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Let’s switch over to the subtopic of Bioenergy.

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Bioenergy

Let’s switch over to the subtopic of Bioenergy. It is defined as any form of energy in which the fuel source is of a biological nature; meaning it has been organically grown. Bioenergy has a diverse range of fuels from which it can be extracted. This results in a wide variety of bioenergy products (Bhasin, 2013).

Bioenergy has an advantage of being able to be changed andor altered the fuel source being used if it is discovered to have any potential negative impacts to the environment or society. It can be derived from different biofuels; which utilize similar types of energy-extraction technology. Biofuels can be stored easily and in large quantities. In other words, its renewability and ability to be produced in large quantities gives it an advantage. Bioenergy’s energy storing aspect offers a significant advantage over other energy sources – i.e. solar and wind. Bioenergy is the oldest form of energy utilized by mankind. It can be in solid biomass form of liquid biofuel form (i.e. bioethanol or biodiesel) (Bhasin, 2013).

Biofuels have a substantial impact on the economy, especially in large quantities, as an alternative to the more conventional fossil fuels such as coal and oil. It has not been conclusively proven that biofuels offer the kind of alternative that counteracts the negative consequences of their uses. There are also concerns around the possible impacts, as it relates to resource efficiency, of biofuel production on the environment, ecology, and national energy security. Bioenergy production can potentially bring on negative effects on the environment in many perspectives including greenhouse gas emissions, biodiversity and soil organic carbon, land locations, etc. (Wu, 2018). The concerns also include the ‘water debate” that involves the food versus fuel debate in which water resources are shared between food and cash crops. This debate is extremely important for people in tropical third world nations. The end result would be the improvement of energy security at the cost of water security (Bhasin, 2013).

Reflection: Bioenergy, along with other alternative energy sources (i.e. solar, wind, tidal, and possibly nuclear) is considered as the energy source of the future. As with all alternative energy sources there are concerns about its impact on the global economy and rather it is truly a better option than the regular fossil fuel-based option. Continuous attention is paid to the environmental protection as bioenergy is developed, extracted, and produced. There are numerous advantages in utilizing bioenergy as an alternative energy source. It is derived of organic resources. When you consider the factors, the environmental impacts of bioenergy are not as bad as the potential consequences of the oil powered economy. The ease in the storage of bioenergy is also a plus. Bioenergy is an extremely powerful renewable alternative energy source that aims to meet the growth of the world’s population, safeguard energy security, and mitigate the global warming (Yu, 2018). The goal is not to completely replace the traditional energy sources. It is just to have a diverse array of energy source options for the future of human civilization (Bhasin, 2013).

 
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