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Theoretical studies of energy transfer rates of secondary explosives.

Understanding the mechanism of shock-induced chemical reaction in secondary explosives is necessary to pursue the development and the safe use of new explosives having high performance and low sensitivity. In an effort to understand the mechanism, the energy transfer rates of such secondary explosives as PETN(I), PETN(II), delta-HMX, alpha-HMX, beta-HMX, RDX, ANTA, DMN, and NM have been evaluated based on the formula derived by Fried and Ruggiero [Fried, L. E.; Ruggiero, A. J. J. Phys. Chem. 1994, 98, 9786]. The energy transfer rates were determined in terms of the density of vibrational states and the unharmonic vibron-phonon coupling term, which were calculated by using a flexible potential containing both intra- and intermolecular terms. For the secondary explosives, a good correlation was found between the energy transfer rates and the impact sensitivity. The energy transfer rates are several times faster for the explosives with higher sensitivity such as PETN, HMX, and RDX than those with lower sensitivity such as ANTA, DMN, and NM. The calculations presented suggest the energy transfer rate in secondary explosive crystals is a significant factor in their sensitivity and introduction of double bond, or hydrogen bonds, or caged structure into secondary explosives is expected to decrease the sensitivity.

Journal Article↗

Metal objects mapping after small charge explosions. A study on AISI 304Cu steel with two different grain sizes.

Evidence of exposure of a metal component to a small charge explosion can be detected by observing microstructural modifications; they may be present even if the piece does not show noticeable overall plastic deformations. Particularly, if an austenitic stainless steel (or another metal having a face-centered cubic structure and a low stacking fault energy) is exposed to an explosive shock wave, high-speed deformation induces primarily mechanical twinning, whereas, in nonexplosive events, a lower velocity plastic deformation first induces slip. The occurrence of mechanical twins can be detected even if the surface is damaged or oxidized in successive events. In the present research, optical metallography (OM) and scanning electron microscopy (SEM), and scanning tunneling microscopy (STM) were used to detect microstructural modifications caused on AISI 304Cu steel disks by small-charge explosions. Spherical charges of 54.5 or 109 g TNT equivalent mass were used at explosive-to-target distances from 6.5 to 81.5 cm, achieving peak pressures from 160 to 0.5 MPa. Explosions induced limited or no macro-deformation. Two alloy grain sizes were tested. Surface OM and SEM evidenced partial surface melting, zones with recrystallization phenomena, and intense mechanical twinning, which was also detected by STM and X-ray diffraction. In the samples' interior, only twins were seen, up to some distance from the explosion impinged surface and again, at the shortest charge-to-sample distances, in a thin layer around the reflecting surface. For forensic science locating purposes after explosions, the maximum charge-to-target distance at which the phenomena disappear was singled out for each charge or grain size and related to the critical resolved shear stress for twinning.

Journal Article↗

Fatal explosion injuries in Finland: a twenty-year nationwide survey.

BACKGROUND AND AIMS: Expanding violence may necessitate treatment of explosion victims, requiring a broadening of existing medical skills and knowlegde of injury mechanisms. The aim of the study was to assess the number, nature and injury pattern of fatal explosion incidents in Finland. MATERIAL AND METHODS: Retrospective analysis of explosion-related deaths from January 1985 to December 2004. Death certificates were obtained and reviewed. RESULTS: Over the 20-year period from 1985 to 2004, only 61 inviduals died in Finland as a result of unintentional or unspecified explosion related events. A homemade bomb assault for unknown motives killed seven people in a suburb in 2002. The incidence was 5.7 cases per 10,000,000 person-years. Suicides using explosives were slightly more common; on average 4 cases per year (6.7 cases per 10,000,000 person-years). A small increase in the fatality trend was noticeable during the last years of the study period. CONCLUSIONS: The incidence of fatal explosion injuries is a minor problem, but a small increase can be seen during the last few years. Victims of such injuries required only minimal hospital resources, because in most cases they died at the scene. Our results suggest that efforts to prevent fatalities related to explosives or corresponding devices, or to reduce their number, should focus on prevention of intentions.

Adult↗

Effects of bronchial intermittent constrictions on explosive flow during coughing in the dogs.

