Consumers are swayed by data showing a company's dedication to preserving the environment. Additionally, companies are partnering with both national and international groups that advocate reduced deforestation and an increase in air quality. It is vital to quickly and accurately measure the effect of carbon emissions on the surrounding environment as this is the only way to know how to fix any present problems.
In the past, high costs and unclear data have prevented companies from using satellite imagery to analyze carbon dioxide emissions. Co2 levels could escalate and researchers would be none the wiser due to the lack of funding and access to the effective measurement that comes from satellite imagery. Today, satellite imagery is available to technicians all over the world at a fraction of the previous cost. With an increased importance on protecting the world's resources, minimizing carbon footprint effects are a primary focus.
WHAT DOES SATELLITE IMAGERY PROVIDE?
Satellite imagery utilizes both spatial and spectral information that is unavailable on other platforms. The spatial information obtained through satellite images accurately depict the realistic size of the affected area, scaled in proportion. The pixel size of the image will determine the scale.
Spectral information reaches areas of the electromagnetic scale that are normally unseen by the human eye. Viewing infrared, thermal and microwave signatures, technicians can easily form connections that were previously invisible.
Additionally, aerial imagery can also give visual pictures of the targeted area that are unattainable through satellite imagery. Aerial imagery gives a closer, more realistic view of the area under investigation.
ESTABLISH NORMAL CARBON DIOXIDE LEVELS
One of the main ways that satellite imagery promotes responsible carbon levels is by establishing a baseline. Without the knowledge of normal co2 in the atmosphere, how is the presence of irregular co2 in air detected? Satellite imagery uses images from different days over a set period of time to determine what is considered "usual" for the area's carbon balance. This is the first step in finding out where co2 emissions should be limited.
REDUCE CARBON EMISSIONS
Once regular carbon dioxide levels are in place, the process of categorizing unacceptable or erratic carbon emissions can begin. While acceptable carbon dioxide emissions come from natural resources, human greenhouse gas emissions are gradually changing the Earth's natural carbon cycle. Co2 emissions accounted for 82% of all U.S. greenhouse gas emissions in 2012. Organizations will not be able to correct this trend until the source of the problem is identified. By studying the different sources of Co2 emissions - electricity, transportation and industry - specialists can recognize areas where carbon dioxide levels can be cut down and restored to reasonable levels.
THE BENEFITS OF SATELLITE IMAGERY FOR CARBON FOOTPRINT REDUCTION
Satellite imagery allows users to gain access to a database that provides worldwide coverage of carbon dioxide emissions. Knowledge of carbon balance and a comprehensive carbon map will enable organizations to achieve the results needed when working towards reducing their carbon footprint and making long-term plans for co2 level reductions. Cost-effective satellite imagery can be achieved and the future positive affects of a healthy carbon balance are numerous, both for the organization and the entire global community.
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