Brick kilns dot the landscape of South Asia cities. Source:Environmental Health Perspectives |
Terracotta tiles or plastic sheets? This was the decision to be
made when considering roof materials for Nrityagram, a dance training center on the
outskirts of Bangalore that was designed and constructed back in the early
1990s. The project marked the beginning of my interest in lifecycle
environmental impacts and in understanding how to best determine the “lesser
evil” among building materials.
It was clear there was something wrong with the general consensus
at the time that “earthy” clay tiles and bricks were natural materials and
therefore “environmentally friendly.” The tiles used up precious top soil in
the surrounding villages and took excessive energy to bake them, emitting
deadly polluting particles into the atmosphere.
We didn’t have the tools then to determine the best choice for
materials. I was fortunate to have had a chance to work under Nigel Howard at
BRE to develop ENVEST, the
first software tool of its kind for estimating the lifecycle environmental
impact of buildings.
Embodied energy is about the way a building is built rather than how it is used. It concerns the “upstream” value of the energy consumed by all of the processes associated with building production, from mining and the processing of natural resources straight through to manufacturing and transport. Embodied energy is the “front-end” component of the lifecycle impact of a building – and it is the part that can never be changed.
Embodied energy is about the way a building is built rather than how it is used. It concerns the “upstream” value of the energy consumed by all of the processes associated with building production, from mining and the processing of natural resources straight through to manufacturing and transport. Embodied energy is the “front-end” component of the lifecycle impact of a building – and it is the part that can never be changed.
The significant impact of building materials manufacturing on the environment
Proportion of materials that get used in buildings vs. other uses. Adapted from Europa.eu
|
Adapted from http://en.prothom-alo.com |
The environmental impact from
manufacturing can be a lot more direct for some building materials. For
example, the brick sector emits large volumes of black carbon and other
suspended particulate matter. According to the Norwegian Institute for Air
Research, brick manufacturing kilns in and around Dhaka city are responsible
for 58% of the capital city's airpollution — much more than cars, power generation and other industries
combined. Brick kilns are a major source of air pollution not just in
Bangladesh but across South Asia and China, together accounting for 75% of the global consumption of
clay bricks. More than one trillion bricks are produced annually in these
countries, resulting in 1.4% of global GHG emissions. To avoid the continued compulsive use of such resource-intensive
building materials, actionable change must occur.
For those who still need convincing, consider the role that iron/steel, cement and industrial electricity play in India’s carbon footprint.
For those who still need convincing, consider the role that iron/steel, cement and industrial electricity play in India’s carbon footprint.
The above profile is broadly based on the data India submitted to the UNFCCC through the NATCOM |
The increasing role of materials in the lifecycle impact of buildings.
Most of the focus in the building industry has been on immediate impacts. For example, how can money be saved by reducing operational energy? The reality is that as energy consumption is driven down, the relative importance of embodied energy increases. For example, while adding roof and wall insulation to an un-insulated building reduces the building’s operational energy, it also increases its embodied energy. The proportion of embodied energy compared to operational energy can jump from 10% to 15%[1]. If more and more insulation is added, the embodied energy of the insulation increases but the “return on energy” in terms of operational savings decreases[2]. As the global trend is towards tighter regulations for operational energy consumption (especially in climate zones with high heating and cooling requirements), we must consider the impact of the choices that we make when selecting building materials.Making Informed choices is much easier than ever before
Screen shot from edgebuildings.com |
Given its high embodied energy, finding realistic ways to reduce
the embodied energy of the roof and floor structure is critical if one is
serious about designing a green building. Generally, these alternatives fall
under four main categories:
- Reduce the quantity of materials used (i.e., steel and concrete) by adding “filler” in slabs and/or reducing column spacing.
- Substitute high-embodied energy materials with lower embodied energy for example, adding Pulverized Fly Ash (PFA) or Ground Granulated Blast Furnace Slag (GGBS) instead of cement to concrete.
- Selecting a more efficient construction technology such as post-tension concrete slab or planks and joists.
- Finding a completely different material such as timber floor construction.
Below
is a list of embodied energy values for floor slab elements which indicates
there are plenty of lower impact options available compared to a typical
in-situ reinforced concrete slab.
Data from EDGE Embodied Energy in Materials Methodology Report |
Options that are practical and realistic depend to a large
degree on the city or country where the project is located and the materials
that are available, as well as the size and scale of the building. In most cases,
paying attention at the early design stage and making sensible design and
specification choices can reduce the embodied energy of a five-story office
building by more than one third.
Create a larger market for low embodied energy products
There are positive signs that mainstream building material
manufacturers are attempting to tackle climate change impact. With companies
such as Lafarge Holcim pledging to cut CO2emissions by 40% per ton of cement by 2030 we are likely to
see more such commitments. The Paris Accord is driving over 200 companies to commit to Science Based Targets, surpassing expectations for corporate climate action.
Given the important role that building materials play in global
resource consumption, air pollution and GHG emissions, it is essential that the
measurement of embodied energy become a crucial part of the decision-making
process for responsible designers and clients. Recognition must also be given
to those that are responsible in their choices. Through greater awareness we will
create a larger market for low-embodied-energy products and put pressure on all
manufacturers to develop alternatives for their respective markets.
6 comments:
Dear Prashant,
Thanks for Very informative data.
Some of the Alternatives:-
Reducing Quantity of material - Its a Time to save on regular Plaster work (Avoid Plaster) and saving huge quantity of River sand as well as Cement.
For Walls using in-situ casting of CLC - can work at both structural and non structural part - Saving on pre-fitted Electric-Water-Services Network.
Going Industrial for Building - Reduce Much more Wastage, Mass repetition with help of Form-work (Tunnel), Ready to Fit Pre-size Door-Window and other Add-on.
Best Regards,
Jignesh Goyani
Many thanks, Jignesh.
hi Prashant.
this is a topic of great interest and so thanks for tagging me. I am deeply interested in working towards quantifying embodied energy of EXISTING BUILDINGS. It is a factor that is largely ignored. While the table presented is helpful- do let me know if it is a possibility to frame a research project on wasteful attitude in society towards existing building stock.
I wonder what would be the embodied energy of Hall of Nations that was demolished last night!
wishes....
poonam
Hi fellas,
Thank you so much for this wonderful article really!
If someone want to read more about that environmentally friendly cities I think this is the right place for you!
Great article!! Thank you for your post. This is excellent information. It is amazing and wonderful to visit your site.
upvc windows suppliers
upvc casement windows dealers hyderabad
upvc doors manufacturers
upvc sliding windows manufacturers in hyderabad
Post a Comment