Autotitrator based on an Arduino Open Source Pump
Authors/Creators
- 1. Department of Applied Physics and Physical Chemistry, University of Granada
- 2. Department of Applied Physics, University of Granada
Description
Acid-base titration is a quantitative analysis that enables knowing the quantity of acidic or basic groups present in a solution sample. It consists in the addition of base or acid to the solution sample while monitoring the pH to reach a neutral pH. The titration can be automated and here we present a low cost Arduino based Open Source Pump (OSPump) modified to act as an automated titrator with an obsolete but reliable Metrohm 713 pH meter. Our device is 50 times less expensive than second hand units from the pH meter manufacturer and inherently open to customization. We present two validation cases of study, including the lipolysis of a vegetable olive oil in water emulsion, characterized by the OSPump Titrator.
Notes
Files
Arduino_OSPump_Titrator_Operation_Validation.mp4
Files
(234.4 MB)
| Name | Size | Download all |
|---|---|---|
|
md5:2fa7d7207a6765c9d4239eb39eadeaa6
|
24.2 kB | Download |
|
md5:f6fda835df8b3374cffde2a4077c6351
|
227.3 MB | Preview Download |
|
md5:725760108f12b41bdd1cf153ecf0b80b
|
344.3 kB | Download |
|
md5:0d1c8292572b21302a916b97b072aedb
|
667.0 kB | Download |
|
md5:d76c79d32948d38e287edf82713366b7
|
1.3 MB | Download |
|
md5:5b7eac2827af40b47a64c38eb25c9918
|
306.1 kB | Download |
|
md5:f387a4405f41a3c57d54e96a001ae68e
|
378.1 kB | Download |
|
md5:c96c4fb874b6e5bb2266f918a7e2da0a
|
437.3 kB | Download |
|
md5:2a43a9fd5459b4346b915909f7316017
|
465.8 kB | Download |
|
md5:d3bd0747248ddeb97d38ab9d4fe659fb
|
124.9 kB | Download |
|
md5:ff39829823c2f2a04bb3973fbc253f86
|
370.7 kB | Download |
|
md5:6cf6be0b666a22188117c632db5b466c
|
320.6 kB | Download |
|
md5:2b082a7fd701975ead8a8209cdb10b10
|
315.8 kB | Download |
|
md5:9f64a015e6447c8382a998ed1621c46f
|
378.8 kB | Download |
|
md5:fad1cdcdf7466bcaaf71650990f3ca19
|
66.7 kB | Download |
|
md5:925f3d24c11b0e7297ce4baf5aa0c634
|
52.7 kB | Download |
|
md5:de95839aec4ed88c460d869ccdc291ca
|
67.3 kB | Download |
|
md5:f8dc133fd35acf0e44b85286a8c26d13
|
36.9 kB | Download |
|
md5:737b95bf529931ea143ba8de21aecdcf
|
1.3 MB | Preview Download |
|
md5:994570d097935f0208b885567e8c7404
|
47.5 kB | Download |
|
md5:e7c25cf2885bea5181b297e3b87ff992
|
47.1 kB | Download |
|
md5:83c232526129f09d71c3d35c68fc84de
|
41.3 kB | Download |
Additional details
References
- Samokhin, A.S. Syringe Pump Created using 3D Printing Technology and Arduino Platform. J Anal Chem 75, 416–421 (2020). https://doi.org/10.1134/S1061934820030156