While "UXO" is widely and informally used, munitions and explosives of concern (MEC) is the current preferred terminology within the remediation community.
Although professional EOD personnel have expert knowledge, skills and equipment, they are not immune to misfortune because of the inherent dangers: in June 2010, construction workers in Göttingen, Germany discovered an Allied bomb dating from World War II buried approximately below the ground. German EOD experts were notified and attended the scene. Whilst residents living nearby were being evacuated and the EOD personnel were preparing to disarm the bomb, it detonated, killing three of them and injuring 6 others. The dead and injured each had over 20 years of hands-on experience, and had previously rendered safe between 600 and 700 unexploded bombs. The bomb which killed and injured the EOD personnel was of a particularly dangerous type because it was fitted with a delayed-action chemical fuze, which had become highly unstable after over 65 years underground.
A dramatic example of the threat of UXO is the wreck of the SS Richard Montgomery off the coast of Kent, which still contains 3000 tons of munitions. When a similar World War II wreck, the Polish Kielce exploded in 1967, it produced an earth tremor measuring 4.5 on the Richter scale.
Some 288 million cluster munitions and about 75 million unexploded bombs were left across Laos after the war ended. From 1996-2009, more than 1 million items of UXO were destroyed, freeing up 23,000 hectares of land.
Most current UXO risk is limited to areas, mainly in London and Portsmouth, that were subject to the Blitz and to land used by the military to store ammunition or to train on. According to the Construction Industry Research and Information Association (CIRIA), from 2006 to 2009, over 15,000 items of ordnance were found in construction sites in the UK. Most notably, 1000 homes were evacuated in Plymouth in April 2009 when a Second World War bomb was discovered, and in June 2008 a 1 000 kg bomb was found in Bow in East London. CIRIA have now published "Unexploded Ordnance (UXO) - a guide for the construction industry" to provide advice on assessing the risk posed by UXO.
The burden of Explosive Ordnance Disposal in the UK is split between Royal Engineers Bomb Disposal Officers, Royal Logistic Corps Ammunition Technicians in the Army, Clearance Divers of the Royal Navy and the Armourers of the Royal Air Force. The Metropolitan Police is the only force not to rely on the Ministry of Defence, although they generally focus on terrorist devices rather than unexploded ordnance and will often call military teams in to deal with larger and historical bombs.
According to US Environmental Protection Agency documents released in late 2002, UXO at 16,000 domestic inactive military ranges within the United States pose an "imminent and substantial" public health risk and could require the largest environmental cleanup ever, at a cost of at least US$14 billion. Some individual ranges cover , and, taken together, the ranges comprise an area the size of Florida.
In addition to the obvious danger of explosion, buried UXO also entails the risk of environmental contamination. In some heavily used military training areas, munitions-related chemicals such as explosives and perchlorate (a component of pyrotechnics and rocket fuel) can enter soil and groundwater. A prominent example exists at the Massachusetts Military Reservation (MMR) on Cape Cod, Massachusetts (USA), where decades of artillery training has contaminated the only drinking water for thousands of surrounding residents. An expensive UXO recovery effort is under way there.
UXO on US military bases has also caused problems for transferring and restoring Base Realignment and Closure (BRAC) land. The Environmental Protection Agency's efforts to commercialize former munitions testing grounds are complicated by UXO, making investments and development risky.
UXO cleanup in the US involves over of land and 1,400 different sites. Estimated cleanup costs are tens of billions of dollars. It costs roughly $1,000 to demolish a UXO on site. Other costs include surveying and mapping, removing vegetation from the site, transportation, and personnel to manually detect UXOs with metal detectors. Searching for UXOs is tedious work and often 100 holes are dug to every 1 UXO found. Other methods of finding UXOs include digital geophysics detection with land and airborne systems.
During World War I, the US Chemical Corps was established at American University, based in the University's McKinley Building. After the war, many toxic chemicals and weaponry were buried in or around the Northwest DC community where American is located. Excavations in the area are ongoing after significant discoveries were made in 2010.
In cases of unexploded subsoil ordnance a remote investigation is done by visual interpretation of available historical aerial photographs. Modern techniques can combine geophysical and survey methods with modern electromagnetic and magnetic detectors. This provides digital mapping of UXO contamination with the aim to better target subsequent excavations, reducing the cost of digging on every metallic contact and speeding the clearance process. Magnetometer probes can detect UXO and provide geotechnical data before drilling or piling is carried out.
Currently in the U.S., the Strategic Environmental Research and Development Program (SERDP), and Environmental Security Technology Certification Program (ESTCP) Department of Defense programs fund research into not only the detection, but also discrimination of UXO from scrap metal. Much of the cost of UXO removal comes from removing non-explosive items that the metal detectors have identified, so improved discrimination is critical. New techniques such as shape reconstruction from magnetic data and better de-noising techniques (to name a few) will prove invaluable to reducing cleanup costs and enhancing recovery.
UXO or UXBs (as they are called in some countries - unexploded bombs) are broadly classified into buried and unburied. The disposal team carries out reconnaissance of the area and determines the location of the ordnance. In case it is unburied it may be dug carefully and disposed. But if the bomb is a buried one then it becomes a huge task. A team is formed to find the location of bomb using metal detectors and then the earth is dug carefully.
There are an estimated contaminated with unexploded ordnance in the United States alone. These 1400+ UXO sites, taken together, comprise approximately the area of Florida.
By presidential executive order the US Armed Forces are mandated to buy "green ammunition" for use at their training ranges. Green ammunition is non-dud producing since they contain no explosives (that is, other than the propellant) and non-toxic, reducing cleanup costs and environmental risks. Environmentally sound training rounds come in 5.56 caliber and 40 mm high and low-velocity training cartridges for grenade machine guns and under-barrel grenade launchers.
Currently, the US army uses M918 40 mm cartridges, made to a pyrotechnic design from the 1970s that contains heavy metals in the fuze and potassium perchlorate in the payload. It has a fuze failure rate of 3%-8%. The US Army continues to use the M918 and M385 cartridges, favoring a "mixed-belt" approach to reducing duds and toxic leaching, however the M918 cannot be used in dry weather because of potential range fires.
US defense forces are now testing the 40 mm MK281 cartridge, Non-Dud Producing (NDP) and non-toxic training cartridge for the MK19. In 2006, the US Marine Corps signed a US$61 million 5-year contract with the Rheinmetall Group. The National Training Center (NTC) in Fort Irwin, California is partially integrating the MK281 into its operations. The U.S. Center for Health Promotion and Preventative Medicine at the Aberdeen Proving Ground, Maryland approved the MK281.
Given that the military uses 6-10 millions of training rounds per year, this leads to a substantial amount of UXO, leading to mandates from the Department of Defense and Environmental Protection Agency to phase out this older training ammunition. This transition is dependent on the US military-industrial base becoming ready to design and manufacture necessary amounts of green ammunition.
As of 2009, there are no US manufacturers to provide the necessary supply of green ammunition, rendering the Department of Defense's mission to phase out older ammunition at odds with its second mission to buy designs and material from US suppliers. Many small US ammunition manufacturers, many associated with the rapid creation of WWII Army Ammunition Plants, have not invested in green ammunition R&D.;
"Green" also refers to the manufacturing process of ammunition. US Army programs at Picatinny Arsenal are researching methods of reducing volatile organic compounds and ozone depleting compounds during the manufacturing process. Attempts are also being made to reduce the amount of hazardous materials in the actual ammunition.
Category:Bombs Category:Cluster bombs Category:Explosive weapons
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