IP Library Granted Patent US 11,221,282
Granted Patent B2
US 11,221,282 · App. 16/299,741 · Granted Jan 11, 2022

Measurement arrangement and measurement method for determining a constituent substance or quality parameter of water or waste water

Inventors: Werner Arts (Berlin, DE); Wolfgang Genthe (Berlin, DE)
G01N1/44G01K1/14G01N1/14G01N31/12G01N33/1806G01N33/1846G01N2001/1463
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Quick Facts
Patent No.
US 11,221,282
App. No.
16/299,741
Granted
Jan 11, 2022
Kind
B2
Abstract

Measurement arrangement for determining a constituent substance or quality parameter of water by thermal decomposition in a reaction module, delivery of a reaction product to a detector, and evaluation of a detector signal for deriving a value of the constituent substance or quality parameter, wherein the reaction module is an elongated vessel having internal heating, and has a head section into which the sample is introduced, a reaction zone, as well as a foot section, from which the reaction product is output, wherein the reaction module, the heating, and means for the supply of samples and carrier gas are configured such that during the operation of the measurement arrangement an outer head temperature is T H ≤80° C., and an outer foot temperature is T F ≤150° C. at a maximum temperature in the reaction zone of T MAX ≥1150° C.

Claims (24)

1. A measurement arrangement for determining a constituent substance and/or quality parameter of water or waste water; comprising:

a reaction module having an internal resistance heating or infrared heating apparatus, and a head section into which a sample of the water or waste water is introduced;

a reaction zone where thermal decomposition is performed;

a foot section from which a reaction product is output in a carrier gas flow;

apparatus supplying a sample of the water or waste water and a carrier gas to the reaction module; and

a detector in the carrier gas flow;

wherein during operation of the measurement arrangement an outer head temperature of T H ≤80° C., and an outer foot temperature of T F ≤150° C. at a maximum temperature in the reaction zone of T MAX ≥1150° C. is maintained.

2. The measurement arrangement according to claim 1 , configured for determining nitrogen and/or phosphorus and/or content of organic carbon, TOC, or chemical oxygen demand, COD.

3. The measurement arrangement according to claim 1 , wherein during the operation of the measurement arrangement, an outer head temperature of T H ≤70° C. and an outer foot temperature of T F ≤150° C. at a maximum temperature in the reaction zone of T max ≥1200° C. is maintained.

4. The measurement arrangement according to claim 1 , wherein the reaction module has a two-layer or multi-layer thermal insulation comprising a macroporous layer and a microporous layer.

5. The measurement arrangement according to claim 4 , wherein one of the layers of the thermal insulation is formed by prefabricated annular resistance heating/ceramic fiber modules.

6. The measurement arrangement according to claim 1 , wherein the reaction module is mainly filled with a vertically layered filling of porous ceramic balls, wherein a mean ball diameter in several layers is different.

7. The measurement arrangement according to claim 1 , wherein the reaction module has an inner wall of aluminum oxide or stainless steel extending at least along a length of the reaction zone, and/or in the head and foot sections in each case a reinforced sealing element having an O-ring with a Teflon sheathing is provided.

8. A measurement method for determining a constituent substance and/or quality parameter of water or waste water, comprising:

thermally decomposing a sample of the water or waste water having a defined quantity in a reaction module that is an elongated vessel of vertical orientation having an internal resistance heating or infrared heating mechanism, a head section into which the sample is introduced, a reaction zone where the thermal decomposition is performed, and a foot section, from which a reaction product is output in a carrier gas flow;

delivering the reaction product of the thermal decomposition to a detector in a carrier gas flow; and

evaluating a detector signal, deriving a value of the constituent substance and/or quality parameter;

wherein during operation of the reaction module, a head temperature of T H ≤80° C. and a foot temperature of T F ≤150° C. at a maximum temperature in the reaction zone of T max ≥1150° C. are maintained.

9. The measurement method according to claim 8 , designed for determining nitrogen and/or phosphorus and/or content of organic carbon, TOC, or chemical oxygen demand, COB.

10. The measurement method according to claim 8 , wherein during the operation of the reaction module, a head temperature of T H ≤70° C. and a foot temperature of T F ≤150° C. at a maximum temperature in the reaction zone of T max ≥1200° C. are maintained.

11. The measurement method according to claim 8 , wherein during input of a sample into the reaction module, an injection input signal is generated for a heating control device of the resistance heating or infrared heating, and the heating control device is operated such as to vary power of the resistance heating or infrared heating based on the injection input signal.

12. The measurement method according to claim 11 , wherein at least one temperature sensor is assigned to heating elements of the resistance heating or infrared heating, and signals of the at least one temperature sensor are supplied to corresponding control inputs of the heating control device, and the heating control device is operated such as to apply a heating current to the heating elements as a function of an output signal of the associated at least one temperature sensor and in accordance with a predetermined temperature profile of the reaction module.

13. The measurement method according to claim 11 , wherein a control algorithm in the heating control device is operated such as to utilize at least an output signal of a temperature sensor, and, optionally, the injection input signal for temperature regulation in the reaction module.

14. The measurement method according to claim 8 , wherein means for sample supply and carrier gas supply into the reaction module have a supply control device for automatically controlled sample supply and carrier gas supply and are operated such that temperature fluctuations within the reaction zone are minimized.

Assignments (4)
CHANGE OF NAME Recorded Oct 5, 2023
From: LAR PROCESS ANALYSERS AG
To: PROCESS INSIGHTS AG
Reel/Frame 065134/0908 →
TERMINATION AND RELEASE OF SECURITY INTEREST IN PATENTS Recorded Aug 3, 2023
From: KAYNE SENIOR CREDIT IV LOANCO, LLC
To: COSA XENTAUR CORPORATION; TIGER OPTICS, LLC; PROCESS INSIGHTS AG (FORMERLY KNOWN AS LAR PROCESS ANALYSERS AG)
Reel/Frame 064483/0194 →
SECURITY INTEREST Recorded Oct 30, 2020
From: COSA XENTAUR CORPORATION; TIGER OPTICS, LLC; LAR PROCESS ANALYSERS AG
To: KAYNE SENIOR CREDIT IV LOANCO, LLC, AS ADMINISTRATIVE AGENT AND COLLATERAL AGENT
Reel/Frame 054226/0982 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 8, 2019
From: ARTS, WERNER, DR; GENTHE, WOLFGANG, MR
To: LAR PROCESS ANALYSERS AG
Reel/Frame 049116/0243 →
Priority Claims (1)
DE 102018105611.7 · Mar 12, 2018 · national
Continuity (1)
Related Publication 20190277818A1 · Sep 12, 2019