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Capillary Extraction of the Ionic Liquid Bmim DCA for Variable Flow Rate Operations

机译:用于可变流速操作的离子液体Bmim DCA的毛细管萃取

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The ionic liquid [Bmim] [DCA] is a propellant candidate in a standalone electrospray thruster or in a dual-mode propulsion system consisting of a chemical system and an electrospray system. Since limited published data exists for [Bmim] [DCA], the electrospray characteristics are relatively unknown. Emission testing of the ionic liquid has been conducted to characterize the [Bmim] [DCA] electrospray plume for both an external flow titanium needle and internal flow capillary. Mass spectrometric, retarding potential, and angle distribution measurements were collected for the positive polarity ions emitted from [Bmim] [DCA] wetted emitters with nominal extraction voltages between ~1 kV to ~2.5 kV. The titanium needle operated at a sizably reduced liquid flow rate in comparison to the capillary. As such, only the major species of Bmim~+([Bmim][DCA])_n with n=0,1 were identifiable in the quadrupole measurement range of 0-1000 amu and were formed at or near the needle potential. A typical needle angle distribution was found in these measurements. For the capillary emitter, flow rates from 0.27 nL/s to 2.18 nL/s were used to investigate corresponding alterations in the electrospray beam. The aim of the investigation was to ascertain the ability to "tune" or "dial-in" an electrospray thruster to specific ion or droplet sizes and thus specific performance levels. Unlike the limited species observed from the needle emission, the capillary measurements indicated the presence of n=0,l,2,3,4 cation species with large mass droplet contributions. The lowest flow rates indicated the highest levels of ions in the measurement range of 0-1000 amu with a mix of large mass droplets. For increasing flow rate, species < 500 amu ceased to exist leaving only the n=2,3,4 species mixed with large mass droplets in the electrospray beam. All ion species exceeded the quadrupole mass range at the upper flow rates. Ions emitted from the capillary were formed at levels below the emitter potential. Ohmic losses in the ionic liquid are likely the cause for the less energetic ions. Angular distribution measurements indicated broadening of the beam current and mass distribution for increasing flow rates.
机译:离子液体[Bmim] [DCA]是独立电喷雾推进器或由化学系统和电喷雾系统组成的双模推进系统中的推进剂候选物。由于[Bmim] [DCA]的公开数据有限,因此电喷雾特性相对未知。已经进行了离子液体的发射测试,以表征外流钛针和内流毛细管的[Bmim] [DCA]电喷雾羽流。收集了从[Bmim] [DCA]湿式发射器发出的正极性离子的质谱,阻滞电势和角度分布测量值,标称提取电压在〜1 kV至〜2.5 kV之间。与毛细管相比,钛针的液体流速大大降低。这样,只有n = 0,1的Bmim〜+([Bmim] [DCA])_ n的主要种类在0-1000 amu的四极测量范围内是可识别的,并且形成在针电位或附近。在这些测量中发现了典型的针角分布。对于毛细管发射器,使用0.27 nL / s至2.18 nL / s的流速研究电喷雾束的相应变化。研究的目的是确定将电子喷雾推进器“调谐”或“拨入”到特定离子或液滴尺寸,从而达到特定性能水平的能力。与从针头发射观察到的有限种类不同,毛细管测量表明存在n = 0,1、2、3、4个阳离子种类,且液滴的质量贡献很大。最低流速表示在0-1000 amu的测量范围内有大量大液滴混合的最高离子水平。为了增加流速,<500 amu的物种不再存在,仅将n = 2,3,4物种与大质量液滴混合在电喷雾束中。在较高流速下,所有离子种类都超过了四极杆质量范围。从毛细管发射的离子形成在低于发射极电势的水平。离子液体中的欧姆损失很可能是导致高能离子减少的原因。角分布测量表明射束电流和质量分布变宽,以增加流速。

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