Rasoul Yarahmadi

Department of Occupational Health, Faculty of Public Health, Iran University of Medical Sciences, Tehran, I.R. IRAN

[ 1 ] - Examination of the Optimized Conditions for the Conversion of NOX Pollution in DBD Plasma Reactor

Since NOx family, one of the most important causes of air pollution, is the primary source of acid rains, ozone layer depletion, and breathing disorders, mitigation of these pollutants is now a global concern. In the off-gases of internal combustion engines running with oxygen excess, non-thermal plasmas (NTPs) have an oxidative potential, which results in an effective conversion...

[ 2 ] - ساخت بسترنانو الیافی به روش الکتروریسی و تعیین کارایی آن در حذف نانوآئروسل ها

  Background and aims: Nano-fibrous mats are one of the unique nonwoven materials that have been recently carried out in nanofiltration industry. The aim of this study was to synthesize nano-fibrous path mats using electrospining method following by determination of their efficiency for nanoaerosols removal. Methods: The efficiency and pressure drop of nano-fibrous mats was measured using nano-...

[ 3 ] - بررسی نقش فاکتورهای آئرودینامیکی - هندسی سیکلون در حدف ذرات

  Background and aims: Extensive industrial and production activities are one of the major sources of dust. In many cases, cyclones are used as the control measure. The removal efficiency of dust in cyclones depends on different factors. Some of these factors are, the design parameters, e.g. cyclone diameter, particle density, operating temperature and fluid physical properties, density of gas ...

[ 4 ] - کارایی جمع‌آوری فیلتر اولپا در ربایش نانو ذرات آئروسلی

  Background and aims : With the increasing application of nanotechnology concerns about the negative effects of human exposure and environmental releases of these particles is also doubled. Among the most well-known media, ULPA filters are used to control nanoparticles. In this study, the efficiency and pressure drop of ULPA fiber bed for collection and removal of nanoparticles were investigat...

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