Liu Shao-Yang, Chen You-Peng, Fang Fang, Xu Juan, Sheng Guo-Ping, Yu Han-Qing, Liu Gang, Tian Yang-Chao
Department of Chemistry, University of Science and Technology of China, Hefei, 230026, China.
Environ Sci Technol. 2009 Feb 15;43(4):1160-5. doi: 10.1021/es802662e.
A novel gold microelectrode array (MEA) was manufactured with microfabrication techniques and applied on the measurement of dissolved oxygen profile in an aerobic granule. The MEA contained five gold microelectrodes, which had a good linear response to dissolved oxygen and typically had a lifetime of more than 10 days. Dissolved oxygen microprofiles near the surface of an aerobic granule were monitored with this MEA. Based on the measurements, an oxygen effective diffusivity in the upper 100 microm layer of the aerobic granule was estimated to be 1.19 x 10(-9) m2/s. The experimental results demonstrate that the MEA was able to measure the DO levels in aerobic granules accurately and precisely and that the MEA could be used to determine constituents, profiles, and functions in situ in small spaces. Moreover, since the device shape and microelectrode arrangement were all defined by photolithography, the proposed fabrication procedure was flexible and appropriate for fabrication of various types of MEAs.
采用微加工技术制造了一种新型金微电极阵列(MEA),并将其应用于好氧颗粒中溶解氧分布的测量。该MEA包含五个金微电极,对溶解氧具有良好的线性响应,通常使用寿命超过10天。用该MEA监测好氧颗粒表面附近的溶解氧微分布。基于这些测量,估计好氧颗粒上部100微米层中的氧有效扩散率为1.19×10(-9)平方米/秒。实验结果表明,MEA能够准确精确地测量好氧颗粒中的溶解氧水平,并且MEA可用于在小空间内原位确定成分、分布和功能。此外,由于器件形状和微电极排列均由光刻定义,所提出的制造工艺灵活,适用于制造各种类型的MEA。