This study tested the hypothesis that intrathoracic bronchi intermittently constrict during coughing and attempted to elucidate the effect on explosive flow. The subjects were 21 dogs having undergone tracheostomy. In the first group A (n = 7), the diameter of the fifth-generation bronchus was measured with a balloon-tipped catheter and the change during coughing was analyzed. In the other group (n = 14), the dogs were vagotomized and coughing was simulated by sequential application of positive and negative airway pressures (sham cough). The effects of the bronchial constriction, elicited by the stimulation of vagus efferent fibers, on explosive flow and airway pressure of sham cough were analyzed. The bronchus was constricted in explosive phase of spontaneous coughing in all the dogs of the first group. When cough bouts were repetitively developed, bronchial constriction and phrenic burst developed simultaneously. The intermittent bronchial constrictions fused and virtually acted as tonic constriction. In the second group of dogs the explosive flow of sham cough consisted of two phases; a short bout followed by a near-constant flow. When the bronchus was constricted, the explosive flow was still biphasic in 12 dogs and an exponential decay pattern formed in 2 of them. In these 12 dogs, the peak explosive flow slightly but significantly decreased (mean +/- SD, 1.39 +/- 0.23 vs. 1.34 +/- 0.23 l/s) and airway pressure in the segmental bronchus became smaller (-1.18 +/- 0.53 vs. -0.15 +/- 0.94 cmH(2)O). We concluded that intermittent bronchial constrictions act as tonic one during coughing. Bronchial constriction slightly decreased the peak explosive flow and moved the choke point to the proximal airway.

Animals↗

Steam-explosion pretreatment for enhancing anaerobic digestion of municipal wastewater sludge.

This study evaluated the use of steam explosion as a pretreatment for municipal wastewater treatment sludges and biosolids as a technique for enhancing biogas generation during anaerobic digestion. Samples of dewatered anaerobic digester effluent (biosolids) and a mixture of thickened waste activated sludge (TWAS) and biosolids were steam-exploded under differing levels of intensity in this study. The results indicate that steam explosion can solublize components of these sludge streams. Increasing the intensity of the steam-explosion pressure and temperature resulted in increased solublization. The steam-explosion pretreatment also increased the bioavailability of sludge components under anaerobic digestion conditions. Increasing the steam-explosion intensity increased the ultimate yield of methane during anaerobic digestion. Batch anaerobic digestion tests suggested that pretreatment at 300 psi was the most optimal condition for enhanced biogas generation while minimizing energy input. Semicontinuous anaerobic digestion revealed that the results that were observed in the batch tests were sustainable in prolonged operation. Semicontinuous digestion of the TWAS/biosolids mixture that was pretreated at 300 psi generated approximately 50% more biogas than the controls. Semicontinuous digestion of the pretreated biosolids resulted in a 3-fold increase in biogas compared with the controls. Based on capillary suction test results, steam-explosion pretreatment at 300 psi improved the dewaterability of the final digested sludge by 32 and 45% for the TWAS/ biosolids mixture and biosolids, respectively, compared with controls. The energy requirements of the nonoptimized steam-explosion process were substantially higher than the additional energy produced from enhanced digestion of the pretreated sludge. Substantial improvements in energy efficiency will be required to make the process viable from an energy perspective.

Bacteria, Anaerobic↗

Determining explosivity part II: comparison of small-scale cartridge tests to actual pipe bombs.

The small-scale explosivity device (SSED) has been used to assess the explosive power of a number of low explosives-smokeless powders (WC-870, Red Dot, Bullseye, Winchester Action Pistol, and IMR-PB), Pyrodex, black powder, and an improvised explosive (TATP). The device requires 2 g of energetic material, a heavy-walled containment vessel, and a standard blast shield to permit use in most laboratories. The data from the SSED are compared with the fragmentation of pipe bombs which contained 300 to 700 g of powder. The SSED provided the same relative ordering of explosivity as suggested by the fragmentation of the real devices. In addition, the SSED was used to evaluate the chemical residue remaining after an explosion. Issues in using the device such as optimal detonators and restricted reaction volume were probed using three high explosives--TNT, Tetryl, and RDX.

Journal Article↗

Water-soaked evidence: detectability of explosive traces after immersion in water.

Various factors governing the detectability of explosive traces after being soaked in water were studied. The variables are: the type of the surface (surfaces liable to be found in aircraft were chosen), the type of explosive, the type of water (tap or seawater), and movement of the immersed surface in the water. The maximal immersion times (tmax) after which explosive detection was possible were evaluated. This datum was found to depend on the type of explosive (one of the important factors is solubility in water), the surface material and the environmental conditions (tap or seawater movement). Detection of PETN on high-density polyethylene, linoleum, glass and aluminum, by the chemical Explosive Testing Kit (ETK), was possible even after a month of soaking in seawater. In addition, it has been found that movement of bulk water around the samples with deposited explosives considerably decreases tmax values. It is, therefore, recommended to retrieve samples for explosive analysis as soon as possible and in areas where the currents of water is minimal.

