. Further heating of the suspension caused a decrease in viscosity of 38 points due to thermal cracking of the starch granules. A similar trend was depicted in the viscosity measurements of SU, SB, and SUB adhesives. However, the viscosity of these samples remained slightly higher than that for PS. Also, the reduction in viscosity after the peak value was not as notable as for PS. The modified starch behaved like a gel and its storage modulus was significantly higher than the loss modulus. The lower magnitudes of storage and loss moduli revealed that the modified starch was in the form of a weak gel and not a solid. The PS is more fluid in nature with dominating loss modulus at lower angular frequencies.
尽管淀粉基材料有一系列引人入胜的工业应用,但天然淀粉在主流加工行业中使用时,其机械强度、热稳定性和流变性能并不理想。例如,利用淀粉生产控释肥料是一项新的研究工作,详细信息仍有待完善。以水作为增塑剂对天然淀粉进行热处理,会导致最终产品的物理和糊化性能不佳。因此,在本研究中,玉米淀粉在水介质中与尿素和硼酸盐进行了热处理。制备了纯淀粉(PS)、淀粉-尿素(SU)、淀粉-硼酸盐(SB)和淀粉-尿素-硼酸盐(SUB)样品,并对其流变特性进行了表征。PS样品在热处理17分钟后表现出299厘泊的峰值粘度。悬浮液的进一步加热由于淀粉颗粒的热裂解导致粘度下降了38个单位。SU、SB和SUB粘合剂的粘度测量也呈现出类似趋势。然而,这些样品的粘度仍略高于PS样品。而且,峰值后粘度的降低不像PS样品那样显著。改性淀粉表现得像一种凝胶,其储能模量明显高于损耗模量。储能模量和损耗模量的较低值表明改性淀粉呈弱凝胶形式而非固体形式。PS在本质上更具流动性,在较低角频率下损耗模量占主导。