Monday, January 5, 2009

Top 10 picks: The greatest architecture of the past 1,000 years


What are the most significant, most beautiful, or most interesting buildings of the past 1,000 years? Some art historians choose the Taj Mahal, while others prefer the soaring skyscrapers of the 20th century. There is no single correct answer. Perhaps the most innovative buildings are not grand monuments, but obscure homes and temples. In this quick list, we'll take a whirlwind tour through time, visiting some of the most popular buildings ... and a few forgotten treasures.

1. 1137 : St. Denis Church in Saint-Denis

During the middle ages, builders were discovering that stone could carry far greater weight than ever imagined. Cathedrals could soar to dazzling heights, yet create the illusion of lace-like delicacy. The Church of St. Denis, commissioned by Abbot Suger of St. Denis, was one of the first large buildings to use this new vertical style known as Gothic. The church became a model for most of the late12th century French cathedrals, including Chartres.
More: St. Denis Church

2. 1205 - 1260 : Chartres Cathedral Reconstruction

In 1194, the original Romanesque Chartres Cathedral in Chartes, France was destroyed by fire. Reconstructed in the years 1205 to 1260, the new Chartres Cathdral was built in the new Gothic style. Innovations in the cathedral's construction set the standard for thirteenth century architecture.

3. 1406 - 1420 : The Forbidden City , Beijing

Occupying a rectangular area of more than 720,000 square meters, the Forbidden City was the imperial home of 24 emperors of the Ming (1368-1644) and Qing (1644-1911) dynasties. The Forbidden City is one of the largest and best-preserved palace complexes in the world. There are over a million rare and valuable objects in the Museum.

4. 1546 and Later : The Louvre, Paris

In the late 1500s, Pierre Lescot designed a new wing for the Louvre... and popularized ideas of pure classical architecture in France. Lescot's design laid the foundation for the development of the Louvre over the next 300 years. In 1985, architect Ieoh Ming Pei stirred great controversy when he designed the stark glass pyramid entrance to the palace-turned-museum.

5. 1549 and Later: Palladio's Basilica, Italy

During the late 1500s, Italian Renaissance architect Andrea Palladio brought new appreciation for the classical ideas of ancient Rome when he transformed the town hall in Vicenza, Italy into the Basilica (Palace of Justice). Palladio gave the remodeled building two styles of classical columns: Doric on the lower portion and Ionic on the upper portion. Palladio's later designs continued to reflect the humanist values of the Renaissance period.

6. 1630 to 1648 : Taj Mahal, India

According to legend, the Mughal emperor Shah Jahan wanted to build the most beautiful mausoleum on earth to express his love for his favorite wife. Or, perhaps he was simply asserting his political power. The Taj Mahal may have been designed by Ustad Ahmad Lahori, an Indian architect of Persian descent. Persian, Central Asian, and Islamic elements combine in the great white marble tomb. The Taj Mahal is just one of many architectural wonders in a land of majestic tombs and erotic temples.

7. 1768 to 1782 : Monticello, Virginia, USA

When the American statesman, Thomas Jefferson, designed his Virginia home, he combined the European traditions of Palladio with American domesticity. Jefferson's plan for Monticello resembles Palladio's Villa Rotunda ... With a few innovations. Jefferson gave Monticello long horizontal wings, underground service rooms, and "modern" conveniences.

8. 1889 : The Eiffel Tower, Paris

The Industrial Revolution in Europe brought about a new trend: the use of metallurgy in construction. Because of this, the engineer's role became increasingly important, in some cases melding with or rivaling that of the architect. The Eiffel Tower is the tallest building in Paris, and reigned for 40 years as the tallest in the world.

9. 1890 : The Wainwright Building, St. Louis, Missouri

Louis Sullivan and Dankmar Adler redefined American architecture with the Wainwright Building in St. Louis, Missouri. Their design emphasized the underlying structure. Except for the large, deep windows, the first two stories are unornamented. Uninterrupted piers extend through the next seven stories. Intertwined ornaments and small round windows form the upper story. "Form follows function," Sullivan told the world.

10. Great Buildings of the 20th Century

During the twentieth century, exciting new innovations in the world of architecture brought soaring skyscrapers and fresh new approaches to home design. Keep on reading for Top Picks of the modern age.

Saturday, January 3, 2009

The cement that eats carbon dioxide


Cement, a vast source of planet-warming carbon dioxide, could be transformed into a means of stripping the greenhouse gas from the atmosphere, thanks to an innovation from British engineers.

The new environmentally friendly formulation means the cement industry could change from being a "significant emitter to a significant absorber of CO2," says Nikolaos Vlasopoulos, chief scientist at London-based Novacem, whose invention has garnered support and funding from industry and environmentalists.

The new cement, which uses a different raw material, certainly has a vast potential market. Making the 2bn tonnes of cement used globally every year pumps out 5% of the world's CO2 emissions - more than the entire aviation industry. And the long-term trends are upwards: a recent report by the French bank Credit Agricole estimated that, by 2020, demand for cement will increase by 50% compared to today.

