RIZOME PH aims to construct high-rise buildings using bamboo products. -- EDG ADRIAN A. EVA

By Edg Adrian A. Eva, Reporter

RIZOME PH, a sustainable materials company in Cagayan de Oro City, converts bamboo fiber into structural materials for constructing houses and buildings.

鈥淭he bamboo grass, with the application of science and technology, is being turned into beams, columns, and panels,鈥 Christopher Ua-o, head of manufacturing at Rizome PH, told reporters during a factory visit in Cagayan de Oro on Nov. 28.

鈥淏asically, you create a building with a wood finish that looks beautiful, but you didn鈥檛 cut down any trees,鈥 he added.

Mr. Ua-o also said that the bamboo materials developed by Rizome PH have passed durability and suitability tests conducted by the Department of Science and Technology-Forest Products Research and Development Institute and Washington State University.

鈥淥ur tagline is strong like steel, tough like concrete, beautiful as wood,鈥 he said.

Rizome PH鈥檚 bamboo building materials include slats, veneers, panels, laminated veneer lumber, and strand lumber, designed to meet the structural and aesthetic requirements of house and building projects.

Mr. Ua-o said that bamboo is a sustainable material because it is a fast-growing grass that can be harvested within a year and regrows after being cut, helping to preserve forest trees. In contrast, trees take 10 to 20 years to mature.

The company aims to revive the timber industry without cutting any trees by using bamboo, a sustainable grass, he noted.

Using bamboo in construction helps store carbon, and as bamboo regrows, it absorbs more carbon dioxide and releases oxygen, he added.

According to the Climate Change Commission, bamboo captures over five tons of carbon dioxide per hectare annually, storing more carbon than most tree species and making it an effective tool in combating climate change.

Mr. Ua-o said that Rizome PH, having built a one-story structure so far, also targets to construct high-rise buildings using bamboo products to demonstrate the material鈥檚 strength and sustainability.