ENGINEERING MANUAL OF AUTOMATIC CONTROL
INDOOR AIR QUALITY FUNDAMENTALS
155
Table 2. U.S. Ambient Air Quality Standards.
Table 1. Annual Median Concentrations for TSP, NO2, O3, & CO—1979. a (continued)
Indoor Contaminant Sources
GENERAL
Indoor contaminant sources are generated by the occupants,
the processes conducted, construction, renovation and
maintenance activities, and the building materials and furnishings.
BUILDING MATERIALS AND FURNISHINGS
Building materials and furnishings generate Volatile Organic
Compounds (VOCs) including 4 to 16 carbon alkanes,
chlorinated hydrocarbons, alcohols, aldehydes, ketones, esters,
terpenes, ethers, aromatic hydrocarbons (e.g. benzene and
toluene), and heterocyclics. Building generated contaminants
are highest immediately after installation, reducing to a lower
level due to off gassing and ventilation, and then remain at that
level for an extended period.
However, the VOC concentrations increase during
unoccupied night and weekend periods when there is no
ventilation. Also, increased temperature increases the output
of VOCs from building materials. Table 3 lists Sources, Possible
Concentrations, and Indoor to Outdoor Concentration Ratios
of some indoor Pollutants (source: NRC 1981).
Concentrations listed are only those reported indoors. Both
higher and lower concentrations have been measured. No
averaging times are given. NA indicates it is not appropriate to
list a concentration.
For a detailed discussion of air contaminants refer to
ASHRAE Fundamentals Handbook 1997 Chapter 9, Indoor
Environmental Health, and Chapter 12, Air Contaminants.
Pollutant
Averaging Time
Primary Standard Levels
Secondary Standard Levels
Particulate matter
Annual (geometric mean)
75
µ
g/m
3
60
µ
g/m
3
24 hr
b
260
µ
g/m
3
150
µ
g/m
3
Sulfur oxides
Annual (arithmetic mean)
80
µ
g/m
3
(0.03 ppm)
—
24 hr
b
365
µ
g/m
3
(0.14 ppm)
—
3 hr
b
—
1300
µ
g/m
3
(0.5 ppm)
Carbon monoxide
8 hr
b
10 mg/m
3
(9 ppm)
10 mg/m
3
(9 ppm)
1 hr
b
40 mg/m
3
(35 ppm)
c
40 mg/m
3
(35 ppm)
Nitrogen dioxide
Annual (arithmetic mean)
100
µ
g/m
3
(0.05 ppm)
100
µ
g/m
3
(0.05 ppm)
Ozone
1 hr
b
240
µ
g/m
3
(0.12 ppm)
240
µ
g/m
3
(0.12 ppm)
Hydrocarbons
(nonmethane)
a
3 hr
(6 to 9 A.M.)
160
µ
g/m
3
(0.24 ppm)
160
µ
g/m
3
(0.24 ppm)
Lead
3 months
1.5
µ
g/m
3
1.5
µ
g/m3
a
A nonhealth-related standard used as a guide for ozone control.
b
Not to be exceeded more than once a year.
c
EPA has proposed a reduction of the standard to 29
µ
g/m3 (25 ppm).
Source: U.S. Environmental Protection Agency.
Concentration
µ
g/m
3
mg/m
3
Location
TSP (annual average)
b
NO
2
(1 hr average)
O
3
(1 hr average)
CO (1 hr average)
Pittsburgh
88-162
—
29
d
3.9
St. Louis
63-107
90 (d)
22
d
2.3
d
San Diego
57-75
69
39
1.1
San Francisco
51
46
20 e
2.1
Washington DC
47-70
52
29
1.6
a
EPA (1980)
b
Annual geometric mean of 24 hr averages
c
24 hr averages
d
Not a full year
e
Total oxidants
Source: Walden and Schiff (1983)
Summary of Contents for AUTOMATIC CONTROL SI Edition
Page 1: ...AUTOMATIC CONTROL for ENGINEERING MANUAL of COMMERCIAL BUILDINGS SI Edition ...
Page 4: ...ENGINEERING MANUAL OF AUTOMATIC CONTROL iv ...
Page 6: ...ENGINEERING MANUAL OF AUTOMATIC CONTROL vi ...
Page 46: ...ENGINEERING MANUAL OF AUTOMATIC CONTROL CONTROL FUNDAMENTALS 36 ...
Page 66: ...ENGINEERING MANUAL OF AUTOMATIC CONTROL PSYCHROMETRIC CHART FUNDAMENTALS 56 ...
Page 128: ...ENGINEERING MANUAL OF AUTOMATIC CONTROL ELECTRIC CONTROL FUNDAMENTALS 118 ...
Page 158: ...MICROPROCESSOR BASED DDC FUNDAMENTALS 148 ENGINEERING MANUAL OF AUTOMATIC CONTROL ...
Page 208: ...ENGINEERING MANUAL OF AUTOMATIC CONTROL BUILDING MANAGEMENT SYSTEM FUNDAMENTALS 198 ...
Page 493: ...INDEX ENGINEERING MANUAL OF AUTOMATIC CONTROL 483 INDEX ...
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