flexiblefullpage -
billboard - default
interstitial1 - interstitial
catfish1 - bottom
Currently Reading

Six-story living wall improves building performance at University of Ottawa

Sponsored Content Green

Six-story living wall improves building performance at University of Ottawa

The green plant wall provides a striking contrast to the glass and steel structure.


By Nedlaw | October 22, 2015
The biofilter provides the majority of the building's fresh air intake to substantially reduce energy usage.

The biofilter provides the majority of the building's fresh air intake to substantially reduce energy usage.

Located in the heart of University of Ottawa, the 15-story Vanier Hall functions as the new home of the large Faculty of Social Science and ‘stands tall’ as a living example of sustainable design boasting the intangibles of a rich and inspiring learning atmosphere, plus the measurable returns of energy saving technology.

From an exterior view, the green plant wall provides a striking contrast to the glass and steel structure. Once inside, visitors can fully appreciate a spectacular six-story-high feature – the largest living wall biofilter in North America at 1,370 square feet. In addition to the aesthetic impact, the biofilter is also part of the building’s sustainable design efforts.

Improves Air Quality and Building Performance

In simple terms, a Nedlaw Living Wall Biofilter is a working machine that harnesses nature’s remarkable ability to ‘eat’ pollutants. Contaminated indoor air is drawn through the biofilter where microorganisms on the root media consume airborne pollutants as food.  This removal process cleans 80 – 85% of volatile organic compounds (VOCs) from the air, creating virtual outside air. The cleansed air is then re-circulated through the buidling’s HVAC system.

The ‘soft’ benefits of the living wall include dust control, sound abatement, white noise in the form of running water, and a noticeable ‘smell’ of fresh air.

 

 

In terms of improving building performance, the biofilter at Vanier Hall can provide 75 – 80% of the building’s fresh air intake requirement, which not only enhances air quality but also significantly improves energy performance by reducing the amount of air intake and, consequently, heating and cooling costs. Additionally, the wall provides all of the building’s humidity and no mechanical humidification is needed.

The living wall biofilter at Vanier Hall includes energy smart features designed to address certain energy lapses in traditional building systems. For example, water recycled from storm water runoff and HVAC condensation is used for the hydroponic plant wall. According to Dr. Alan Darlington (founder of Nedlaw Living Walls), “We’ve done a lot of work to streamline and make this as efficient as possible without losing the aesthetics of this system.”

Calculating the ROI of Living Wall Biofilters

In recent years, Nedlaw has completed numerous studies to show the effectiveness of contaminant removal from indoor air and has now quantified the return on investment based on energy savings. By replacing outdoor air that needs to be conditioned, a Nedlaw Living Wall Biofilter reduces a building’s energy needs. In general terms, a fully-integrated biofilter can reduce energy costs by up to 30%, because the biofilters provide clean air at a fraction of the cost of traditional systems.

In a recent study completed for a major international retail chain, it was determined that the proposed living wall biofilter could provide 100 litres per second of outside air – meaning the building needed to take in that much less outside air.

Using the biofilter as a source of clean air would reduce the energy consumption of the HVAC system by 32.5 GJ of energy for square metre of biofilter used. If properly integrated into the building (for example, naturally lit and connected directly to the HVAC), the biofilter would require as little as 0.4 GJ of energy per square metre per year. This gives a total annual energy savings of the system of 32.1 GJ. This is equivalent to roughly 5 barrels of oil or 1.6 tonnes of CO2 saved per square metre of biofilter.

For this study, it was determined that approximately 400 m2 of biofilter would be used. Assuming a combined energy cost for electricity and natural gas of $10 USD per GJ and if the biofilter is used to its maximum potential then the payback period for the capital cost associated with the biofilter could be less than 3 - 5 years.

PROJECT DETAILS

Location: University of Ottawa, Vanier Hall
Architect: Diamond Schmitt Architects, KWC Architects
Award of Excellence / Interior Green Wall - Green Roofs for Healthy Cities
LEED Gold Certified

MEDIA COVERAGE

According to the University of Ottawa, the Nedlaw Living Wall Biofilter was a “cost-neutral initiative”

University of Ottawa Tower Wins 3 Awards

ABOUT NEDLAW LIVING WALL BIOFILTERS

Installation Options and Requirements             

Energy Benefits of a Living Wall Biofilter
 

Tags

Related Stories

Sustainability | Feb 9, 2023

University of Southern California's sustainability guidelines emphasize embodied carbon

A Buro Happold-led team recently completed work on the USC Sustainable Design & Construction Guidelines for the University of Southern California. The document sets out sustainable strategies for the design and construction of new buildings, renovations, and asset renewal projects.

Sustainability | Feb 8, 2023

A wind energy system—without the blades—can be placed on commercial building rooftops

Aeromine Technologies’ bladeless system captures and amplifies a building’s airflow like airfoils on a race car.

Codes and Standards | Feb 8, 2023

GSA releases draft of federal low embodied carbon material standards

The General Services Administration recently released a document that outlines standards for low embodied carbon materials and products to be used on federal construction projects.

Healthcare Facilities | Jan 31, 2023

How to solve humidity issues in hospitals and healthcare facilities

Humidity control is one of the top mechanical issues healthcare clients face. SSR's Lee Nordholm, PE, LEED AP, offers tips for handling humidity issues in hospitals and healthcare facilities.

Mass Timber | Jan 30, 2023

Net-positive, mass timber building will promote research on planetary well-being in Barcelona

ZGF Architects, along with Barcelona-based firms MIRAG and Double Twist, have designed a net-positive, mass timber center for research on planetary well-being. Located in Barcelona, the Mercat del Peix Research Center will bring together global experts in the experimental sciences, social sciences, and humanities to address challenges related to the future of the planet.

Mass Timber | Jan 27, 2023

How to set up your next mass timber construction project for success

XL Construction co-founder Dave Beck shares important preconstruction steps for designing and building mass timber buildings.

Green | Jan 26, 2023

Corporations fall short on climate pledges by failing to embed net-zero actions into operations

Many corporations are failing to implement simple, practical steps needed for them to hit their stated decarbonization goals, according to a survey of more than 300 operations managers across key industrial sectors including construction, energy, and chemicals in the U.S., U.K., and Germany.  

Multifamily Housing | Jan 24, 2023

Top 10 cities for downtown living in 2023

Based on cost of living, apartment options, entertainment, safety, and other desirable urban features, StorageCafe finds the top 10 cities for downtown living in 2023.

Green | Jan 17, 2023

Top 10 U.S. states for green building in 2022

The U.S. Green Building Council (USGBC) released its annual ranking of U.S. states leading the way on green building, with Massachusetts topping the list. The USGBC ranking is based on LEED-certified gross square footage per capita over the past year. 

Sustainability | Jan 9, 2023

Innovative solutions emerge to address New York’s new greenhouse gas law

New York City’s Local Law 97, an ambitious climate plan that includes fines for owners of large buildings that don’t significantly reduce carbon emissions, has spawned innovations to address the law’s provisions.

boombox1 - default
boombox2 -
native1 -

More In Category




Green

LEED v5 released for public comment

The U.S. Green Building Council (USGBC) has opened the first public comment period for the first draft of LEED v5. The new version of the LEED green building rating system will drive deep decarbonization, quality of life improvements, and ecological conservation and restoration, USGBC says. 

halfpage1 -

Most Popular Content

  1. 2021 Giants 400 Report
  2. Top 150 Architecture Firms for 2019
  3. 13 projects that represent the future of affordable housing
  4. Sagrada Familia completion date pushed back due to coronavirus
  5. Top 160 Architecture Firms 2021