首页> 外文期刊>Quimica nova >PERISTALTIC PUMP AND DETECTION SYSTEM CONTROLLED BY AN ARDUINO OPEN SOURCE HARDWARE DEVELOPED AND DESIGNED FOR APPLICATION IN A FLOW ANALYSIS SYSTEM
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PERISTALTIC PUMP AND DETECTION SYSTEM CONTROLLED BY AN ARDUINO OPEN SOURCE HARDWARE DEVELOPED AND DESIGNED FOR APPLICATION IN A FLOW ANALYSIS SYSTEM

机译:开发并设计了一种由Arduino开源硬件控制的蠕动泵检测系统。

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This work describes the development of a peristaltic pump and a photometric detector, using “Arduino” and alternative and low-cost materials for flow analysis system. The analytical calibration curve of the acid-red-283 using the proposed system presents 0.9984 and 3.9% as the coefficients of determination and variation, and 1.1 and 3.8 mg L-1 as limits of detection and quantification, respectively. Three prepared samples of the acid-red-283 (25, 30 and 35 mg L-1) showed recovery between 99 to 104%. For construction of the peristaltic pump and the photometer using Light Emitting Diodes (LED), light-dependent resistor (LDR) were spent less than 10% of the cost was spent on a commercial system employing a peristaltic pump and a spectrophotometer. Furthermore, the peristaltic pump and the photometer developed in this work allow the implementation of practical disciplines, such as molecular absorption spectrophotometry and flow analysis system in undergraduate courses, making these instruments more accessible, especially for the chemistry students.
机译:这项工作描述了蠕动泵和光度检测器的开发,该蠕动泵和光度检测器使用“ Arduino”以及流量分析系统的替代低成本材料。使用所提出的系统对酸性红283的分析校准曲线的测定和变化系数分别为0.9984和3.9%,检测和定量的极限分别为1.1和3.8 mg L-1。制备的三个酸红色283(25、30和35 mg L-1)样品的回收率在99%至104%之间。对于使用发光二极管(LED)的蠕动泵和光度计的构造,光依赖电阻器(LDR)的花费少于在使用蠕动泵和分光光度计的商业系统上花费的成本的10%。此外,这项工作中开发的蠕动泵和光度计可以在本科课程中实施诸如分子吸收分光光度法和流量分析系统之类的实用学科,从而使这些仪器更易于使用,尤其是对化学专业的学生而言。

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