43. Jenkins RA, Geurin MR, Tomkins BA The chemistry
of environmental tobacco smoke: composition and
measurement. Lewis Publishers, Boca-Raton, p 47
44. Winickoff JP et al (2009) Beliefs about the health
effects of ‘Thirdhand’ smoke and home smoking
bans. Pediatrics 123(1):e74–e79
45. Sleiman M et al (2010) Secondary organic aerosol
formation from ozone-initiated reactions with nicotine and secondhand tobacco smoke. Atmos Environ
44(34):4191–4198
46. Petrick LM, Svidovsky A, Dubowski Y (2011)
Thirdhand smoke: heterogeneous oxidation of nicotine and secondary aerosol formation in the indoor
environment. Environ Sci Technol 45(1):328–333
47. Ghaffarianhoseini A et al (2018) Sick building syndrome: are we doing enough? Archit Sci Rev
61(3):99–121
48. Jafari MJ et al (2015) Association of Sick Building
Syndrome with indoor air parameters. Tanaffos
14(1):55–62
49. Gupta S, Khare M, Goyal R (2007) Sick building
syndrome—a case study in a multistory centrally airconditioned building in the Delhi City. Build Environ
42(8):2797–2809
50. Wargocki P, Wyon DP, Baik YK, Clausen G, Fanger
PO (1999) Perceived air quality, sick building syndrome (SBS) symptoms and productivity in an office
with two different pollution loads. Indoor Air
9(3):165–179
51. Seppanen O, Fisk WJ, Lei QH (2006) Effect of
temperature on task performance in office environment. Ernest Orlando Lawrence Berkeley National
Laboratory, Berkeley. LBNL-60946
52. Bekö G, Clausen G, Weschler CJ (2008) Is the use of
particle air filtration justified? Costs and benefits of
filtration with regard to health effects, building
cleaning and occupant productivity. Build Environ
43(10):1647–1657
53. Richardson G, Eick S, Jones R (2005) How is the
indoor environment related to asthma?: literature
review. J Adv Nurs 52(3):328–339
54. Watanabe M et al (1995) Removal of mite allergens
from blankets: comparison of dry cleaning and hot
water washing. J Allergy Clin Immunol 96(6):
1010–1012
55. Custovic A et al (2000) Synthetic pillows contain
higher levels of cat and dog allergen than feather
pillows. Pediatr Allergy Immunol 11(2):71–73
56. Nishioka K, Yasueda H, Saito H (1998) Preventive
effect of bedding encasement with microfine fibers
on mite sensitization. J Allergy Clin Immunol
101(1):28–32
57. Sporik R et al (1998) The Melbourne house dust mite
study: long-term efficacy of house dust mite reduction strategies. J Allergy Clin Immunol 101(4):6
58. Oosting A-J et al (2002) Effect of mattress encasings
on atopic dermatitis outcome measures in a doubleblind, placebo-controlled study: the Dutch mite
avoidance study. J Allergy Clin Immunol 110(3):
500–506
59. PAW PDSA Animal Wellbeing Report (2018) The
people’s dispensary for sick animals, 2018
60. Custovic A, Chapman MS (1997) Indoor allergens as
a risk factor for asthma. Asthma 8:1–21
61. Sedlbauer K (2001). Prediction of mould fungus
formation on the surface of and inside building components. Fraunhofer Institute for Building Physics
62. Bernstein JA et al (2008) The health effects of nonindustrial indoor air pollution. J Allergy Clin
Immunol 121(3):585–591
63. Li N, Xia T, Nel AE (2008) The role of oxidative
stress in ambient particulate matter-induced lung diseases and its implications in the toxicity of
engineered nanoparticles. Free Radic Biol Med
44(9):1689–1699
64. Sundell J et al (2011) Ventilation rates and health:
multidisciplinary review of the scientific literature.
Indoor Air 21(3):191–204
65. Xu Y, Zhang J (2011) Understanding SVOCs.
Mechanical and aerospace engineering. ASHRAE
J 53(12):121–125
66. World Health Organization (ed) (2010) Who guidelines for indoor air quality: selected pollutants.
WHO, Copenhagen
67. Suh HH, Bahadori T, Vallarino J, Spengler JD
(2000) Criteria air pollutants and toxic air pollutants.
Environ Health Perspect 108(Suppl 4):625–633
68. Board on Population Health and Public Health Practice; Health and Medicine Division; National Academies of Sciences, Engineering, and Medicine
(2016) Sources of indoor particulate matter. National
Academies Press, Washington, DC
69. Health – United Nations Sustainable Development.
[Online]. Available https://www.un.org/sustainable
development/health/. Accessed 23 Mar 2019
70. Persily A (2015) Challenges in developing ventilation and indoor air quality standards: the story of
ASHRAE standard 62. Build Environ 91:61–69
71. Shendell DG, Prill R, Fisk WJ, Apte MG, Blake D,
Faulkner D (2004) Associations between classroom CO 2 concentrations and student attendance
in Washington and Idaho. Indoor Air
14(5):333–341
72. Gaihre S, Semple S, Miller J, Fielding S, Turner
S (2014) Classroom carbon dioxide concentration,
school attendance, and educational attainment.
