Showing posts with label explosives. Show all posts
Showing posts with label explosives. Show all posts

August 22, 2013

By: Stephanie Schultz/Melissa Brunner, August 15, 2013 (News video and story.)
Read more...

VIA Healthy Schools Network NEWSLICE

New chemistry teacher alerts school to explosives in school chem lab inventory. School superintendent is grateful. A local hero! EG


January 14, 2012

The aftermath of a school explosion

January 13, 2012  Science room mishap prompts HAZMAT response at David Douglas High

August 12, 1985 Science Class...
Extremely Loud and Incredibly Close:
The aftermath of a school explosion
NYTIMES Magazine, February 27, 2005. "The Rescue Artist," by Deborah Solomon. Below is an excerpt from an article about Jonathan Safran Foer, Author of Everything is Illuminated and Extremely Loud and Incredibly Close. 
… "Astoundingly, he insists that his development as a writer was shaped less by his parents and by his genetic endowments, less even by the novelists and poets he loves, than by a single event: the Explosion, as he calls it. ...
[His email] began: “Firstly, let me say that these are, quite literally, the first words I’ve ever written about this. Ever.  Literally not a single world.” Foer told me later that he had composed the message at home, at the desk in his cluttered basement workshop, his thin face streaked with tears. The letter recounted, in some detail, the event that split the idyll of his childhood in two: the years before Aug. 12, 1985, and the years after.
That bright Monday morning began innocently enough. Foer, a boy of 8, was attending a summer program at Murch Elementary, a pubic school not far from his home. The first lesson of the day was a chemistry project, and in an act of  nearly unbelievable carelessness, the teacher laid out bowls of combustible materials.  The goal was to make sparklers...

Includes The Washington Post article: $11 Million Awarded for Boy Burned in School Lab

March 12, 2011

“Safety is No Accident: Live Injury-free.

Plan an event to celebrate National Public Health Week April 4-10

The theme for National Public Health Week is “Safety is No Accident: Live Injury-free.”  You can prevent injuries by making chemical safety part of every school's ongoing security audits and safety plan. 

Bring the Lessons of the 1937 Texas School Explosion to Your School.  Just Say "Know" to explosives, flammables and other hazards and toxic chemicals in labs, storerooms and other school areas. 

Help raise awareness of the urgent need for responsible leadership and partnerships to eliminate explosives and other hazards and unhealthy conditions in schools.  Teach Safety, Teach Safely. Give students the skills and values to safeguard their future families and co-workers and "to live safer healthier longer lives.  Go to "What Can I Do?" to find ideas for activities and events.

October 04, 2010

Lessons still needed.

www.wnd.com
We tend to think of infrastructure as bridges and roads. Now in the 21st century we think of fiber optics. Rarely do we think of pipelines, and if we do we conjure up images of caribou keeping warm in winter near the Alaska pipeline. There is another pipeline story. This week the subject of pipeline safety was the focus of a hearing in the Senate Subcommittee on Surface Transportation. In the busyness of the end of summer, few people paid attention to the pipeline accident on Sept. 9 in San Bruno, Calif....

The Pipeline Safety Trust has suggested some basics, and Congress can't seem to get it together to make sure that oversight of this kind of infrastructure takes place....

Read more.
Comment:   The investigation of the 1937 Texas School Explosion concluded that, even though officials ignored warnings and took short cuts they weren’t responsible because they were just "average individuals, ignorant or indifferent to the need for precautionary measures, where they cannot, in their lack of knowledge, visualize a danger or a hazard." (Court of Inquiry, 1937.)   -- Ellie Goldberg

March 07, 2010



Vignette # 1 –Toxic Inhalation Hazard & Corrosive Chlorine Gas – Risk Factor 4
 
The lecture bottle (small gas cylinder) in the left photo was found in a high school corrosive storage cabinet.  The cylinder was unlabeled and none of the current teachers knew what it contained.  The corrosive vapors from a leaking bottle of sulfuric acid had seriously damaged the valve.  The teacher said she had considered cracking the valve and bleeding out a little gas to see if she could determine what it was by the smell but had thought better of it.  Fortunately, a former chemistry teacher was substitute teaching that day in a nearby room. When asked about the cylinder, he said, “Oh yeah, I know what that is.  It’s just chlorine.”

