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Subject: Environment

  • [pib] Tso Kar Wetland Complex

    India has added Tso Kar Wetland Complex in Ladakh as its 42nd Ramsar site, which is a second one in the Union Territory (UT) of Ladakh. With this, India now has forty-two Ramsar sites.

    Try this PYQ:

    In which one among the following categories of protected areas in India are local people not allowed to collect and use the biomass?

    (a) Biosphere reserves

    (b) National parks

    (c) Wetlands declared under Ramsar convention

    (d) Wildlife sanctuaries

    Tso Kar Wetland Complex

    • It is a high-altitude wetland complex, consisting of two principal waterbodies, Startsapuk Tso, a freshwater lake of about 438 hectares to the south, and Tso Kar itself, a hypersaline lake of 1800 hectares to the north.
    • It is situated in the Changthang region of Ladakh.
    • It is called Tso Kar, meaning white lake, because of the white salt efflorescence found on the margins due to the evaporation of highly saline water.

    Ecological significance

    • Wetlands provide a wide range of important resources and ecosystem services such as food, water, fibre, groundwater recharge, water purification, flood moderation, erosion control and climate regulation.
    • They are, in fact, a major source of water and our main supply of freshwater comes from an array of wetlands which help soak rainfall and recharge groundwater.
    • The Tso Kar Basin is an A1 Category Important Bird Area (IBA) as per BirdLife International and a key staging site in the Central Asian Flyway.
    • The site is also one of the most important breeding areas of the Black-necked Crane (Grus nigricollis) in India.

    Back2Basics: Wetlands

    • A wetland is a distinct ecosystem that is flooded by water, either permanently or seasonally, where oxygen-free processes prevail.
    • The primary factor that distinguishes wetlands from other landforms or water bodies is the characteristic vegetation of aquatic plants, adapted to the unique hydric soil.
    • Wetlands provide a wide range of important resources and ecosystem services such as food, water, fibre, groundwater recharge, water purification, flood moderation, erosion control and climate regulation.

    What is the Ramsar Convention?

    • The Ramsar Convention on Wetlands of International Importance Especially as Waterfowl Habitat is a treaty for the conservation and sustainable use of such sites.
    • The convention, signed in 1971 in the Iranian city of Ramsar, is one of the oldest inter-governmental accords for preserving the ecological character of wetlands.
    • Also known as the Convention on Wetlands, it aims to develop a global network of wetlands for the conservation of biological diversity and for sustaining human life.
    • Over 170 countries are party to the Ramsar Convention and over 2,000 designated sites covering over 20 crore hectares have been recognised under it.
  • Mapping: Caspian Sea

    The Caspian is actually a lake, the largest in the world and it is experiencing a devastating decline in its water level that is about to accelerate.

    Note the countries bordering the Caspian Sea: Kazakhstan, Russia, Azerbaijan, Iran and Turkmenistan. Or else remember the acronym ‘TARIK(h)’ (Hindi word for date).

    You can frame a mnemonic statement of your choice. Do similarly for major lakes and inland seas. But dont let it move over TARIK pe TARIK!

    Caspian Sea

    • The Caspian Sea is the world’s largest inland body of water, variously classed as the world’s largest lake or a full-fledged sea.
    • As an endorheic basin, it lies between Europe and Asia.
    • An endorheic basin is a drainage basin that normally retains water and allows no outflow to other external bodies of water, such as rivers or oceans, but converges instead into lakes or swamps, permanent or seasonal that equilibrates through evaporation
    • Its level is the product of how much water is flowing in from rivers, mostly the mighty Volga to the north, how much it rains and how much evaporates away.
    • At the end of the century, the Volga and other northern rivers will still be there.
    • However, a projected temperature rise of about 3℃ to 4℃ in the region will drive evaporation through the roof.

    Now try this PYQ:

    Q.Which of the following has/have shrunk immensely/ dried up in the recent past due to human activities?

