Friday, July 10, 2020

Plant- Microbial fuel cell: Generating electricity from green, living plants

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Charvi Trivedi

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Plant- Microbial fuel cell: Generating electricity from green, living plants

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Global Views 360

Publication Date

July 10, 2020

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Marshland near Blythburgh. View over the tidal River Blyth

Marshland near Blythburgh. View over the tidal River Blyth  | Source:  Eileen Henderson via Wikimedia

Humans are capable of discovering and creating great things with the help of science and one such impressive discovery is that green, living plants can generate electricity. It may seem unbelievable, but not impossible.

One must be wondering how this technology works. Well, the answer is quite simple; photosynthesis. Plants excrete organic matter into the soil as a result of photosynthesis. Only some of the organic matter is used by plants and the rest is released in the soil. This released organic matter is broken down by bacteria. In the breakdown process, electrons are released as a waste product. Since the movement of electrons produces electricity, these electrons, which are of no use to the plant, can be harvested. The best part about this innovation is that the plants from which energy is being generated are not affected in any way.

This idea was first put into use by a Dutch start-up called Plant-e. This company was launched in September 2009 and is successful in launching and selling many environment- friendly products like DIY kits to the public for experimentation purposes and modular systems which could be easily installed on green roofs for abundant electricity production. Plant-e is involved in various projects, within The Netherlands, like automatic lighting systems in gardens and many more.

This technology works with the plants which thrive in moist soils and where the water is present in abundance. Therefore marshlands, paddy fields and deltas are some of the most suitable places for setting up plant batteries as a huge amount of water is present in those areas. Hence, the use of this technology is limited to certain geographic areas containing moist soils and cannot be used in arid regions. It may, however, promote the growth of more trees and plants which will gradually reverse the malicious effects of global warming.

Another obstacle in widespread adoption of this technology in today’s time is the high cost of installation of the system. The initial adopters of this technology are those who are attracted by the efficiency and eco-friendly nature of the plant batteries and willing to pay a premium for it.

The concept of plant batteries can be further taken into rural areas where most of the population still does not have access to adequate electricity. It is estimated that plant-MFC technology can cover upto 20% of European Union’s primary future electricity needs. Also, plants are almost 100% efficient at converting photons from sunlight into electrons which indicates a bright future for this technology. However, more research needs to be done in this field.

Another innovation in the field of green electricity is using algae , which often grows in ponds and rivers, for generating electricity. The basic concept which explains the working is similar to the way plants are able to produce electricity; photosynthesis.

Various other ventures in the field of renewable energy also include vegetable batteries, meaning, electric power generated from fruits and vegetables like lemons, tomatoes and potatoes, have been investigated. According to experiments, at least 3 to 4 vegetables are required just to light a small LED bulb. Moreover, it leads to poisoning of the vegetables and those food products need to be thrown away, without being useful for consumption purposes. It is therefore not a viable option for energy production.

Plant based electricity generation is still an evolving technology which has immense potential for producing energy in an environmentally sustainable way. It will realise full potential when the installation cost is attractive enough for the farmers to prefer it over the electricity grids or fossil fuel based personal electricity generator sets.

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February 4, 2021 4:42 PM

COVID-19 in Iran: Fighting pandemic while facing US sanctions

After backing out of the nuclear deal with Iran in 2018, the United States had toughened the sanctions on petrochemical trade and other vital sectors of Iranian economy. The Iranian government is claiming that those sanctions are heavily affecting their ability to act against COVID-19.

These sanctions forced the Iranian government to significantly change infocus from curbing the spread of infections to stabilizing the economy.  There have been some restrictions but no lockdown imposed on the movement of people as the lockdown would further weaken the economy. Also, a lot of pharmaceutical companies aren’t willing to trade with Iran because of the fear of getting caught up in secondary sanctions, even though the US governments deny any restriction of the same. 

All of this has led to a global outcry against the sanctions. The United Kingdom is pushing the US to ease the sanctions because they believe that the hospitals in Iran are badly overstretched. The UK tried to provide direct support to the country via WHO, but Iran refused any help that didn't come with the lifting of the sanctions. The United Nations High Commissioner for Human rights, Michelle Bachelet, has urged the global community to rethink the existing sanctions on countries like Iran in the light of the current pandemic. The United States also offered humanitarian assistance to the state but was rejected by the Supreme Leader Khamanei, who declared the US as being charlatans and liars, and said that a wise man should not accept medicines from a country alleged of creating the virus. Russia, China and some other medical and rights groups have been urging the Trump administration to lift the sanctions. Over 21,000 lawyers and legal experts in Iran have signed a statement declaring that the US sanctions on Iran are anti-human. On the 26th of March, the US imposed even more sanctions, on more than 17 entities. The sanctions were announced a day after the family of a retired FBI agent claimed that the agent had died while in custody in Iran; two days after Ms. Bachelet made her statement on rethinking sanctions.

The crisis has touched most corners of the country, but it is most severely impacting the poor and working class. While it is older men who are dying in the highest numbers, the economic impact especially hurts women, who are most liable to lose work, and shoulder increased duties, looking after sick relatives and children staying home from school. Iranians’ purchasing power has plummeted in the past two years, as the mismanaged economy shuddered through Donald Trump’s withdrawal from the nuclear deal and the re-imposition of US sanctions. As Nahid, a women’s rights activist put it: “When people met this virus, their nutrition was already poorer, their immune systems were weakened, and many were already unable to afford health care.” Charities and private sector groups are joining together to raise funds for importing equipment and other medical supplies from China to set up facilities of COVID-19. However due to the sanctions it is becoming difficult to move money from Iran to any other country.

Arshi Tirkey, a Junior Fellow with Observer Research Foundation has put quite aptly: “It is true that political instability, corruption and economic mismanagement in Tehran have aggravated the issue; and likewise, this calls for governance reforms and financial transparency initiatives in Iran. But this is not the sole reason for the scarcity of medical equipment and the condition of health infrastructure in the country today. Sanctions remain a central impediment to improving Iran’s capacity to respond to the pandemic.”

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