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Tuesday, January 8, 2013

Some Considerations of Sustainability ...















... in Brick Masonry Construction

  • Clay and shale, the raw materials for bricks, are plentiful. They are usually obtained from open pits, with the attendant disruption of drainage, vegetation, and wildlife habitat.
  • Because of the energy used in its firing, brick is a relatively energy-extensive product. The energy embodied in an average brick is 14,300 BTU. The usual energy sources for brick kilns are oil, gas, or coal. Air pollution can result from improperly regulated kilns.
  • Clay and shale are found almost everywhere. The majority of bricks come from regional plants, which reduces the energy needed to ship them.
  • Bricks last a very long time and usually an be recycled when a building is demolished.
  • Brick masonry is not associated with indoor air quality problems.
  • The thermal mass effect of brick masonry can be a useful component of fuel-saving natural heating and cooling strategies such as solar heating and nighttime cooling.
  • Mortar is made of minerals that are generally abundant in the earth. Portland cement and lime are energy-intensive products.
  • Relatively small amounts of waste are generated on a construction site during the construction of a brick building, including partial bricks, unsatisfactory bricks, and unused mortar. These wastes generally go into landfills or are buried on the site.
  • When a brick building is demolished, the bricks may be cleaned of mortar and reused. However, the more usual practice is to dump the bricks and mortar in a landfill or to use them as fill on a construction site.
 What is sustainability?

Tuesday, December 4, 2012

Some Considerations of Sustainability...











... in Site Work, Excavations, and Foundations




Site Selection 
  • Buying and renovating an existing building rather than building a new one saves a great deal of building material. If the existing building has been scheduled for demolition, it also avoids dumping an enormous quantity of material into a landfill.
  • Building on a  damaged site, and designing the building so that it helps to restore it, benefits the environment rather than degrading it.
  • Building on agricultural land takes that land out of production forever.
  • Building in forests and on wetlands and prairies destroys wildlife habitat.
  • A building that is well connected to existing networks of public transportation , and to pedestrian and bicycle paths, pays environmental dividends every day for the life of the building by saving fuel, reducing air pollution from automobiles, and minimizing commute times.