METAWATER technologies adopted for the B-DASH Project

What is the B-DASH Project?

The B-DASH Project is a demonstration project led by the Ministry of Land, Infrastructure, Transport and Tourism aimed at accelerating research and development in relation to and the commercialization of new technologies to build a low-carbon, resource-circulating society, to reduce life cycle costs in the sewage business, to bring to fruition preventive measures against floods and facility aging, and to support the expansion of water-related business conducted by Japanese enterprises overseas.
*B-DASH Project: Breakthrough by Dynamic Approach in Sewage High Technology Project

During the MLIT’s B-DASH Project, proposals made by the groups in which METAWATER takes part were adopted eight times during the period spanning from FY2011 to FY2021.

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Maintenance and management solutions

Rainwater management system to address torrential rain in urban areas

Cloud-based system for realizing continued stock management based on maintenance and management

Waste water treatment plant

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Waste water treatment

Sludge treatment

FY2015 Demonstration Project

Rainwater management system to address torrential rain in urban areas

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FY2018 Demonstration Project

Cloud-based system for realizing continued stock management based on maintenance and management

FY2011 Demonstration Project

Total energy management system centered on thorough solid-liquid separation

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FY2014 Demonstration Project

A system serving to radically realize high-energy-saving performance through non-aeration, and stable and excellent quality in terms of water treatment

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FY2019 Demonstration Project

Advanced treatment system involving the control of the single tank nitrification denitrification process via ICT and AI

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FY2017 Demonstration Project

System for improving the waste water treatment capacities of final sedimentation tanks

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FY2013 Demonstration Project

Innovative, comprehensive sludge treatment system serving to optimize all steps, including those for dehydration, incineration, and power generation

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