Atmospheric Absorption of Fluoride by Cultivated Species. Leaf Structural Changes and Plant Growth

Author:

Mesquita Geisa Lima,Tanaka Francisco André Ossamu,Cantarella Heitor,Mattos Dirceu

Publisher

Springer Science and Business Media LLC

Subject

Pollution,Water Science and Technology,Ecological Modeling,Environmental Chemistry,Environmental Engineering

Reference43 articles.

1. Allmendinger, D. F., Miller, V. L., & Johnson, F. (1950). Control of fluorine scorch of gladiolus with foliar dusts and sprays. Proceedings of the American Society for Horticultural Science, 56, 427–432.

2. Alves, E. S., Tresmondi, F., & Longui, E. L. (2008). Análise estrutural de folhas de Eugenia uniflora L. (Myrtaceae) coletadas em ambientes rural e urbano, SP, Brasil. Acta Botanica Brasilica, 22(1), 241–248.

3. Arndt, U., Flores, F., & Weinstein, L. H. (1995). Fluoride effects on plants, diagnose of injury in the vegetation of Brazil. Porto Alegre: Editora da Universidade UFRGS.

4. Asthir, B., Basra, A. S., & Batta, S. K. (1998). Fluoride-induced alteration of carbon and nitrogen metabolism in developing wheat grains. Biologia Plantarum, 41(2), 287–292.

5. Ben Abdallah, F., Elloumi, N., Mezghani, I., Garrec, J. P., & Sfax, M. B. (2006). Industrial fluoride pollution of jerbi grape leaves and the distribution of F, Ca, Mg, and P in them. Research Report Fluoride, 39(1), 43–48.

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