sabato 9 maggio 2020

Toxic link: the WHO and the IAEA

Toxic link: the WHO and the IAEA 

A 50-year-old agreement with the IAEA has effectively gagged the WHO from telling the truth about the health risks of radiation



Fifty years ago, on 28 May 1959, the World Health Organisation's assembly voted into force an obscure but important agreement with the International Atomic Energy Agency – the United Nations "Atoms for Peace" organisation, founded just two years before in 1957. The effect of this agreement has been to give the IAEA an effective veto on any actions by the WHO that relate in any way to nuclear power – and so prevent the WHO from playing its proper role in investigating and warning of the dangers of nuclear radiation on human health.
The WHO's objective is to promote "the attainment by all peoples of the highest possible level of health", while the IAEA's mission is to "accelerate and enlarge the contribution of atomic energy to peace, health and prosperity throughout the world". Although best known for its work to restrict nuclear proliferation, the IAEA's main role has been to promote the interests of the nuclear power industry worldwide, and it has used the agreement to suppress the growing body of scientific information on the real health risks of nuclear radiation.
Under the agreement, whenever either organisation wants to do anything in which the other may have an interest, it "shall consult the other with a view to adjusting the matter by mutual agreement". The two agencies must "keep each other fully informed concerning all projected activities and all programs of work which may be of interest to both parties". And in the realm of statistics – a key area in the epidemiology of nuclear risk – the two undertake "to consult with each other on the most efficient use of information, resources, and technical personnel in the field of statistics and in regard to all statistical projects dealing with matters of common interest".

The language appears to be evenhanded, but the effect has been one-sided. For example, investigations into the health impacts of the Chernobyl nuclear accident in Ukraine on 26 April 1986 have been effectively taken over by IAEA and dissenting information has been suppressed. The health effects of the accident were the subject of two major conferences, in Geneva in 1995, and in Kiev in 2001. But the full proceedings of those conferences remain unpublished – despite claims to the contrary by a senior WHO spokesman reported in Le Monde Diplomatique.

Meanwhile, the 2005 report of the IAEA-dominated Chernobyl Forum, which estimates a total death toll from the accident of only several thousand, is widely regarded as a whitewash as it ignores a host of peer-reviewed epidemiological studies indicating far higher mortality and widespread genomic damage. Many of these studies were presented at the Geneva and Kiev conferences but they, and the ensuing learned discussions, have yet to see the light of day thanks to the non-publication of the proceedings.

The British radiation biologist Keith Baverstock is another casualty of the agreement, and of the mindset it has created in the WHO. He served as a radiation scientist and regional adviser at the WHO's European Office from 1991 to 2003, when he was sacked after expressing concern to his senior managers that new epidemiological evidence from nuclear test veterans and from soldiers exposed to depleted uranium indicated that current risk models for nuclear radiation were understating the real hazards.

Now a professor at the University of Kuopio, Finland, Baverstock finally published his paper in the peer-reviewed journal Medicine, Conflict and Survival in April 2005. He concluded by calling for "reform from within the profession" and stressing "the political imperative for freely independent scientific institutions" – a clear reference to the non-independence of his former employer, the WHO, which had so long ignored his concerns.

Since the 21st anniversary of the Chernobyl disaster in April 2007, a daily "Hippocratic vigil" has taken place at the WHO's offices in Geneva, organised by Independent WHO to persuade the WHO to abandon its the WHO-IAEA Agreement. The protest has continued through the WHO's 62nd World Health Assembly, which ended yesterday, and will endure through the executive board meeting that begins today. The group has struggled to win support from WHO's member states. But the scientific case against the agreement is building up, most recently when the European Committee on Radiation Risk (ECRR) called for its abandonment at its conference earlier this month in Lesvos, Greece.
At the conference, research was presented indicating that as many as a million children across Europe and Asia may have died in the womb as a result of radiation from Chernobyl, as well as hundreds of thousands of others exposed to radiation fallout, backing up earlier findings published by the ECRR in Chernobyl 20 Years On: Health Effects of the Chernobyl Accident. Delegates heard that the standard risk models for radiation risk published by the International Committee on Radiological Protection (ICRP), and accepted by WHO, underestimate the health impacts of low levels of internal radiation by between 100 and 1,000 times – consistent with the ECRR's own 2003 model of radiological risk (The Health Effects of Ionising Radiation Exposure at Low Doses and Low Dose Rates for Radiation Protection Purposes: Regulators' Edition). According to Chris Busby, the ECRR's scientific secretary and visiting professor at the University of Ulster's school of biomedical sciences:
"The subordination of the WHO to IAEA is a key part of the systematic falsification of nuclear risk which has been under way ever since Hiroshima, the agreement creates an unacceptable conflict of interest in which the UN organisation concerned with promoting our health has been made subservient to those whose main interest is the expansion of nuclear power. Dissolving the WHO-IAEA agreement is a necessary first step to restoring the WHO's independence to research the true health impacts of ionising radiation and publish its findings."
Some birthdays deserve celebration – but not this one. After five decades, it is time the WHO regained the freedom to impart independent, objective advice on the health risks of radiation.

venerdì 15 novembre 2019

Rapport sur l'Uranium Appauvri - Irak 2003 -2004

 "En avril 2003, au cours d'une réunion de constitution du réseau international de consultants d'IBM Conseil à Genève, un avocat américain qui était entrain d'ouvrir un bureau pour la Reconstruction de l'Irak dans cette ville, me proposait de réaliser une évaluation des risques environnementaux et de santé humaine, conséquences de la mise en œuvre des armements à base d'uranium appauvri."

