COLORIMETRIC MEASUREMENT OF FLUDIOXONIL

DE602021033468T2Active Publication Date: 2025-07-02SYNGENTA CROP PROTECITON AG
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Patent Information

Application Number
DE602021033468
Authority / Receiving Office
DE · DE
Patent Type
Patents
Current Assignee / Owner
Priority Date
2020-05-06
Filing Date
2021-05-06
Publication Date
2025-07-02
Estimated Expiration
2041-05-06

AI Technical Summary

Technical Problem

Existing methods for determining fludioxonil content in liquid media are inefficient and lack a reliable, cost-effective colorimetric method for accurate quantification.

Method used

A colorimetric process using [4-(dimethylamino)phenyl]methanol (p-DAB) or 4-Dimethylaminocinnamaldehyde (DMACA) as indicators, combined with an acid, to create a color reaction with fludioxonil, followed by a colorimetric reading after a heating step, and comparison with reference samples for quantification.

Benefits of technology

Provides a reliable and cost-effective method for accurately determining fludioxonil concentration in liquid media through visual or colorimetric comparison with reference samples, enhancing measurement precision.

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Description

[0001] The present technology relates to the a process for determining the fludioxonil content in a liquid medium by performing a color reaction with [4-(dimethylamino)phenyl]methanol (p-DAB) or 4-Dimethylaminocinnamaldehyde (DMACA) and an acid in the presence of fludioxonil and obtaining a colorimetric reading for the resulting mixture after a period of time. Fludioxonil determination via GC-MS is known from Zhang et al., Biomedical Chromatography 2018, 32:e4091.

[0002] The present technology further relates to the a process for determining the fludioxonil content in a liquid medium by performing a color reaction with p-DAB or DMACA, and an acid in the presence of fludioxonil and obtaining a colorimetric reading for the resulting mixture after a period of time and creating reference samples with known fludioxonil content using the same methodology to compare the color of the liquid medium to the reference sample.

[0003] A reference sample as used herein means one or more colorimetric samples, or colorimetric references, having a known concentration of fludioxonil.

[0004] A period of time as used herein means a finite time period greater than zero.

[0005] The process of the present technology employs as reagents an indictor and an acid.

[0006] The first reagent, the indicator, is [4-(dimethylamino)phenyl]methanol (p-DAB) (CAS # 1703-46-4) or 4-Dimethylaminocinnamaldehyde (DMACA) (CAS # 20432-35-3) which are known, and commercially available, chemical compounds.

[0007] Concentrations of p-DAB range from 0.1 - 20 g / 100 mL solvent. Preferred concentrations of p-DAB range from 0.4 - 5 g / 100 mL solvent and 0.4 - 2.5 g / 100 mL solvent. Additional preferred concentrations of p-DAB include 2.5, 2, 1, and 0.4 g / 100 mL solvent. Concentrations of DMACA range from 0.1 - 20 g / 100 mL solvent. Preferred concentrations of DMACA range from 0.4 - 5 g / 100 mL solvent and 0.4 - 2.5 g / 100 mL solvent. Additional preferred concentrations of DMACA include 2.5, 2, 1.25, and 0.4 g / 100 mL solvent.

[0008] The solvent generally includes the second reagent, an acid, and includes both strong and weak acids. Non-limiting examples of acids suitable as the second reagent include hydrochloric acid, hydrobromic acid, hydroiodic acid, triflic acid, chloric acid, perchloric acid, nitric acid, sulfuric acid, oxalic acid, sulfurous acid, hydrogen sulfate ion, benzoic acid, methanoic (formic) acid, acetic acid, nitrous acid, hydrofluoric acid, and phosphoric acid.

[0009] The solvent is generally present in an amount to dissolve the indicator. By way of example, when at 2.5 g pDAB / 100 mL solvent, the solvents that can dissolve the indicator include: 85% phosphoric acid : water = 9:1 to 4:1 (v / v); 85% phosphoric acid : ethanol = 4:1 (v / v); 85% phosphoric acid : methanol = 4:1 (v / v); and 6 M hydrochloric acid.

