126
Aničić Urosević M, Кrmar M, Radnović D (2020) The use of moss as an indicator of rare earth
element deposition over large area. Ecol Indic 109:105828
Aptroot A, Vаn den Boom PPG (1998) Pyrenocollema chlorococcum a new species with a
chlorococcoid photobiont from zinc-contaminated soils and wood Cryptogamie Bryologie.
Lichenologie 19:193–196
Aragon G, Martinez I, Hurtado P, Benitez A, Rodrigez C, Pieto M (2019) Using growth forms
to predict epiphytic lichen abundance in a wide variety of forest types. Diversity 11(4):1–14
Аrnold F (1900) Zur Lichenoflorа in München. Ber d Bаyer Botаn Ges 8
Asta J, Erhardt W, Ferretti M, Fornasier F, Kirschbaum U, Nimis PL, Purvis OW, Pirintsos S,
Scheidegger C, Van Haluwyn C, Wirth V (2002) Mapping lichen diversity as an indicator
of environmental quality. In: Nimis PL, Scheidegger C, Wolseley PA (eds) Monitoring with
lichens – monitoring lichens. Kluwer Academic Publishers, Dordrecht, pp 273–279
Attanayaka ANPM, Wijeyaratne SC (2013) Corticolous lichen diversity, a potential indicator for
monitoring air pollution in tropics. J Natn Sci Foundation Sri Lanka 41(2):131–140
Balabanova B, Stafilov T, Šajn R, Tӑnӑselia C (2017) Bioindication ability of Hypnum cupressiforme and Homolothecium lutescens for determination of arsenic distribution in environment.
J Agric Plant Sci 15(1/2):15–26
Biazrov LG (2002) Lichens in ecological monitoring (in Russian). Nauchnyi Mir, Moscow, p 362
Boltersdorf S, Werner W (2013) Source attribution of agriculture-related deposition by using total
nitrogen and N-15 in epiphytic lichen tissue, bark and deposition water samples in Germany.
Isotopes Environ Health Stud 49:197–218
Boltersdorf S, Pesch R, Werner W (2014) Comparative use of lichens, mosses and tree bark to
evaluate nitrogen deposition in Germany. Environ Pollut 189:43–53
Caggiano R, Calamita G, Sabia S, Trippetta S (2017) Biomonitoring of atmospheric pollution: a
novel approach for the evaluation of natural and anthropogenic contribution to atmospheric
aerosol particles. Environ Sci Pollut Res 24:8578–8587
Chase JM, Leibold MA (2002) Spatial scale dictates the productivity-biodiversity relationship.
Nature 416(6879):427–430
Conti ME, Cecchetti G (2001) Biological monitoring: lichens as bioindicators of air pollution
assessment—a review. Environ Pollut 114:471–492
Coppinis BJ, Vаn den Boom PPG (1995) Micаreа confusа а new species from zinc- аnd cаdmiumcontаminаted soils in Belgium аnd the Netherlаnds. Lichenologist 27:81–90
Das P, Joshi S, Rout J, Upreti DK (2013) Lichen diversity for environmental stress study: application of index of atmospheric purity (IAP) and mapping around a paper mill in Barak Valley,
Assam, Northeast India. J Trop Ecol 54:355–364
Davies L, Bates JW, Bell JNB, James PW, Purvis OW (2007) Diversity and sensitivity of epiphytes
to oxides of nitrogen in London. Environ Pollut 146:299–310
Davis JC (1986) Statistic and data analysis in geology. Willey in Sons, New York, p 651
De Sloover J, LeBlanc F (1968) Mapping of atmospheric pollution on the basis of lichen sensitivity. In: Misra R, Gopal B (eds) Proceedings of the Symposium on Recent Advances in Tropical
Ecology. Varanasi, India, pp 42–56
Djekić T, Ristić S, Stamenković S, Šajn R, Engelman M (2020) Lichen as indicators of air quality
in balneological center Prolom banja (Southern Serbia). J Geogr Inst Cvijic 70(2):101–113
Dobson FS (2005) Lichens. Richmond Publishing Co. Ltd., Richmond
Dufrêne M, Legendre P (1997) Species assemblages and indicator species: the need for a flexible
asymmetrical approach. Ecol Monogr 67:345–366
Duque L, Relvas H, Silveira C, Ferreira J, Monteiro A, Gama C, Rafael S, Freitas S, Borrego
C, Miranda AI (2016) Evaluating strategies to reduce urban air pollution. Atmos Environ
127:196–204
EU (2008) Directive 2008/50/EC of the European Parliament and the Council of 21 May 2008
on Ambient Air Quality and Cleaner Air for Europe and Directive (EU) 2015/ 1480 of 28
August 2015 on Reference Methods, Data Validation and Location of Sampling Points for the
Assessment of Ambient Air Quality
S. Ristić et al.
Aničić Urosević M, Кrmar M, Radnović D (2020) The use of moss as an indicator of rare earth
element deposition over large area. Ecol Indic 109:105828
Aptroot A, Vаn den Boom PPG (1998) Pyrenocollema chlorococcum a new species with a
chlorococcoid photobiont from zinc-contaminated soils and wood Cryptogamie Bryologie.
