Microbiology Detection Methods of Piezoelectrics Bulk Acoustic Wave Sensor Research of Chitosan Properties

被引:0
|
作者
Fang, Chunjuan [1 ]
机构
[1] Jiangxi Univ Technol, Sch Nursing, Nanchang, Jiangxi, Peoples R China
关键词
Piezoelectric acoustic sensor; Microbiological testing; Chitosan;
D O I
暂无
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
The piezoelectric bulk acoustic wave sensor technology has such unique advantages as high sensitivity, wide response spectrum, easy digitalization, simple structure and low cost and others, which are widely used in many fields of analytical chemistry, biochemistry, environmental monitoring, life science and molecular biology. This article has conducted research for theories and applications of several new systems on the basis of the tandem piezoelectric response to solution electrical conductivity and dielectric constant and the response of single-component piezoelectric bulk acoustic wave sonic sensors to the viscosity and density, which has broadened the application range of the piezoelectric bulk acoustic wave sensor applications in the life sciences and environmental monitoring. The article applies tandem piezoelectric sensor technology (SPQC) to study the adsorption properties of natural polymer chitosan to metal ions, and the influence from ion concentration, adsorbent dosage and degree of deacetylation of chitosan to chitosan sequestration performance has been investigated in the article. In addition, the determination of degree of deacetylation has been conducted with the application of tandem piezoelectric sensor technology in the article, this test method can effectively eliminate the influence of residual acid or residual alkali adsorbed by chitosan, making measurement results become more accurate and reliable.
引用
收藏
页码:529 / 535
页数:7
相关论文
共 50 条
  • [21] A microfluidic system with embedded acoustic wave sensor for in situ detection of dynamic fluidic properties
    Zhang, Kai
    Zhao, Libo
    Guo, Shishang
    Shi, Baoxian
    Chen, Yong
    Chan, Helen L. W.
    Wang, Yu
    MICROELECTRONIC ENGINEERING, 2010, 87 (04) : 658 - 662
  • [22] Bulk acoustic wave resonator based wireless and passive pressure sensor
    Xuan, Weipeng
    Chen, Jin
    Wu, Ting
    Chen, Jinkai
    Huang, Xiwei
    Dong, Shurong
    Wang, Xiaozhi
    Jin, Hao
    Luo, Jikui
    VACUUM, 2020, 178
  • [23] Theory of High Overtone Bulk Acoustic Wave Resonator as a gas sensor
    Mansfeld, GD
    MIKON-2000, VOLS 1 & 2, PROCEEDINGS, 2000, : 469 - 472
  • [24] Film bulk acoustic-wave resonator based ultraviolet sensor
    Qiu, X.
    Zhu, J.
    Oiler, J.
    Yu, C.
    Wang, Z.
    Yu, H.
    APPLIED PHYSICS LETTERS, 2009, 94 (15)
  • [25] Thin film bulk acoustic wave resonator (TFBAR) gas sensor
    Benetti, M
    Cannatà, D
    D'Amico, A
    Di Pietrantonio, F
    Foglietti, V
    Verona, E
    2004 IEEE ULTRASONICS SYMPOSIUM, VOLS 1-3, 2004, : 1581 - 1584
  • [26] Research on Test Circuit of Surface Acoustic Wave Sensor
    Li Yonggang
    Zhu Jialin
    PROCEEDINGS OF THE SECOND INTERNATIONAL SYMPOSIUM ON TEST AUTOMATION AND INSTRUMENTATION, VOL 4, 2008, : 1852 - 1856
  • [27] On-line rapid detection of urease-producing bacteria with a novel bulk acoustic wave ammonia sensor
    Deng, L
    Tan, HW
    Xu, YJ
    Nie, LH
    Yao, SZ
    ENZYME AND MICROBIAL TECHNOLOGY, 1997, 21 (04) : 258 - 264
  • [28] Surface acoustic wave sensor for selective detection of flumequine
    Ktari, N.
    Fourati, N.
    Zerrouki, C.
    Ruan, M.
    Nassoko, D.
    Seydou, M.
    Yaakoubi, N.
    Chehimi, M. M.
    Kalfat, R.
    EUROSENSORS 2015, 2015, 120 : 998 - 1002
  • [29] Piezoelectric Sensor for Acoustic Wave Detection in Anisotropic Systems
    Barbosa, G. A.
    Lanceros-Mendez, S.
    Campos, J.
    Pamplona, J.
    Zamith, M.
    Almeida, A. M.
    Cabral, J. M.
    Rocha, J. G.
    IECON: 2009 35TH ANNUAL CONFERENCE OF IEEE INDUSTRIAL ELECTRONICS, VOLS 1-6, 2009, : 1792 - +
  • [30] A surface acoustic wave sensor for detection of cell adhesion
    Guhr, Glen
    Bruenig, Raimund
    Jaeger, Martin
    Poll, Ruediger
    Schmidt, Hagen
    Weihnacht, Manfred
    2008 IEEE ULTRASONICS SYMPOSIUM, VOLS 1-4 AND APPENDIX, 2008, : 1948 - +