Алкоксисилильные производные гуминовых веществ - синтез, строение и сорбционные свойства (1105546), страница 28
Текст из файла (страница 28)
P. 1097-1102.106. Шестаков Е.И., Карпухин А.И., Кауричев И.С., Рачинский В.В. Состав,устойчивость и доступность для растений водорастворимых органическихсоединений марганца //Почвовед. 1989. V. 12. C. 35-47.107. Saar R.A., Weber J.H. Fulvic acid: modifier of metal-ion chemistry.// Environ. Sci.Technol. 1982. V. 16 P. 510A-517A.108. Marinsky J.A.; Wolf A.; Bunz K. The binding of trace amounts of lead(II), copper(II),cadmium(II), zink(II), and calcium(II) to soil organic matter.
// J. Talant. 1980. V. 27. P.461-465.109. James A., Jacob A. Ultrafiltration as a technique for studying metal-humateinteractions: studies with iron and copper. // Anal. Chim. Acta. 1990. V. 232. P. 171177.110. Bryan N.D., Jones M.N. Aggregation of humic substances by metal ions measured byultracentrifugation. // Anal.
Chim. Acta. 2001. V. 437. P. 291-296.111. Blume H. P., Brummer G. Prediction of heavy metal behavior in soil by means ofsimple field tests. // Ecotoxic. Environ. Saf. 1991. V. 22. P. 265-285.112. Евдокимова Г.А., Морозова Н.М. Миграция тяжелых металлов из почвы всельскохозяйственные культуры. // В сб.: Тяжелые металлы в окружающей средеи охрана природы.
Мат. II Всесоюзн. конф., 28-30 дек. 1987 г., ч. II, М., 1988, С.204-209.113. Корнилович Б.Ю., Пшинко Г.Н., Ковальчук И.А. Влияние фульвокислот навзаимодействие U (VI) с глинистыми компонентами почв. // Радиохимия. 2001. Т.43. № 5. C. 464-467.114. Кабата-Пендиас А., Пендиас Х. Микроэлементы в почвах и растениях. М. 1989.439 с.166115. Skogerboe R.K., Wilson S.A. Reduction of ionic species by fulvic acid. // Anal. Chem.1981. V. 53. P. 228-234.116.
Bracewell J.M., Ertel J.R. Humic substances and their role in the environment. Reportof the Dahlem Workshop on Humic Substances and their role in the environment.Berlin 1987, March 29-April 3. Wiley & Sons. 1988. P. 163-177.117. Takahashi Y., Minai Y., Ambe S. Comparison of adsorption behavior of multipleinorganic ions on kaolinite and silica in the presence of humic acid using themultitracer technique. // Geochimica et Cosmochimica Acta.
1999. V. 63. P. 815-836.118. Shcherbina N., Perminova I., Kalmykov S., et al. Redox and complexationinteractions of neptunium(V) with quinon-enriched humic derivatives. // Environ. Sci.Technol. 2007. V. 41. P. 7010-7015.119. Szilagyi M. Reduction of Fe3+ ion by humic acid preparations.// Soil Sci. 1971. V.111. P. 233-245.120.
Alberts J.J., Schindler J.E., Miller R.W. Elemental mercury evolution mediated byhumic acid. // Science. 1974. V. 184. P. 895-899.121. Sunda W.G., Kieber D.J. Oxidation of humic substances by manganese oxides yieldslow-molecular-weight organic substrates. // Nature. 1994.
V. 367. P.62-67.122. Lu X., Johnson W.D., Hook J. Reaction of vanadate with aquatic humicsubstances.// Environ. Sci. Technol. 1998. V. 32. P. 2257-2262.123. Struyk Z., Sposito G. Redox properties of standard humic acids. // Geoderma. 2001. V.102. P. 329-332.124. Österberg R., Shirshova L.
Oscillating, nonequilibrium redox properties of humicacids. // Geochim. Cosmochim. Acta. 1997. V. 61. P. 4599-4608.125. Matthiessen A. Reduction of divalent mercury by humic substances – kineticand quantitative aspects. // Sci. Total Env. 1998. V. 213. P. 177-182.126. Visser S.A. Oxidation-reduction potentials and capillary activities of humic acids. //Nature. 1964.
V. 204. P. 581-586.127. Bender M.E., Matson W.R., Jordan S.A. On the significance of metal complexingagents in secondary sewage effluents. // Environ. Sci. Technol. 1970. V. 4(6). P. 520526.167128. Gachter R., Davis J.S., Marts A. Regulation of copper availability to phytoplanktonby. macromo1ecules in lake water. // Environ. Sci.
Technol. 1978. V.12(13). P. 14161419.129. Fisher, N.S., D. Frood. Heavy metals and marine diatoms: influence of dissolvedorganic compounds on toxicity and selection for metal tolerance among four species. //Mar. Biol. 1980. V. 59. P. 85–93.130. Luoma, S.N. Bioavailability of trace metals to aquatic organisms – A Review. // Sci.Total Environ. 1983. V. 28. P. 1–22.131. Landrum, P.F., Reinhold M.D., Nihart S.R., Eadie B.J. Predicting the bioavailabilityof organic xenobiotics to Pontoporeia Hoyi in the presence of humic and fulvicmaterials and natural dissolved organic matter. // Environ.
