
We provide consulting services to support the nature-positive initiatives of our clients including corporations and municipalities across a wide range of industries, such as agriculture, forestry, fisheries, the environment, landscaping, and urban design. We support the quantitative assessment and restoration of ecosystems based on ecology, microbiology, DNA analysis, GIS, field surveys, and the utilization of beneficial microorganisms. The services include evaluating and improving the functions such as carbon sequestration, water conservation, and biodiversity, of forests and green spaces, TNFD, farming support, and agricultural material development support.

A startup originating from Kyoto University’s Disaster Prevention Research Institute that provides integrated water resources management (IWRM) services. We offer customized, sector-specific solutions powered by three core capabilities: water-cycle analysis based on 30 years of research, a global database containing 250 years of hydrological and physical data, and an analytical platform that forecasts and visualizes regional water resources. By quantitatively assessing how climate change, human activities, and land-use changes impact agriculture, industry, cities, power generation, and ecosystems, we help businesses and municipalities identify and disclose water-related risks and implement effective adaptation measures.

Developing a system that leverages algal blooms to simultaneously capture and sequester CO₂, nitrogen, and phosphorus from water. Deployed for aquaculture, industrial wastewater, and sewage, it provides infrastructure that enables both decarbonization and resource circularity.

A Kyoto University-spinoff startup has developed technology that analyzes forest trees down to their species, height, and carbon content using drones and AI. It supports carbon credit creation and monitoring based on forest data.

An environmental technology startup utilizing proprietary ceramic membrane manufacturing to enable high-efficiency gas separation and solvent recycling. It also synthesizes liquid fuels from green hydrogen and CO₂, contributing to decarbonization and resource circularity in manufacturing.