After nearly two decades of administrative, political, and financial setbacks, major progress is being made now at the New Safe Confinement. Having been previously called "Ukritye" and the "Shelter Implementation Plan" over the years, the secure NSC outer shell being built over the decaying Chernobyl Sarcophagus will allow Reactor 4 to finally be safely dismantled with greatly reduced risk to the environment.
In the clip below, Vince Novak, the EBRD [European Bank for Reconstruction and Development]'s Director of Nuclear Safety discusses the construction progress and the NSC's benefits.
This video (:35) shows a time-lapse version of the first NSC section's raising.
As promised, Part Two of our coverage of the Saturday, September 15th Argonne Energy Showcase open house event. Our video highlights can be seen in the first installment of our Energy Showcase posts. Here's our full Flickr slideshow of over 50 photos with captions. Top: "Now, That's Cold!" Argonne researcher explains the technology behind the ATLAS (Argonne Tandem Linac Accelerator System) facility, the world's first superconducting linear accelerator for heavy ions. The object on the table is a model section of ATLAS' "superconducting split-ring resonator."
Center: "Hot or Not?" This very popular FLIR imaging exhibit in the Nuclear Energy building allowed visitors to see live video of themselves in the room with color-coded temperature gradients. As you can see, some people are literally hotter than others. A similar station set up in the Advanced Photon Source (401) complex let visitors take home a snapshot printout of their FLIR scans.
Bottom: "Clean and Green" One of the several advanced hybrid electric vehicles in the Sustainable Energy Tent. Some of the other new technologies on display were demonstrations of biofuel generation using fermented waste, vehicle charging stations, and an area where visitors could ride the
"Energy Bike" to see how much pedaling they have to do to light up a conventional incandescent light bulb, versus the effort needed to make LED and compact fluorescent devices glow. As we can vouch, it takes a lot less legwork to make those clean and green LED's shine!
Didn't get a chance to visit Argonne National Laboratory's 2012 Energy Showcase in the Chicago suburbs this past September 15th? Don't worry: we're very happy to share our video and photo highlights from this rare opportunity to peek inside the birthplace of modern nuclear science, and see first-hand some of the amazing research being done in America's heartland.
According to an on-site event organizer, this year's open house was the first one held in five years, after tighter security restrictions post-9/11 put National Laboratory open houses on hold. This year's Energy Showcase was also the first to require visitors to pre-register online. While past events had as many as 20,000 visitors each, Energy Showcase 2012 hosted a more modest registered attendance of approximately 2,000* - not necessarily a downside if you were seeking a good, close look at the dozens of fascinating exhibits on hand. [*According to another person I spoke to later, the registration attendance was capped at 10,000, so I may have misheard the original attendance estimate. If any readers out there have more solid attendance stats, please let us know in the comments! - LR]
First, let's stop in at the Physics building to have a look at the Gammasphere, the world's most powerful spectrometer for nuclear structure research. If the Gammasphere looks familiar, you may remember that the device had a 'guest starring role' in the 2003 feature film "Hulk," as the contraption that triggered Bruce Banner's verdant transformation - back then, it was physically located at Lawrence Berkeley National Laboratory. Read more at http://www.phy.anl.gov/gammasphere/index.html
Next, let's take a short drive south to the nearby Advanced Photon Source complex, a facility which provides the brightest x-ray beams in the Western Hemisphere to more than 5,000 scientists from around the United States and the world. Here's a panned view from the APS observation gallery, as a researcher gives a basic explanation of its workings in the final 30 seconds or so of the video. In person, the building and equipment are remarkably large; what you see here on the video is only a tiny fraction of the APS accelerator "ring." More at http://aps.anl.gov/About/APS_Overview/
Here is a live demonstration of a technique called "acoustic levitation" that uses high-frequency (~22kHz) sound waves to suspend small objects like liquid droplets, plastic spheres, and popcorn in mid-air. Bystanders could manipulate and rearrange the plastic beads within the sound column using a metal spoon, creating intriguing patterns. As you can see from the video, the column behaves as though the beads are 'magnetically' attracted along an invisible vertical line running between the upper and lower sound generators. The demonstrators explain that the beads are spaced at wavelength node intervals of about one-third inch, allowing visualization of the standing wave. More at http://www.anl.gov/articles/no-magic-show-real-world-levitation-inspire-better-pharmaceuticals
Down the hall, we stopped by to see an X-ray diffraction demonstration, which provides a simulation of how the APS' powerful X-ray beam can reveal the before-unseen inner structures of nanoparticles, proteins, crystalline structures, organic molecules, and many other materials. More at http://aps.anl.gov/
So, my research into Chernobyl (which includes scouring the Web and government sites, and the University of Chicago and Harold Washington Libraries) has been slightly delayed. However, for the curious, I have a selection of choice hand-picked links that will provide multi-national insights into the incident, and its continuing aftermath.
