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Chromatography was performed on a SMART analytical Superdex G75 column on a SMART system from Amersham Pharmacia (30 cm length, bed volume 2.4 ml) using a flow rate of 100 µl/min and with monitoring of absorption of elution carried out at 257 nm (corresponding to the absorption of phenylalanine).
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The suggested analyzer was applied successfully in the dual-channel monitoring of CO2 absorption from CO2-CH4 binary feed gas mixtures.
The optical fiber facilitated the alignment of the optical path considerably and enabled the monitoring of the absorption spectrum of a single red blood cell.
As a simple method for the monitoring of fitness, absorption spectra give an overview of the amount of pigments and their distribution in the culture.
After a brief wash with water (pH 3.5), the column was eluted with a 60 mL linear gradient of 0 1.0 M NaCl, pH 3.5, at a flow rate of 1 mL/min with in line monitoring of UV absorption at 232 nm.
The spectroscopic properties of nanocrystal interfaces are investigated by monitoring the dependence of absorption characteristics on the concentration of the interfaces in the nanopowders.
Finally, we show that this fiber-optic system is capable of monitoring absorption changes of about 3 × 10−3 at every 10 ms, which is of great benefit for the development of fast PALM.
For instance, an aggregation-based simple, one step immunoassay has been developed by employing gold nanoparticles for anti-protein A. This extremely sensitive and specific assay was established based on the aggregation property of gold nanoparticles that were coated with protein antigens in the existence of their corresponding antibodies and monitored in terms of absorption change at 620 nm.
The obtained results show that the real time monitoring of the dye absorption can be successfully employed for optimizing the sensitization conditions of ZnO-based photoanodes for DSCs.
On the other side, neutron radiography measurements at RAD Radiography Station@BNC (Budapest) permitted a sensitive monitoring of the water absorption dynamics on untreated and treated samples.
The present study has demonstrated that Electrical Impedance Spectroscopy (EIS) and Electrical Impedance Tomography (EIT) are viable measurement techniques to be used in the measurement and monitoring of carbon dioxide absorption across the scales.
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