Environmental Engineering Reference
In-Depth Information
O'Connor B, Carman J, Eckert K, Tucker G, Givney R, Cameron S (2007) Does using potting
mix make you sick? Results from a Legionella longbeachae case-control study in South
Australia. Epidemiol Infect 135:34-39
Oh G, Jung G, Seo M, Im Y (2011) Experimental study on variations of CO 2 concentration in the
presence of indoor plants and respiration of experimental animals. Hortic Environ Biotechnol
52:321-329
Ondarts M, Hort C, Sochard S, Platel V, Moynault L, Seby F (2012) Evaluation of compost and a
mixture of compost and activated carbon as biofilter media for the treatment of indoor air
pollution. Environ Technol 33(3):273-284
Orwell RL, Wood RA, Tarran J, Torpy FR, Burchett M (2004) Removal of benzene by the indoor
plant/
substrate
microcosm
and
implications
for
air
quality.
Water
Air
Soil
Pollut
157:193-207
Orwell RL, Wood RA, Burchett MD, Tarran J, Torpy F (2006) The potted-plant microcosm
substantially reduces indoor air VOC pollution: II. Laboratory study. Water Soil Air Pollut
177:59-80
Patten S, Sur E, Sundaram R, Weinhardt B (2010) Dangers in the garden. The Lancet 376:844
Pasanen AL, Pasanen P, Jantunen MJ, Kalliokoski P (1991) Significance of air humidity and air
velocity for fungal spore release into the air. Atmos Environ Part A. Gen Topics 25:459-462
Pennisi SV, van Iersel MW (2012) Qunatification of carbon assimilation of plants in simulated
and in situ interiorscapes. HortScience 47:468-476
Pilon-Smits E (2005) Phytoremediation. Annu Rev Plant Biol 56:15-39
Pitkäranta M, Mekin T, Hyvärinen A, Paulin L, Auvinen P, Nevalainen A, Rintala H (2008)
Analysis of fungal flora in indoor dust by ribosomal DNA sequence analysis, quantitative
PCR, and culture. Appl Environ Microbiol 74(1):233-244
Redlich C, Sparer J, Cullen M (1997) Sick-building syndrome. Lancet 349:1013-1016
Rodgers K, Hutzel W, Dana M, Handy R (2012) Can plants save money: a look at the Biowall. In:
International high performance buildings conference, West Lafayette, Indiana
Rodgers K, Handy R, Hutzel W (2013) Indoor air quality (IAQ) improvements using bio-filtration
in a highly efficient residential home. J Green Build 8(1):22-27
Sakai K, Norbäck D, Mi Y, Shibata E, Kamijima M, Yamada T, Takeuchi Y (2004) A
comparison of indoor air pollutants in Japan and Sweden: formaldehyde, nitrogen dioxide,
and chlorinated volatile organic compounds. Environ Res 94:75-85
Sandhu A, Halverson LJ, Beattie GA (2007) Bacterial degradation of airborne phenol in the
phyllosphere. Environ Microbiol 9:383-392
Schmitz H, Hilgers U, Weidner M (2000) Assimilation and metabolism of formaldehyde by
leaves appear unlikely be of value for indoor air purification. New Phytol 147(2):307-315
Seppänen OA,
Fisk WJ
(2004) Summary
of human responses
to ventilation. Indoor
Air
14:102-118
Seppänen O, Fisk WJ, Lei QH (2006) Ventilation and performance in office work. Indoor Air
16:28-36
Shaughnessy RJ, Haverinen-Shaughnessy U, Nevalainen A, Moschandreas D (2006) A
preliminary study on the association between ventilation rates in classrooms and student
performance. Indoor Air 16:465-468
Singh
R,
Debarati
PD,
Jain
RK
(2006)
Biofilms:
implications
in
bioremediation.
Trends
Microbiol 14:389-397
Soreanu G, Dixon M, Darlington A (2013) Botanical biofiltration of indoor gaseous pollutants—
A mini-review. Chem Eng J 229:585-594
Staib F, Tompak B, Thiel D, Blisse A (1978) Aspergillus fumigatus and Aspergillus niger in two
potted ornamental plants, cactus(Epiphyllum truncatum) and clivia (Clivia miniata). Biol
Epidemiol Aspects Mycopathol 66:27-30
Summerbell RC, Krajden S, Kane J (1989) Potted plants in hospitals as reservoirs of pathogenic
fungi. Mycopathologia 106:13-22
Tans P (2014) NOAA/ESRL. www.esrl.noaa.gov/gmd/ccgg/trends/ . Accessed 3 Jan 2014
Search WWH ::




Custom Search