Экология почв военных полигонов — страница 29 из 31

177. Kaplan D.L., Kaplan A.M. Thermophilic biotransformations of 2,4,6-trinitrotoluene under simulated composting conditions // Applied and Ecological Microbiology. 1982. – Vol. 44. – No. 3. – P. 757–760.

178. Khavari J., Khalash A., Sheremata T. Characterization of metabolites during biodegradation of hexahydro-1,3,5-trinitro-1,3,5-triazine (hexogen) with municipal anaerobic sediment // Applied and Ecological Microbiology. – 2000. – Vol. 66. – No. 6. – P. 2652–2657.

179. Kim K., Tsay O.G., Atwood D.A. Destruction and Detection of Chemical Warfare Agents // Chem. Rev. – 2011. – No. 111. – P. 5345–5403.

180. Kis I.M., Karaica B., Medunic G., Romic M., Sabaric J., Balen D., Sostarko K. Soil, bark and leaf trace metal loads related to the war legacy (The Prasnik rainforest, Croatia) // Rud. Geol. Naft. Zb. – 2016. – No. 31. – P. 13–28.

181. Knechtenhofer L.A., Xifra I.O., Scheinost A.C., Flühler H., Kretzschmar R. Fate of heavy metals in a strongly acidic shooting-range soil: Small-scale metal distribution and its relation to preferential water flow // J. Plant Nutr. Soil Sci. – 2003. – No. 166. – P. 84–92.

182. Kochetova Zh.Yu., Bazarskii O.V., Maslova N.V. Filtration of Heavy Metals in Soils with Different Degrees of Urbanization and Technogenic Load // Russian Journal of General Chemistry. – 2018. – Vol. 88. – No. 13. – P. 2990–2996.

183. Lafond S., Blais J.F., Martel R., Mercier G. Chemical Leaching of Antimony and Other Metals from Small Arms Shooting Range Soil // Water Air Soil Pollut. – 2012. – No. 224. – P. 1371.

184. Lafond S., Blais J.F., Mercier G., Martel R. A Counter-Current Acid Leaching Process for the Remediation of Contaminated Soils from a Small-Arms Shooting Range // Soil Sediment Contam. – 2014. – No. 23. – P. 194–210.

185. Landmine and Cluster Munition Monitor, Armenia, 2002.

186. Laporte-Saumure M., Martel R., Mercier G. Characterization and metal availability of copper, lead, antimony and zinc contamination at four Canadian small arms firing ranges // Environ. Technol. – 2011. – No. 32. – P. 767–781.

187. Lendenmann U., Spain J.C., Smets B.F. Simultaneous biodegradation of 2,4-dinitrotoluene and 2,6-dinitrotoluene in an aerobic fluidized-bed biofilm reactor // Environmental Science and Technology. – 1998. – Vol. 32. – No. 1. – P. 82–87.

188. Lever J.H., Taylor S., Perovich L., Biella K., Packer B. Dissolution of detonation residues of Composition B // Environmental Science and Technology. – 2005. – Vol. 39. – No. 22. – P. 8803–8811.

189. Lima D., Bezerra M., Neves E., Moreira F. Impact of ammunition and military explosives on human health and the environment // Rev. Environ. Health. – 2011. – No. 26. – P. 101–110.

190. Lin Z., Comet B., Qvarfort U., Herbert R. The chemical and mineralogical behaviour of Pb in shooting range soils from central Sweden // Environ. Pollut. – 1995. – No. 89. – P. 303–309.

191. Logan B.E., Zhang H., Mulvaney P., Milner M.G., Head I.M., Unts R.F. Kinetics of bacteria breathing perchlorate and chlorate // Applied and Ecological Microbiology. – 2001. – Vol. 67. – No. 6. – P. 2499–2506.

192. Love A.H., Vance A.L., Reynolds J.G., Davisson M.L. Investigating the affinities and persistence of VX nerve agent in environmental matrices // Chemosphere. – 2004. – No. 57. – P. 1257–1264.

