Return to site
Return to site

Leaf Biotech Secures 200 Million Yuan in Series B Funding for Global Scale-Up of Sustainable Biobased Materials

Innovating FDCA Production and Pioneering the Future of Bioplastics with Leaf Biotech's Breakthrough Technologies

· Trends

Leaf Biotech, a biobased materials company, announced the completion of a nearly 200 million yuan Series B strategic financing round. The funds from this round will primarily be used to establish the world's first production line with a capacity of 10,000 tons for FDCA (2,5-furandicarboxylic acid) and its derivative products, as well as continuous optimization of the production process.

 

Leaf Biotech was founded in 2014, and its research team comes from the Biomass Clean Energy Key Laboratory of Anhui Province at the University of Science and Technology of China. The team began researching the synthesis route of FDCA monomers in 2010, making them the first team in China to conduct research on FDCA. Currently, Leaf Biotech has become a leading company in the industry for the development and production of FDCA, a fully biobased new material, and its downstream applications. The main products include FDCA (furandicarboxylic acid), HMF (5-hydroxymethylfurfural, an upstream intermediate product of FDCA), and their downstream derivatives.

 

FDCA has a similar chemical structure and properties to PTA (purified terephthalic acid), an intermediate product in petrochemicals. It can replace PTA in almost all downstream reactions. Compared to PTA, FDCA is 100% derived from biomass raw materials, reduces carbon emissions by 50% to 70%, is biodegradable, and has more unique and superior application properties. It can be widely used in packaging materials, textile fibers, specialty plastics, power batteries, and other downstream fields, with an "application space worth hundreds of billions."

 

Leaf Biotech has established core technological barriers in raw material selection, catalyst systems, and industrialization systems. By the end of 2022, Leaf Biotech had built the world's first kiloton-scale FDCA production line in Bengbu, with cumulative sales revenue reaching tens of millions. In 2023, it achieved a breakthrough in the continuous production process of FDCA using non-food biomass sugars as raw materials, reaching a new level in cost control and industrial production scale. In addition, Leaf Biotech is currently conducting research and development on fully biobased polyester new material PEF (polyethylene furanoate) and the preparation of PEF bottles, fibers, films, and other products.

 

Compared to PET, PEF is a material with stronger barrier properties against CO2 and O2. Due to its higher mechanical strength, PEF can produce thinner packaging, reducing the weight of films and bottles. Based on its functional, environmental, and innovative advantages, PEF is recognized as a promising new material in the bioplastics market.

 

 

Disclaimer: Despite our efforts to maintain accuracy, errors are unavoidable due to our limited expertise. Some information may not be up to date, and we welcome your feedback to make necessary corrections. This document is intended solely for the purpose of providing a business-oriented and written introduction to the field of synthetic biology. It does not constitute any investment advice. We appreciate your understanding.

 

Subscribe
Previous
Panomix Secures Nearly 100 Million Yuan in Series A+ Funding
Next
Optimizing Protein Transportation: SBS Genetech's Cost...
 Return to site
Cookie Use
We use cookies to improve browsing experience, security, and data collection. By accepting, you agree to the use of cookies for advertising and analytics. You can change your cookie settings at any time. Learn More
Accept all
Settings
Decline All
Cookie Settings
Necessary Cookies
These cookies enable core functionality such as security, network management, and accessibility. These cookies can’t be switched off.
Analytics Cookies
These cookies help us better understand how visitors interact with our website and help us discover errors.
Preferences Cookies
These cookies allow the website to remember choices you've made to provide enhanced functionality and personalization.
Save