    1. Aral Sea
    2. Black Sea
    3. Lake Baikal

    Select the correct option using the code given below:

    (a) 1 only

    (b) 2 and 3 only

    (c) 2 only

    (d) 1 and 3 only

    Why in news?

    • By the end of the century, the Caspian Sea will be nine metres to 18 metres lower. That’s a depth considerably taller than most houses.
    • The Caspian’s surface is already dropping by 7 cm every year, a trend likely to increase.
    • It means the lake will lose at least 25 per cent of its former size, uncovering 93,000 sq km of dry land.
    • If that new land were a country, it would be the size of Portugal.

    Past strides in its level

    • The Caspian Sea has a history of violent rises and falls.
    • In Derbent, on the Caucasus coast of Russia, submerged ancient city walls testify to how low the sea was in medieval times.
    • Around 10,000 years ago, the Caspian was about 100 metres lower.
    • A few thousand years before that it was about 50 metres higher than today and even over spilt into the Black Sea.
  • World to breach 1.5°C threshold by 2027-2042

    The planet will breach the threshold of 1.5 degrees Celsius above pre-industrial levels between 2027 and 2042 according to new research.

    Ever wondered why is there so much of hue to halt the temperature rise at 1.5°C above pre-industrial levels, and why not 2°C? Read this newscard to get aware….

    What does that mean?

    • The world will heat up more than it can take much earlier than anticipated.
    • The Intergovernmental Panel on Climate Change (IPCC) had estimated that breach to occur between now and 2052.
    • But researchers have now claimed to have introduced a more precise way to project the Earth’s temperature based on historical climate data.

    The fuss over 1.5°C threshold

    • For decades, researchers argued the global temperature rise must be kept below 2C by the end of this century to avoid the worst impacts.
    • The idea of two degrees as the safe threshold for warming evolved over a number of years from the first recorded mention by economist William Nordhaus in 1975.
    • By the mid-1990s, European ministers were signing up to the two-degree limit, and by 2010 Cancun COP it was official UN policy.
    • However, small island states and low-lying countries were very unhappy with this perspective, because they believed it meant their territories would be inundated with sea-level rise.
    • They commissioned research which showed that preventing temperatures from rising beyond 1.5C would give them a fighting chance.

    Why 1.5°C is preferred over 2°C?

    • Global warming is already impacting people and ecosystems. The risks at 1.5°C and 2°C are progressively higher.
    • There will be worse heatwaves, drought and flooding at 2°C compared to 1.5°C. It is characterized as “substantial differences in extremes”.
    • Sea levels are expected to rise 10cm higher this century under 2°C of warming than 1.5°C.
    • The collapse of ice sheets in Greenland and Antarctica could lead to rises of several metres.
    • The quantity and quality of staple crops suffer under 2°C warming compared to 1.5C, as do livestock. That is bad for the availability of food in many parts of the world.

    New model shows the breach in threshold

    • The study according to which prediction model deployed reduced uncertainties by half compared to the approach used by the IPCC.
    • The IPCC uses the General Circulation Models (GCM) to express wide ranges in overall temperature projections.
    • This makes it difficult to circle outcomes in different climate mitigation scenarios.

    What is the General Circulation Model (GCM)?

    • GCM represents physical processes in the atmosphere, ocean, cryosphere and land surface.
    • It is the most advanced tool currently available for simulating the response of the global climate system to increasing greenhouse gas concentrations.
    • GCMs depict the climate using a three-dimensional grid over the globe, typically having a horizontal resolution of between 250 and 600 km.
    • Many physical processes, such as those related to clouds, also occur at smaller scales and cannot be properly modelled.

    Why GCM is tricky?

    • Climate models are mathematical simulations of different factors that interact to affect Earth’s climate, such as the atmosphere, ocean, ice, land surface and the sun.
    • The data is tricky, and predictions can more often than not be inaccurate.
    • For example, an IPCC model would predict a temperature increase of a massive range — between 1.9oC and 4.5oC — if carbon dioxide in the atmosphere is doubled.

