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首页> 外文期刊>Journal of the air & waste management association >Performance evaluation of novel wet vibrational precipitator
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Performance evaluation of novel wet vibrational precipitator

机译:新型湿振动除尘器的性能评价

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摘要

This study reports the development, construction, and initial testing of a novel vibrational precipitator (VP), patented at Ohio University in 2016, that uses vibrating metal cables with water running over them to capture particulate matter in an exhaust stream. Unlike traditional electrostatic precipitators relying on electric energy to capture particles, this new system uses the concept of vortex shedding to produce vibrations in vertical cables running perpendicular to an exhaust stream. Collisions between particles in the exhaust stream and these vibrating cables cause the particles to land onto a thin film of flowing water around the cables, which carries the particles downward for collection and removal. Initial tests with air containing particulates of 3 micron average particle size show capture efficiencies up to 54% using U.S. Environmental Protection Agency (EPA) Method 5 to measure the particulate concentrations at the upstream and downstream of a VP comprising 8 cells. These results show that this system, without consuming any electric energy, has a significant potential to be a simple and cost-effective way to treat particle-laden exhaust gases.Implications: In this work, for the first time, a novel precipitator is investigated that captures particles without using any particle charging and (hence) any electricity. The capture mechanism is governed by vibrations of collection electrodes, which are vertical steel cables wetted through continuous flow of water. Without any discharge electrodes, electrode suspension mechanism, and ability of the system to be installed in existing ducts, the novel precipitator becomes a simple chamber housing containing multiple collection electrode cells. The preliminary results show that this new technology can achieve net particulate matter capture efficiency of 54%. This paves a pathway forward for reducing capital and operating cost of air pollution control systems.
机译:本研究报告了2016年在俄亥俄大学获得专利的新型振动除尘器(副总裁)的开发,建设和初步测试,它使用振动金属电缆与它们延伸过的水,以捕获排气流中的颗粒物质。与传统的静电除尘器依赖于电能以捕获粒子,这种新系统采用涡流脱落的概念,以在垂直于排气流运行的垂直电缆中产生振动。排气流中的颗粒之间的碰撞和这些振动电缆之间导致颗粒覆盖在电缆周围的流动水的薄膜上,从而向下承载颗粒以进行收集和去除。含有3微米平均粒度的颗粒的空气的初始试验显示使用美国的环境保护局(EPA)方法5的捕获效率,以测量包含8个细胞的VP上游和下游的颗粒浓度。这些结果表明,该系统在不消耗任何电能的情况下具有重要的潜力,可以是一种简单且经济高效的方式来治疗粒子载花料废料。以首次进行研究:在这项工作中,研究了新型除尘器捕获颗粒而不使用任何颗粒充电和(因此)任何电力。捕获机制由收集电极的振动控制,该电极是通过连续的水流润湿的垂直钢电缆。没有任何放电电极,电极悬架机构和系统在现有管道中安装的能力,新的除尘器成为包含多个收集电极电池的简单腔室壳体。初步结果表明,这项新技术可以实现净颗粒物质捕获效率为54%。这为降低了空气污染控制系统的资本和运营成本来铺平了通路。

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    Ohio Univ Mech Engn Dept Ctr Adv Mat & Proc Electrostat Precipitator Lab Athens OH 45701 USA;

    Ohio Univ Mech Engn Dept Ctr Adv Mat & Proc Electrostat Precipitator Lab Athens OH 45701 USA;

    Ohio Univ Mech Engn Dept Ctr Adv Mat & Proc Electrostat Precipitator Lab Athens OH 45701 USA;

    Ohio Univ Mech Engn Dept Ctr Adv Mat & Proc Electrostat Precipitator Lab Athens OH 45701 USA;

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