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Study on the performance mechanism of methacrylate pour point depressant in soybean biodiesel blends

机译:甲基丙烯酸盐倾点抑制剂在大豆生物柴油混合物中的性能机制研究

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摘要

The cold flow properties of soybean biodiesel blends with 0# diesel and methacrylate pour point depressant (10-320) were investigated in this study. Results showed that all of the fuel properties of the prepared biodiesel satisfied the qualification for ASTM D6751. Along with the increasing amount of pour point depressant (PPD) addition, the cold filter plugging point (CFPP) of the system was reduced. The addition of a constant amount of pour point depressant resulted in minimal values of CFPP in the system, as the volume ratio of biodiesel varied from 0% to 100%. The addition of 1% of 10-320 PPD in B60 produced a CFPP of-10 C, which was the most significant reduction in biodiesel blends. Other fuel properties of B60 were in accordance with ASTM D6751 and EN 14214. Differential scanning calorimeter, low-temperature X-ray diffraction, and polarizing optical microscope were used to investigate the performance mechanism. Results showed that the crystallization rate of B60 was the slowest; the crystals were small, spherical particles; the particle size <20 mm; and the energy of the solid-liquid transition was the lowest. The crystal content in B60 was the least, the ratio of the peak area of the orthorhombic and monoclinic crystals was 0.086. The orthorhombic crystals were relatively less than the monoclinic crystals. As monoclinic crystals could easily pass through the filter, the CFPP of B60 was the lowest.
机译:本研究研究了用0#柴油和甲基丙烯酸盐倾点抑制剂(10-320)的大豆生物柴油共混物的冷流量。结果表明,制备的生物柴油的所有燃料特性满足了ASTM D6751的鉴定。随着倾点抑制剂(PPD)添加量的增加,系统的冷过滤器堵塞点(CFPP)降低。添加恒定量的倾点抑制剂导致系统中的CFPP值最小,因为生物柴油的体积比从0%变化至100%。在B60中加入1%的10-320 ppd产生了CFPP的-10c,这是生物柴油混合物中最显着的减少。 B60的其他燃料特性均符合ASTM D6751和EN 14214.差示扫描量热计,低温X射线衍射和偏振光学显微镜用于研究性能机制。结果表明,B60的结晶速率是最慢的;晶体是小的球形颗粒;粒径<20毫米;并且固体液体过渡的能量是最低的。 B60中的晶体含量最小,正交和单斜晶的峰面积的比例为0.086。正晶晶体相对小于单斜晶体。由于单斜晶体可以容易地通过过滤器,B60的CFPP是最低的。

著录项

  • 来源
    《RSC Advances》 |2015年第109期|共6页
  • 作者

    Peng Ma; Yuan Xue; Weina Zhao;

  • 作者单位

    School of Chemical and Environmental Engineering Shanghai Institute of Technology Shanghai 201418 China.;

    School of Chemical and Environmental Engineering Shanghai Institute of Technology Shanghai 201418 China.;

    School of Chemical and Environmental Engineering Shanghai Institute of Technology Shanghai 201418 China.;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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