Toxicol. Chem. 1985. V. 4.P. 459–467.132. McCarthy, J.F., Jimenez B.D. Reduction in bioavailability to bluegills of polycyclicaromatic hydrocarbons bound to dissolved humic material. // Environ. Toxicol. Chem.1985. V. 4. P. 511–521.133. Pommery J., Imbenotte M. Relation entre toxicite et formes libres de quelques metauxtraces. // Environ. Poll. (Ser. B.) 1985. V.9. P.127–136.134.
Winner, R.W. Bioaccumulation and toxcity of copper as affected by interactionsbetween humic acid and water hardness. // Water Res. 1985. V. 19. P. 449–455.135. Perminova I.V., Lebedeva G.F., D.V. Kovalevsky D.V., Kulikova N.A., PhilippovaO.I., Danchenko N.N. Humic substances as natural detoxicants. Proceedings of the 7thMeeting of IHSS, teil 2, F7, 1996. P 36.136.
Анисимова М.А. Детоксицирующая способность почв и выделенных из нихгуминовых кислот по отношению к гербицидам. Дисс. канл.биол.наук. Москва.МГУ. 1997. 156 с.137. Khan S.U. Kinitics of hydrolisis of atrazine in aqueous fulvic acid solution. // Pest.Sci.1978. V. 9. P.38-43.138.
Giesy J.P., Newell A., Leversee G.J. Copper speciation in soft, acid, humic waters:effects on copper bioaccumulation by and toxicity to Simocephalus Serrulatus(Daphnidae). // Sci. Total. Environ. 1983. V.28. P. 23–36.139. Vymazal J.
Short–term uptake of heavy metals by periphyton algae. // Hydrobiologie.1984. V. 119 P. 171–179.168140. Oris J.T., Hall A.T., Tylka J.D. Humic acids reduce the photo-induced toxicity ofanthracene to fish and daphnia. // Environ. Toxicol. Chem. 1990. V. 9. P. 575–583.141. Варшал Г.М., Бугаевский А.А., Холин Ю.В., Мерный С.А., Велюханова Т.К.,Кощеева И., Красовицкий А.В.
Моделирование равновесий в растворахфульвокислот природных вод. // Химия и технология воды. 1990. Т. 12(11) С.979-986.142. Servos M.R., Muir D.C.G., Webster G.R.B. The effect of dissolved organic matter onthe bioavailability of polychlorinated dibenzo–p–dioxins. // Aquat. Toxicol. 1989. V.14. P. 169–184.143. McCarthy J.F. and Bartell S.M. How the trophic status of a community can alter thebioavailability and toxic effects of contaminants. Functional testing of aquatic biota forestimating hazards of chemicals.
ASTM STP 988, J. Cairns, Jr. and J.R. Pratt, Eds.,American Society for Testing and Materials, Philadelphia. 1988. P. 3–16.144. Hayes M.H.B. Adsorption of triazine herbicides on soil organic matter, including ashort review on soil organic matter chemistry. // Residue Rev. 1970. V. 32. P.131-174.145. Yates L.M., Engebretson R.R., Haakenson T.J. Immobilization of aqueous pyrene bydissolved humic acid. // Analytica Chimica Acta. 1997.
V. 356. P.295-300.146. Andre C., Truong T.T., Robert M. Construction and evaluation of a humic acidcolumn: implication for pesticide risk assessment. // Anal. Chem. 2005. V.77. P. 42014206.147. Kopinke F.D., Porschman J., Stottmeister U. Sorption of organic pollutants onanthropogenic humic matter. // Environ. Sci. Technol. 1995.
V.29. P. 941-950.148. Gilmour J.T., Coleman N.T., S-trizines adsorbtion studies: Ca-H-humic acid. // SoilSci. Soc. Amer. Proc. 1971. V. 35(2). P. 256-259.149. Sullivan J.D., Felbeck G.T., A study of the interaction Of S-triazine herbicides withhumic acids from three different soils. Soil Sci. 1968. V.
106(1). P. 42-47.150. Wang X.-P., Shan X.-Q., Luo L. Sirption of 2,4,6-trichlorophenol in model humicacid-clay system. // J.Agric. Food Chem. 2005. V. 53. P. 3548-3555.151. Aguirre F., Kapoor A., Sahay R.R., Wozniak A.L. Microbiological contaminatedbuilding materials assessments and resulting biologically active components. NY.2003.169152. Stewart I., Schluter Ph.J., Shaw G.R. 2006. Cyanobacterial lipopolysaccharides andhuman health – a review.
Environmental Health: A Global Access Science Source, 5:7,doi:10.1186/1476-069X-5-7.153. Майстренко В.Н., Хамитов Р.З., Будников Г.К. Эколого-аналитическиймониторинг суперэкотоксикантов. М.: Химия. 1996. 319 с.154. Диоксин. Гигиенические аспекты. Информационное письмо Минздрава СССР.М. 1990. 14 c.155. Fukushima M., Tatsumi K. Degradation characteristics of humic acid during photoFenton processes. // Analyt.