The lecture bottles on the right were from another school.  The red cylinder has the word “Chlorine” hand written on it in grease pencil.  None of the teachers knew these cylinders were stored in a box in a hidden shelf in the chemistry storage room.  In both cases, no one had the faintest idea of how to dispose of them, nor were they aware of the need to get them off their property as soon as possible.

In both cases, once I explained that there was sufficient pure chlorine gas in a full lecture bottle to be immediately life threatening to 100,000 people if distributed evenly, the schools were immediately in agreement that those gas cylinders needed to be removed and properly disposed as fast as possible.

What lessons can we pull from these two stories of unneeded toxic gases?
  • With no specific information on the hazards posed by chemicals, there is little motivation to dispose of them as long as they aren’t interfering in the daily routine.
  • When people gain perspective on the risks their chemicals pose to themselves and the students at their school, they are more willing to dispose of unneeded hazardous compounds.
  • When the photograph of the chlorine cylinder on the left was shown to the manager of our hazardous waste inspection program, our agency immediately determined these old school chemicals were a priority issue for us to tackle.  This led to a shift in funding to allow our program to help offset school cleanouts and the assignment of some of our field inspectors to tackle this problem.
Vignette #2: Toxic & Oxidizing Lead Nitrate – Risk Factor 3

A middle school in Washington State had over 500 containers of lab chemicals, including 13 pounds of lead nitrate, in their science stockroom.  Lead nitrate is a poisonous oxidizer that is often used in dilute solutions and reacted with other chemicals to create colorful precipitates.

I asked the teacher if he used the lead nitrate.  

“Oh yeah, don’t get rid of that stuff, I need it.” 

“How much do you use?,” I asked.  

“Well, let’s see, I use one gram each quarter in the double displacement lab, and another gram a year in the flame test.”  

“OK,” I said, “then that’s about five grams a year, right?”  

“Yeah, that sounds right.”  

“Well then, with 454 grams in a pound, that means it’ll take you 90 years to use up one pound.  And with 13 pounds in stock, you’ve got about a 1,200 year supply on hand.  How long are you planning on teaching?”  

He laughed and agreed that he could probably get rid of some.  By the end of the discussion, he kept the newest container and set aside the other 12 pounds for disposal as hazardous waste.  

And, most importantly, he was then willing to dispose of another 150 pounds of hazardous chemicals that were on his shelves without feeling threatened that I was there to get rid of his needed chemicals.

What lessons can we pull from this typical story of too many bottles in storage?
  • They may need the chemical, but it doesn’t mean they need all they have.
  • A skilled inspector, asking probing questions in a non threatening way, can help a science teacher look at their chemicals in a new way.
  • When people gain perspective on the risks their chemicals pose to themselves and the students at their school, they are more willing to dispose of unneeded hazardous compounds.
  • The lab experiments that use this chemical are typically only taught in high-school-level chemistry classes.
Vignette #3: Corrosive Hydrofluoric Acid – Risk Factor 4

While dissolving minerals in a geology process laboratory, a technician spilled less than half a pint of  hydrofluoric acid (HF) onto his lap, splashing both thighs. The only protective equipment worn were chemical-resistant gloves.
He received chemical burns to nine percent of his body despite washing his legs with water from a hose at 1.5 gallons per minute. His contaminated clothing was not removed during the flushing process. Following flushing, the technician immersed himself in a chlorinated swimming pool for 40 minutes before an ambulance arrived. He became unconscious soon after arriving at a nearby hospital and his condition continued to deteriorate despite their best efforts.  His right leg was amputated seven days after the exposure and he died eight days later.

