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Swancor partners with Ban Mao-Waste carbon plates are reborn as imitation stone building materials

March 05,2026
20260303 阪茂合作備忘錄
Waste carbon plates are reborn as imitation stone building materials
Swancor and Ban Mao Green Energy unveiled the world's first product at JEC World France
The "Environmentally Friendly Stone Recycling Series" uses 11% of fan waste carbon plates to recycle oligomers
Issued by: Swancor International Investment Holdings Co., Ltd
Release date: March 5, 115

  Swancor Reginer Co., Ltd. (hereinafter referred to as " Swancor Regener"), a subsidiary of Swancor Investment Holdings (3708), announced today (5th) that it has joined hands with Ban Mao Green Energy Engineering Co., Ltd. (hereinafter referred to as "Ban Mao Green Energy") to participate in this year's JEC World International Composites Exhibition held in Paris, France. During the exhibition, the two parties officially unveiled the joint pavilion of the Taiwan Composites Association and jointly released the world's first "Eco-friendly Stone Recycling Series" containing 11% recycled oligomers from waste carbon plates from the wind turbine blade process, declaring to the global composite materials industry that thermosetting composite waste, which was originally regarded as unsolvable, can now complete resource regeneration and achieve high-quality applications.

Breaking through the dilemma of thermosetting material recycling, waste carbon plates are moving towards a recycling cycle
Thermosetting carbon fiber composites are widely used in wind turbine blades, aerospace, transportation, and other fields, but due to their characteristics of forming a three-dimensional cross-linked network structure after solidification, they cannot be recycled or reused once formed.

After years of independent research and development, Swancor Regener has launched the internationally breakthrough "EzCiclo®" and "CleaVER"®」。 EzCiclo is one of the few recyclable thermosetting epoxy resins in the world that can be used without changing the existing process equipment, while CleaVER can use patented chemical degradation technology to separate the cured thermoset composite material into high-purity recycled carbon fiber/glass fiber, as well as reusable resin oligomers (oligomers).

The raw material used in the new product is the process waste carbon plate that is inevitably produced during the manufacturing process of wind turbine blades, which is made of thermosetting epoxy resin combined with carbon fiber curing, which is almost impossible to recycle in the existing industrial system. Through CleaVER®, oligomers in waste carbon plates can be completely recycled and incorporated into the formula of Ban Mao's new "Eco-friendly Stone Recycling Series" at a ratio of 11%, truly achieving the dual circular economy goal of "waste removal" and "high-value reuse".

Imitation stone building materials have jumped to a new ESG benchmark, and recycled raw materials give products a new narrative
Ban Mao Green Energy has long been deeply involved in Taiwan's environmentally friendly building materials coating market, covering the exterior of construction projects, public works, and interior spaces, and has accumulated rich achievements in heavyweight public construction such as the Tainan Museum of Fine Arts Hall 2. This time, together with Swancor Regener, Ban Mao Green Energy has incorporated circular economy raw materials into its product system for the first time, giving stone imitation building materials a new sustainable connotation and demonstrating the environmental innovation of building materials.

The new "Eco-friendly Stone Recycling Series" not only maintains the consistent high-simulation texture and weather resistance of Ban Mao Green Energy, but also responds to the growing demand for low-carbon building materials, recycled raw materials, and green product traceability in the global building and interior design market with a content of 11% recycled oligomers, helping builders, designers, and owners to provide quantifiable records of the use of recycled materials in their ESG reports.

JEC World jointly debuted to jointly expand the international recycled composite application market
This JEC World is an important milestone for Swancor Regener to help Ban Mao Green Energy step onto the stage of the international top composite materials exhibition for the first time. Swancor Regener also invited Ban Mao Green Energy to participate in the exhibition as a partner, strengthening the international visibility of Taiwan's overall composite industry chain.

Ban Mao Green Energy plans to set up a booth in the JEC Taiwan Composites Association Pavilion to exhibit building materials engineering cases, new product samples, and explain the recycling journey and cooperation results of waste carbon plates to composite material manufacturers, brand customers, building materials buyers, and media from around the world through on-site presentation activities.

Stella Hong, General Manager of Swancor Regener, said: "The removal of thermoset composite material waste is the last piece of the puzzle for the entire composite industry to move towards a true cycle. This time, we were able to convert waste carbon plates from the wind turbine blade process into high-quality building materials on the consumer side, which not only verified our technical path but also demonstrated the possibility of cross-border flow of waste in the industrial chain. We look forward to using this successful case as a starting point to attract more downstream application partners to join and jointly expand the removal pipeline for recycling oligomers."

Luo Zhigang, head of Ban Mao Green Energy, said: "The circular economy should not be just a slogan, but must be reflected in the selection of raw materials for each product. Partnering with Swancor Regener allows our stone imitation building materials to have truly traceable recycled raw materials for the first time, which is of great significance for us to expand the sustainable building materials market and serve ESG-conscious brand owners in the future."

The technical data related to this press release are based on actual measurements and formula records, and the right to adjust them according to the final product specifications is reserved.
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