Biomonitoring by epiphytic lichen species—Pyxine cocoes (Sw.) Nyl.: understanding characteristics of trace metal in ambient air of different landuses in mid-Brahmaputra Valley

Author:

Daimari Rebecca,Bhuyan Pranamika,Hussain Sharfaa,Nayaka Sanjeeva,Mazumder M. A. Jafar,Hoque Raza Rafiqul

Funder

University Grants Commission

Publisher

Springer Science and Business Media LLC

Subject

Management, Monitoring, Policy and Law,Pollution,General Environmental Science,General Medicine

Reference61 articles.

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2. Aprile, G.G., Catalano, I., Migliozzi, A., & Mingo, A. (2011). Monitoring epiphytic lichen biodiversity to detect environmental quality and air pollution: the case study of Roccamonfina Park (Campania Region – Italy). In Anca Maria Moldoveanu (Ed), Air pollution – new developments. In Tech Publisher. 227–244.

3. Backor, M., & Loppi, S. (2009). Interactions of lichens with heavy metals. Biologia Plantarum, 53(2), 214–222.

4. Bajpai, R., Upreti, D. K., Nayaka, S., & Kumari, B. (2010). Biodiversity, bioaccumulation and physiological changes in lichens growing in the vicinity of coal-based thermal power plant of Raebareli district, North India. Journal of Hazardous Maaterials, 174, 429–436.

5. Bajpai, R., Mishra, G. K., Mohabe, S., Upreti, D. K., & Nayaka, S. (2011). Determination of atmospheric heavy metals using two lichen species in Katni and Rewa cities, India. Journal of Environmental Biology, 32, 195–199.

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