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C E N T E R F O R I N T E R N AT I O N A L E N V I R O N M E N TA L L AW
Abundance, and Fate of Gaseous
Atmospheric Pollutants was delivered to
W.A. Burhouse,84 Assistant Director of
API’s Committee for Air and Water
Conservation, the successor to the Smoke
and Fumes Committee.85 Authored by
SRI scientists Elmer Robinson and R.C.
Robbins, the report addressed six
pollutants, including carbon dioxide.86 It
cautioned that rising levels of CO2 would
likely result in rising global temperatures
and that, if temperatures increased
significantly, the result could be melting
ice caps, rising sea levels, warming oceans,
and serious environmental damage on a
global scale.87 The scientists
acknowledged that burning fossil fuels
provided the best explanation for rising
CO2. They further recognized that
existing science was “detailed” and
seemed “to explain adequately the present
state of CO2 in the atmosphere.”88
The 1968 report from SRI did not state
definitively that there was a scientific
consensus on questions of climate, but
concluded “[s]ignificant temperature
changes are almost certain to occur by the
year 2000 and these could bring about
climatic changes.”89 Robinson and
Robbins cautioned that these increased
temperatures could result in melting ice
caps, rising sea levels, warming oceans,
and environmental damage on a global
scale.90
In assessing future research needs with
respect to CO2, Robinson and Robbins
acknowledged that fossil fuel combustion
provided the best explanation for rising
carbon dioxide levels. More significantly,
they concluded that:
Past and present studies of CO2 are
detailed and seem to explain adequately
the present state of CO2 in the
atmosphere. What is lacking is an
application of these atmospheric CO2 data
to air pollution technology and work
toward systems in which CO2 emissions
would be brought under control.91
By no later than 1968, therefore, API and
its industry members were being warned
by their own scientific consultants that
the links between fossil fuel combustion
and rising atmospheric CO2 were
credible; that temperature rise was almost
certain to result; and that the most
pressing research need was into
technologies to address and control the
release of carbon dioxide into the
atmosphere from the burning of fossil
fuels. Although API quickly embraced
other aspects of the Robinson and
Robbins report, API asked SRI to review
their findings on CO2 more extensively in
a Supplemental Report submitted in
1969.92 This document had not yet been
obtained when CIEL initially published
its Smoke and Fumes database in 2016,
and it has not previously been reported
by other sources. Accordingly, and in
view of its early extensive treatment of
climate issues, it is discussed at length
here.
Unlike the original paper, the majority of
SRI’s 1969 supplemental report focused
on only two pollutants, one of which was
atmospheric carbon dioxide. This
supplement repeated and further
substantiated most of the core
conclusions of the prior report, including
its recognition that: atmospheric
concentrations of carbon dioxide were
steadily increasing; 90% of this increase
could be attributed to fossil fuel
combustion; and continued use of fossil
fuels would inevitably and inexorably
result in greater CO2 levels in the
atmosphere. They reviewed the role of
plant growth and of oceans both as
sources of and as natural sinks for carbon
dioxide. They found it unlikely that
either changes in marine biomass or other
natural changes in the biosphere could be
responsible for rising CO2 levels, and
further concluded that neither of these
natural sinks could keep pace with the
excess emissions created by burning fossil
fuels. As a result, Robinson and Robbins
estimated that the projected growth in
fossil fuel use would push atmospheric
CO2 to 370 ppm by the year 2000. This
estimate proved remarkably accurate.93
EXHIBIT 2
Excerpt from 1969 Supplemental Report to API
In their Supplemental Report to API,
Robinson and Robbins acknowledged
that the increase in atmospheric CO2 was
of potential concern because of how it
would affect the radiation balance of the
earth. They discussed at length, and with
approval, modeling done by Manabe and
Weatherald, and estimated that on the
basis of those models, an increase in CO2
to 370ppm would increase global
temperatures by 0.5 C (0.9 F) by the year
2000. Again, Robinson and Robbins’
estimate proved remarkably accurate;
between 1965 and 2000, long-term
average global temperatures increased by
approximately 0.5 C.94 They estimated
that at 600 ppm, temperatures would rise
by 2.36 C (4.2 F),95 while also