Journal Article↗

A new model of blast injury from a spherical explosive and its special wound in the maxillofacial region.

OBJECTIVE: The goal of this study was to establish an efficient explosive model with spherical explosives for the study of blast injury and its wound characteristics in the maxillofacial region. METHODS: Different spherical explosives were used to produce blast waves and to establish the wound model. Fresh sheep heads as the targets were used for the study of wound characteristics. The wounding parameters and the injuries of targets after explosion were observed. RESULTS: The overpressure values of blast waves decreased exponentially along with the increase of distances to explosives and so did the tissue damage. The blast injury is quite different from other injuries and is more serious. A kind of special "split fracture" of the mandibles was found. CONCLUSIONS: The new explosive wound model with spherical explosives can be used for the study of blast injury in the laboratory. The injury manner of blast wave and the local anatomy of tissues resulted in the special wound characteristics.

Animals↗

Explosion injuries in Finland 1991-1995.

BACKGROUND AND AIMS: Explosion injuries have been considered an increasing problem in many countries. This study describes the incidence and significance of injuries of this kind in Finland. MATERIAL AND METHODS: All explosion injuries in the Finnish hospital records from January 1991 to December 1995 were studied. RESULTS: A total of 493 persons (2.0 cases per 100,000 person-years) required hospital treatment for injuries caused by explosions. In addition to the injured, 14 persons died. Causes of the accidents were the following: various unspecified explosions in 32% of the cases, fireworks in 29%, explosive materials in 25%, and explosions of pressure vessels in 13%. The male to female ratio was 9:1, and the average age of the injured was 30 years. The injury profile showed soft tissue wounds in 26%, burns in 25%, ear and eye injuries in 23%, crush and traumatic amputations in 14%, fractures in 10%, and neurological in 2%. The average in-patient time was 11 days corresponding to altogether 5640 hospital days. CONCLUSIONS: Explosion injuries are epidemiologically not a great problem in comparison with all accidents, but neither can they be considered nowadays as a negligible medical problem in Finland.

Adult↗

Successive explosions in Mumbai the economic center of India.

Terrorist activities in India are increasing day by day with sophistication in modus operandi. Mumbai the economic center of India was attacked by a series of bomb blasts at twelve different places within a span of an hour on 12th March 1993. The main explosive used was RDX [Krishnamurthy R, Malve MK, Shinde BM. J Indian Acad Forensic Sci 1996;35(1& 2):46-61.]. After about 10 years, terrorist activity of late has again erupted taking a toll on innocent lives, with the use of explosives causing death and destruction. On 2.12.02 a public bus at Ghatkopar was blown up by an improvised explosive device (IED) with two casualties. On 27.1.03 the public vegetable market at Vileparle was targeted causing heavy damage and panic among common people. On 13.3.03 a fully packed local train compartment at Mulund railway station was blown up by an improved explosive device and the casualties ranged up to 10. In most of the explosions the explosives used were RDX, NC-NG, etc. The blasts that occurred at the Zaveri bazaar and the gateway of India on 25/8/03 showed the presence of big craters at the blast site and on analysis the presence of RDX and petroleum oil.

Blast Injuries↗

Micellar electrokinetic chromatography and capillary electrochromatography of nitroaromatic explosives in seawater.

The ability to separate nitroaromatic and nitramine explosives in seawater sample matrices is demonstrated using both MEKC and CEC. While several capillary-based separations exist for explosives, none address direct sampling from seawater, a sample matrix of particular interest in the detection of undersea mines. Direct comparisons are made between MEKC and CEC in terms of sensitivity and separation efficiency for the analysis of 14 explosives and explosive degradation products in seawater and diluted seawater. The use of high-salt stacking with MEKC results, on average, in a three-fold increase in the number of theoretical plates, and nearly double resolution for samples prepared in 25% seawater. By taking advantage of long injection times in conjunction with stacking, detection limits down to sub mg/L levels are attainable; however, resolution is sacrificed. CEC of explosive mixtures using sol-gels prepared from methyltrimethoxysilane does not perform as well as MEKC in terms of resolving power, but does permit extended injection times for concentrating analyte onto the head of the separation column with little or no subsequent loss in resolution. Electrokinetic injections of 8 min at high voltage allow for detection limits of explosives below 100 microg/L.

Borates↗

Explosion-related deaths in Sweden--a forensic-pathologic and criminalistic study.