Making traditional cement results in greenhouse gas emissions from two sources: it requires intense heat, and so a lot of energy to heat up the ovens that cook the raw material, such as limestone. That then releases further CO2 as it burns. But, until now, noone has found a large-scale way to tackle this fundamental problem.

Novacem's cement, based on magnesium silicates, not only requires much less heating, it also absorbs large amounts of CO2 as it hardens, making it carbon negative. Set up by Vlasopoulos and his colleagues at Imperial College London, Novacem has already attracted the attention of major construction companies such as Rio Tinto Minerals, WSP Group and Laing O'Rourke, and investors including the Carbon Trust.

The company has just started a £1.5m project funded by the government-backed Technology Strategy Board to build a pilot plant. If all goes well, Vlasopoulos expects to have Novacem products on the market within five years.

Jonathan Essex, a civil engineer at the building consultancy Bioregional who also sits on the environment and sustainability panel for the Institution of Civil Engineers, welcomed Novacem's ideas to tackle the carbon impact of cement. "In the UK the climate bill commits us to reduce CO2 emissions, and every sector should play its part. The construction industry needs to take greater responsibility for its own environmental impact." Essex said that, if Novacem can make their cement at a competitive price, the next step could be to take even more CO2 emissions out of the process by using renewable energy to fire the furnaces.

According to Novacem, its product can absorb, over its lifecycle, around 0.6 tonnes of CO2 per tonne of cement. This compares to carbon emissions of about 0.4 tonnes per of standard cement. "From that point of view, it's attractive," said Rachael Nutter, head of business incubators at the Carbon Trust. "The real challenge is what is the supply chain, who do you need to partner with to take it to market? The million-dollar question is what are the applications of it? If it ends up as decorative applications such as floor tiles, it's quite interesting but not as much as if you get into load-bearing structural stuff."

Previous attempts to make cement greener have included adding more aggregate to a concrete mixture, thereby using less cement. But this still does not tackle the problem of the carbon emissions from making the cement in the first place. Other systems use polymers in the mix, but none have yet made a significant impact on the market.

A spokesperson for the British Cement Association expressed a sceptical note, saying that though there was much ongoing laboratory work on new types of cement, there were also problems. "The reality is that the geological availability, and global distribution, of suitable natural resources, coupled with the extensive validation needed to confirm fitness-for-purpose, make it highly unlikely that these cements will a be realistic alternative for volume building."

Vlasopoulos responded that magnesium silicates are abundant worldwide, with 10,000 billion tonnes available, according to some estimates. "In addition, the production process of our cement is of a chemical nature, which means it can also utilise various industrial byproducts containing magnesium in its composition." He is confident the material will be strong enough for use in buildings but acknowledged that getting licenses to use it will take several years of testing.

Explainer: Ecofriendly vs traditional cement

Standard cement, also known as Portland cement, is made by heating limestone or clay to around 1,500C. The processing of the ingredients releases 0.8 tonnes of CO2 per tonne of cement. When it is eventually mixed with water for use in a building, each tonne of cement can absorb up to 0.4 tonnes of CO2, but that still leaves an overall carbon footprint per tonne of 0.4 tonnes.

Novacem's cement, which has a patent pending on it, uses magnesium silicates which emit no CO2 when heated. Its production process also runs at much lower temperatures - around 650C. This leads to total CO2 emissions of up to 0.5 tonnes of CO2 per tonne of cement produced. But the Novacem cement formula absorb far more CO2 as it hardens - about 1.1 tonnes. So the overall carbon footprint is negative - ie the cement removes 0.6 tonnes of CO2 per tonne used.

(via The Guardian.)


Friday, January 2, 2009

3 of the most weird micronations in the world

Have you ever wanted to rule your very own country? A micronation is an area of land claimed by one or more persons to be independent from any major recognized nation in the world. Some of these have incredible histories of war, triumph and independence and still survive today, while others have long since been abandoned, annexed or destroyed.

Above: A brief history of Sealand and information on its sale

Sealand was established in the 1960s an Englishman and his family took possession of an abandoned anti-aircraft platform off the coast of Britain and declared it to be the Principality of Sealand. In the1970s a coup attempt was made and the island was taken over by one citizen of Sealand with outside assistance. Sealand was retaken with armed forces and its overthrowers were held for a time as prisoners of war until negotiations with foreign nations secured their release. More recently, Sealand caught fire though no one was seriously injured. Sealand has since been of international news interest in relationship to its controversial status as a data haven.

Above: a brief and humorous interview with the president of Molossia

Molossia was founded in the 1970s on a small stretch of land in rural Nevada. The population of four claims to be an independent nation-state though it is completely encompassed by the United States of America. In theory, the country has a constitution. In practice, there has been “political unrest” which has given rise to a state of martial law in which the president (Kevin Baugh) has full authority. In Molossia, incandescent light bulbs, cat fish and tobacco have all been outlawed. Molossia was even host to the first ever intromicronational olympics

Above: the Empire of Atlanteum and other Australian micronations


Other micronations have not fared so well. The Republic of Rose Island, for instance, was a short-lived pursuit that was demolished by the Italian navy for not paying taxes. Another would-be micronation founder, Leicester Hemingway (brother of author Ernest Hemmingway) attempted to found his own such settlement known as New Atlantis only to be pillaged by Mexican fishermen. The island Republic of Minerva also did not last long, being quickly invaded and annexed by the neighboring Tonga. The bizarre Empire of Atlanteum, located in Sydney, Australia and founded with some interesting and bizarre ideals, still survives, though its international political and legal status is questionable. For more on the weird micronations of the world and how to visit them, you can check out the Lonely Planet awesome travel guide to the world’s micronations.