Jean-François FECHINO
Consultant en pollutions diffuses
par uranium appauvri
Expert auprès de l'Organisation des Nations Unies

Voir:
https://view.publitas.com/p222-14223/jf-bilan-de-mission-irak-2003-2004/

domenica 2 dicembre 2018

1978: secret factsheet on uranium not for the public

DEPLOYMENT OF STABALLOY MUNITIONS FOR A-10
Date: 1978 August 30, 00:00 (Wednesday)
Canonical ID: 1978STATE221419_d
Original Classification: SECRET
Character Count: 19092
Executive Order: GS
Locator: TEXT ON MICROFILM,TEXT ONLINE
TAGS: MILI - Military and Defense Affairs--General | MPOL - Military and Defense Affairs--Military Policy and Planning | NATO - North Atlantic Treaty Organization
Concepts: BRIEFING MATERIALS | METALLOIDS | NUCLEAR FUELS | STABALLOY | URANIUM
Type: TE - Telegram (cable)
Office Origin: ORIGIN EUR - Bureau of European and Eurasian Affairs
Archive Status: Electronic Telegrams

From: Department of State
To:Germany Bonn | Italy Rome | Russia Moscow | United Kingdom London
 
https://wikileaks.org/plusd/cables/1978STATE221419_d.html

SUMMARY: FACT SHEET, POTENTIAL Q'S AND A'S AND PROPOSED NEWS RELEASE BELOW ARE FOR EMBASSY INFORMATION AND USE IN DISCUSSING STABALLOY DEPLOYMENTS WITH HOST GOVERNMENTS AND SHOULD NOT REPEAT NOT BE COMMUNICATED TO PRESS OR PUBLIC. DEPARTMENT AND OSD ARE CURRENTLY DRAFTING PUBLIC AFFAIRS GUIDANCE WHICH WILL BE FURTHER REFINED AS A RESULT OF EMBASSY DISCUSSIONS WITH HOST GOVERNMENTS (SEE SEPTEL).

I. FACT SHEET

BEGIN TEXT.