All cases of death caused by explosions of explosive solids, fluids and gases in Sweden during the 6-year period 1979-1984 were analyzed. Among the total of 61 fatalities 33 (54%) were due to accidents (2/3 of them occupational and 1/3 miscellaneous accidents), 25 (41%) were suicides, and only 3 (5%) were associated with terrorist activity. About one half of the occupational accidents were caused by deficient safety devices or defective equipment, while the other half was due to transgression of regulations. All suicides were males, relatively elderly, the majority of them burdened with somatic and mental diseases, alcoholism, social or economical problems, most of them being familiar with explosives. The anatomical localization of suicidal explosive injuries was regular and symmetric, while the accidental and terrorist injuries showed great variations. The terrorist-associated deaths had common features different from all other death cases, strongly suggesting the same type of bomb and the same terrorist group. Explosives caused only superficial burns or singes. Symmetric hemorrhages of the vocal folds and fracture of the laryngeal skeleton were found, as well as ruptures of trachea and lungs. When not ruptured, the lungs showed to different types of injury: hyperinflation, probably due to the blast-induced barotrauma to the respiratory passages, or lung contusions. In cases of suspected terrorist explosions close collaboration between the forensic pathologists and police investigators is mandatory since the bodies of victims protect parts of the bomb from fire or from being spread over a larger area and thus constitute a part of the crime scene.

Accidents↗

Determination of nitroaromatic and nitramine explosives from a PTFE wipe using thermal desorption-gas chromatography with electron-capture detection.

A method for the detection of nitroaromatic and nitramine explosives from a PTFE wipe has been developed using thermal desorption andgas chromatography with electron-capture detection (TD-GC-ECD). For method development a standard mixture containing eight nitroaromatic and two nitramine (HMX and RDX) explosive compounds was spiked onto a PTFE wipe. Explosives were desorbed from the wipe in a commercial thermal desorption system and trapped onto a cooled injection system, which was incorporated into the injection port of the GC. A dual column, dual ECD configuration was adopted to enable simultaneous confirmation analysis of the explosives desorbed. For the desorption of 50 ng of each explosive, desorption efficiencies ranged between 80.0 and 117%, for both columns. Linearity over the range 2.5-50 ng was demonstrated for each explosive on both columns with r2 values ranging from 0.979 to 0.991 and limits of detection less than 4 ng. Desorption of HMX from a PTFE wipe has also been demonstrated for the first time, albeit at relatively high loadings (100 ng).

Aniline Compounds↗

Computer code for the optimization of performance parameters of mixed explosive formulations.

LOTUSES is a novel computer code, which has been developed for the prediction of various thermodynamic properties such as heat of formation, heat of explosion, volume of explosion gaseous products and other related performance parameters. In this paper, we report LOTUSES (Version 1.4) code which has been utilized for the optimization of various high explosives in different combinations to obtain maximum possible velocity of detonation. LOTUSES (Version 1.4) code will vary the composition of mixed explosives automatically in the range of 1-100% and computes the oxygen balance as well as the velocity of detonation for various compositions in preset steps. Further, the code suggests the compositions for which least oxygen balance and the higher velocity of detonation could be achieved. Presently, the code can be applied for two component explosive compositions. The code has been validated with well-known explosives like, TNT, HNS, HNF, TATB, RDX, HMX, AN, DNA, CL-20 and TNAZ in different combinations. The new algorithm incorporated in LOTUSES (Version 1.4) enhances the efficiency and makes it a more powerful tool for the scientists/researches working in the field of high energy materials/hazardous materials.

Algorithms↗

Otologic consequences of blast exposure: a Finnish case study of a shopping mall bomb explosion.

OBJECTIVE: On 11 October, 2002, in the Myyrmanni shopping mall, Vantaa city, Finland, an explosion by a suicide bomber killed 7 people and injured at least 160,44 of whom had ear trauma. We investigated the acute and subacute otologic consequences of the explosion. MATERIAL AND METHODS: Otologic examination of the 29 patients treated for ear trauma at the ENT clinic of the University Hospital of Helsinki was performed during the first month after the explosion, and a questionnaire was completed regarding subjective aural symptoms. Symptoms occurring directly after the explosion and for up to 1 month afterwards were assessed. RESULTS: Of the 29 patients, 66% had tinnitus as the initial symptom, 55% hearing loss, 41% pain in the ears and 28% sound distortion. Tinnitus and hearing loss in combination were experienced by 12 patients (41%). Eight patients who had been situated<10 m from the center of the explosion had a rupture of the tympanic membrane. This supported the initial evaluation by the authorities that the bomb had consisted of approximately 3 kg ammonium nitrate, equivalent to approximately 0.5 kg of trinitrotoluene. It was estimated that some kind of ear injury was likely for individuals situated<70 m from the center of the explosion. CONCLUSIONS: People often think that tinnitus and hearing impairment are naturally occurring phenomena after blast exposure, and if their symptoms resolve they do not seek medical advice. However, some of them may have substantial hearing impairment, particularly at high frequencies. Otologic consultation, or at least an audiometric screening test to exclude hearing impairment, should be performed regardless of symptoms, on the basis of exposure data only. Some symptoms, such as tinnitus and hearing loss, may be permanent consequences of a blast injury and their effect on quality of life may be substantial.

