Javascript must be enabled to continue!
Photo degradation kinetics of insensitive munitions constituents nitroguanidine, nitrotriazolone, and dinitroanisole in natural waters
View through CrossRef
Herein the matrix effects on the kinetics of aqueous photolysis for the individual munitions constituents of IMX-101: nitroguanidine (NQ), dinitroanisole (DNAN), and nitrotriazolone (NTO) are reported along with the environmentally relevant kinetics and quantum yields. Photolysis potentially represents a major degradation pathway for these munitions in the environment and further understanding the complex matrices effects on photolytic kinetics was needed. Aqueous systems are of particular interest due to the high solubility of NQ (3,800 ppm) and NTO (16,642 ppm) compared to the traditional munitions trinitrotoluene (TNT, 100.5 ppm) and 1,3,5-trinitro-1,3,5-triazine (RDX, 59.9 ppm). Environmental half-lives (and quantum yields) were found to be 0.44 days, 0.83 days, and 4.4 days for NQ, DNAN, and NTO, respectively, under natural sunlight. In laboratory experiments using nominally 300 nm bulbs in a merry-go-round style reactor in DI water the relative rate of photolysis for the three munitions constituents followed the same order NQ > DNAN > NTO, where DNAN and NTO reacted 57 and 115 times more slowly, respectively, than NQ. In the various environmentally relevant matrices tested in the laboratory experiments NQ was not significantly affected, DNAN showed a faster degradation with increasing ionic strength, and NTO showed a modest salinity and pH dependence on its rate of photolysis.
Engineer Research and Development Center (U.S.)
Title: Photo degradation kinetics of insensitive munitions constituents nitroguanidine, nitrotriazolone, and dinitroanisole in natural waters
Description:
Herein the matrix effects on the kinetics of aqueous photolysis for the individual munitions constituents of IMX-101: nitroguanidine (NQ), dinitroanisole (DNAN), and nitrotriazolone (NTO) are reported along with the environmentally relevant kinetics and quantum yields.
Photolysis potentially represents a major degradation pathway for these munitions in the environment and further understanding the complex matrices effects on photolytic kinetics was needed.
Aqueous systems are of particular interest due to the high solubility of NQ (3,800 ppm) and NTO (16,642 ppm) compared to the traditional munitions trinitrotoluene (TNT, 100.
5 ppm) and 1,3,5-trinitro-1,3,5-triazine (RDX, 59.
9 ppm).
Environmental half-lives (and quantum yields) were found to be 0.
44 days, 0.
83 days, and 4.
4 days for NQ, DNAN, and NTO, respectively, under natural sunlight.
In laboratory experiments using nominally 300 nm bulbs in a merry-go-round style reactor in DI water the relative rate of photolysis for the three munitions constituents followed the same order NQ > DNAN > NTO, where DNAN and NTO reacted 57 and 115 times more slowly, respectively, than NQ.
In the various environmentally relevant matrices tested in the laboratory experiments NQ was not significantly affected, DNAN showed a faster degradation with increasing ionic strength, and NTO showed a modest salinity and pH dependence on its rate of photolysis.
Related Results
Munitions-Related Technology Demonstrations at Ordnance Reef (HI-06), Hawaii
Munitions-Related Technology Demonstrations at Ordnance Reef (HI-06), Hawaii
AbstractDevelopment of methods and technologies to characterize sites with underwater military munitions (UWMM) and respond to UWMM where the risks posed to human health or the env...
On the relationships between the Michaelis–Menten kinetics, reverse Michaelis–Menten kinetics, equilibrium chemistry approximation kinetics, and quadratic kinetics
On the relationships between the Michaelis–Menten kinetics, reverse Michaelis–Menten kinetics, equilibrium chemistry approximation kinetics, and quadratic kinetics
Abstract. The Michaelis–Menten kinetics and the reverse Michaelis–Menten kinetics are two popular mathematical formulations used in many land biogeochemical models to describe how ...
On the relationships between Michaelis–Menten kinetics, reverse Michaelis–Menten kinetics, Equilibrium Chemistry Approximation kinetics and quadratic kinetics
On the relationships between Michaelis–Menten kinetics, reverse Michaelis–Menten kinetics, Equilibrium Chemistry Approximation kinetics and quadratic kinetics
Abstract. The Michaelis–Menten kinetics and the reverse Michaelis–Menten kinetics are two popular mathematical formulations used in many land biogeochemical models to describe how ...
Factor VIII Antibodies Demonstrate Type I or Type II Kinetics in Acquired Haemophilia A
Factor VIII Antibodies Demonstrate Type I or Type II Kinetics in Acquired Haemophilia A
ABSTRACTBackgroundAcquired haemophilia A (AHA) is an acquired bleeding disorder resulting from autoantibodies against Factor VIII (FVIII). Previous studies have reported difference...
Optimization Method for the Attack Trajectory of Loitering Munitions Based on Damage Pre-assessment
Optimization Method for the Attack Trajectory of Loitering Munitions Based on Damage Pre-assessment
Abstract
In order to take into account the traditional terminal damage research while designing the trajectory of loitering munitions, this paper deduces a quantitat...
CLASSIFICATION OF MUNITIONS
CLASSIFICATION OF MUNITIONS
Munitions are products of a varied design, posing different degrees of danger, and their correct classification has an impact on user’s safety during the process of use, including ...
Menin Inhibitor Induced Menin Protein Degradation Contributes to Menin Inhibitor Efficacy
Menin Inhibitor Induced Menin Protein Degradation Contributes to Menin Inhibitor Efficacy
The chromatin adaptor protein Menin ( MEN1) is necessary for sustained proliferation in acute leukemias driven either by Lysine Methyltransferase 2A (MLL1/ KMT2A) gene rearrangemen...
Oxidative degradation of Methyl Blue and Bromophenol Blue. Kinetics and influencing parameters
Oxidative degradation of Methyl Blue and Bromophenol Blue. Kinetics and influencing parameters
The degradation of Methyl Blue (MB) and Bromophenol blue (BPHB) by Fenton process, kinetics and some other influencing parameters, was the objective of this study. The degradation ...

