flexiblefullpage
billboard
interstitial1
catfish1
Currently Reading

GREENBUILD 2011: Methods, impacts, and opportunities in the concrete building life cycle

GREENBUILD 2011: Methods, impacts, and opportunities in the concrete building life cycle


By By BD+C Staff | October 4, 2011
Researchers at the Massachusetts Institute of Technologys (MIT) Concrete Sustainability Hub conducted a life-cycle assessment (

 

The need to decrease energy usage and subsequent emissions from the building sector has been at the forefront of U.S. green movement. Not only has energy reduction been viewed as a step for improving the environment, it has financial benefits for companies and homeowners.

To address this, researchers at the Massachusetts Institute of Technology’s (MIT) Concrete Sustainability Hub conducted a life-cycle assessment (LCA) study to evaluate and improve the environmental impact and study how the “dual use” aspect of concrete – its ability to offer a durable structure while providing thermal mass benefits for energy loads – affects the environmental footprint of the structure.

"Methods, Impacts, and Opportunities in the Concrete Building Life Cycle" provides a comprehensive analysis that advances three key areas relevant to the buildings LCA field: methodology, benchmarking, and impact-reduction opportunities. The study is a major development for construction-related life-cycle assessment because it thoroughly examines all phases of the complete life cycle of a building – from acquisition of materials to construction, the use of the building, and finally demolition and end of life.

“Most environmental assessments do not move beyond the construction phase and only provide a partial picture of the full impact a particular material can have on a building. This is short-sighted,” David Shepherd, director of sustainable development for the Portland Cement Association (PCA) said. “The heating, cooling, and general operations of buildings and homes in the United States accounts for approximately 70 percent of national energy consumption each year and an accurate LCA needs to include the operational phase.”

Concrete, essential for the construction of buildings and homes, has largely been chosen as a building material for its structural properties rather than its energy-saving properties. Although sustainable builders have known the thermal mass attributes of concrete significantly reduce heating and cooling needs, the energy consumption required to produce its key ingredient, cement, has raised questions about its environmental viability.

In its environmental assessment, MIT researchers found concrete homes produce lower greenhouse gas emissions than current best practice code – compliant wood-frame residences throughout a 60-year service life.

Concrete homes did have a higher embodied global warming potential (GWP) associated with the pre-use phase of LCA when raw materials are harvested and turned into construction materials, transported to the site, and assembled into the finished home. However, this phase accounts for only about 2 to 12%of the overall global warming potential for the life of the home. For the 60-year period of the study, houses constructed with insulated concrete forms have 5 to 8 percent lower GWP than current code compliant light frame wood houses, based on greater thermal mass and higher R-values. Researchers found similar results when evaluating multifamily residences.

Commercial office buildings built with a concrete structural frame produce slightly less greenhouse gas emissions over a 60-year service life than commercial structures built with steel frames, based on the results of the comprehensive MIT assessment.

MIT researchers then evaluated strategies to lower a concrete building’s carbon footprint and overall environmental impact. A major advancement was the incorporation of a cost-impact analysis to determine whether or not a given environmental reduction strategy made economic sense. Among the strategies evaluated, the two that reduced embodied emissions – increased fly ash and reducing the thickness of concrete walls from a 6-inch to a 4-inch concrete core – were found to be both economical and effective ways to reduce emissions. BD+C

Related Stories

Engineers | Jan 12, 2022

Private equity: An increasingly attractive alternative for AEC firm sellers

Private equity firms active in the AEC sector work quietly in the background to partner with management, hold for longer periods, and build a win-win for investors and the firm. At a minimum, AEC firms contemplating ownership transition should consider private equity as a viable option. Here is why.

Sponsored | BD+C University Course | Jan 12, 2022

Total steel project performance

This instructor-led video course discusses actual project scenarios where collaborative steel joist and deck design have reduced total-project costs. In an era when incomplete structural drawings are a growing concern for our industry, the course reveals hidden costs and risks that can be avoided.

University Buildings | Jan 11, 2022

Designing for health sciences education: supporting student well-being

While student and faculty health and well-being should be a top priority in all spaces within educational facilities, this article will highlight some key considerations.

Green | Jan 10, 2022

The future of regenerative building is performance-based

Why measuring performance results is so critical, but also easier said than done.

Senior Living Design | Jan 5, 2022

Top Senior Living Facility Design and Construction Firms

Perkins Eastman, Kimley-Horn, WSP USA, Whiting-Turner Contracting Co., and Ryan Companies US top BD+C's rankings of the nation's largest senior living sector architecture, engineering, and construction firms, as reported in the 2021 Giants 400 Report.

Giants 400 | Jan 3, 2022

2021 Government Sector Giants: Top architecture, engineering, and construction firms in the U.S. government buildings sector

Stantec, Jacobs, Turner Construction, and Hensel Phelps top BD+C's rankings of the nation's largest government sector architecture, engineering, and construction firms, as reported in the 2021 Giants 400 Report.

Architects | Dec 20, 2021

Digital nomads are influencing design

As our spaces continue to adapt to our future needs, we’ll likely see more collaborative, communal zones where people can relax, shop, and work.

Architects | Dec 17, 2021

What I wish I had learned in architecture school

Bradford Perkins, FAIA, offers a 3-point plan for upgrading architecture education.

Urban Planning | Dec 15, 2021

EV is the bridge to transit’s AV revolution—and now is the time to start building it

Thinking holistically about a technology-enabled customer experience will make transit a mode of choice for more people.

Sports and Recreational Facilities | Dec 15, 2021

Trends in sports stadium construction, with Turner Construction's Dewey Newton

Turner Construction's Dewey Newton discusses trends in sports stadium renovation and construction with BD+C's John Caulfield. Newton is a Senior Vice President who heads up Turner Construction’s Sports Group.

boombox1
boombox2
native1

More In Category




Great Solutions

41 Great Solutions for architects, engineers, and contractors

AI ChatBots, ambient computing, floating MRIs, low-carbon cement, sunshine on demand, next-generation top-down construction. These and 35 other innovations make up our 2024 Great Solutions Report, which highlights fresh ideas and innovations from leading architecture, engineering, and construction firms.

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