Lichenologie 19:193–196
Aragon G, Martinez I, Hurtado P, Benitez A, Rodrigez C, Pieto M (2019) Using growth forms
to predict epiphytic lichen abundance in a wide variety of forest types. Diversity 11(4):1–14
Аrnold F (1900) Zur Lichenoflorа in München. Ber d Bаyer Botаn Ges 8
Asta J, Erhardt W, Ferretti M, Fornasier F, Kirschbaum U, Nimis PL, Purvis OW, Pirintsos S,
Scheidegger C, Van Haluwyn C, Wirth V (2002) Mapping lichen diversity as an indicator
of environmental quality. In: Nimis PL, Scheidegger C, Wolseley PA (eds) Monitoring with
lichens – monitoring lichens. Kluwer Academic Publishers, Dordrecht, pp 273–279
Attanayaka ANPM, Wijeyaratne SC (2013) Corticolous lichen diversity, a potential indicator for
monitoring air pollution in tropics. J Natn Sci Foundation Sri Lanka 41(2):131–140
Balabanova B, Stafilov T, Šajn R, Tӑnӑselia C (2017) Bioindication ability of Hypnum cupressiforme and Homolothecium lutescens for determination of arsenic distribution in environment.
J Agric Plant Sci 15(1/2):15–26
Biazrov LG (2002) Lichens in ecological monitoring (in Russian). Nauchnyi Mir, Moscow, p 362
Boltersdorf S, Werner W (2013) Source attribution of agriculture-related deposition by using total
nitrogen and N-15 in epiphytic lichen tissue, bark and deposition water samples in Germany.
Isotopes Environ Health Stud 49:197–218
Boltersdorf S, Pesch R, Werner W (2014) Comparative use of lichens, mosses and tree bark to
evaluate nitrogen deposition in Germany. Environ Pollut 189:43–53
Caggiano R, Calamita G, Sabia S, Trippetta S (2017) Biomonitoring of atmospheric pollution: a
novel approach for the evaluation of natural and anthropogenic contribution to atmospheric
aerosol particles. Environ Sci Pollut Res 24:8578–8587
Chase JM, Leibold MA (2002) Spatial scale dictates the productivity-biodiversity relationship.
Nature 416(6879):427–430
Conti ME, Cecchetti G (2001) Biological monitoring: lichens as bioindicators of air pollution
assessment—a review. Environ Pollut 114:471–492
Coppinis BJ, Vаn den Boom PPG (1995) Micаreа confusа а new species from zinc- аnd cаdmiumcontаminаted soils in Belgium аnd the Netherlаnds. Lichenologist 27:81–90
Das P, Joshi S, Rout J, Upreti DK (2013) Lichen diversity for environmental stress study: application of index of atmospheric purity (IAP) and mapping around a paper mill in Barak Valley,
Assam, Northeast India. J Trop Ecol 54:355–364
Davies L, Bates JW, Bell JNB, James PW, Purvis OW (2007) Diversity and sensitivity of epiphytes
to oxides of nitrogen in London. Environ Pollut 146:299–310
Davis JC (1986) Statistic and data analysis in geology. Willey in Sons, New York, p 651
De Sloover J, LeBlanc F (1968) Mapping of atmospheric pollution on the basis of lichen sensitivity. In: Misra R, Gopal B (eds) Proceedings of the Symposium on Recent Advances in Tropical
Ecology. Varanasi, India, pp 42–56
Djekić T, Ristić S, Stamenković S, Šajn R, Engelman M (2020) Lichen as indicators of air quality
in balneological center Prolom banja (Southern Serbia). J Geogr Inst Cvijic 70(2):101–113
Dobson FS (2005) Lichens. Richmond Publishing Co. Ltd., Richmond
Dufrêne M, Legendre P (1997) Species assemblages and indicator species: the need for a flexible
asymmetrical approach. Ecol Monogr 67:345–366
Duque L, Relvas H, Silveira C, Ferreira J, Monteiro A, Gama C, Rafael S, Freitas S, Borrego
C, Miranda AI (2016) Evaluating strategies to reduce urban air pollution. Atmos Environ
127:196–204
EU (2008) Directive 2008/50/EC of the European Parliament and the Council of 21 May 2008
on Ambient Air Quality and Cleaner Air for Europe and Directive (EU) 2015/ 1480 of 28
August 2015 on Reference Methods, Data Validation and Location of Sampling Points for the
Assessment of Ambient Air Quality
S. Ristić et al.
