jueves, 9 de junio de 2022

Referencias bibliográficas | 🍊 Teoría ácido-base | Joseleg

 | Ciencias de Joseleg | Química | Química del equilibrio | Teoría ácido base | (Ejercicios) (Generalidades) (Teoría de Arrhenius) (Teoría de Brønsted-Lowry) (Constante de disociación ácida Ka) (Introducción a la teoría de Lewis) (Producto iónico del agua Kw) (El pH) (Reacciones ácido-base) (Indicadores de acidez) (Efecto de la acidez en el suelo) (Referencias bibliográficas)

 

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Brady, N. C., & Weil, R. R. (2016). The nature and properties of soils . Columbus, EUA: Pearson Education. Inc.[Links].

Brock, W. H. (2016). The History of Chemistry: A Very Short Introduction. Oxford University Press.

Brown, T. L., LeMay, H. E. J., Bursten, B. E., Murphy, C. J., Woodward, P., & Stoltzfus, M. W. (2015). Chemistry the Central Science.

Clark, R. B., Frid, C., & Attrill, M. (1989). Marine pollution (Vol. 4). Clarendon Press Oxford.

Coleman, W. F. (2008). Molecular Models of Indicators. ACS Publications.

Eamon, W. (1980). New light on Robert Boyle and the discovery of colour indicators. Ambix, 27(3), 204–209.

Eliade, M., ET, & Ledesma, M. P. (1974). Herreros y alquimistas. Alianza Madrid.

García-García, J. L. (2020). El álgebra de la estequiometría. Educación química, 31(1), 138–150.

Garst, J. F. (1974). The extent of reaction as a unifying basis for stoichiometry in elementary chemistry. Journal of Chemical Education, 51(3), 194.

Goyer, R. A., Bachmann, J., Clarkson, T. W., Ferris Jr, B. G., Graham, J., Mushak, P., … Sharpe, W. (1985). Potential human health effects of acid rain: report of a workshop. Environmental Health Perspectives, 60, 355.

Gupta, N., Gaurav, S. S., & Kumar, A. (2013). Molecular basis of aluminium toxicity in plants: a review. American Journal of Plant Sciences, 4(12), 21.

Hansson, K., Olsson, B. A., Olsson, M., Johansson, U., & Kleja, D. B. (2011). Differences in soil properties in adjacent stands of Scots pine, Norway spruce and silver birch in SW Sweden. Forest Ecology and Management, 262(3), 522–530.

Haynes, R. J. (1982). Effects of liming on phosphate availability in acid soils. Plant and soil, 68(3), 289–308.

Huang, P. M., Li, Y., & Sumner, M. E. (2011). Handbook of soil sciences: resource management and environmental impacts. CRC Press.

Kopittke, P. M., Menzies, N. W., Wang, P., & Blamey, F. P. C. (2016). Kinetics and nature of aluminium rhizotoxic effects: a review. Journal of experimental botany, 67(15), 4451–4467.

Kumar, A., Patil, R. S., Dikshit, A. K., Islam, S., & Kumar, R. (2016). Evaluation of control strategies for industrial air pollution sources using American Meteorological Society/Environmental Protection Agency Regulatory Model with simulated meteorology by Weather Research and Forecasting Model. Journal of Cleaner Production, 116, 110–117.

Larrañaga, M. D., Lewis, R. J., & Lewis, R. A. (2016). Highlights in the History of Chemistry. Hawley’s Condensed Chemical Dictionary, Sixteenth Edition, 1462–1470.

Levere, T. H. (2001). Transforming matter: a history of chemistry from alchemy to the buckyball. JHU Press.

Mancuso, A. (2010). The Effect of the Accumulation of Heavy Metals in Soil on the Growth of Vegetation in the Long Island Solar Farm. Brookhaven National Laboratory.

Newman, M. C. (2014). Fundamentals of ecotoxicology: the science of pollution. CRC press.

Nørby, J. G. (2000). The origin and the meaning of the little p in pH. Trends in biochemical sciences, 25(1), 36–37.

Pardue, H. L., Odeh, I. N., & Tesfai, T. M. (2004). Unified approximations: A new approach for monoprotic weak acid-base equilibria. Journal of chemical education, 81(9), 1367.

Rout, G., Samantaray, S., & Das, P. (2001). Aluminium toxicity in plants: a review. Agronomie, 21(1), 3–21.

Rouwet, D., Hidalgo, S., Joseph, E. P., & González-Ilama, G. (2017). Fluid geochemistry and volcanic unrest: dissolving the haze in time and space.

Sgambato, F., Prozzo, S., Sgambato, E., Sgambato, R., & Milano, L. (2012). The 100th anniversary of the invention of pH (1909-2009)-Part II. Was it really necessary to replace the Henderson equation with that of Henderson-Hasselbalch? Italian Journal of Medicine, 5(4), 215–226.

Shavrukov, Y., & Hirai, Y. (2015). Good and bad protons: genetic aspects of acidity stress responses in plants. Journal of experimental botany, 67(1), 15–30.

Slessarev, E. W., Lin, Y., Bingham, N. L., Johnson, J. E., Dai, Y., Schimel, J. P., & Chadwick, O. A. (2016). Water balance creates a threshold in soil pH at the global scale. Nature, 540(7634), 567.

Sörensen, S. P. L. (1912). Über die Messung und Bedeutung der Wasserstoffionen-konzentration bei biologischen Prozessen. Ergebnisse der Physiologie, 12(1), 393–532.

Sparks, D. L. (2003). Environmental soil chemistry. Elsevier.

Sumner, M. E., & Farina, M. P. W. (1986). Phosphorus interactions with other nutrients and lime in field cropping systems. En Advances in soil science (pp. 201–236). Springer.

Thomas, G. W. (1996). Soil pH and soil acidity. Methods of Soil Analysis Part 3—Chemical Methods, (methodsofsoilan3), 475–490.

Timberlake, K. C. (2015). Chemistry An Introduction to General, Organic, and Biological Chemistry (15a ed.). USA: Pearson.

Truog, E. (1947). The liming of soils. The yearbook of agriculture 1947: Science in farming, 566–576.

Van Breemen, N., Driscoll, C. T., & Mulder, J. (1984). Acidic deposition and internal proton sources in acidification of soils and waters. Nature, 307(5952), 599.

van Breemen, N., Mulder, J., & Driscoll, C. T. (1983). Acidification and alkalinization of soils. Plant and soil, 75(3), 283–308.

Veron, J. E. N. (2008). Mass extinctions and ocean acidification: biological constraints on geological dilemmas. Coral Reefs, 27(3), 459–472.

 

 

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