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A fabrication of colorimetric sensor using pH indicator for determination of toxic gases

机译:使用pH指示剂测定有毒气体的比色传感器的制造

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Critical toxic gases have been used in the several industrial plants. So workers were exposed to many kinds of toxic gases without proper safety guard in the field. Low concentration of toxic gases injures the eyes, nose, and respiratory organs and cause allergic reaction. These gas leaks emerged as a social issue, because Exposure of toxic gases was fatal for the long term. The World Health Organization(WHO) has set a safe exposure stand respectively .Colorimetric detection of gases has been used for years. They are based on the change in color of pH indicators incorporated in a porous matrix . There were many researches of sensor detecting toxic gases used by pH indicators , but there were many disadvantages during the measurement. Expensive analytical instruments are needed, and it takes a long time to obtain the results . In this study we found that it is better and easier to use simple pH indicators to detect toxic gases. We made convenient pH indicator-based films for detecting 4 types of toxic gases easily. Using polymeric binder, the pH indicators were embeded in a polymeric film. To improve sensitivity and reactivity, we added other additive for enhancement. So we could be observed by naked eyes without aid of analytical devices, and decrease the response time. As a result, we made films which reacted with toxic gases and which were faster than commercialized ones. To make pH indicator-based film sensors, we adopted a method of dip coating. Main substrate was non-woven fabric wiper(WW-2109), polymeric binder was a sodium alginate and cross linking agent was calcium chloride. To improve reactivity, benzoquinone was a additive as electron transfer agent. At first, we made a solution which added sodium alginate(1wt%), benzoquinone, and pH indicator(0.1wt%). Prepared films were impregnated again in the above solution. Then they were impregnated in a calcium chloride solution(10wt%) again. After finish to make sensor, toxic gases(20.10ppm) was exposed constantly by mass flow controller(MFC). To observe degree of the color change, Spectrophotometer was used and the graph of ΔE~*a~*b~* was drew every 5 seconds. Sodium alginate can use to crosslink with calcium chloride by ionic linkage. There was a good resistance to washing pH indicator in wet environment. From adding benzoquinone, the film's color changed to the other color in the 10,20ppm concentration of gases, and it reacted completely with in a minute. When colorimetric sensors contacted toxic gases exposed by MFC, they changed color from blue to yellow or yellow to blue, because of movement of proton. Benzoquione help a movement of proton. The change started after 10 seconds, when films contacted with toxic gases. Humidity is a important requirement. If humidity was high, its reactivity was more faster. After exposure of toxic gases, we used a spectrophotometer to confirm the degree of color change. Spectrophotometer digitize a image from using L~*a~*b~* color coordinate. When we compared with before and after, we could know degree of the color change. Without crosslinking reaction, dye will get out of the wiper, but using the a crosslinking of calcium alginate, we improve water repellency of films in wet environment. By coating pH indicators and benzoquinone on films, it is possible to make films with more faster reactivity with in a minute. In the field, we can determine a gas leak by naked eye within a minute, and prevent unexpected accidents with this films.
机译:关键的有毒气体已在数家工厂中使用。因此,工人在现场没有适当的安全保护措施的情况下就暴露于多种有毒气体中。低浓度的有毒气体会伤害眼睛,鼻子和呼吸器官,并引起过敏反应。这些气体泄漏已成为一个社会问题,因为从长期来看,有毒气体的暴露是致命的。世界卫生组织(WHO)分别设置了一个安全的暴露台。比色法检测气体已经使用了多年。它们是基于多孔基质中所含pH指示剂颜色的变化。 pH指示器使用传感器检测有毒气体的研究很多,但是在测量过程中存在许多缺点。需要昂贵的分析仪器,而且要花费很长时间才能获得结果。在这项研究中,我们发现使用简单的pH指示剂检测有毒气体会更好,更容易。我们制作了方便的基于pH指示剂的薄膜,可轻松检测4种类型的有毒气体。使用聚合物粘合剂,将pH指示剂包埋在聚合物膜中。为了提高灵敏度和反应活性,我们添加了其他添加剂以增强效果。因此,无需借助分析设备就可以用肉眼观察到我们,从而缩短了响应时间。结果,我们制得了与有毒气体反应的薄膜,并且比商业化的薄膜要快。为了制造基于pH指示剂的薄膜传感器,我们采用了浸涂法。主基材为无纺布擦拭布(WW-2109),聚合物粘合剂为海藻酸钠,交联剂为氯化钙。为了提高反应活性,苯醌是作为电子转移剂的添加剂。首先,我们制备了一种溶液,其中添加了海藻酸钠(1wt%),苯醌和pH指示剂(0.1wt%)。将制备的膜再次浸渍在上述溶液中。然后将它们再次浸渍在氯化钙溶液(10wt%)中。完成传感器制造后,质量流量控制器(MFC)不断暴露有毒气体(20.10ppm)。为了观察颜色变化的程度,使用了分光光度计,并且每5秒绘制一次ΔE〜* a〜* b〜*的图。海藻酸钠可用于通过离子键与氯化钙交联。在潮湿环境中具有良好的耐洗涤pH指示剂。加入苯醌后,在10,20ppm的气体浓度下,薄膜的颜色变为另一种颜色,并且在一分钟内与之完全反应。当色度传感器接触MFC暴露的有毒气体时,由于质子的移动,它们的颜色从蓝色变为黄色,或者从黄色变为蓝色。苯并喹酮有助于质子运动。当薄膜与有毒气体接触时,变化开始于10秒后。湿度是重要的要求。如果湿度高,则其反应性更快。暴露有毒气体后,我们使用分光光度计确认颜色变化的程度。分光光度计使用L〜* a〜* b〜*颜色坐标数字化图像。当我们与之前和之后进行比较时,我们可以知道颜色的变化程度。没有交联反应,染料会从擦拭器中脱落,但是通过藻酸钙的交联,我们可以提高薄膜在潮湿环境中的防水性。通过在薄膜上涂覆pH指示剂和苯醌,可以在一分钟内使薄膜具有更快的反应性。在现场,我们可以在一分钟内用肉眼确定气体泄漏,并防止这种膜发生意外事故。

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