Investigators said he should have been wearing full length PVC coveralls with sleeves to the wrist, a face shield, rubber boots, safety goggles and mid-arm length PVC gloves while working with HF in a fume hood.  Calcium gluconate gel should have been nearby for immediate application on any exposed skin surface before the acid could penetrate the skin.

From this report  you can see why hydrofluoric acid (HF) is considered dangerous; it’s very toxic and readily passes into the bloodstream through exposed skin, a potent combination of risk factors. The fluorine ion in HF preferentially binds with calcium. Spilled HF acts as an anesthetic as it passes through the skin into the bloodstream where it quickly begins to dissolve bones and cause systemic poisoning. This is why HF is considered the highest risk acid in schools. Other acids may be corrosive but they do not contain this additional secondary effect that increases their risk.

As you may have guessed, no secondary school in the United States has safety gear or spill supplies available that resemble the recommended personal protective equipment described in the anecdote.

Both art classes and science classes can include classroom activities that use HF.  Though most science teachers are willing to eliminate their collection of old HF containers, that’s often  not the case with art teachers.  Why would an art teacher argue to keep their HF paste?  Because it has been used by artists for years in stained glass and other glass-etching techniques.

HF dissolves glass on contact, releasing harmful fumes, as described by Arthur Duthie in 1908 in Decorative Glass Processes. "The fumes escape from full strength acid so profusely as to be quite visible like a yellow smoke, and are not only obnoxious, but dangerous. Even at moderate working strength they will cause bleeding of the throat and nostrils in persons in whom these organs happen to be weak, while they commonly cause severe smarting of the eyes..."

Vignette # 4: Pyrophoric White and Yellow Phosphorus – Risk Factor 4

White phosphorus is pyrophoric, as is yellow phosphorus, which means they spontaneously ignite in contact with air.  Pure phosphorus is highly toxic and should be stored under water.

The Canning Jar on the left has a large amount of white phosphorus which, over time, has reacted make the water acidic and corroded the container’s lid.  This has allowed water evaporate over time and lower the water level to a quarter-inch above the top of the phosphorus sticks.  If the water layer lowered even slightly, the risk of spontaneous combustion are very high.

The teacher said he needed to keep it, because he used it in a lab.  Turned out that all he did was cut off  a piece, take it outside and drop it on the pavement where it released poisonous smoke and burned a hole in the asphalt.  Unlike him, I was unconvinced that this was “good science.”

Why would a middle school science teacher have this much white phosphorus, and why would he try to convince me that he needed to keep it?  

Upon reflection, I think there were three reasons:

  • Teenagers have poor attention spans, so having something spontaneously ignite looks “cool” and may get them to pay attention to what’s going on, if only for a minute or two.
  • The teacher didn’t notice that the water level had dropped and didn’t think about the consequences of the container’s contents spontaneously igniting on top of the wooden shelf in his stockroom filled with chemicals.
  • The teacher had been around for a long time and had become fond of his more esoteric chemicals and didn’t want to see them go.  Like me, he liked the chance to tell some “chemical war stories” and phosphorus is much more lively a focus than baking soda.
Vignette #5: Water Reactive & Peroxidizable Elemental Potassium – Risk Factor 4
   

Potassium metal is highly water-reactive.  Though not commonly found in schools, science teachers use it to demonstrate the properties of the alkali metals.  First a piece of lithium is dropped in water and fizzes.  Then a piece of sodium metal is dropped on the water, where it turns into a molten ball that dances across the surface, fizzing loudly.  When potassium is dropped added, it zings around the surface of the water with purple flames shooting into the air above it.

Potassium is sold as silver-gray sticks of soft metal under kerosene or mineral oil to keep moisture away.  It reacts with the air; first to form white potassium hydroxide crystals.  After time has passed, the reaction continues and forms potentially explosive peroxide crystals.  Peroxidized potassium, seen above in the photo on the right, is characterized by orange, red or purple crystals.