[0010] Generally, any desired concentration of fludioxonil may be measured. Common concentration ranges of fludioxonil include 50 to 1000 ppm, 50 to 500 ppm, and 100 to 500 ppm.Example 1

[0011] Seven reference samples containing known concentrations of fludioxonil were prepared in laboratory tubes by mixing SCHOLAR ®< SC in the volumes shown in Table 1 with 50 ml of water. Scholar ®< SC is a well-known and commercially available fungicide sold by Syngenta Crop Protection and contains 20.4 w / w% fludioxonil (1.92 lb fludioxonil per gallon). TABLE 1 Reference Sample #Scholar ®< SC (µL)Water (mL)Reference Sample Conc.12550100 ppm237.550150 ppm35050200 ppm462.550250 ppm57550300 ppm687.550350 ppm712550500 ppm

[0012] An indicator solution comprising 2.5 g of p-DAB, 100 ml 85% phosphoric acid, and 5 mL of water was combined in a container thoroughly combined into solution.

[0013] 1 mL of each refence sample are added to individual laboratory tubes (e.g. centrifuge tube or standard test tube) and combined with 1 mL of the indicator solution. The tubes are shaken to mix the solutions and placed in heating block at 95 °C for 1 hour. The result is a color concentration refence spectrum.

[0014] In practice a "sample solution" would also be created concurrently with the reference spectrum. The sample solution is the solution that a person is determining the fludioxonil concertation in, e.g., a water bath containing fludioxonil. The test proceeds in the same manner as the reference samples - 1 mL of the sample solution is added to a test tube with 1 mL of indicator solution, the tube is shaken to mix the solution and placed in heating block at 95 °C for 1 hour.

[0015] The color of the sample solution is then compared by eye-sight, or by a colorimeter, to a reference sample to determine the fludioxonil concentration of the sample solution.

[0016] The present technology also includes a kit for performing the colorimetric analysis as described herein. The kit may include standard solutions of fludioxonil. The kit may also include a series of standard solutions, disposable pipets, test tubes (including small tube such as Eppendorf tubes or Corning tubes), gloves, goggles, tube rack, indicator (such as p-DAB or DMACA), acid solvent; and written instructions.

Claims

1. A method of performing a color reaction in the presence of fludioxonil in a liquid medium, the method comprising: combining an indicator selected from [4-(dimethylamino)phenyl]methanol and 4-Dimethylaminocinnamaldehyde, with an acid and fludioxonil.

2. The method of claim 1, wherein the indicator is [4-(dimethylamino)phenyl]methanol.

3. The method of claim 1, wherein the acid is phosphoric acid, sulfuric acid, nitric acid, hydrochloric acid, acetic acid, carbonic acid, hydrofluoric acid, citric acid, oxalic acid or boric acid.

4. The method of claim 2, wherein the acid is phosphoric acid, sulfuric acid, nitric acid, hydrochloric acid, acetic acid, carbonic acid, hydrofluoric acid, citric acid, oxalic acid or boric acid.

5. The method of claim 1, wherein the fludioxonil is present in an aqueous medium.

6. The method of claim 1, further comprising heating the resulting mixture at 95°C for a period of time.

7. The method of claim 6, where the period of time is one hour.

8. The method of claim 1, further comprising obtaining a colorimetric reading after a period of time for the resulting mixture.

9. The method of claim 4, further comprising obtaining a colorimetric reading after a period of time for the resulting mixture.

10. The method of claim 7, further comprising comparing the colorimetric reading to a reference sample.

11. A kit comprising: a. [4-(dimethylamino)phenyl]methanol or 4-Dimethylaminocinnamaldehyde b. an acid; and c. fludioxonil.

12. The kit of claim 11, further comprising: a. one or more container(s); and b. a pipette.