STABALLOY IS THE NAME GIVEN TO METAL ALLOYS MADE PRIMARILY OF DEPLETED URANIUM COMBINED WITH OTHER METALS TO GIVE THE DESIRED CHARACTERISTICS. DEPLETED URANIUM (DU) IS THAT PORTION OF THE METAL URANIUM WHICH REMAINS AFTER THE VALUABLE U-235 ISOTOPE HAS BEEN EXTRACTED TO MAKE NUCLEAR FUEL RODS OR PRODUCTS FOR NUCLEAR WEAPONS. DU, WHICH CONSISTS ALMOST ENTIRELY OF THE MORE COMMON URANIUM ISOTOPE KNOWN AS U-238, CANNOT SUSTAIN A NUCLEAR CHAIN REACTION. SINCE THE UNITED STATES BEGAN PROCESSING NATURAL URANIUM DURING WORLD WAR II, OVER 200,000 TONS OF DEPLETED URANIUM HAS ACCUMULATED IN VARIOUS STORAGE SITES. THE DEPARTMENT OF DEFENSE FIRST BECAME INTERESTED IN DEPLETED URANIUM IN 1964 WHEN RESEARCH WAS BEING CONDUCTED ON ARMOR AND ARMOR PENETRATORS. ALLOYS CONTAINING DU WERE FOUND TO BE THE MOST EFFECTIVE FOR PIERCING ARMOR. STEEL, NICKEL AND LEAD ALL HAVE DENSITIES TOO LOW TO BE EFFECTIVE PENETRATORS. TUNGSTEN COMES THE CLOSEST, BUT IS STILL NOT AS GOOD A PENETRATOR AS STABALLOY. IN ADDITION, THERE ARE NO NATIVE SOURCES OF TUNGSTEN IN THE UNITED STATES, AND RAW MATERIAL AND FABRICATION COSTS ARE HIGHER. BECAUSE OF ITS HIGH DENSITY, DU IS USED IN MACHINE TOOL BORING BARS, OIL WELL COLLARS AND IN SUCH DELICATE INSTRUMENTS AS GYROSCOPES (ROTOR ASSEMBLIES). THE METAL IS ALSO USED AS COUNTERWEIGHTS IN AIRCRAFT. (FOR INSTANCE, SOME 747 CIVILIAN AIRLINERS USE DU IN WING COUNTERWEIGHTS.) IT HAS EVEN FOUND APPLICATION IN THE COLORING AGENTS USED IN CERAMICS. ONE OF THE MOST IMPORTANT USES OF DU IS AS A SHIELDING MATERIAL IN CONTAINERS IN WHICH HIGHLY RADIOACTIVE MATERIALS LIKE COBALT 60 ARE STORED AND USED. THE STABALLOY MUNITION FOR USE IN THE A-10 AIRCRAFT CONSTITUTES NO SIGNIFICANT RADIOLOGICAL HAZARD. THE U.S. AIR FORCE SURGEON GENERAL HAS DETERMINED THAT THE SURFACE EXPOSURE RATE OF A STABALLOY ROUND IS ONLY 0.2 MILLIROENTGEN PER HOUR, MEASURED THROUGH 7 MILLIGRAMS PER CENTIMETER SQUARE. THE US OCCUPATIONAL SAFETY AND HEALTH ADMINISTRATION HAS ESTABLISHED AN ACCEPTABLE DOSE RATE OF 18.75 REMS PER 3 MONTHS FOR HANDS AND 1.25 REMS PER 3 MONTHS FOR THE HEAD AND TRUNK. BASED ON THESE FIGURES, A PERSON HOLDING A ROUND IN HIS HAND 24 HOURS A DAY FOR 3 MONTHS WOULD RECEIVE ONLY 2.3 PERCENT OF THE ALLOWABLE EXPOSURE. BECAUSE OF THE SHORT EFFECTIVE RANGE OF THE RADIATION, INCREASING THE NUMBER OF ROUNDS TO WHICH A PERSON IS EXPOSED WILL NOT SIGNIFICANTLY INCREASE THE DOSAGE UNLESS HE WERE EXTREMELY CLOSE TO ALL OF THEM. BECAUSE OF THIS LOW EXPOSURE, NEITHER PROTECTIVE GARMENTS NOR SHIELDING IS REQUIRED DURING HANDLING OF THE MUNITIONS. DUE TO THEIR COST, THE STABALLOY ROUNDS WILL NOT BE USED FOR TRAINING OR TARGET PRACTICE. THEY ARE INTENDED FOR USE ONLY IN ACTUAL COMBAT. THE U.S. NAVY PLANS TO USE A 20MM STABALLOY ROUND IN ITS PHALANX GUN SYSTEM, AND THE U.S. ARMY IS CONSIDERING STABALLOY FOR POSSIBLE USE IN ITS 105MM TANK ROUND.
END TEXT.

II. POTENTIAL QUESTIONS AND ANSWERS

BEGIN TEXT

1. Q: HOW MUCH DEPLETED URANIUM IS IN STABALLOY?
A: STABALLOY IS 99.25 PERCENT DEPLETED URANIUM, 0.75 TITANIUM.

2. Q: WHAT IS DEPLETED URANIUM?
A: DEPLETED URANIUM (DU) IS A BYPRODUCT OF THE ENRICHMENT PROCESS THROUGH WHICH MATERIAL USED FOR REACTOR FUEL AND NUCLEAR WEAPONS IS REMOVED FROM URANIUM. DU IS A HEAVY METAL USED AS COUNTERWEIGHTS IN SOME MILITARY AND COMMERCIAL AIRCRAFT. IT IS ALSO USED AS A SHIELDING MATERIAL IN CONTAINERS IN WHICH RADIOACTIVE MATERIALS SUCH AS COBALT ARE STORED AND USED. IT PROTECTS PEOPLE CARRYING SUCH CONTAINERS BY SCREENING THEM FROM THE RADIATION THAT WOULD EMANATE FROM THE RADIOACTIVE MATERIAL WITHIN THE CONTAINER.

3. Q: IS STABALLOY RADIOACTIVE?
A: STABALLOY CONTAINS URANIUM AND URANIUM IN ALL FORMS IS RADIOACTIVE -- AS AN ORE IN ITS NATURAL STATE, AS A REFINED METAL, AS A MACHINED ARMOR PENETRATOR, AS FRAGMENTS REMAINING AFTER IMPACT, OR AS AN OXIDE PRODUCED ON BURNING. THE DU COMPONENT OF STABALLOY IS PRODUCED AS A BYPRODUCT OF THE GASEOUS DIFFUSION PROCESS THROUGH WHICH URANIUM METAL CONTAINING A HIGHER CONTENT OF THE U-235 ISOTOPE (ENRICHED URANIUM) IS PRODUCED FROM NATURAL URANIUM. (NATURAL URANIUM METAL CONTAINS THREE ISOTOPES -- U-234, U-235 AND U-238 -- BUT HAS ONLY 0.7 PERCENT OF U-235 AND .005 PERCENT OF U-234.) THUS, DU IS THE RESIDUE OF THIS PROCESS, WHEREBY ONLY A PORTION OF THE ORIGINAL U-235 AND U-234 CONTENT REMAINS. DURING THE REFINING AND ENRICHMENT PROCESS, THE RADIOACTIVE DECAY PRODUCTS (DAUGHTERS) OF THE URANIUM ISOTOPES ARE REMOVED FROM THE DU. BECAUSE OF THE LONG PHYSICAL HALFLIFE (4.5 BILLION YEARS) OF U-238, THERE WILL BE NO SIGNIFICANT BUILDUP OF DAUGHTER PRODUCTS IN DU DURING THE TIME-FRAME UNDER CONSIDERATION.