Peroxidized potassium was found in the same middle school stockroom as the white phosphorus shown earlier.  The teacher was unconvinced when I said the container must be disposed, saying “I can use it, I’ll just scrape off the orange stuff.”  I pointed out that the act of scraping could start a chain reaction that would cause the entire chunk to detonate.  He still persisted in saying he needed it.  Finally I said “Look, if you do that, it could blow your hands off.”  As if snapping out of a hypnotic state, he looked up and went “Oh!, Well then. Maybe I can just use the newer jar over here instead.”  After three days of treatment and $6,000 in fees, the stabilized material was disposed as hazardous waste.

March 06, 2010

Schools still are making the same mistakes...

From the Editor, Column, American School Board Journal>>, Glenn Cook, Editor-in-Chief, April, 2008.  

Having grown up on the Texas Gulf Coast, I know a little about disasters, natural and man made. Galveston County, where I was raised, is home to the two worst disasters in Texas history -- the 1900 hurricane and the 1947 explosion that rocked my hometown of Texas City. Yes, it's a somewhat dubious distinction, but a definite conversation starter.  And now, in a photo essay on Page 44, it's time to look back at number three on the list.

The March 18, 1937, explosion of the London School in New London, Texas, is the worst school disaster in U.S. history. More than 300 people were killed in a blast that, by all rights and reason, could have been avoided.  Seventy-one years later, the survivors still bear the emotional and physical scars from that day. And 71 years later, schools still are making the same mistakes in terms of how they keep chemicals safely away from children.

..."Time to Heal>>" is both a slice of history and a cautionary tale for school leaders. Read it and appreciate what the survivors have lived with for more than seven decades, then go and ask questions about your district's chemical safety plans. You'll be glad you did. 

March 04, 2010

You can prevent explosions in your school.

Help make chemical safety part of your school's ongoing security audits and safety plan.

1) Talk with parents, educators and community leaders about making safety part of school culture.  Does everyone feel safe speaking up?  Don't go it alone. Find allies. If school staff or other parents are fearful or unresponsive, keep reaching out to others. Contact your local or state public health department, your local fire/life safety team, homeland security office or emergency preparedness center.  Your persistence could save lives.

2) Bring the Lessons to Your School Make safety part of the curriculum in science education, vocational education, occupational health and safety, community service, comprehensive school health and injury prevention, school security, emergency preparedness, environmental education, civic education, school maintenance, and operations.

3) Promote a sense of shared responsibility and accountability for student, employee and visitor health and safety in all school areas and activities. Does everyone feel "ownership" for a safe school?  

See Leadership Needed. What opportunities for leadership exist in your school?  Use these resources to update your school's values and technical skills for 21st century citizens. 
  • Least-toxic chemistry labs This collection of fully-scripted, least-toxic chemistry labs is ready for use by high school chemistry teachers.  The set includes student and teacher guides and meets the Washington State Educational Learning Requirements

March 02, 2010

Survivor Story: Jimmie Robinson

Jimmie Robinson, a third grader in 1937, had walked over to the school “to see the Mexican hat dancers” at a PTA-sponsored event. She was buried in the rubble, with a half-dollar sized hole in her forehead. Her sister Elsie, three years older and injured herself, refused to leave until Jimmie was out.

“I wouldn’t be here if it weren’t for her,” says Robinson, whose father worked in the oil field. “They took me to the hospital, cleaned the dirt out of the hole in my forehead, and said if I lived 24 hours I might make it.”

In her own words...

As you may know, there was a PTA meeting being held in the school auditorium that afternoon and since the elementary school students had gotten out early, I walked over to the school where my sister's classroom was located in the basement of the school. The bell had just rung to let the children out --  everyone was gathering in their books and then the school exploded.

