Formaldehyde Gas Sensors: A Review

被引:213
作者
Chung, Po-Ren [1 ]
Tzeng, Chun-Ta [1 ]
Ke, Ming-Tsun [2 ]
Lee, Chia-Yen [3 ]
机构
[1] Natl Cheng Kung Univ, Dept Architecture, Tainan 701, Taiwan
[2] Natl Taipei Univ Technol, Dept Energy & Refrigerating Air Conditioning Engn, Taipei 106, Taiwan
[3] Natl Pingtung Univ Sci & Technol, Dept Vehicle Engn, Pingtung 912, Taiwan
来源
SENSORS | 2013年 / 13卷 / 04期
关键词
formaldehyde; gas sensor; indoor air; MEMS; sick building syndrome (SBS); NIO THIN-FILMS; SENSING CHARACTERISTICS; AIR; EMISSION; PERFORMANCE; PROPERTY; FACILE;
D O I
10.3390/s130404468
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Many methods based on spectrophotometric, fluorometric, piezoresistive, amperometric or conductive measurements have been proposed for detecting the concentration of formaldehyde in air. However, conventional formaldehyde measurement systems are bulky and expensive and require the services of highly-trained operators. Accordingly, the emergence of sophisticated technologies in recent years has prompted the development of many microscale gaseous formaldehyde detection systems. Besides their compact size, such devices have many other advantages over their macroscale counterparts, including a real-time response, a more straightforward operation, lower power consumption, and the potential for low-cost batch production. This paper commences by providing a high level overview of the formaldehyde gas sensing field and then describes some of the more significant real-time sensors presented in the literature over the past 10 years or so.
引用
收藏
页码:4468 / 4484
页数:17
相关论文
共 47 条
[31]   FORMALDEHYDE DETECTION IN AIR BY LASER-INDUCED FLUORESCENCE [J].
MOHLMANN, GR .
APPLIED SPECTROSCOPY, 1985, 39 (01) :98-101
[32]   Ultraviolet-assisted gas sensing: A potential formaldehyde detection approach at room temperature based on zinc oxide nanorods [J].
Peng, Liang ;
Zhao, Qidong ;
Wang, Dejun ;
Zhai, Jiali ;
Wang, Ping ;
Pang, Shan ;
Xie, Tengfeng .
SENSORS AND ACTUATORS B-CHEMICAL, 2009, 136 (01) :80-85
[33]   Evaluation of three test methods in determination of formaldehyde emission from particleboard bonded with different mole ratio in the urea-formaldehyde resin [J].
Que, Zeli ;
Furuno, Takeshi ;
Katoh, Sadanobu ;
Nishino, Yoshihiko .
BUILDING AND ENVIRONMENT, 2007, 42 (03) :1242-1249
[34]   Evaluation of formaldehyde emission from different types of wood-based panels and flooring materials using different standard test methods [J].
Salem, Mohamed Z. M. ;
Boehm, Martin ;
Srba, Jaromir ;
Berankova, Jitka .
BUILDING AND ENVIRONMENT, 2012, 49 :86-96
[35]   Effect of some manufacturing variables on formaldehyde release from particleboard: Relationship between different test methods [J].
Salem, Mohamed Z. M. ;
Boehm, Martin ;
Berankova, Jitka ;
Srba, Jaromir .
BUILDING AND ENVIRONMENT, 2011, 46 (10) :1946-1953
[36]   Detection of formaldehyde vapor using mercaptophenol-coated piezoresistive cantilevers [J].
Seo, Hyejung ;
Jung, Sunghye ;
Jeon, Sangmin .
SENSORS AND ACTUATORS B-CHEMICAL, 2007, 126 (02) :522-526
[37]  
SEPTON JC, 1982, AM IND HYG ASSOC J, V43, P845, DOI 10.1080/15298668291410675
[38]   On-line collection/concentration of trace amounts of formaldehyde in air with chromatomembrane cell and its sensitive determination by flow injection technique coupled with spectrophotometric and fluorometric detection [J].
Sritharathikhun, P ;
Oshima, M ;
Motomizu, S .
TALANTA, 2005, 67 (05) :1014-1022
[39]   Portable sick house syndrome gas monitoring system based on novel colorimetric reagents for the highly selective and sensitive detection of formaldehyde [J].
Suzuki, Y ;
Nakano, N ;
Suzuki, K .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2003, 37 (24) :5695-5700
[40]   Potentiometric detection of formaldehyde in air by an aldehyde dehydrogenase FET [J].
Vianello, F ;
Stefani, A ;
DiPaolo, ML ;
Rigo, A ;
Lui, A ;
Margesin, B ;
Zen, M ;
Scarpa, M ;
Soncini, G .
SENSORS AND ACTUATORS B-CHEMICAL, 1996, 37 (1-2) :49-54