Spectral-potentiometric-thermometric multi-dimensional titration analysis instrument and use method thereof

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Solution Overview

Problem

Current titration analysis techniques cannot provide synchronous measurement results for multiple titration modes, leading to errors and increased workload due to separate experiments with different conditions, limiting the comparison and accuracy of chemical reaction data.

Innovation Solution

A spectral-potentiometric-thermometric multi-dimensional titration analysis instrument integrating spectral, potentiometric, and thermometric measurement devices in a single system, allowing simultaneous measurement of chemical reactions using a reagent control system, titration measurement system, and data processing system, with shared reagent and data processing components.

Engineering Contradictions & Design Principles

VSEngineering Contradiction Analysis

1Measurement precision

If separate titration instruments are used for spectral, potentiometric, and thermometric measurements, then each measurement method can be performed with its dedicated device, but synchronous measurement of the same chemical reaction cannot be achieved and data comparison is compromised

Engineering Contradiction:
Improvemeasurement precisionVSAvoiddevice complexity
Core Design Contradiction:
Measurement precisionVSDevice complexity

Solution Approach 1:

The patent combines spectral titration measurement device, thermometric titration measurement device, and potentiometric titration measurement device into a single integrated instrument with a shared reaction container and control system, enabling synchronous measurement of the same chemical reaction using multiple measurement methods simultaneously

Inventive Principle:
Principle #5Merging (Combining)

Solution Approach 2:

The integrated titration instrument is designed to perform multiple measurement functions (spectral, thermometric, and potentiometric measurements) within a single device, allowing the same chemical reaction to be analyzed by different measurement principles simultaneously

Inventive Principle:
Principle #6Universality (Multi-functionality)

2Quantity of substance

If multiple separate experiments are conducted for different titration methods, then comprehensive data can be collected, but experimental time is prolonged and workload is increased

Engineering Contradiction:
Improvesample quantityVSAvoidexperimental time
Core Design Contradiction:
Quantity of substanceVSLoss of time

Solution Approach 1:

The instrument enables continuous synchronous measurement by conducting spectral, thermometric, and potentiometric measurements simultaneously during a single titration process, eliminating the need to perform separate experiments sequentially and significantly reducing total experimental time

Inventive Principle:
Principle #20Continuity of useful action

3Measurement precision

If separate experiments are performed for different measurement methods, then sufficient samples can be tested, but measurement conditions become non-uniform and data accuracy is compromised

Engineering Contradiction:
Improvedata accuracyVSAvoidoperational simplicity
Core Design Contradiction:
Measurement precisionVSEase of operation

Solution Approach 1:

By integrating multiple measurement systems into one instrument that shares the same reaction container and titration process, the patent ensures that all measurements are performed under identical experimental conditions, eliminating variability between separate experiments and improving data accuracy

Inventive Principle:
Principle #5Merging (Combining)

Applied Scientific Principles

This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.

Function Achieved in This Case

This integration enables precise, accurate, and synchronized measurement of chemical reactions, reducing errors and workload by providing multi-dimensional data without relative errors, improving analysis precision and efficiency.

Implementation Method 1

Spectral titration is a non-destructive measurement method for analyzing the progress of reaction by analyzing the change of visible light signals passing through the solution

Methodology Applied
Scientific EffectAbsorption Spectroscopy: Absorption Spectroscopy

Implementation Method 2

the thermometric titration technique uses a temperature sensor to sense the temperature change in the titration solution system, wherein a thermistor is usually used as a sensing element of the temperature sensor

Methodology Applied
Scientific EffectThermistor: Thermistor

Implementation Method 3

Potentiometric titration is to insert a measurement electrode into the solution to be measured, form a galvanic cell with the material to be measured, characterize the change of the material structure in the reaction solution by measuring the change of potential

Methodology Applied
Scientific EffectGalvanic cell:

Data Source

PatentUS11353470B2Spectral-potentiometric-thermometric multi-dimensional titration analysis instrument and use method thereof
Publication Date: 2022.06.07 QINHUANGDAO WATER BEAR TECH CO LTD
  • US11353470B2 patent drawing
  • US11353470B2 patent drawing
  • US11353470B2 patent drawing

AI summary

The present invention discloses a spectral-potentiometric-thermometric multi-dimensional titration analysis instrument, which comprises a spectral titration measurement device, a thermometric titration measurement device and a potentiometric titration measurement device which are arranged in parallel, meets the simultaneous measurement requirements of different analysis methods in chemical analysis, improves the measurement precision of different measurement methods, and effectively reduces the workload of separate experiments. The present invention further provides a usage method of the analysis instrument, provides analysis results of different angles and different characterization parameters for the change process of the material structure in the chemical reaction by conducting comparison analysis on data obtained using different measurement techniques, and effectively reduces the workload of titration analysis.