DOAJ Open Access 2025

Ppb-level formaldehyde sensor utilizing a compact 3D-printed differential photoacoustic cell and a 320 nm UV laser

Xiu Yang Biao Li Xiao Geng Tianbai Zhao Qiwen Yu +6 lainnya

Abstrak

Precise measurement of formaldehyde (H2CO) is a vital defense line for health, crucial for risk warning and prevention of major diseases like leukemia and cancer. The cross-interference of commercial electrochemical and metal oxide semiconductor sensors is grievous for H2CO sensing. Spraying disinfection alcohol, culinary steam, or even perfume may mistakenly trigger warnings. In this work, a low-cost 3D-printed differential photoacoustic cell (PAC) with a ultraviolet (UV) laser is developed for trace H2CO detection based on the photoacoustic spectroscopy (PAS) technology. A 3D-printed differential PAC is an integrated structure composed of two differential channels, two gas buffer chambers, a gas inlet and a gas outlet. Two steel tubes with identical length and an internal diameter of 4 mm are inserted into two differential channels to enhance the photoacoustic signal, respectively. Consequently, the differential PAC has a resonant frequency of 3775.5 Hz and a Q-factor of 27, with a minimal gas sample requirement of only 7.3 mL and a weight of 32.4 g. A 1σ detection limit of 1.03 ppm is achieved using a 320 nm 10 mW UV laser with an integration time of 1 s. An Allan-Werle deviation analysis indicates that the detection limit can be improved to 68.5 ppb at the optimal integration time of 969 s.

Penulis (11)

X

Xiu Yang

B

Biao Li

X

Xiao Geng

T

Tianbai Zhao

Q

Qiwen Yu

J

Jiajia Hou

D

Dacheng Zhang

Y

Yize Liang

K

Kaijie Xu

H

Hongpeng Wu

X

Xukun Yin

Format Sitasi

Yang, X., Li, B., Geng, X., Zhao, T., Yu, Q., Hou, J. et al. (2025). Ppb-level formaldehyde sensor utilizing a compact 3D-printed differential photoacoustic cell and a 320 nm UV laser. https://doi.org/10.1016/j.pacs.2025.100780

Akses Cepat

PDF tidak tersedia langsung

Cek di sumber asli →
Lihat di Sumber doi.org/10.1016/j.pacs.2025.100780
Informasi Jurnal
Tahun Terbit
2025
Sumber Database
DOAJ
DOI
10.1016/j.pacs.2025.100780
Akses
Open Access ✓