首页> 外文会议>International Symposium on Pulsed Power and Plasma Applications; 20021022-26; Mianyang(CN) >INVESTIGATION OF INTERACTION PULSE POWER ELECTRON BEAMS WITH VAPOR HECSOFLUORIDE TUNGSTEN
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INVESTIGATION OF INTERACTION PULSE POWER ELECTRON BEAMS WITH VAPOR HECSOFLUORIDE TUNGSTEN

机译:气相六氟化钨相互作用脉冲功率电子束的研究

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The results of direct recovery of tungsten in no equilibrium plasmachemical process at affecting of a pulsed electron beam coupling on gas-phase of hexafluoride tungsten are introduced. X-ray analysis and secondary ionic mass spectrometry of films which are precipitate on walls of a reactor, confirm direct recovery of metals. The performance of plasmachemical process and power inputs on recovery of metals is gauged. The progressing of engineering process, bound with transmutation of chemical agents applied in different fields of an industry, requires transferring to new solutions, founded on a raise of relative productivity, decrease of power inputs. For a raise of relative productivity at the equilibrium approach the considerable raise of temperature in a band of reacting is necessary, that requires applying heat resisting materials, major power inputs on heating. The transferring to no equilibrium plasmachemical processes, in which one a main part of energy source of stimulation (up to 80%) will be utillized for initiation of chemical reaction, allows to refuse high temperatures, specially in case of applying impulsive methods of stimulation of gases. Due to high power intensity no equilibrium plasmachemical processes are specially expedient for a realization of endoenergy processes, to which one the processes of recovery of metals of their oxides and halogenides are referred.
机译:介绍了在不平衡等离子体化学过程中,在脉冲电子束耦合对六氟化钨气相的影响下,直接回收钨的结果。沉淀在反应器壁上的薄膜的X射线分析和二次离子质谱证实了金属的直接回收。测量了等离子体化学过程和功率输入对金属回收的性能。工程过程的发展,以及在行业不同领域中应用的化学试剂的转换,都要求在提高相对生产率,减少电力输入的基础上,转向新的解决方案。为了在平衡方法下提高相对生产率,必须在反应带中显着提高温度,这需要使用耐热材料,加热时需要大量的功率输入。转移到不平衡的等离子体化学过程,其中一个主要的刺激能源(高达80%)将被利用来引发化学反应,从而拒绝高温,特别是在采用脉冲刺激方法的情况下。气体。由于高功率强度,没有平衡的等离子化学过程特别适合实现内能过程,其中提到了回收其氧化物和卤化物的金属的过程。

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