    Back2Basics: Intergovernmental Panel on Climate Change

    • The IPCC is an intergovernmental body of the United Nations that is dedicated to providing the world with an objective, scientific information relevant to understanding the scientific basis of the risk of human-induced climate change.
    • It was established in 1988 by the World Meteorological Organization (WMO) and the United Nations Environment Programme (UNEP).
    • Its membership is open to all members of the WMO and UN.
    • The IPCC produces reports that contribute to the work of the United Nations Framework Convention on Climate Change (UNFCCC), the main international treaty on climate change.
    • The IPCC’s Fifth Assessment Report was a critical scientific input into the UNFCCC’s Paris Agreement in 2015.
  • Five years since Paris Agreement, an opportunity to build back better

    This article by the Ambassador of the European Union underscores the need for implementation and action on the commitments made in the Paris Agreement to deal with climate change.

    EU’s commitment to implement Paris Agreement

    • In December 2019, the European Commission launched the European Green Deal — roadmap to achieve climate neutrality in the EU by 2050.
    •  “Next Generation EU” recovery package and our next long-term budget earmark more than half a trillion euros to address climate change.
    • Recently  EU leaders unanimously agreed on the 2030 target of reducing greenhouse gas emissions by at least 55% compared to 1990 levels.

    Impact on low carbon technologies

    • These actions and commitments of the EU towards Paris Agreement will further bring down the costs of low carbon technologies.
    • The cost of solar photovoltaics has already declined by 82% between 2010 and 2019.
    • Achieving the 55% target will even help us to save €100 billion in the next decade and up to €3 trillion by 2050.

    EU working with India on climate actions

    • No government can tackle climate change alone.
    •  India is a key player in this global endeavour.
    • The rapid development of solar and wind energy in India in the last few years is a good example of the action needed worldwide.
    • India has taken a number of very significant flagship initiatives such as the International Solar Alliance, the Coalition for Disaster Resilient Infrastructure and the Leadership Group for Industry Transition.
    • India and Team Europe are engaged to make a success of the forthcoming international gatherings: COP 26 in Glasgow on climate change and COP 15 in Kunming on biodiversity.

    Way forward

    • The international community should come forward with clear strategies for net-zero emissions and to enhance the global level of ambition for 2030.
    • Our global, regional, national, local and individual recovery plans are an opportunity to ‘build back better’.
    • We will also need to foster small individual actions to attain a big collective impact.

    Conclusion

    With climate neutrality as our goal, the world should mobilise its best scientists, business people, policymakers, academics, civil society actors and citizens to protect together something we all share beyond borders and species: our planet.

  • Firefly Bird Diverters’ to save the Great Indian Bustard (GIB)

    The Environment Ministry along with the Wildlife Conservation Society (WCS) India has come up with a unique initiative a “firefly bird diverter” for overhead power lines in areas where Great Indian Bustard (GIB) populations are found in the wild.

    Try this PYQ:

    Q.Which one of the following groups of animals belongs to the category of endangered species?

    (a) Great Indian Bustard, Musk Deer, Red Panda, Asiatic Wild Ass

    (b) Kashmir Stag, Cheetah, Blue Bull, Great Indian Bustard.

    (c) Snow Leopard, Swamp Deer, Rhesus Monkey, Saras (Crane)

    (d) Lion Tailed Macaque, Blue Bull, Hanuman Langur, Cheetah

    Great Indian Bustard

    • The GIB is one of the heaviest flying birds and can weigh up to 15 kg which grows up to one metre in height.
    • In July 2011, the bird was categorised as “critically endangered” by the International Union for Conservation of Nature (IUCN).
    • It is considered the flagship grassland species, representing the health of the grassland ecology.
    • For long, conservationists have been demanding to secure this population, warning that the bird might get extinct in the coming decades.
    • It would become the first mega species to disappear from India after Cheetah in recent times.
    • Till the 1980s, about 1,500-2,000 Great Indian Bustards were spread throughout the western half of India, spanning eleven states.
    • However, with rampant hunting and declining grasslands, their population dwindled.

