B30和B40生物柴油混合料在不同孔隙率和尺寸下的过滤性能对比分析

Yogi Pramudito, Nur Allif Fathurrahman, Ahmad Syihan Auzani, Cahyo Setyo Wibowo, Riesta Anggarani, Ariana Soemanto, Bambang Sugiharto
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引用次数: 1

摘要

本报告的重点是对柴油发动机过滤系统中使用含有30%以上生物柴油的生物柴油混合物的影响进行比较分析。这项研究的目的是支持强制性生物柴油利用计划的可持续性超过30%。为了评估高百分比生物柴油混合物的过滤性能,即B30和B40(30和40%体积的生物柴油对柴油燃料),该研究采用了ASTM D 2068过滤器阻塞趋势(FBT)。滤清器台架试验后,还使用JIS 1617标准方法评估燃油滤清器压力。需要注意的是,燃油滤清器在去除燃料中的污染物方面发挥着重要作用,因此,需要在流量(0.03 m3/h)和燃料温度(15⁰C和25⁰C)下监测燃油滤清器的压力差,观察滤清器孔隙率差异的影响。此外,本研究还观察了温度和表面形貌的变化对过滤器特性的影响。基于FBT分析,多项式回归(R2 >0.98)表示混合生物柴油对过滤性能的影响与FBT值之间的关系。结果表明,温度、柴油中单甘油酯含量和FAME浓度对FBT有影响。然而,蜡质颗粒在15℃(云点附近)的上升可能导致比25℃(环境温度)更显著的平均压降。研究还发现,由于燃料温度较低和蜡质污染物的形成可能堵塞过滤器,较高的生物柴油混合物可能导致较高的压差。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparative analysis of filterability behavior of B30 and B40 biodiesel blends on various porosity and dimension of fuel filter
This report is focused on comparative analysis of the impact of using biodiesel blends containing more than 30% biodiesel in diesel engine filtration systems. The objective of this study is to support the sustainability of the mandatory biodiesel utilization program by more than 30%. To evaluate filterability behavior of high-percentage biodiesel blends, namely B30 and B40 (30 and 40%-vol biodiesel on diesel fuel), the study employed the ASTM D 2068 Filter Blocking Tendency (FBT). After filter rig test, fuel filter pressure was also evaluated using the JIS 1617 standard method. It is important to note that fuel filter plays an important role in removing contaminants from fuel, and, hence, the effect of the difference in filter porosity needs to be observed with pressure difference across fuel filter monitored at the flow rate (0.03 m3/h and fuel temperature (15 ⁰C and 25 ⁰C). Furthermore, the effect of changes in temperature and surface morphology on the characteristics of filter was observed in this study. Based on FBT analysis, a polynomial regression (R2 > 0.98) was used to describe the relationship between FBT value and the effect of biodiesel blends on filterability. It was concluded that the temperature, monoglyceride content, and FAME concentration in the diesel fuel influenced their FBT. However, the rise in waxy particles at 15oC (near Cloud Point) could result in a more significant average pressure drop than at 25⁰C (ambient temperature). It was also found that a higher biodiesel mixture potentially results in a higher-pressure difference due to the lower fuel temperature and the formation of waxy contaminants that can clog filter.
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