All children in the next room to us were killed since the wall fell in on them. My sister never lost consciousness but I was completely covered by debris except for my hands. She proceeded to dig me out and stayed with me until someone picked me up and put me into a truck going to the Overton Hospital at which time we were separated.

When she later came to the hospital, she searched for me and found me laying on a sheet in the corner of a hospital room unconscious and with head injuries.

At that time, the hospital staff was taking pulses and removing bodies and she feared they would take me away. She had a nurse that knew our family to put a tag on me so I would not be taken and because she was ambulatory, she wandered all around with her right eyelid cut in two - but because she was not as badly hurt, the staff tried to take care of the more seriously wounded.

My mother made it to the hospital and was just overcome by the carnage that she observed. My father, who worked in the oilfields, found her on the hospital steps and together they located me and the staff loaded me into an ambulance and sped me to Tyler where a neurosurgeon was on the way in to help with the injured. I was taken to Bryant's Clinic in Tyler, where I became the first patient of Dr. DiErrico (from Dallas) who removed the bone from my upper forehead and said "if she lives 24 hours, she will make it".

In the rush to get me treatment, my sister Elsie was left in Overton. By the time they got her to Tyler, they had to put her in the Mother Frances Hospital. She did not believe that I had survived. After her eye was sewn up and I had regained conscious, they brought her to visit me and we both were reassured that we had indeed survived. I had no recollection of anything until I woke up in the hospital.

My family moved in 1938 first to Hobbs, N.M. and then to the Houston Heights, where the family lived for many years. My sister Elsie died in 1998 of leukemia.

We had three cousins who attended New London at the same time. Their names were Mildred, Sybil and Billie Jordan. My parents were Wilson and Corine Jordan. Because my grandfather's name was James and my parents had only daughters, I was named Jimmie (after my grandfather).  Elsie and I never went to the reunions of the survivors but did make a trip in about 1990 to the site of the memorial in New London.

--

In 2005, Jimmie Robinson attended the reunion of survivors and families. She donated the dress she was wearing at the time of the explosion to the London Museum exhibits.

March 01, 2010

The need is severe and immediate...

Bad air inside and outside schools escalate health care costs, increase absenteeism, and reduce test scores.  The new report from the National Healthy Schools Network, “Sick Schools 2009 ‐ America’s Continuing Environmental Health Crisis for Children” provides state by state assessments of the problems and opportunities for advocates.  Read more >>

Doreen Croser, Executive Director of American Association on Intellectual and Developmental Disabilities, a leader in advocating quality of life and rights for people with disabilities, said, “Students with intellectual and developmental disabilities need protection in America’s schools. Special education students are often more vulnerable to lead, pesticides, hazardous cleaning supplies and contaminated indoor air found in too many schools. An unhealthy school environment makes learning more challenging and staying healthy harder.”

Vernice Miller‐Travis, Vice‐Chair, Maryland State Commission on Environmental Justice and Sustainable Communities said, “The fact that the poorest, highest risk children have the schools in the worst condition has been a civil rights issue going back to Brown v. Education of Topeka in 1954. Today, we know even more: that the impacts from toxic school siting to lead in drinking water to mold infestations and to chemical spills are damaging millions of children every year, taking away their health and their chance for a productive future.”

Georges Benjamin, MD, FACP said "Unhealthy conditions in our schools lead to failing grades and failing health." Benjamin is executive director of the American Public Health Association. He added, "Environmental concerns such as asbestos, mold, poor air quality and other hazards affect children's ability to learn and their health, and schools in low‐income communities are often disproportionately affected. We must close this gap and ensure that all of our kids are given an opportunity to learn, grow and play in safe, healthy schools."

Bill Orr, Executive Director, Collaborative for High Performance Schools said, "The time has come to stop mortgaging our children's health in the name of the status quo. A truly high performance school does not just protect the environment, but makes the health and well‐being of schoolchildren and staff the top priority. EPA has shown the scientific evidence and importance of investing in healthy schools, and now Congress must take heed of its counsel."

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