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KUOPPAMÄKI, K. et al. Biochar amendment in the green roof substrate affects runoff quality and

quantity.

Ecological Engineering

, v. 88, p. 1–9, mar. 2016.

LEE, J. Y.; LEE, M. J.; HAN, M. A pilot study to evaluate runoff quantity from green roofs.

Journal

of Environmental Management

, v. 152, p. 171–176, 1 abr. 2015.

LIU, Y.; BRALTS, V. F.; ENGEL, B. A. Evaluating the effectiveness of management practices on

hydrology and water quality at watershed scale with a rainfall-runoff model.

Science of The Total

Environment

, v. 511, p. 298–308, 1 abr. 2015.

LUNDHOLM, J. et al. Plant species and functional group combinations affect green roof ecosystem

functions.

PLOS ONE

, v. 5, n. 3, p. e9677, 12 mar. 2010.

MACAVOY, S. E. et al. Effectiveness of foam-based green surfaces in reducing nitrogen and

suspended solids in an urban installation.

Ecological Engineering

, v. 91, p. 257–264, 2016.

MALCOLM, E. G. et al. Measurements of nutrients and mercury in green roof and gravel roof runoff.

Ecological Engineering

, v. 73, p. 705–712, dez. 2014.

MASSERONI, D.; CISLAGHI, A. Green roof benefits for reducing flood risk at the catchment scale.

Environmental Earth Sciences

, v. 75, n. 7, p. 579, 1 abr. 2016.

MORUZZI, R. B.; MOURA, C. C. DE; BARBASSA, A. P. Avaliação do efeito da inclinação e umidade

antecedente na qualidade e quantidade das parcelas escoadas, percoladas e armazenadas em

telhado verde extensivo.

Ambiente Construído

, v. 14, n. 3, p. 59–73, set. 2014.

NAGASE, A.; DUNNETT, N. Amount of water runoff from different vegetation types on extensive

green roofs: Effects of plant species, diversity and plant structure.

Landscape and Urban Planning

,

v. 104, n. 3–4, p. 356–363, 15 mar. 2012.

NAWAZ, R.; MCDONALD, A.; POSTOYKO, S. Hydrological performance of a full-scale extensive

green roof located in a temperate climate.

Ecological Engineering

, v. 82, p. 66–80, set. 2015.

POE, S.; STOVIN, V.; BERRETTA, C. Parameters influencing the regeneration of a green roofs

retention capacity via evapotranspiration.

Journal of Hydrology

, v. 523, p. 356–367, abr. 2015.

PREGNOLATO, M. et al. Assessing urban strategies for reducing the impacts of extreme weather

on infrastructure networks.

Open Science

, v. 3, n. 5, p. 160023, 1 maio 2016.

RAZZAGHMANESH, M.; BEECHAM, S.; KAZEMI, F. Impact of green roofs on stormwater quality in

a South Australian urban environment.

Science of The Total Environment

, v. 470–471, p. 651–

659, 1 fev. 2014.

SCHMITTER, P. et al. Effect of catchment-scale green roof deployment on stormwater generation

and reuse in a tropical city.

Journal of Water Resources Planning and Management

, v. 142, n. 7,

p. 05016002, 2016.

SEIDL, M. et al. Effect of substrate depth and rain-event history on the pollutant abatement of green

roofs.

Environmental Pollution

, Selected Papers from Urban Environmental Pollution 2012. v. 183,

p. 195–203, dez. 2013.

SPEAK, A. F. et al. Metal and nutrient dynamics on an aged intensive green roof.

Environmental

Pollution

, v. 184, p. 33–43, jan. 2014.