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The effects on oxidative aging, physical and flow properties of Agbabu natural bitumen modified with silver nanoparticles

机译:用银纳米粒子改性agbabu天然沥青的氧化老化,物理和流动性能的影响

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摘要

The quest for improvement in service life and performance of road pavement via reduction of oxidative aging failure of bitumen, led us to the investigation of novel application of Silver nanoparticles (AgNPs) as potential anti-oxidative material for Agbabu natural bitumen (ANB). The raw ANB was purified to form the base and the base modified in a stainless reactor using AgNPs via melt blend technique at temperature of 120 °C under stirring at 1200rpm. The proportions of AgNPs used for the modification were 1.5, 3.0 and 4.5 wt% and long-term aging was thermally simulated on the base and modified base samples at 60 °C. The aged samples were then subjected to Fourier Transform Infrared (FTIR) Spectroscopic Analysis to study the changes in the size of the peaks of the oxidation-related compounds. Physical and flow parameters (PFPs) of the base and modified base samples were characterized using softening point temperature, kinematic viscosity, penetration index, flash and fire points, penetration, kinematic viscosity and Oscillatory disc Rheometer (ODR) test. FTIR analysis showed that the AgNPs incorporation into ANB at 1797 cm−1, 1217 cm−1, 1300 cm−1 and 1097 cm−1 in the spectrum of the base sample. The sulphoxide peaks at 1031 cm−1 was completely obliterated. There was progressive reduction in the area of the carbonyl peak at 1693 cm−1 implying progressive lowering of the carbonyl index value with increasing in the amount of AgNPs used in the modification. These changes are attributable to the anti-oxidative potential of the AgNPs. The mechanism of the anti-oxidative effect of AgNPs is proposed to be due to scavenging of the free radical produced in the oxidation process. The values of softening point temperature, kinematic viscosity, penetration index, and flash and fire points increased while that of penetration and specific gravity reduced as the quantity of AgNPs in the base increased. The ODR test showed that, the modified samples compared to base sample at lower and higher road pavement temperatures are less prone to fatigue cracking and rutting, respectively. Thus, this study provides preliminary information about the novelty of AgNPs as potential antioxidant for improving the durability/performance of bitumen in pavements.
机译:通过降低沥青的氧化衰老失效来追究使用寿命和道路路面性能的性能,导致我们对agbabu天然沥青(ANB)的潜在抗氧化材料的新施用新颖的应用。纯化原料ANB以在1200rpm搅拌下在120℃的温度下在不锈钢反应器中使用AgNP进行改性的基础,并在不锈钢反应器中改性。用于改性的AgNP的比例为1.5,3.0和4.5wt%,在碱基和改性碱样品上在60℃下热模拟长期老化。然后对老化的样品进行傅里叶变换红外(FTIR)光谱分析,以研究氧化相关化合物峰的尺寸的变化。使用软化点温度,运动粘度,渗透指数,闪光点,渗透,运动粘度和振荡盘流变仪(ODR)试验,表征碱和改性基础样品的物理和流动参数(PFP)的表征。 FTIR分析表明,在碱基样品的光谱中,AgNP在1797cm-1,1217cm-1,1300cm-1和1097cm-1中掺入ANB。 1031cm-1处的硫氧化物峰完全灭失。 1693cm-1的羰基峰的面积逐渐降低,暗示羰基指数值的逐渐降低,随着修饰中使用的AgNP的量增加。这些变化可归因于AGNP的抗氧化潜力。提出了AgNP的抗氧化作用的机制,是由于氧化过程中产生的自由基的清除。软化点温度,运动粘度,渗透指数和闪光点的值增加,而渗透性和比重的渗透率降低,随着碱基的agnps增加而减少。 ODR试验表明,与较低的道路路面温度下的基础样品相比,改性样品分别不易疲劳裂缝和车辙。因此,本研究提供了有关agnps作为潜在抗氧化剂的新颖性的初步信息,用于改善路面中沥青的耐久/性能。

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