首页> 外文期刊>Environmental Technology >DETECTION AND REMOVAL OF DISSOLVED HYDROGEN SULPHIDE IN FLOW-THROUGH SYSTEMS VIA THE SULPHIDATION OF HYDROUS IRON (Ⅲ) OXIDES
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DETECTION AND REMOVAL OF DISSOLVED HYDROGEN SULPHIDE IN FLOW-THROUGH SYSTEMS VIA THE SULPHIDATION OF HYDROUS IRON (Ⅲ) OXIDES

机译:通过水合氧化铁(Ⅲ)的硫化物检测和去除流通系统中的溶解态硫化氢

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摘要

A novel automated warning and removal system for hydrogen sulphide in aqueous flow-through systems has been developed based on the sulphidation of ferrihydrite sorbed to zeolite substrate. The system consists of a small flow-through reaction cartridge with photo-sensors positioned at the base. During the reaction, sulphide is initially oxidised to elemental sulphur by the ferrihydrite, and Fe~(2+) is subsequently released to solution. This Fe~(2+) then reacts with additional dissolved sulphide to form solid phase iron monosulphide. The colour change from orange ferrihydrite to black iron monosulphide is continuously monitored by the photo-sensors, which provide a rapid and reproducible response (via a voltage change) to pulses of sulphidic water. The response of the photo-sensors is linear with respect to inflowing sulphide concentration, while the most rapid response to dissolved sulphide occurs at a flow rate of approximately 200 ml min~(-1) (equivalent to a hydraulic loading rate of 21 cm min~(-1)). The presence of phosphate in solution substantially decreases reaction rates due to adsorption to reactive surface sites. However, the response time of the photo-sensors remains sufficient to provide a rapid indication of sulphidic conditions even in systems with high concentrations of dissolved phosphate. The cartridge has the advantage of partially or completely removing sulphide (depending on flow rate and substrate mass) from an initial pulse of water. At the optimal flow rate for the successful use of the cartridge as a sulphide warning system (200 ml min~(-1)), required substrate masses for the complete removal of dissolved sulphide (over the experimental range of 0-1000 μM) are relatively small (0.5-2 kg).
机译:基于吸附到沸石基质上的亚铁水合物的硫化,已经开发了一种新颖的自动预警和去除系统,用于水流通系统中的硫化氢。该系统由一个小型流通式反应盒组成,在底座上装有光电传感器。在反应过程中,硫化铁首先被三水铁矿氧化为元素硫,然后Fe〜(2+)释放到溶液中。然后,该Fe〜(2+)与其他溶解的硫化物反应形成固相一硫化铁。由光电传感器连续监控从橙色亚铁酸盐到黑色单硫化铁的颜色变化,该传感器对硫化水脉冲提供快速且可重现的响应(通过电压变化)。光电传感器的响应相对于流入的硫化物浓度呈线性关系,而对溶解的硫化物的最快速响应发生在大约200 ml min〜(-1)的流速(相当于21 cm min的水力加载速率)下〜(-1))。溶液中磷酸盐的存在由于吸附到反应性表面部位而大大降低了反应速率。然而,即使在具有高浓度溶解磷酸盐的系统中,光传感器的响应时间仍然足以提供硫化物状态的快速指示。滤筒的优点是可以从水的初始脉冲中部分或完全去除硫化物(取决于流速和基材质量)。在成功将滤筒用作硫化物警告系统的最佳流速下(200 ml min〜(-1)),要完全去除溶解的硫化物(在0-1000μM的实验范围内)所需的底物质量为相对较小(0.5-2公斤)。

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