    Bird Diverters

    • The diverters are called fireflies because they look like fireflies from a distance, shining on power lines in the night.
    • GIBs are one of the heaviest flying birds in India. Therefore, when they encounter these wires, they are unable to change the direction of their flight.
    • Death is most cases is due to impact with the wires and not due to electrocution.
    • The diverter will not only save GIB but other species of large birds, including migratory birds.

    Why such a move?

    • GIB is one of the most critically threatened species in India, with less than 150 birds left in the wild.
    • A report has pointed out that power lines, especially high-voltage transmission lines with multiple overhead wires, are the most important current threat for GIBs in the Thar region.
    • They are causing unsustainably high mortality in about 15% of their population.
  • What is Winter Solstice?

    Yesterday, December 21, was Winter Solstice, the shortest day of the year in the Northern Hemisphere. In the Southern Hemisphere, conversely, it was Summer Solstice, the year’s longest day.

    Try this MCQ:

    Q.On 21st June, the Sun

    (a) Does not set below the horizon at the Arctic Circle

    (b) Does not set below the horizon at Antarctic Circle

    (c) Shines vertically overhead at noon on the Equator

    (d) Shines vertically overhead at the Tropic of Capricorn

    Why are the hours of daylight, not the same every day?

    • The explanation lies in Earth’s tilt.
    • And it’s not just the Earth — every planet in the Solar System is tilted relative to their orbits, all at different angles.
    • The Earth’s axis of rotation is tilted at an angle of 23.5° to its orbital plane.
    • This tilt — combined with factors such as Earth’s spin and orbit — leads to variations in the duration of sunlight than any location on the planet receives on different days of the year.

    Impact of the tilted axis

    • The Northern Hemisphere spends half the year tilted in the direction of the Sun, getting direct sunlight during long summer days.
    • During the other half of the year, it tilts away from the Sun, and the days are shorter.
    • Winter Solstice, December 21, is the day when the North Pole is most tilted away from the Sun.
    • The tilt is also responsible for the different seasons that we see on Earth.
    • The side facing the Sun experiences day, which changes to night as Earth continues to spin on its axis.

    Un-impacted regions

    • On the Equator, day and night are equal. The closer one moves towards the poles, the more extreme the variation.
    • During summer in either hemisphere, that pole is tilted towards the Sun and the polar region receives 24 hours of daylight for months.
    • Likewise, during winter, the region is in total darkness for months.

    Celebrations associated with the Winter Solstice

    • For centuries, this day has had a special place in several communities due to its astronomical significance and is celebrated in many ways across the world.
    • Jewish people call the Winter Solstice ‘Tekufat Tevet’, which marks the start of winter.
    • Ancient Egyptians celebrated the birth of Horus, the son of Isis (divine mother goddess) for 12 days during mid-winter.
    • In China, the day is celebrated by families coming together for a special meal.
    • In the Persian region, it is celebrated as Yalda or Shab-e-Yalda. The festival marks the last day of the Persian month of Azar and is seen as the victory of light over darkness.
    • Families celebrate Yalda late into the night with special foods such as ajeel nuts, pomegranates and watermelon, and recite works of the 14th century Sufi poet Hafiz Shirazi.

    In Vedic tradition

    • In Vedic tradition, the northern movement of the Earth on the celestial sphere is implicitly acknowledged in the Surya Siddhanta.
    • It outlines the Uttarayana (the period between Makar Sankranti and Karka Sankranti). Hence, Winter Solstice is the first day of Uttarayana.
  • Bihar to change Kosi’s course to save the ancient site

    The Bihar government will try to divert the course of the mighty Kosi River in Bhagalpur district to save an archaeological site discovered recently.

