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Notice of retraction
Vol. 34, No. 8(3), S&M3042

Notice of retraction
Vol. 32, No. 8(2), S&M2292

Print: ISSN 0914-4935
Online: ISSN 2435-0869
Sensors and Materials
is an international peer-reviewed open access journal to provide a forum for researchers working in multidisciplinary fields of sensing technology.
Sensors and Materials
is covered by Science Citation Index Expanded (Clarivate Analytics), Scopus (Elsevier), and other databases.

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Sensors and Materials, Volume 28, Number 5 (2016)
Copyright(C) MYU K.K.
pp. 511-522
S&M1204 Research Paper of Special Issue
https://doi.org/10.18494/SAM.2016.1307
Published: May 25, 2016

Optimal Design of Ultrasonic Transducer System Applied on Biolipid Extraction from Chlorella [PDF]

Han-Sung Huang, Shao-Yi Hsia, and Shiuh-Kuang Yang

(Received August 31, 2015; Accepted March 1, 2016)

Keywords: ultrasonic transducer, biodiesel, extraction, biomechatronics

Algae have the ability to convert solar energy into organic compounds through photosynthesis and store them as lipids. The final step is the conversion of biolipids into biodiesel, which is a way to reduce carbon dioxide emissions and which can be considered as an inexhaustible alternative energy source. The process of studying the effects of biomechatronics involves an ultrasonic transducer and light emitting diode (LED) lights, which affect algal lipids. In an optimum extraction experiment, 0.18 g lipid can be extracted per gram of Chlorella after 5 d. Experiments with ultrasound increased lipid extraction by 19.13% compared with controls. The results of this study can be used for increasing the amount of lipid production that can be extracted from Chlorella, contributing to the development of better cultivation techniques with adequate environmental protection.

Corresponding author: Shao-Yi Hsia


Cite this article
Han-Sung Huang, Shao-Yi Hsia, and Shiuh-Kuang Yang, Optimal Design of Ultrasonic Transducer System Applied on Biolipid Extraction from Chlorella, Sens. Mater., Vol. 28, No. 5, 2016, p. 511-522.



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