(via WebUrbanist)

Wednesday, December 31, 2008

Desiderata




photo © narkau hom for openphoto.net CC:Attribution-ShareAlike

Desiderata

Go placidly amid the noise and haste, and remember what peace there may be in silence.

As far as possible, without surrender, be on good terms with all persons. Speak your truth quietly and clearly; and listen to others, even to the dull and the ignorant, they too have their story. Avoid loud and aggressive persons, they are vexations to the spirit.

If you compare yourself with others, you may become vain and bitter; for always there will be greater and lesser persons than yourself. Enjoy your achievements as well as your plans. Keep interested in your own career, however humble; it is a real possession in the changing fortunes of time.

Exercise caution in your business affairs, for the world is full of trickery. But let this not blind you to what virtue there is; many persons strive for high ideals, and everywhere life is full of heroism. Be yourself. Especially, do not feign affection. Neither be cynical about love, for in the face of all aridity and disenchantment it is perennial as the grass.

Take kindly to the counsel of the years, gracefully surrendering the things of youth. Nurture strength of spirit to shield you in sudden misfortune. But do not distress yourself with imaginings. Many fears are born of fatigue and loneliness.

Beyond a wholesome discipline, be gentle with yourself. You are a child of the universe, no less than the trees and the stars; you have a right to be here. And whether or not it is clear to you, no doubt the universe is unfolding as it should.

Therefore be at peace with God, whatever you conceive Him to be, and whatever your labors and aspirations, in the noisy confusion of life, keep peace in your soul.

With all its sham, drudgery and broken dreams, it is still a beautiful world.

Be cheerful. Strive to be happy.

~Max Ehrmann c.1920

A Happy New Year from all of us at Snowcem Paints.

Tuesday, December 30, 2008

Origami architecture


Origamic Architecture "House" - The funniest videos are a click away



Origami Architecture 90-degree open type. Pop up card made by just one sheet of paper.
We at Snowcem Paints think it is simply amazing!

Monday, December 29, 2008

The world's first energy-generating revolving door


Harvesting the kinetic energy generated by crowds of people is one of our favorite approaches to renewable energy. Recently Netherlands-based Natuurcafé La Port installed an energy generator in a rotating door, so every time someone walks in for a cup of coffee, they give just a little bit of their energy back to the coffee shop. We keep saying that solving the problem of global warming will require that we open up new doors in the field of renewable energy, but we must admit that we never expected to mean it literally.


The door was part of the refurbishment of the Driebergen-Zeist railway station designed out by architecture firm RAU and built by Boon Edam. The door is expected to generate around 4600 kwh of energy each year, which may not sound like much - but every little bit helps. To enhance the design, the team decided to include a transparent ceiling to show how the system works, and LEDs display the amount of energy that it is generated each time someone walks in the door.


(via Inhabitat)

Wednesday, December 24, 2008

Anti-smog architecture in Paris




Architect Vincent Callebaut’s latest project balances public galleries, meeting rooms and gathering spaces over canals and abandoned railroad tracks in the 19th Parisian district. The prototype uses green technologies and techniques but is more than just an example of sustainable design. Callebaut’s ‘Anti Smog: An Innovation Centre in Sustainable Development’ is a catalyst for cleaner air.

The project centers on the “Solar Drop”, an elliptical structure perched over the unused railroad tracks. The exterior is fitted with 250 square meters of solar photovoltaic panels and coated in titanium dioxide (TiO2). The PV system produces on-site electrical energy while the TiO2 coating works with ultraviolet radiation to interact with particulates in the air, break down organics and reduce air born pollutants and contaminants.

Callebaut describes the process as an intention to “absorb and recycle by photo-catalytic effect the cloud of harmful gases (Smog) from the intense traffic near Paris.” Under the smog eating exterior, the building houses public spaces with a central courtyard and natural lagoon, a place Callebaut envisions for teaching opportunities about urban ecology and renewable energy. The Solar Drop also harvests rainwater from green space on the roof for use inside the building.

The “Wind Tower”, the second component to Anti Smog, spirals into the air with a helical shape and a façade that alternates between vegetation and embedded Vertical Axis Wind Turbines (VAWT) to capture the prevailing urban winds. Ramps lead visitors through museum space and out to a rooftop garden with views across Paris.

Anti Smog offers an innovative urban space that is engaging, powered by renewable energy and has a positive impact on the surrounding urban environment. In the words of the designer it is ‘”a self-sufficient dépolluante“. Oui indeed.

via Inhabitat