    Tap to read more about the Himalayan Drainage System:

    Drainage System | Part 3

    Kosi River: The Sorrow of Bihar

    • The Kosi is a trans-boundary river which flows through Tibet, Nepal and India.
    • The river crosses into northern Bihar, India where it branches into distributaries before joining the Ganges near Kursela in Katihar district.
    • Its unstable nature has been attributed course changes and the heavy silt it carries during the monsoon season, and flooding in India has extreme effects.
    • It is also known as the “Sorrow of Bihar” as the annual floods affect about 21,000 km2 of fertile agricultural lands thereby disturbing the rural economy.

    Why change its course?

    • Several priceless artefacts have been found at the Guwaradih village in Naugachhia sub-division of Bhagalpur district during the excavation of a mound.
    • These items could be 2,500-years-old and could be of interest for historians if conserved.
    • The historical sites are facing threats from the Kosi floods.
    • The Kosi currently flows around 300-400 metres from the site, while its old course is about two kilometres from the village.

    Threats posed by the move

    • Environmentalists have warned that changing the Kosi’s course could be disastrous for Bihar as seen in 2008.
    • At that time, the river had breached its mud embankments at Kushaha in Nepal.
    • The Kosi frequently changes its course naturally. If its course is artificially changed, it will cause floods and erosion in new areas, leading to massive displacement of people.
    • It then caused extensive damage to life and property downstream in five densely populated districts of northeast Bihar.
    • Some 500 people were killed and four million rendered homeless.
  • [pib] Leopard Population in India

    The Ministry of Environment, Forest and Climate Change has released the Status of Leopards Report.

    Confused over Leopard and Cheetah?

    The most common difference between these two animals is the patterns on their coat. At first glance, it may look like they both have spots, but in actual fact, a leopard has rosettes which are rose-like markings, and cheetahs have a solid round or oval spot shape.

    Indian Leopards

    • The Indian leopard (Panthera pardus fusca) is a leopard subspecies widely distributed on the Indian subcontinent.
    • It is one of the big cats occurring on the Indian subcontinent, apart from the Asiatic lion, Bengal tiger, snow leopard and clouded leopard.
    • It is listed as Vulnerable on the IUCN Red List because populations have declined following habitat loss and fragmentation, poaching for the illegal trade of skins and body parts.

    Leopards in India

    • India now has 12,852 leopards as compared to the previous estimate of 7910 conducted 2014.
    • More than 60% increase in population has been recorded.
    • The States of Madhya Pradesh, Karnataka and Maharashtra recorded the highest leopard estimates at 3,421, 1,783 and 1,690 respectively.
    • India’s world record tiger survey also estimated the population of leopards and the tiger range was found a home to 12,852 (12,172-13,535) leopards.

    Significance

    • The increase in Tiger, Lion & Leopards numbers over the last few years is a testimony to the conservation efforts and of the fledgeling wildlife & biodiversity of the country.

  • Species in news: Himalayan trillium

    The Himalayan trillium (Trillium govanianum), a common herb of the Himalayas was declared ‘endangered’ by the International Union for Conservation of Nature (IUCN) last week.

    Try this MCQ:

    Q.Recently, there was a growing awareness in our country about the importance of Himalayan nettle (Girardinia diversifolia) because it is found to be a sustainable source of-

    (a) Anti-malarial drug

    (b) Bio-diesel

    (c) Pulp for paper industry

    (d) Textile fibre

    Himalayan trillium

    • In recent years, the plant has become one of the most traded commercial plants of the Himalayan region, due to its high medicinal quality.
    • It is found in temperate and sub-alpine zones of the Himalayas, at an altitude from 2,400-4,000 metres above sea level.
    • Their existence has also been traced across India, Bhutan, Nepal, China, Afghanistan and Pakistan.
    • In India, it is found in four states only- Himachal Pradesh, Jammu and Kashmir, Sikkim, and Uttarakhand.
    • Often called Nagchatri, in local areas this herb grows to a height of 15-20 cm.