J Sch Health 84(9):569–574
73. Persily AK (1997) Evaluating building IAQ and ventilation with indoor carbon dioxide. No. CONF970668. American Society of Heating, Refrigerating
and Air-Conditioning Engineers, Atlanta
74. Labban O, Chen T, Ghoniem AF, Lienhard JH,
Norford LK (2017) Next-generation HVAC: prospects for and limitations of desiccant and
160
Indoor Air Quality: Status and Standards
of environmental tobacco smoke: composition and
measurement. Lewis Publishers, Boca-Raton, p 47
44. Winickoff JP et al (2009) Beliefs about the health
effects of ‘Thirdhand’ smoke and home smoking
bans. Pediatrics 123(1):e74–e79
45. Sleiman M et al (2010) Secondary organic aerosol
formation from ozone-initiated reactions with nicotine and secondhand tobacco smoke. Atmos Environ
44(34):4191–4198
46. Petrick LM, Svidovsky A, Dubowski Y (2011)
Thirdhand smoke: heterogeneous oxidation of nicotine and secondary aerosol formation in the indoor
environment. Environ Sci Technol 45(1):328–333
47. Ghaffarianhoseini A et al (2018) Sick building syndrome: are we doing enough? Archit Sci Rev
61(3):99–121
48. Jafari MJ et al (2015) Association of Sick Building
Syndrome with indoor air parameters. Tanaffos
14(1):55–62
49. Gupta S, Khare M, Goyal R (2007) Sick building
syndrome—a case study in a multistory centrally airconditioned building in the Delhi City. Build Environ
42(8):2797–2809
50. Wargocki P, Wyon DP, Baik YK, Clausen G, Fanger
PO (1999) Perceived air quality, sick building syndrome (SBS) symptoms and productivity in an office
with two different pollution loads. Indoor Air
9(3):165–179
51. Seppanen O, Fisk WJ, Lei QH (2006) Effect of
temperature on task performance in office environment. Ernest Orlando Lawrence Berkeley National
Laboratory, Berkeley. LBNL-60946
52. Bekö G, Clausen G, Weschler CJ (2008) Is the use of
particle air filtration justified? Costs and benefits of
filtration with regard to health effects, building
cleaning and occupant productivity. Build Environ
43(10):1647–1657
53. Richardson G, Eick S, Jones R (2005) How is the
indoor environment related to asthma?: literature
review. J Adv Nurs 52(3):328–339
54. Watanabe M et al (1995) Removal of mite allergens
from blankets: comparison of dry cleaning and hot
water washing. J Allergy Clin Immunol 96(6):
1010–1012
55. Custovic A et al (2000) Synthetic pillows contain
higher levels of cat and dog allergen than feather
pillows. Pediatr Allergy Immunol 11(2):71–73
56. Nishioka K, Yasueda H, Saito H (1998) Preventive
effect of bedding encasement with microfine fibers
on mite sensitization. J Allergy Clin Immunol
101(1):28–32
57. Sporik R et al (1998) The Melbourne house dust mite
study: long-term efficacy of house dust mite reduction strategies. J Allergy Clin Immunol 101(4):6
58. Oosting A-J et al (2002) Effect of mattress encasings
on atopic dermatitis outcome measures in a doubleblind, placebo-controlled study: the Dutch mite
avoidance study. J Allergy Clin Immunol 110(3):
500–506
59. PAW PDSA Animal Wellbeing Report (2018) The
people’s dispensary for sick animals, 2018
60. Custovic A, Chapman MS (1997) Indoor allergens as
a risk factor for asthma. Asthma 8:1–21
61. Sedlbauer K (2001). Prediction of mould fungus
formation on the surface of and inside building components. Fraunhofer Institute for Building Physics
62. Bernstein JA et al (2008) The health effects of nonindustrial indoor air pollution. J Allergy Clin
Immunol 121(3):585–591
63. Li N, Xia T, Nel AE (2008) The role of oxidative
stress in ambient particulate matter-induced lung diseases and its implications in the toxicity of
engineered nanoparticles. Free Radic Biol Med
44(9):1689–1699
64. Sundell J et al (2011) Ventilation rates and health:
multidisciplinary review of the scientific literature.
Indoor Air 21(3):191–204
65. Xu Y, Zhang J (2011) Understanding SVOCs.
Mechanical and aerospace engineering. ASHRAE
J 53(12):121–125
66. World Health Organization (ed) (2010) Who guidelines for indoor air quality: selected pollutants.
WHO, Copenhagen
67. Suh HH, Bahadori T, Vallarino J, Spengler JD
(2000) Criteria air pollutants and toxic air pollutants.
Environ Health Perspect 108(Suppl 4):625–633
68. Board on Population Health and Public Health Practice; Health and Medicine Division; National Academies of Sciences, Engineering, and Medicine
(2016) Sources of indoor particulate matter. National
Academies Press, Washington, DC
69. Health – United Nations Sustainable Development.
[Online]. Available https://www.un.org/sustainable
development/health/. Accessed 23 Mar 2019
70. Persily A (2015) Challenges in developing ventilation and indoor air quality standards: the story of
ASHRAE standard 62. Build Environ 91:61–69
71. Shendell DG, Prill R, Fisk WJ, Apte MG, Blake D,
Faulkner D (2004) Associations between classroom CO 2 concentrations and student attendance
in Washington and Idaho. Indoor Air
14(5):333–341
72. Gaihre S, Semple S, Miller J, Fielding S, Turner
S (2014) Classroom carbon dioxide concentration,
school attendance, and educational attainment.
J Sch Health 84(9):569–574
73. Persily AK (1997) Evaluating building IAQ and ventilation with indoor carbon dioxide. No. CONF970668. American Society of Heating, Refrigerating
and Air-Conditioning Engineers, Atlanta
74. Labban O, Chen T, Ghoniem AF, Lienhard JH,
Norford LK (2017) Next-generation HVAC: prospects for and limitations of desiccant and
160
Indoor Air Quality: Status and Standards
