Longtan, Taiwan

Tien-Yang Ma

USPTO Granted Patents = 1 

Average Co-Inventor Count = 9.0

ph-index = 1


Company Filing History:


Years Active: 2013

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1 patent (USPTO):Explore Patents

Title: Inventor Spotlight: Tien-Yang Ma and His Contributions to Ethanol Production

Introduction: Tien-Yang Ma, an accomplished inventor based in Longtan, Taiwan, has made significant strides in the field of biotechnology. With a focus on sustainable fuel production, he has developed innovative methods that hold the potential to transform the biofuels industry.

Latest Patents: Tien-Yang Ma holds a patent for a "Method for preparing xylose-utilizing strain." This groundbreaking patent describes a technique for creating a recombinant strain that possesses multiple copies of integrated xylose metabolic genes. The strain can efficiently ferment xylose to produce ethanol from both synthetic medium and lignocellulosic raw materials. His invention is highly relevant for the cellulosic ethanol production industry and the brewing sector, offering a sustainable solution to energy production.

Career Highlights: Currently, Tien-Yang Ma is associated with the Institute of Nuclear Energy Research under the Atomic Energy Council, Executive Yuan. His work at this prestigious institution underscores his commitment to advancing research in renewable energy and biotechnology.

Collaborations: Tien-Yang Ma collaborates with fellow researchers Ting-Hsiang Lin and Teng-Chieh Hsu. Together, they contribute to innovative projects that aim to enhance methods for bioethanol production and explore the application of xylose-utilizing strains in various industries.

Conclusion: Tien-Yang Ma's contributions to the innovation of xylose-utilizing strains underscore the importance of research in sustainable energy solutions. His work not only advances the scientific community but also provides practical applications that can benefit industries reliant on biofuels. Through his patented method, Tien-Yang Ma is paving the way for a more sustainable and eco-friendly approach to energy production.

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