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Experimental Assessment of Water Sprays Utilization for Controlling Hydrogen Sulfide Releases in Confined Space

机译:控制硫化氢释放在狭窄空间中的水喷雾利用的实验评估

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摘要

This paper reported the utilization of water spray for controlling H2S release in a confined space, which is especially important in industry. A typical spray tower was modified to simulate the confined space for people's enterable routine operation (e.g., pump room), in which the dilution capacity of water sprays can also be evaluated. This work consists of two parts: the first part focuses on the influences of different operating conditions on chemical dilution capacities of water sprays in mechanisms; the second one is comparison between two nozzle configurations for evaluating their feasibilities of practical application. Water sprays express eligible performance for H2S release control even though their dilution capacity was weakened at high gaseous concentrations and rates of releases. The presence of Na2CO3 can significantly improve absorption effectiveness of H2S in water and the optimal Na2CO3 additive was found to be 1.0 g·L−1 in this test. Compared with Na2CO3, adjusting water flow rate may be an effective strategy in enhancing dilution capacity of water sprays due to the fact that larger flow rate led to both less dilution time (TD) and dilution concentration (CD). Furthermore, multinozzle configuration is more efficient than single-nozzle configuration under the same water consumption.
机译:本文报道了利用水喷雾来控制狭窄空间中的H2S释放,这在工业中尤为重要。修改了典型的喷雾塔以模拟人们可进入的常规操作(例如,泵房)的限制空间,其中还可以评估喷水的稀释能力。这项工作包括两部分:第一部分侧重于不同操作条件对机制水喷雾剂的化学稀释能力的影响;第二个是两个喷嘴配置之间的比较,用于评估其实际应用的可行性。即使在高气态浓度和释放速率下削弱了它们的稀释能力,水喷雾表达了H2S释放控制的符合条件的性能。 Na 2 CO 3的存在可以显着提高水中H 2 S的吸收效果,并且在该试验中发现最佳Na 2 CO 3添加剂为1.0g·L-1。与Na2CO3相比,由于较大的流速导致稀释时间(TD)和稀释浓度(CD)较小的事实,调节水流量可能是增强水喷雾稀释能力的有效策略。此外,在相同的用水量下,Multiplozzle配置比单喷嘴配置更有效。

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