Sealed high-density on-line measuring device

Chemical apparatus and process disinfecting – deodorizing – preser – Analyzer – structured indicator – or manipulative laboratory... – Means for analyzing liquid or solid sample

Reexamination Certificate

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Details

C436S165000, C356S440000, C356S246000

Reexamination Certificate

active

06238625

ABSTRACT:

FIELD OF THE INVENTION
The present invention relates to a sealed high-density on-line measuring device by which high concentrations of samples in solutions can be measured, more specifically, to a sealed high-density on-line measuring device which can measure high concentrations of the solid materials or dissolved substances without dilution by the absorbance of the samples by way of regulating path length of the radiated light in the solutions.
BACKGROUND OF THE INVENTION
In general, methods for measuring the concentration of materials in solutions are classified into off-line method and on-line method, according to the nature of measurement or measuring device.
In the measurement of cell concectration during a fermentation process, the off-line method includes a dry weight measurement and an absorbance measurement where a spectrophotometer is employed to determine the absorbance of diluted medium. In the latter method, dilution is inevitable since the linearity between the absorbance and cell concentration is rather limited, grounded on the usage of a conventional quartz-made 1 cm cuvette or a test tube of 1 cm diameter, which, in turn, restricts the available measurement range to a very low concentration. To overcome this limitation of narrow measuring range, a device which can measure high concentration by regulating light path length has been suggested in the art (see: Fugita, T., Nunomura, K., Appl. Microbiol., 16(2):212-216(1968)). However, the device has been proven to be rather limited to measuring of microorganism by off-line method. The off-line method has further shortcomings as follows: when sampling is carried out in a fermenter, the fermenter may be contaiminated with saprophytes; errors may be generated in frequent handling and dilution of the sample; and, real-time assay is impossible. Therefore, many concerns and works are devoted to the on-line measurement which does not need to flow out the culture from a fermentor like sampling or dilution.
In one-line measurement, since there is no outflow of sample, measuring of the dissolved substances and solid materials in a reactor under a chemical or biological process can be performed to guarantee easy control and suitable operation. Until now, as one of the on-line measuring devices without outflow and dilution of the reactants, an electrode equipped measuring device fitted to a reactor has been proposed in the art. However, this device has also revealed some drawbacks of expensiveness, instability, and errors caused by the reactor condition.
Therefore, there are strong reasons for developing a novel on-line measuring device with stability and accuracy which can simply determine the concentrations of dissolved substances, solid materials, and products in many biological or chemical processes.
SUMMARY OF THE INVENTION
In accordance with the present invention, the inventors fabricated an on-line measuring device which can measure high concentrations of samples in solutions without dilution, by way of employing a newly designed cuvette holder in a spectrophotometer fitted to a reactor, where path lengths of the radiated light in the solution is finely regulated.
A primary object of the present invention is, therefore, to provide a novel on-line measuring device which can measure high concentrations of samples by regulating the light path length.


REFERENCES:
patent: 2490345 (1949-12-01), Flatford et al.
patent: 3614243 (1971-10-01), Harvey
patent: 3714445 (1973-01-01), Blachere et al.
patent: 3740156 (1973-06-01), Heigl et al.
patent: 5139333 (1992-08-01), Reinhard
patent: 5268736 (1993-12-01), Prather
patent: 5371020 (1994-12-01), Frischauf
patent: 5510621 (1996-04-01), Goldman
patent: 5905271 (1999-05-01), Wynn

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