scholarly journals CO2 laser photoacoustic spectrometer for measuring ethylene, acetone, and ammonia in the breath of patients with renal disease

2020 ◽  
Vol 30 ◽  
pp. 100387
Author(s):  
Mitrayana ◽  
Jeilen Gabriela Nikita ◽  
Mohammad Ali Joko Wasono ◽  
Mirza Satriawan
Biosensors ◽  
2020 ◽  
Vol 10 (6) ◽  
pp. 55 ◽  
Author(s):  
Mitrayana ◽  
Donni Kis Apriyanto ◽  
Mirza Satriawan

A CO2 laser has the advantages of being high in power and having many laser lines in the 9–11 µm infrared region. Thus, a CO2 laser photoacoustic spectrometer (PAS) can have a multi-component measurement capability for many gas compounds that have non-zero absorption coefficients at the laser lines, and therefore can be applied for measuring several volatile organic compounds (VOCs) in the human breath. We have developed a CO2 laser PAS system for detecting acetone in the human breath. Although acetone has small absorption coefficients at the CO2 laser lines, our PAS system was able to obtain strong photoacoustic (PA) signals at several CO2 laser lines, with the strongest one being at the 10P20 line. Since at the 10P20 line, ethylene and ammonia also have significant absorption coefficients, these two gases have to be included in a multi-component measurement with acetone. We obtained the lowest detection limit of our system for the ethylene, acetone, and ammonia are 6 ppbv, 11 ppbv, and 31 ppbv, respectively. We applied our PAS system to measure these three VOCs in the breath of three groups of subjects, i.e., patients with lung cancer disease, patients with other lung diseases, and healthy volunteers.


1996 ◽  
Vol 67 (11) ◽  
pp. 4000-4004 ◽  
Author(s):  
T. Fink ◽  
S. Büscher ◽  
R. Gäbler ◽  
Q. Yu ◽  
A. Dax ◽  
...  

2017 ◽  
Vol 1 (1) ◽  
Author(s):  
Ananta Kusuma Yoga pratama

Abstrak: Dalam penelitian ini, telah dilakukan deteksi dan pengukuran konsentrasi gas aseton dalam gas hembus pernapasanmanusia menggunakan spektrometer fotoakustik sensitifitas tinggi. Laser CO2 kontinyu dengan panjang gelombang 9 sampaidengan 11mm sebagai sumber radiasi digunakan untuk medeteksi gas aseton. Pada penggunaannya, laser dikombinasikandengan teknik spektroskopi fotoakustik konfigurasi intrakavitas.  Optimasi daya laser CO2 menghasilkan daya intrakavitasterukur  53 watt.  Batas deteksi terendah (BDT)  secara teoritisnya didapatkan sebesar 2,2 ± 0,04 ppb. Deteksi gas biomarkerpada gas hembus pernapasan manusia telah berhasil mengukur konsentrasi gas aseton sebesar 540±6 ppb.Kata kunci: gas aseton, spektroskopi fotoakustik, laserAbstract: In this study, the detection and measurement of acetone gas concentrations in human respiratory bladder gas usinga high sensitivity photoacoustic spectrometer was performed. The continuous CO2 lasers with wavelengths of 9 to 11 μm asradiation sources was used to detect acetone gas. In its applications, the continuous CO2 lasers was combined withphotoacoustic spectroscopy techniques of intracavity configuration. The optimization of CO2 laser power produces a measured53 watts intracavity power. The lowest detection limit (BDT) is theoretically obtained at 2.2 ± 0.04 ppb. Detection of biomarkergas in human respiratory human bladder gas has successfully measured the concentration of acetone gas by 540 ± 6 ppb.Keyword: acetone gas, photoacoustic spectroscopy, laser


Nephrology ◽  
2000 ◽  
Vol 5 (3) ◽  
pp. A93-A93
Author(s):  
Sj Chadban ◽  
P Kerr ◽  
E Briganti ◽  
D Dunstan ◽  
M De Courten ◽  
...  

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