By Kim C., Kim S., Park M.
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17] CONCLUSION Successful organizations include energy management in their management information systems. At the very least, they track consumption, identify and respond to trends, base energy purchase strategies on detailed knowledge of their consumption patterns, and determine performance indices for comparison to their own facilities over time and benchmarks for other similar facilities. , consumption per unit of production, consumption per unit of ﬂoor space, consumption cost as a fraction of total product cost, and others) their usefulness in driving performance improvement may be limited.
Fig. 1081/E-EEE-120042243—4/5/2007—19:46—RATHNAS—221750—XML Taylor & Francis Encyclopedias Air Emissions Reductions from Energy Efﬁciency Acc Aud 10 Fig. 1 Global temp and CO2 vs time. temperature as the CO2 concentration increases while Fig. 2 shows the noticeable rise in both CO2 and CO concentrations in the atmosphere. Overall, energy cost reduction is the best solution for reducing GHG air emissions because it provides the only mechanism that allows a user to invest capital and reap a direct economic return on that investment while simultaneously receiving CO2 reductions due to reductions in consumption of electricity and fossil fuels.
Therefore, the argument follows that if one saves electricity consumption, one does not “help” the environment by reducing GHG emissions. Thus far, this argument is not widely accepted in the environmental community. However, in practice, all geographic areas have (inefﬁcient, old) fossil fuel plants as “topping” systems at a minimum, to cover the electricity that could not be produced from base-loaded hydro or nuclear energy. In such cases, this energy efﬁciency would translate to a reduction in operation for these polluting fossil plants as the “last run” unit.