Thursday, June 19, 2014

Like it or Not - Coal is here to stay

Coal is one of the cheapest and most abundant fossil fuel sources in the world. It is an indispensable natural resource which has allowed mankind to transform its surroundings at an unprecedented level.  Fossil fuels provide 85% of the world’s energy (Coal & Electricity). Approximately 39% of this share is produced from the combustion of coal. It is one of the most widely geographically distributed sources of energy. Coal power plants are among the most efficient fossil fuels. It requires the least amount of fuel to produce a kilowatt-hour of electricity when compared to petroleum or natural gas. For these reasons, developing countries often turn to coal to meet their energy needs. As these nations become increasingly industrialized, the global demand for energy is expected to increase by 42% by 2040 (Guo 2012). This growth is extremely problematic, because the ease of production and consumption comes at a heavy price. For all of its benefits; coal is the single largest source of carbon dioxide in the world. The future of coal is without question. It will continue to be used so long as it remains cheap and abundant. With the expectation of growth, it becomes especially important to address the issues of carbon dioxide emission now, in hopes of building a more environmentally sustainable future.

The upper safety limit for atmospheric Carbon dioxide is 350 parts per million (Jenkins 2014).  However, the current atmospheric concentration of carbon dioxide is just over 400 ppm. Simply reducing emissions will not address this issue; the world needs a way to physically remove the carbon dioxide from the atmosphere. For this reason, Carbon Capture and Storage, CCS, emerges as a key emission mitigation strategy.

A diagram of an advanced on-site Carbon Capture and Storage System. 

















The process works by capturing the carbon dioxide before it can enter the atmosphere. The carbon dioxide is collected and compressed to a liquid state and transported to a storage reservoir (Nijhuis 2014). The liquid carbon dioxide is then injected up to 1.5 underground into geologic formations for permanent storage (Nijhuis 2014). There are currently 12 large scale CCS system in operation and have achieved measurable success (Shin, John, 2013). It is estimated that the technology will have the capability to reduce carbon dioxide emission from prospective coal-fired power plants between 75 and 90% (Uibelesen, 2012).  The technology could be retrofitted to existing power plants. It would allow for the continued use of fossil fuels without the accompanying increase in carbon dioxide. CCS technology has been in development for several decades and shown remarkable success in small-scale production. 

It is imperative that we engineer a solution to address the elevating levels of atmospheric carbon dioxide. There is no general consensus to what capacity Carbon Capture and Storage system will play in this issue. CCS has been tested, extensively, and has shown to be technologically viable in small scale field studies. It is likely that a dramatic shift in the social and economic landscape will have to occur before CCS systems can begin commercial scale carbon mitigation. In my next post I will discuss several current events which pertain to my topic. What are your thoughts on Carbon Capture and Storage systems, do you think that they have real world applications, or are they just a ploy to continue reckless use of fossil fuels? I hope that this space will become an area for public discourse. Please feel free to share your thoughts on the matter.






References

Coal & Electricity. (n.d.). coal electricity, coal power plants. Retrieved May 30, 2014, from http://www.worldcoal.org/coal/uses-of-coal/coal-electricity/

Guo, L. (2012). The sustainable development system structural model of shaanxi coal industry. Journal of Sustainable Development, 5(1), 128-132. Retrieved from
http://search.proquest.com/docview/917635336?accountid=14541

Nijhuis, M. (2014, April 1). Can Coal Ever be Clean?. National Geographic, 225, 33 - 41.

Shin, G. K., & John, L. M. (2013). Revolutionary chemical looping technology advances CLEAN COAL. Power Engineering, 117(11), 22-24,26-28. Retrieved from http://search.proquest.com/docview/1468591363?accountid=14541









4 comments:

  1. James
    Your blog is very nicely written and factual. You have a lot of statistics and reliable sources to back up your claims. Your diagram is also very helpful for those that do not know your topic as well. Also the background image fits in perfectly with your blog, very professional.
    Personally I think we need to turn to other sources to power our machines I know a while back someone invented a car that ran on water and now we have some on electricity. So we are improving it is just hard getting it past the big companies that profit from our use.

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    1. Thank you for your helpful feedback. I think that renewable sources of energy are obviously the most ideal models for sustainability. But as you mentioned there are many obstacles that prevent the these types of technology from being viable. Clean coal technology will improve efficiency and give us a buffer period to begin switching to more desirable forms of energy. I will also be discussing the intersect between policy/politics and the research done on the subject

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  3. James
    Your blog was nice and I can say one thing for sure that the heading of your article may not be liked much by pollution activists. The fact that coal is available in abundance in the world and can meet the increasing electricity needs without a doubt is what really keeping coal in business. Most of the electricity that is produced today is still from coal. It is awe fully cheap as compared to solar and I think what really makes wind a competitive option is the carbon taxes. Also wind and solar are location specific and can’t promise the reliability. Nuclear technology is good and contains more power an coal thowever people are very scared of the word nuclear.

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