4. Q: HOW RADIOACTIVE IS DU?
A: THE ACTIVITY OF A RADIOACTIVE SOURCE IS A MEASURABLE PROPERTY PROPORTIONAL TO THE RATE AT WHICH THE SOURCE DECAYS (NUMBER OF NUCLEAR DISINTEGRATIONS PER UNIT TIME). THE UNIT USED TO EXPRESS ACTIVITY IS THE CURIE (CI). A CURIE IS DEFINED AS THE QUANTITY OF ANY RADIOACTIVE NUCLIDE IN WHICH THE NUMBER OF DISINTEGRATIONS PER SECOND IS 37 BILLION. THE US NUCLEAR REGULATORY COMMISSION (NRC) GIVES THE DEFINITION OF A CURIE OF NATURAL URANIUM AS THE SUM OF THE FOLLOWING ACTIVITIES: 37 BILLION DIS/SEC FROM U-238 37 BILLION DIS/SEC FROM U-234 4 0.9 BILLION DIS/SEC FROM U-235 THUS, ONE CURIE OF NATURAL URANIUM CORRESPONDS TO 74.9 BILLION DIS/SEC. THIS CURIE REFERS TO JUST THE THREE RADIONUCLIDES U-234,U-235 AND U-238, AND DOES NOT CONSIDER THE CONTRIBUTIONS TO ACTIVITY FROM DECAY PRODUCTS (DAUGHTERS) WHICH ARE ALSO RADIOACTIVE. APPROXIMATELY FOUR METRIC TONS OF STABALLOY YIELDS ONE CURIE. THIS IS A VERY LOW ACTIVITY -- TWO GRAMS OF RADIUM YIELDS APPROXIMATELY THE SAME ACTIVITY. ANOTHER COMPARISON CAN BE MADE USING A TERM CALLED THE "SPECIFIC ACTIVITY". THIS IS THE NUMBER OF CURIES IN A GRAM OF A RADIOISOTOPE. THE SPECIFIC ACTIVITY OF U-238, THE MAJOR ISOTOPE OF DU, IS 3.33 TIMES 10 TO THE MINUS 7 CURIES PER GRAM (C:/S) -- NOT VERY RADIOACTIVE BY COMPARISON TO OTHER COMMONLY USED RADIOACTIVE MATERIALS.

5. Q: WHAT ARE THE HEALTH RISKS INVOLVED IN HANDLING STABALLOY?
A: HEALTH RISKS FROM HANDLING STABALLOY ARE LOW, BUT DO EXIST. THEY ARE OF TWO KINDS -- RADIOLOGICAL AND CHEMICAL TOXICITY. THE DEGREE OF RISK DEPENDS UPON THE CHEMICAL FORM; THAT IS, WHETHER IT IS SOLUBLE OR INSOLUBLE.

- SOLUBLE. CURRENT EXPOSURE LIMITS FOR SOLUBLE URANIUM COMPOUNDS ARE BASED ON HEAVY METAL CHEMICAL TOXICITY. INGESTING SOLUBLE URANIUM COMPOUNDS RESULTS IN CHEMICAL DAMAGE TO THE KIDNEYS -- AND NOT RADIATION DAMAGE TO BODY TISSUES. SOLUBLE URANIUM COMPOUNDS ARE RAPIDLY EXCRETED, AND ARE CONSIDERED LESS TOXIC THAN LEAD OR OTHER HEAVY METALS. THE PRESENT URANIUM CONFERENCE OF GOVERNMENTAL INDUSTRIAL HYGIENISTS (UCGIH) THRESHOLD LIMIT VALUES (TLV) FOR WORKERS FOR EXPOSURE TO URANIUM IS 0.2MG/CUBIC METER. THE TLV FOR LEAD IS 0.15MG/CUBIC METER. THE UCGIH TLV'S HAVE BEEN ESTABLISHED BY THE U.S. OCCUPATIONAL SAFETY AND HEALTH ADMINISTRATION (OSHA) AS NATIONAL EXPOSURE LIMITS FOR U.S. WORKERS.

