Alphabet Inc.

05/17/2022 | Press release | Distributed by Public on 05/17/2022 01:17

Bay View is open — the first campus built by Google

Taking green building to a new scale

To deliver on our commitment to operate every hour of every day on carbon-free energy by 2030, we prioritized renewable energy and maximized the solar potential of our buildings. Bay View's first-of-its-kind dragonscale solar skin and nearby wind farms will power it on carbon-free energy 90% of the time.

The campus is also on track to be the largest project certified by the International Living Future Institute (ILFI) under any of their programs, at any certification level. As part of ILFI's Living Building Challenge, we're targeting a Water Petal certification, meaning the site is net-positive with all non-potable water demands being met using the recycled water generated on site. Above-ground ponds that gather rainwater year round and a building wastewater treatment system serve as water sources for cooling towers, flushing toilets and irrigating the landscape. This is a big step toward delivering on our commitment to replenish 120% of the water we consume by 2030.

It doesn't stop there. Bay View is an example of an all-electric campus and shows what's possible in regenerative building. Here's how:

  • The two kitchens that serve seven cafes are equipped with electric equipment rather than gas - a template for fully carbon-free cafes and kitchens.
  • There are 17.3 acres of high-value natural areas - including wet meadows, woodlands and a marsh - that are designed to reestablish native landscapes and rehabilitate Bay Area wetlands. Something that's especially important as Bay View sits close to the San Francisco Bay.
  • The water retention ponds not only collect water for reuse, but also provide nature restoration, sea level rise protection, and access to the beauty of natural wetlands. New willow groves along the stormwater ponds provide resources for wildlife.
  • The integrated geothermal pile system will help heat and cool the campus. The massive geoexchange field is integrated into the structural system, reducing the amount of water typically used for cooling by 90% - that's equal to five million gallons of water annually.