    Various applications

    • It has been used in traditional medicine to cure diseases like dysentery, wounds, skin boils, inflammation, sepsis, as well as menstrual and sexual disorders.
    • Recent experiments have shown that the rhizome of the herb is a source of steroidal saponins and can be used as an anti-cancer and anti-ageing agent.
    • This increased its market value and has now become an easy target for poachers.
  • Converting waste to energy

    The new plant at Bidadi has several advantages but also some operational challenges.

    Practice Question: Discuss the various benefits of waste to energy plants and challenges in running them successfully.

    The prospectus of new plant

    • The new 5 MW waste-to-energy plant is going to set up near Bidadi, Karnataka.
    • This plant is expected to process 600 tonnes per day of inorganic waste.
    • The inorganic waste, which consists of bad quality plastics and used cloth pieces, can be processed as Refuse Derived Fuel (RDF). This material has a calorific value of more than 2,500 kJ/kg.
    • This can be used to generate steam energy, which can be converted into electric energy.

    A well-planned plant

    • The waste-to-energy plants usually accept the RDF material generated in organic composting plants.
    • They also segregate the wet and inorganic material near the plant, convert organic waste to compost, and inorganic waste to energy.
    • About 50 tonnes of RDF generate 1 MW of power, which indicates that the plant at Bidadi has been appropriately designed.

    A permanent solution

    • Handling inorganic waste that is not fit for recycling has always been a challenge.
    • At present, these high-calorific materials are landfilled or left unhandled in waste plants and cause fire accidents.
    • Attempts to send this material to cement kilns have not fructified.
    • The proposed plant can source 600 tonnes per day of this RDF and generate 11.5 MW of power equivalent to 2.4 lakh units of power per day.
    • This will reduce the dependence on unscientific landfills, reduce fire accidents, and provide a permanent solution to recover value from inorganic waste.

    Challenges

    • Needed a good demonstration model – Over the last decade, several Indian cities have been trying to set up such plants but a good demonstration model is yet to be established.
    • Nature of waste – Technology suppliers are international organizations who struggle with the change in quality and nature of waste generated in Indian cities. A few plants in India have stopped operations for this reason.
    • The plants require fine inorganic material with less than 5% moisture and less than 5% silt and soil contents, whereas the moisture and inert content in the mixed waste generated is more than 15%-20%.
    • The sticky silt and soil particles can also reduce the calorific value.
    • Economic cost per unit of electricity – The other big challenge for this plant is the power tariff which is around ₹7-8 KwH which is higher than the ₹3-4 per KwH generated through coal and other means.

    Way forward

    • For the successful running, the plant needs to ease the challenge of handling inorganic waste, the efficiency of organic waste processing/ composting plants.
    • With the increasing waste generation in the coming years, there is a need for more such plants which are environment friendly. 

    Back2Basics: Refuse-derived fuel (RDF)

    • Refuse-derived fuel (RDF) is a fuel produced from various types of waste such as municipal solid waste (MSW), industrial waste or commercial waste.
    • It is selected waste and by-products with recoverable calorific value can be used as fuels in a cement kiln, replacing a portion of conventional fossil fuels, like coal, if they meet strict specifications.
    • Sometimes they can only be used after pre-processing to provide ‘tailor-made’ fuels for the cement process.
    • RDF consists largely of combustible components of such waste, as non-recyclable plastics (not including PVC), paper cardboard, labels, and other corrugated materials.
    • These fractions are separated by different processing steps, such as screening, air classification, ballistic separation, separation of ferrous and non-ferrous materials, glass, stones and other foreign materials and shredding into a uniform grain size, or also pelletized.
    • This produces a homogeneous material which can be used as a substitute for fossil fuels in e.g. cement plants, lime plants, coal-fired power plants or as a reduction agent in steel furnaces.