- INSOLUBLE. INSOLUBLE URANIUM COMPOUNDS DO NOT POSE A CHEMICAL TOXIC HAZARD. LARGE DOSES OF INSOLUBLE COMPOUNDS ARE ONLY SLIGHTLY TOXIC TO THE KIDNEYS. INHALATION OF INSOLUBLE URANIUM COMPOUNDS LIKE URANIUM OXIDE RESULTS IN LONG-TERM RETENTION IN THE LUNGS AND ASSOCIATED LYMPH NODES. PULMONARY NEOPLASMA DEVELOP FROM HIGH EXPOSURES (ABOVE TLV) FOR LONG EXPOSURE PERIODS. INSOLUBLE URANIUM COMPOUNDS ARE THEREFORE CONSIDERED AS LOW-LEVEL RADIATION HAZARDS BY THE INTERNATIONAL COMMISSION OF RADIOLOGICAL PROTECTION (ICRP). THE MUCH-PUBLICIZED LUNG CANCERS IN URANIUM MINERS ARE NOT ATTRIBUTABLE TO URANIUM EXPOSURES. THE URANIUM EXPOSURES IN THESE MINERS ARE MINIMAL BECAUSE URANIUM ORE MAY CONTAIN ONLY A PERCENT OR LESS OF URANIUM. THE LUNG CANCERS HAVE BEEN ATTRIBUTED TO THE INHALATION OF THE RADON IN THE MINE AIR AND TO THE SUBSEQUENT DISPOSITION OF THE RADON DAUGHTERS IN THE LUNG TISSUES. THE RADIATION FROM THE DECAY OF THIS SERIES OF RADIONUCLIDES (RADIUM SERIES) IS BELIEVED TO INITIATE BRONCHIAL CANCERS. OBSERVATIONS OF WORKMEN EXPOSED OCCUPATIONALLY TO AIR CONCENTRATION OF URANIUM EVEN SUBSTANTIALLY GREATER THAN THE MAXIMUM ALLOWABLE CONCENTRATION NOW PERMITTED BY THE NRC HAVE FAILED TO SHOW ANY EVIDENCE OF URANIUM INJURY EITHER FROM RADIATION EXPOSURE TO THE LUNG OR FROM THE TOXIC CHEMICAL EFFECT ON THE KIDNEY FROM URANIUM CARRIED BY THE BLOOD. THESE OBSERVATIONS INCLUDE MEN EXPOSED DURING A 20-YEAR PERIOD.
THE STABALLOY CONTAINED IN THE 30MM ROUND IS A SOLID METAL ALLOY AND IS ENCASED IN AN ALUMINUM SHELL WITH A STELL JACKET. IT THEREFORE CANNOT BE INGESTED OR INHALED DURING HANDLING. THE ALUMINUM AND STEEL CASING EFFECTIVELY SHIELDS THE BETA-EMITTED RADIATION FROM THE PENETRATOR SO THAT THE ALUMINUM SURFACE EXPOSURE RATE OF GAMMA RAYS IS ONLY 0.2 MILLIROENTGEN (MR) PER HOUR MEASURED THROUGH 7 MILLIGRAM PER SQUARE CENTIMETER (HG/SPARE CENTIMETER).

6. Q: WHAT ARE THE HEALTH RISKS INVOLVED IN MANUFACTURING STABALLOY?
A: ALL MANUFACTURING IS DONE IN THE US IN ACCORDANCE WITH LICENSES ISSUED BY THE NRC. PROTECTIVE EQUIPMENT IS USED TO INSURE WORKERS ARE NOT EXPOSED ABOVE THE TLV OR CURRENT US RADIATION EXPOSURE LIMITS.

7. Q: IS STABALLOY A RADIOLOGICAL HAZARD IN TERMS OF US HEALTH STANDARDS?
A: THE SURFACE EXPOSURE RATE OF A STABALLOY ROUND MEASURED THROUGH 7 MILLIGRAMS PER CENTIMETER SQUARED IS ONLY 0.2 MILLIROENTGEN PER HOUR. THE US OCCUPATIONAL SAFETY AND HEALTH ADMINISTRATION HAS ESTABLISHED AN ALLOWABLE WORKER EXPOSURE LIMIT OF 18.75 REMS PER 3 MONTHS FOR HANDS AND 1.25 REMS PER 3 MONTHS FOR THE HEAD AND TRUNK. THIS EQUATES TO 75 REMS AND 5 REMS RESPECTIVELY FOR A YEAR'S PERIOD. THE NRC HAS ESTABLISHED THESE SAME ANNUAL WORKER LIMITS, AND RESTRICTS NON-WORKER EXPOSURE TO ONE-TENTH THESE VALUES. BASED ON THESE FIGURES, A PERSON HOLDING A STABALLOY ROUND IN HIS HAND 24 HOURS A DAY WOULD RECEIVE ONLY 2.3 PERCENT OF THE ALLOWABLE EXPOSURE LIMIT. THIS IS LESS THAN HALF THE ALLOWABLE RADIATION EMMISSION FOR HOME TV RECEIVERS AND AIRPORT SECURITY MACHINES. THE STANDARDS SET BY THE US BUREAU OF RADIOLOGICAL HEALTH, ACTING UNDER THE RADIOACTIVE CONTROL FOR HEALTH AND SAFETY ACT OF 1968, LIMIT RADIATION EMISSIONS FROM HOME TV RECEIVERS AND CABINET X-RAY SYSTEMS USED FOR AIRPORT BAGGAGE INSPECTION SYSTEMS TO 0.5 MILLIREMS PER HOUR AT 5 CENTIMETERS FROM THE SURFACE. THESE DEVICES, BY COMPARISON WITH THE STABALLOY ROUND, ARE FAR MORE ACCESSIBLE AND MORE LIKELY TO PRODUCE EXPOSURE TO HUMAN BEINGS.

