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Illustrate the geographical distribution of polymetallic nodules and discuss their significance.
Polymetallic nodules (PMNs) are potato-shaped, largely porous nodules found in abundance carpeting the sea floor of world oceans in deep sea. Besides manganese and iron, they contain nickel, copper, cobalt, lead, molybdenum, cadmium, vanadium, titanium, of which nickel, cobalt and copper are consideRead more
Polymetallic nodules (PMNs) are potato-shaped, largely porous nodules found in abundance carpeting the sea floor of world oceans in deep sea. Besides manganese and iron, they contain nickel, copper, cobalt, lead, molybdenum, cadmium, vanadium, titanium, of which nickel, cobalt and copper are considered to be of economic and strategic importance.
Geographical distribution of PMNs:
PMNs were first discovered in the 19th century in the Kara Sea, in the Arctic Ocean off Siberia. Later, they were found to occur in most oceans of the world. However, nodules of economic interest are more localized. Three areas have been selected by industrial explorers:
They can occur at any depth, but the highest concentrations have been found between 4,000 and 6,000m.
Significance of PMNs:
Recognizing the significance of PMNs, India launched its Deep Ocean Mission to explore PMNs in the Indian Ocean. It is expected that extracting PMNs will help India strengthen its strategic position vis- à-vis China besides helping its economy to grow.
See lessHydropower is a major source of low-carbon energy supply across the world but its share in India's total electricity generation remains low. Discuss.
In 2020, hydropower supplied around 17% of global electricity generation, the third-largest source after coal and natural gas. Hydropower provides for almost half of the total low carbon energy around the world due to its highly flexible nature. It also makes a major contribution to the security ofRead more
In 2020, hydropower supplied around 17% of global electricity generation, the third-largest source after coal and natural gas. Hydropower provides for almost half of the total low carbon energy around the world due to its highly flexible nature. It also makes a major contribution to the security of electricity systems worldwide. India ranks fifth in the world in terms of usable hydroelectric potential. It is endowed with a large hydropower potential of 1,48,700 MW of which only 29% has been exploited so far (CEA Report) against over 80% and 70% developed by the US and EU respectively. Further, the share of hydropower in the total capacity has declined from 50.36% in the 1960s to around 13% in 2018-19.
Reasons for low share of hydropower in India are as follows:
In the recent past, the government has approved targeted measures to promote hydropower development in India such as inclusion of large hydro power projects as renewable energy sources, Hydropower Purchase Obligation (HPO) as a separate category in the non-solar renewable purchase obligation (RPO), tariff rationalization measures, budgetary support for funding enabling infrastructure development, etc.
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