【Media Coverage】Tzu Chi English News: Witness How Solar-Water Technology Solves Off-Grid Water Crisis in the Philippines
As the global water crisis intensifies, reliable off-grid solutions are more critical than ever. Recently, Tzu Chi English News featured a comprehensive report on a humanitarian project in the Philippines, documenting how JASON'Solar Water (JSW) technology successfully provided pure drinking water in a harsh, off-grid environment.
📺 Watch the Report: Pure Water for Bagonbanwa Island
The Challenge: An Island with Only Brackish Water
Bagonbanwa Island, home to 1,400 residents, faced a severe water crisis:
No Drinkable Groundwater: The existing groundwater was highly saline (brackish) and strictly for washing.
High Costs: Residents spent up to 1/3 of their monthly income importing water by boat.
Health Risks: Relying on untreated rainwater caused ongoing health concerns.
The JSW Solution: 100% Battery-free Solar-Powered Desalination
Traditional desalination requires massive electricity, which the island lacked. The JSW Solar Reverse Osmosis (RO) system provided the perfect off-grid answer.
The news report highlighted our system's proven field performance:
Zero Grid Reliance: Powered entirely by its own high-efficiency solar panels—no diesel generators required.
Superior Purification: It reduced the raw water's TDS (Total Dissolved Solids) from a hazardous 5,000 ppm down to just 50 ppm. This quality not only meets W.H.O. drinking water standards but is superior to most commercial bottled water.
High Daily Yield: Producing 5,000 liters of fresh water daily, the system comfortably meets the drinking needs of the entire island.

The Impact: Proven Tech for ESG & Remote Projects
This successful deployment relieved the community's financial burden and secured their health. More importantly for our B2B partners, it proves that JSW's technology is field-tested and ready for extreme environments.
From island resorts to corporate ESG initiatives and remote infrastructure, JSW delivers reliable, sustainable water independence.