8. Q: COULD STABALLOY PRODUCE CANCER?
A: THE CANCER-PRODUCING POTENTIAL OF STABALLOY IN MAN IS NOT FULLY KNOWN. NEOPLASMS HAVE BEEN OBSERVED IN THE LUNGS OF LABORATORY ANIMALS, BUT ONLY AFTER EXCESSIVE EXPOSURES (5MG U/CUBIC METER) TO URANIUM OXIDE DUST FOR FIVE YEARS. SOME SARCOMAS HAVE BEEN PRODUCED IN RATS FOLLOWING PACKING OF FINELY GROUND URANIUM METAL INTO THE BONE MARROW CAVITY. HOWEVER, STABALLOY WORKERS HAVE NOT BEEN REPORTED AS HAVING AN INCREASED INCIDENCE OF CANCERS OVER THE GENERAL POPULATION OF THE US DESPITE DECADES OF EXPERIENCE IN INDUSTRY.

9. Q: WHAT SCIENTIFIC AUTHORITIES ARE YOU RELYING ON IN THESE ANSWERS?
A: THE INTERNATIONAL COMMISSION IN RADIOLOGICAL PROTECTION, THE NATIONAL COUNCIL ON RADIOLOGICAL PROTECTION, THE US NUCLEAR REGULATORY COMMISSION, AND HE BUREAU OF RADIOLOGICAL HEALTH (DEPT. HEW).

10. Q: WHAT ARE THE RESIDUAL HEALTH PROBLEMS CONNECTED WITH ITS RADIOACTIVITY THAT MIGHT RESULT FROM ITS WARTIME USE?
A: NO SIGNIFICANT HEALTH PROBLEMS ASSOCIATED WITH THE RADIOACTIVE PROPERTIES OF STABALLOY PENETRATORS ARE FORESEEN FROM WARTIME USE. AFTER THE FIGHTING, THE CIVILIAN POPULATION WILL FACE A HIGHER RISK FROM UNEXPLODED MUNITIONS AND OTHER RESIDUALS FROM MILITARY ACTIONS. LIMITED AND RECOVERABLE LAND CONTAMINATION COULD OCCUR FROM DU AS DISCUSSED ABOVE. A CIRCUMSTANCE OF ALL STABALLOY PENETRATORS CARRIED BY AN A-10 AIRCRAFT BEING DEPOSITED IN THE SMALLEST POND CAPABLE OF SUPPORTING FISH (1000 SQUARE METER AREA, WITH 1500 CUBIC METER WATER) AND ASSUMING ALL PENETRATORS EXPOSED DIRECTLY TO THE WATER WOULD RESULT, AFTER 100 YEARS, IN A CONCENTRATION OF URANIUM LESS THAN THE MAXIMUM ALLOWABLE CONCENTRATION ESTABLISHED BY THE NRC IN US TITLE 10 CFR, PART 20 (APPROXIMATELY 8.3410 TIMES 10 TO THE MINUS 7 UCI/CUBIC CENTIMETERS VERSUS 2 TIMES 10 TO THE MINUS 5 UCI/CUBIC CENTIMETERS). IN OTHER WORDS THE POND WOULD REMAIN USEABLE BY HUMANS.

11. Q: IS STABALLOY A RADIOLOGICAL WEAPON?
A: NO, ITS EFFECT COMES FROM THE IMPACT REPEAT IMPACT OF THE PENETRATOR, NOT FROM ANY RADIOACTIVE PROPERTY OF THE ROUND.

12. Q: ACCORDING TO METAL EXPERTS, TUNGSTEN IS HARDER THAN DEPLETED URANIUM. IF THAT'S SO, WHY ISN'T IT A BETTER PENETRATOR THAN STABALLOY?
A: TUNGSTEN IS HARDER, BUT WHEN USED WITH NECESSARY ALLOYS, IT IS DIFFICULT TO WORK WITH AND DURING ACTUAL LIVE FIRE TESTS HAS NOT PROVEN TO BE AS EFFECTIVE. IN ADDITION, RAW MATERIAL AND FABRICATION COSTS ARE HIGHER.