Adolescent↗

Vapor-phase transport of explosives from buried sources in soils.

The fate and transport of explosives in the soil pore vapor spaces affects both the potential detection of buried ordnance by chemical sensors and vadose zone transport of explosives residues. The efficacy of chemical sensors and their potential usefulness for detecting buried unexploded ordnance (UXO) is difficult to determine without understanding how its chemical signatures are transported through soil. The objectives of this study were to quantify chemical signature transport through soils under various environmental conditions in unsaturated soils and to develop a model for the same. Flux chambers, large soil containers, and batch tests were used to determine explosives signature movement and process descriptors for model development. Low signatures were observed for explosives (2,4-dinitrotoluene, 2,6-dinitrotoluene, and 1,3-dinitrobenzene) under all environmental conditions. A diffusion model was used to describe the chemical transport mechanism in the soil pore air. The soil-air partition constant was treated as a fit parameter in the model owing to the uncertainty in its a priori estimation. The model predictions of the trends in experimental fluxes and the soil concentration were only marginal at best. It was concluded that better estimates of the partition constant are required for more accurate estimation of the chemical concentration at the soil-air interface. Chemical sensors will need to be very sensitive because of low signatures. However, this may result in many false alarms because of explosives residues not associated with UXO on firing ranges. Low explosives signatures also should result in insignificant air environmental exposures.

Air Pollutants↗

Toxicological investigation of liquid petroleum gas explosion: human model for propane/ethyl mercaptan exposures.

Four individuals died as the result of a propane explosion. As with many propane explosions, the question was raised as to the adequacy of the product's odorization after the autopsy studies had been conducted. In most cases, this question leads to litigation. Ethyl mercaptan is a widely used odorant for propane and was used in this instance. Three of the four victims had blood available at autopsy for study. Quantitative analyses of the victims' blood, obtained during autopsy, were performed using gas chromatography/mass spectrometry, without subjecting the samples to hydrolysis. These analyses determined the relative amounts of propane and ethyl mercaptan in the blood to be 90, 63, and 175 mL/m3 headspace, and 0.36, 0.34, and 0.77 microgram/L blood, respectively. Since mercaptans have been reported in human blood as products of metabolism, modeling studies were conducted to establish the validity of the autopsy data and to develop an autopsy toxicology protocol for investigating explosion deaths. When subjects were not exposed to an atmosphere containing ethyl mercaptan, dimethylsulfide was the only mercaptan detectable in their blood without severe hydrolysis prior to analysis. Metabolic ethyl mercaptan is sufficiently bound to be undetectable by the methods used without hydrolysis. Human subjects were exposed to a flammable mixture of air and propane odorized with ethyl mercaptan. The analyses of the blood from these subjects produced results which were comparable with those for the explosion victims, establishing that the question of odorant adequacy can be addressed at the autopsy of propane explosion victims. It is extremely important that the pathologist and toxicologist investigating gas explosion deaths recognize the valuable evidence existing in the victim's blood.

Autopsy↗

A scientific paradox--explosives that are safe for use in flammable atmospheres.

Explosives used in coal mines have to be efficient in blasting rock and coal but at the same time should not ignite the flammable atmosphere that can sometimes be encountered underground. When used, the explosives are placed in drilled holes and shot in rounds, with a short delay between each shot. Because the explosive is of low power, later shots in the round may fail to detonate but deflagrate instead. Any flammable atmosphere that might be present would then be ignited. This paper describes investigations of the initiation and propagation of detonation in low-power mining explosives. Qualitative studies show how detonation can fail in the vicinity of delay detonators when the explosive is precompressed prior to detonation. Analysis of X-ray photographs of detonation waves propagating in conditions near to failure enables estimates to be made of reaction-zone shapes, densities, pressures, and particle velocities. This information is used to devise a model of the reaction-zone processes, explain why compression of the explosive can lead to detonation failure, and to assess nearness to failure.

Coal Mining↗