Subbaiah Yogesha, AlAhmadi Ahmad Salem, Debasagoiti Mark, Nagarajan Balaji, Alhafs Rawan Jassem, Shanmugam Senthilkumar
R & D Laboratory, TASNEE Technology and Innovation Centre, Al-Jubail Industrial City, Saudi Arabia.
J Sep Sci. 2025 Jan;48(1):e70075. doi: 10.1002/jssc.70075.
In this study, a commercially available polypropylene homopolymer (H-PP) was blended with blow molding polyethylene (PE) grade via melt mixing using a compounding machine. The resulting blends were subjected to high-temperature size exclusion chromatography (SEC) analysis, coupled with infrared-5 (IR-5), viscometer (VISCO), and multi-angle laser light scattering (MALS) detectors. The molecular weight (MW) and MW distributions were investigated using SEC, and the exact blend compositions were evaluated using C nuclear magnetic resonance. The molecular-level mixing of the PP/PE blend composition was assessed by comparing the theoretical and measured weight-average MW (Mw) values obtained using different SEC detection modes. The measured average Mw values of different PP/PE blends obtained using VISCO and multi-angle light-scattering detection were found to be in close agreement with predicted blend ratios, compared to the conventional SEC technique (IR-5), with percentage errors ranging from -4.53 to -5.99 and 1.57 to 7.65, respectively. The linear relationship between the melt flow rate (MFR) and Mw was studied to assess the molecular-level mixing behavior of the prepared blends using different SEC detection modes. Furthermore, the SEC methodology was extended to other application grades of PE with varying MFRs to verify the blend mixing behavior with H-PP, and the obtained results are discussed.
在本研究中,将市售的聚丙烯均聚物(H-PP)与吹塑级聚乙烯(PE)通过使用混炼机进行熔融共混。所得共混物进行高温尺寸排阻色谱(SEC)分析,并与红外-5(IR-5)、粘度计(VISCO)和多角度激光光散射(MALS)检测器联用。使用SEC研究分子量(MW)和MW分布,并使用碳核磁共振评估确切的共混物组成。通过比较使用不同SEC检测模式获得的理论和实测重均分子量(Mw)值,评估PP/PE共混物组成的分子水平混合情况。与传统的SEC技术(IR-5)相比,使用VISCO和多角度光散射检测获得的不同PP/PE共混物的实测平均Mw值与预测的共混比非常吻合,百分比误差分别为-4.53至-5.99和1.57至7.65。研究了熔体流动速率(MFR)与Mw之间的线性关系,以评估使用不同SEC检测模式制备的共混物的分子水平混合行为。此外,将SEC方法扩展到具有不同MFR的其他PE应用等级,以验证与H-PP的共混混合行为,并对所得结果进行了讨论。