END TEXT.

III. PROPOSED NEWS RELEASE

BEGIN TEXT 

THE UNITED STATES AIR FORCE WILL SOON BEGIN PREPOSITIONING SPARE PARTS, EQUIPMENT AND AMMUNITION IN THE UNITED KINGDOM AND THE FEDERAL REPUBLIC OF GERMANY IN ANTICIPATION OF THE FIRST BASING OF A-10 AIRCRAFT OUTSIDE THE UNITED STATES. ADVANCE PREPARATION IS NECESSARY PRIOR TO THE ARRIVAL OF THE NEW AIRCRAFT IN EUROPE. THE BASING OF THE A-10 IN EUROPE WILL GREATLY INCREASE THE POTENTIAL EFFECTIVENESS OF NATO AIRPOWER AGAINST WARSAW PACT GROUND AND ARMORED FORCES. THE A-10 IS DESIGNED FOR CLOSE-AIR SUPPORT AND ANTI-ARMOR OPERATIONS. IT IS ABLE TO MANEUVER UNDER THE LOW CLOUD CEILINGS COMMON IN EUROPE, USE TERRAIN AND MANEUVERABILITY FOR PROTECTION, AND REMAIN ON TARGET FOR EXTENDED PERIODS. THE A-10 CAN CARRY A COMBAT LOAD OF BOMBS AND AIR-TO-SURFACE MISSILES, PLUS THE 30MM GAU-8 GUN WHICH CAN FIRE UP TO 4,000 ROUNDS PER MINUTE. THIS INTERNALLY-MOUNTED GATLING GUN, THE MAIN REASON FOR THE AIRCRAFT'S EFFECTIVENESS AGAINST ARMORED VEHICLES, IS THE FIRST OPERATIONAL AIRCRAFT TO USE A STABALLOY ROUND. STABALLOY IS A METAL ALLOY MADE OF DEPLETED URANIUM COMBINED WITH OTHER METALS TO GIVE IT THE DESIRED ARMOR-PIERCING CHARACTERISTICS. DEPLETED URANIUM (DU) WHICH IS USED IN SOME COMMERCIAL 747 AIRCRAFT FOR COUNTER-WEIGHTS, IN SHIELDING FOR RADIOACTIVE MATERIALS, AND IN OIL WELL COLLARS AND MACHINE TOOLS, IS ONE OF THE BYPRODUCTS FROM PROCESSING OF NATURAL URANIUM. STABALLOY'S EXTREME DENSITY AND WEIGHT (HIGHER THAN LEAD) ARE ESSENTIAL TO THE 30MM ROUND, WHICH OPERATES ON THE KINETIC ENERGY PRINCIPLE OF PROPELLING AN EXTREMELY DENSE MATERIAL AT A HIGH VELOCITY, STABALLOY AS CONTAINED IN THE A-10 MUNITION, PRESENTS NO SIGNIFICANT RADIATION HAZARD AND REQUIRES NO SPECIAL HANDLING OR SHIELDING.

AS ANNOUNCED EARLIER THIS YEAR, THE A-10 WILL BE BASED IN THE UNITED KINGDOM AT RAF STATIONS BENTWATERS AND WOODBRIDGE, AND WILL BE REPLACING THE F-4'S CURRENTLY ASSIGNED TO THE 81ST TACTICAL FIGHTER WING. ALTHOUGH THEY WILL BE PERMANENTLY BASED IN THE UK, SOME A-10S WILL ROUTINELY OPERATE FROM A FORWARD BASE AT SEMBACH AB, FRG. OTHER FORWARD BASES ON THE CONTINENT WILL BE DESIGNATED LATER. PEACETIME DEPLOYMENT OF UP TO EIGHT A-10S IS PLANNED FOR EACH FORWARD OPERATING LOCATION, WITH PERIODIC ROTATION OF THE AIRCRAFT BACK TO HOME BASES IN THE UK.
 END TEXT.

FYI: SECOND IN SERIES OF THREE CABLES. PROPOSED PUBLIC AFFAIRS GUIDANCE, REFINED IN LIGHT OF ACTION ADDRESSEES' DISCUSSIONS WITH HOST GOVERNMENTS, WILL CONSTITUTE THE THIRD ELEMENT OF THIS SERIES. END FYI.