If you enjoy government reports and "blue books," visit the World Nuclear Association's Chernobyl page, which includes links to UNSCEAR [United Nations Scientific Committee on the Effects of Atomic Radiation, which published several comprehensive reports on the Chernobyl disaster - many which are available here as free PDF downloads.
Watch This: Chernobyl.co.uk, a UK site which features a link to the BBC's recent 30-minute program[streaming RealPlayer video] on Chernobyl, featuring a look at the history of nuclear power in the former Soviet Union as well as a look inside Ukraine's Exclusion Zone towns. Highly recommended: this program illustrates that the deteriorating reactor site is still an issue of pressing concern through Europe, while it has been all but overshadowed here in the U.S.
Watch This: though the bulk of Chernobyl news coverage occurred before the age of streaming video, the post-date digitized BBC retrospective of the Chernobyl disaster [RealPlayer required] is a wistfully immediate - if lo-res - look back at those fateful days in April 1986.
Ukrainian biker gal (and young scientist) Elena is the Kidd [sic] of Speed: her wildly popular site, Ghost Town, features dozens of startling photos and rueful, blustering commentary from her motorcycle tour through the post-apocalyptic Exclusion Zone in Pripyat': part National Geographic expedition, part Jackass-meets-Evel Knievel. Strange thing is, I'd probably do it too, given the opportunity and a lead X-ray apron - but I'd prefer an enclosed vehicle, like a Bradley.
Have Paris, Rome, and the Caribbean lost their appeal? Been there, done that? How about a guided group tour through Chernobyl? I don't know if it's a legitimate enterprise, but you can apparently book a tour through the Exclusion Zone via Ukrainian Web Chyornobyl' Tour. You get complimentary disposable outerwear and shoes, and a souvenir computerized dosimeter printout that certifies how much radiation you absorbed during your visit.
The Jet Propulsion Laboratory's Pioneer Robot pages, with photos and diagrams of the Red Zone Robotics radiation-hardened explorer robot that will be used to excavate and explore the hot ruin inside the Sarcophagus.
From a nation that is also highly dependent on nuclear energy, but has thankfully suffered neither a Chernobyl nor a Three Mile Island type incident - the Canadian Nuclear Association's report on Chernobyl.
Gla55pak.com has compiled some unusual Chernobyl images here, and proclaims "I have a sick curiosity - more of an impulse - to be there that night and watch the thing light up. I would gladly take a good dose just to have seen it. It is, after all, like an immense train wreck that I just can't help but see." Also: link to Disenchanted.com's take on the Chernobyl and TMI incidents, called "Fear's just bad for business".
Dr. Alexander Borovoi is one of the people interviewed (his segment starts at 32:40) in this astounding BBC documentary from 1991, "Inside Chernobyl's Sarcophagus." Borovoi and his colleagues Viktor Popov, Yuri Buzulukov, and other "Stalkers" speak with western journalists for the first time since the accident. The scientists and BBC crew enter the Reactor 4 building taking measurements and video footage of its wreckage, in extreme haste (due to the radiation levels) and incredibly dangerous conditions. Footage had to be shot by actual cameramen working quickly, as the searing radiation and rough ground caused robotic camera rigs to mire or fail within minutes. In one segment we see a clever improvisation: the team jerry-rigged a small videocamera onto a wire remote-controlled child's toy tank. The end of the documentary is an interview with Borovoi and Popov five years later, where we revisit their dire predictions, and the surviving members of the "bio-robot" team.
The line between hero and victim was thin in the first frantic weeks after the accident. Firemen fought the flames but lacked instruments to tell them they faced lethal doses of radiation. Military helicopter pilots hovered in the radioactive smoke plume to smother the burning reactor with tons of sand and lead, but their bombing runs missed the mark.
Yet the catastrophe–and the chance for heroism–did not end when the fire burned out. In the months and years that followed, a band of scientists led by physicist Alexander Borovoi explored the reactor's corpse to make sure it could not reawaken. Working in a hot, dark labyrinth where lingering radiation could kill within minutes, they mapped and analyzed tons of reactor fuel remaining. It was heroism of a quieter and more effective order than had come before. "Borovoi knew what he was doing," says Harvard University nuclear physicist Richard Wilson, "and he had the imagination and common sense" to succeed.
To find the remnants, Borovoi and his men had to venture into the heart of the destroyed reactor. Robots were not up to the job; they got stuck in debris or ran amok, circuits scrambled by radiation. "We had only one kind of robots [that worked]," says Borovoi. "Biorobots–ourselves." They called themselves "stalkers." Coveralls, gloves, and a respirator were their protection–lead suits were too bulky for dashes through the reactor. A fall or wrong turn could be fatal.
Late in 1986, beyond a gantlet of highly radioactive rooms and narrow passages, the stalkers discovered a glassy, black formation resembling a giant elephant's foot. Getting a piece to analyze was not easy. It was so fiercely radioactive that the scientists could spend only seconds near it, and its surface shrugged off a drilling machine and an ax. Finally a marksman took aim with a Kalashnikov rifle. The shards gave the first clues to what had happened to the nuclear fuel and the chance of a future catastrophe.