193. Lynch J.C., Brannon J.M., Delfino J.J. Effects of component interactions on the aqueous solubilities and dissolution rates of the explosive formulations octol, composition B, and LX-14 // Journal of Chemical and Engineering Data. – 2002. – Vol. 47. – No. 3. – P. 542–549.

194. Lynch J.C., Myers K.F., Brannon J.M., Delfino J.J. Effects of pH and temperature on the aqueous solubility and dissolution rate of 2,4,6-trinitrotoluene (TNT), hexahydro-1,3,5-trinitro-1,3,5-triazine (RDX), and octahydro-1,3,5,7-tetranitro-1,3,5,7-tetrazocine (HMX) // Journal of Chemical and Engineering Data. – 2001. – Vol. 46. – No. 6. – P. 1549–1555.

195. Manduca P., Baraquni N.A., Parodi S. Long Term Risks to Neonatal Health from Exposure to War – 9 Years Long Survey of Reproductive Health and Contamination by Weapon-Delivered Heavy Metals in Gaza, Palestine // Int. J. Environ. Res. Public Health. – 2020. – No. 17. – P. 2538.

196. Marshall S.J., White G.F. Complete denitration of nitroglycerin by bacteria isolated from washing water // Applied and Ecological Microbiology. – 2001. – Vol. 67. – No. 6. – P. 2622–2626.

197. Martel R., Mailloux M., Gabriel U., Lefebvre R., Thiboutot S., Ampleman G. Behavior of Energetic Materials in Ground Water at an Anti-Tank Range // J. Environ. Qual. – 2009. – No. 38. – P. 75–92.

198. Martel R., Robertson T.J., Quan D.M. 2,4,6-Trinitrotoluene in soil and groundwater under a waste lagoon at the former Explosives Factory Maribyrnong (EFM), Victoria, Australia // Environmental Geology. – 2008. – Vol. 53. – No. 6. – P. 1249–1259.

199. Martin W.A., Felt D.R., Larson S.L., Fabian G., Nestler C. Open Burn/Open Detonation (OBOD) Area Management Using Lime for Explosives Transformation and Metals Immobilization; ERDC/EL TR-12-4; U.S. Army Corps of Engineers, Engineer Research and Development Center: Vicksburg, MS, USA, 2012.

200. Mataix-Solera J., Cerda A., Arcenegu V., Jordan A., Zavala L.M. Fire effects on soil aggregation: A review // Earth Sci. Rev. – 2011. – No. 109. – P. 44–60.

201. McDonough H.J. Performance Impacts of Nerve Agents and Their Pharmacological Countermeasures // Mil. Psychol. – 2002. – No. 14. – P. 93–119.

202. Meerschman E., Cockx L., Islam M.M., Meeuws F., Van Meirvenne M. Geostatistical Assessment of the Impact of World War I on the Spatial Occurrence of Soil Heavy Metals // Ambio. – 2011. – No. 40. – P. 417–424.

203. Monteil Rivera F., Groom K., Khavari J. Sorption and degradation of octahydro-1,3,5,7-tetranitro-1,3,5,7-tetrazocin in soil // Environmental Science and Technology. – 2003. – Vol. 37. – No. 17. – P. 3878–3884.

204. Motzer W.E. Perchlorate: Problems, Detection and Solutions // Environmental Expertise. – 2001. – Vol. 2. – Р. 301–311.

205. Munro N.B., Ambrose K.R., Watson A.P. Toxicity of the organophosphate chemical warfare agents GA, GB, and VX: Implications for public protection // Environ. Health Perspect. – 1994. – No. 102. – P. 18–38.

206. Newman B.D., Hickmott D.D., Gram P. Flow and high explosives transport in a semiarid mesa in New Mexico, USA // Vadose Zone Journal. – 2007. – Vol. 6. – P. 774–785.