CHRISTOPHER

SECRET

NNN

Sheryl P. Walter Declassified/Released US Department of State EO Systematic Review 20 Mar 2014

lunedì 16 luglio 2018

Morte del Prof. Franco Mandelli

Ma perché tutto questo clamore sulla morte del Prof. Franco Mandelli?

https://www.lantidiplomatico.it/dettnews-ma_perch_tutto_questo_clamore_sulla_morte_del_prof_franco_mandelli/6119_24724/

 


Ma perché tutto il mainstream sta commemorando, con inconsueta enfasi, la morte del Prof. Franco Mandelli? Forse perché la sua indagine, commissionata dall’allora ministro della Difesa Sergio Mattarella, servì a mettere a tacere ogni allarme sulle armi ad uranio impoverito? Intendiamoci, il contributo di Mandelli alla Ricerca – a giudicare dai suoi numerosi titoli e onorificenze – non può essere certo ridotto a quella (contestata) relazione. Ma se si ha la pazienza di sfogliare l’elenco dei, pur insigni scienziati, italiani morti quest’anno o nell’anno scorso (o cercarsi scienziati sfuggiti a Wikipedia) si scoprirà che la morte di nessun altro scienziato italiano ha meritato, negli ultimi anni, tanto sospetto clamore.

Un’ultima annotazione. Nel 2000 in Jugoslavia (una delegazione dell’allora antimilitarista “Un Ponte per…”) ho avuto il privilegio di stare fianco a fianco con Mauro Cristaldi uno scienziato e compagno impegnato allora a studiare gli effetti dell’uranio impoverito disseminato dai bombardamenti della NATO e di D’Alema. Dai suoi studi, una relazione che, dimostrando inequivocabilmente le conseguenze di quel tipo di arma, non ha meritato l’attenzione del Governo. Mauro – tra i fondatori del Comitato ‘Scienziate e scienziati contro la guerra’, è morto due anni fa, ovviamente nel silenzio dei media mainstream e delle “autorità”. Credo che la maniera migliore di ricordarlo sia leggere i suoi scritti che contraddicono puntualmente quanto riportato nella “Relazione Mandelli”.

E visto che ci siete, date anche una occhiata a questi video (introvabili sulla cineteca RAI) di Maurizio Torrealta. L’uranio impoverito della NATO non serve soltanto a rendere impraticabili interi territori e a lasciare un fardello di innumerevoli malati allo stato canaglia di turno. C’è di peggio.

Francesco Santoianni

Nella foto di copertina: proiettili con uranio impoverito utilizzati dagli USA in Siria
Notizia del:

mercoledì 20 giugno 2018

Danni da esposizione a uranio impoverito e responsabilità civile della PA

Danni da esposizione a uranio impoverito e responsabilità civile della Pubblica Amministrazione
14 giugno 2018 -

Sommario

1. Il caso dei danni da esposizione ad uranio impoverito: la notorietà del pericolo
2. Malattie e decessi tra i lavoratori militari: la ricerca del nesso di causalità
3. La condotta omissiva del Ministero della Difesa e l’accertamento di responsabilità


1. Il caso dei danni da esposizione ad uranio impoverito: la notorietà del pericolo

Negli ultimi decenni, la complessa questione sui danni alla salute e all’ambiente derivanti dall’esposizione all’uranio impoverito ha richiamato l’attenzione della dottrina e della giurisprudenza e ha portato all’istituzione di apposite commissioni parlamentari d’inchiesta per l’analisi delle problematiche che derivano dall’utilizzo di tale sostanza.

Il depleted uranium è un rifiuto tossico che si ottiene dal procedimento di arricchimento dell’uranio  naturale eseguito nelle centrali nucleari e che come tale dovrebbe essere stoccato e smaltito. Tuttavia, considerate le sue caratteristiche piroforiche e l’elevata densità, lo stesso è stato riciclato per lungo tempo dall’industria bellica per la produzione di proiettili e ordigni. L’utilizzo di munizioni contenenti il metallo in questione è stato riscontrato in numerosi teatri bellici, in particolare nei conflitti che hanno interessato il Golfo e l’area dei Balcani nonché, così come affermato da fonti accreditate, nelle unità addestrative distribuite sul territorio nazionale.

È opportuno osservare come già all’epoca dei predetti conflitti, lo stato delle conoscenze scientifiche fosse tale per cui poteva dirsi quantomeno nota la pericolosità degli armamenti all’uranio impoverito, sebbene mancassero delle certezze scientifiche sui singoli effetti patologici.

La notorietà dei rischi per la salute umana derivanti dall’esposizione prolungata a tale fattore patogeno è comprovata dai documenti in possesso del Ministero della Difesa (ad esempio, l’Air Force Armament Laboratory del 1977) dai quali emerge come quest’ultimo fosse a conoscenza già da tempo non solo dei potenziali rischi per l’integrità fisica dei militari ma anche delle misure di protezione adottate in primis dalle forze Statunitensi, il principale esercito al fianco del quale hanno operato le milizie italiane. A comprova di ciò risultano significative alcune dichiarazioni rese da militari in missione all’estero con le quali gli stessi testimoniano di aver informato più volte i loro superiori del fatto che le tute indossate dagli appartenenti all’esercito americano ricoprissero interamente il corpo, mentre i militari italiani continuavano ad eseguire gli incarichi con l’ordinaria divisa, consistente in pantaloni e maglietta.

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