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Real Time Monitoring of Calcium Oxalate Precipitation Reaction by Using Corrosion Resistant Magnetoelastic Resonance Sensors

机译:耐腐蚀磁弹性共振传感器实时监测草酸钙沉淀反应

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摘要

The magnetoelastic resonance is used to monitor the precipitation reaction of calcium oxalate ( ) crystals in real-time, by measuring the shift of the resonance frequency caused by the mass increase on the resonator. With respect to previous work on the same matter, the novelty lies in the adoption of an amorphous ferromagnetic alloy, of composition , as resonator, that replaces the commercial Metglas 2826 alloy (composition ). The enhanced corrosion resistance of this material allows it to be used in biological environments without any pre-treatment of its surface. Additionally, the measurement method, which has been specifically adapted to this application, allows quick registration of the whole resonance curve as a function of the excitation frequency, and thus enhances the resolution and decreases the detection noise. The frequency shift is calibrated by the static deposition of well-known masses of . The resonator dimensions have been selected to improve sensitivity. A 20 mm long, 2 mm wide and 25 m thick magnetoelastic resonator has been used to monitor the precipitation reaction of calcium oxalate in a 500 s time interval. The results of the detected precipitated mass when oxalic acid and calcium chloride are mixed in different concentrations (30 mM, 50 mM and 100 mM) are presented as a function of time. The results show that the sensor is capable of monitoring the precipitation reaction. The mass sensitivity obtained, and the corrosion resistance of the material, suggest that this material can perform excellently in monitoring this type of reaction.
机译:磁弹性共振用于通过测量共振器质量增加而引起的共振频率偏移,从而实时监测草酸钙晶体的沉淀反应。关于以前在同一问题上的工作,新颖之处在于采用成分组成为无定形的铁磁合金作为谐振器,代替了商用的Metglas 2826合金(成分)。这种材料增强的耐腐蚀性使其可以在没有对其表面进行任何预处理的情况下用于生物环境。另外,已经特别适合该应用的测量方法允许根据共振频率快速记录整个共振曲线,从而提高了分辨率并降低了检测噪声。频移通过已知质量的的静态沉积来校准。选择谐振器尺寸以提高灵敏度。一个20mm长,2mm宽,25m厚的磁弹性谐振器已被用来监测草酸钙在500 s的时间间隔内的沉淀反应。将草酸和氯化钙以不同浓度(30 mM,50 mM和100 mM)混合时检测到的沉淀质量的结果显示为时间的函数。结果表明该传感器能够监测沉淀反应。所获得的质量敏感性和材料的耐腐蚀性表明,该材料在监测此类反应方面可以发挥出色的性能。

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