207. Nishino S.F., Paoli G., Spain J.C. Aerobic biodegradation of dinitrotoluenes and pathway for bacterial degradation of 2,6-dinitrotoluene // Applied and Environmental Microbiology. – 2000. – Vol. 66. – P. 2138–2147.

208. Okkenhaug G., Gebhardt K.-A.G., Amstaetter K. [et al.]. Antimony (Sb) and lead (Pb) in contaminated shooting range soils: Sb and Pb mobility and immobilization by iron based sorbents, a field study // J. Hazard. Mater. – 2016. – No. 307. – P.336–343.

209. Olson K., Morton L. Long-Term Fate of Agent Orange and Dioxin TCDD Contaminated Soils and Sediments in Vietnam Hotspots // Open J. Soil Sci. – 2019. – No. 9. – P. 1–34.

210. Olson K., Morton L. Why Were the Soil Tunnels of Cu Chi and Iron Triangle in Vietnam So Resilient // Open J. Soil Sci. – 2017. – No. 7. – P. 34–51.

211. Olson K., Speidel D. Review and Analysis: Successful Use of Soil Tunnels in Medieval and Modern Warfare and Smuggling // Open J. Soil Sci.– 2020. – No. 10. – P. 194–215.

212. Ottesen R.T., Alexander J., Joranger T., Anderson M. Proposed Soil Guidelines; NGU Report 2007-019; Norges Geologiske Undersokelser: Trondheim, Norway, 2007.

213. Oxley J.K., Smith J.L., Rezende E., Pierce E. Quantification and aging of TNT mine residues after explosion // J Forensic Sci. – 2003. – Vol. 48. – No. 4. – P. 742–753.

214. Park J., Comfort S.D., Shi P.J., Machachek T.A. Formation of ammunition-contaminated soil with zero iron content and cationic surfactants // Journal of Environmental Quality. – 2004. – Vol. 33. – No. 4. – P. 1305–1313.

215. Pennington J.C., Brannon J.M. The Ecological Fate of explosives // Thermochimica Acta. – 2002. – Vol. 384. – No. 1-2. – P. 163–172.

216. Pennington J.C., Jenkins T.F., Ampleman G. Distribution and fate of energetics on dod test and training ranges: interim report 2 // ERDC TR-02-8, US Army Engineer Research and Development Center, Vicksburg, Miss, USA, 2002.

217. Pennington J.C., Jenkins T.F., Ampleman G. Distribution and fate of energetics on DOD test and training ranges: interim report 6 //TR-06-12, Strategic Environmental Research and Development Program, US Army Corps of Engineers Engineer Research and Development Center, Vicksburg, Miss., USA, 2006.

218. Pennington J.C., Jenkins T.F., Ampleman G. The distribution and fate of energy at the testing and training grounds of the Ministry of Defense: the final report // ERDC TR-06-13, Center for Engineering Research and Development of the US Army Corps of Engineers, Vicksburg, Missouri, USA, 2006.

219. Pennington J.C., Jenkins T.F., Thiboutot S. Distribution and fate of energetics on DoD test and training ranges: interim report 5 // TR 05-2, Strategic Environmental Research and Development Program, US Army Corps of Engineers Engineer Research and Development Center, Vicksburg, Miss, USA, 2005.

220. Pennington C., Patrick W.H. Adsorption and desorption of 2,4,6-trinitrotoluene by soils // Journal of Environmental Quality. – 1990. – Vol. 19. – No. 3. – P. 559–567.

221. Peth S., Beckmann F., Donath T., Fischer J., Smucker A. Three-Dimensional Quantification of Intra-Aggregate Pore-Space Features using Synchrotron-Radiation-Based Microtomography // SSSAJ. – 2008. – Vol. 72. – No. 4. – P. 897–907.

222. Phelan J.M., Romero J.V., Barnett J.L., Parker D.R. Solubility and dissolution kinetics of composition B explosive in water // SAND Report SAND2002-2420, Sandia National Laboratories, Albuquerque, NM, USA, 2002.