Cities are where climate change and human life collide most intensely. Over half of the world’s population now lives in urban areas, and this number is growing rapidly. These densely populated centers are both major contributors to greenhouse gas emissions and highly vulnerable to the impacts of a changing climate. Understanding what climate change is, what causes it, and how it affects cities at various scales is essential for developing effective urban responses.
Table of Contents
- What is climate change?
- What causes climate change?
- Natural factors
- Human-induced factors
- Climate change impacts at the global level
- Climate change impacts in India
- Changing monsoon patterns
- Glacial retreat and water security
- Climate change impacts at the city level
- Temperature increases and urban heat islands
- Precipitation variability and flooding
- Sea-level rise for coastal cities
- Responses to climate change
- International frameworks
- India’s national response
- Urban pathways to transformation
- The path forward
What is climate change?
Climate change refers to long-term shifts in global or regional climate patterns. However, there are two distinct ways of defining it depending on the context. The Intergovernmental Panel on Climate Change (IPCC) defines climate change as any identifiable change in the state of the climate-such as changes in the mean temperature or rainfall variability-that persists for decades or longer. Under this definition, climate change may result from natural internal processes, external forcings like volcanic eruptions, or human activities.
The United Nations Framework Convention on Climate Change (UNFCCC) takes a narrower approach. It defines climate change specifically as changes in climate that are attributed directly or indirectly to human activity that alters the composition of the global atmosphere. This distinction is important: the UNFCCC separates climate change caused by humans from natural climate variability, placing emphasis on anthropogenic factors for policy purposes.
What causes climate change?
Scientists have identified two broad categories of factors that influence Earth’s climate over time.
Natural factors
Historically, Earth’s climate has shifted due to astronomical factors such as variations in the planet’s orbit and axial tilt, which affect how much solar energy reaches different parts of the globe. Volcanic eruptions can also temporarily alter climate by releasing aerosols that reflect sunlight. These natural processes explain climate shifts over geological timescales.
Human-induced factors
The primary driver of modern climate change is the emission of anthropogenic greenhouse gases. These include carbon dioxide from burning fossil fuels, methane from agriculture and waste, and nitrous oxide from fertilizers and industrial processes. Economic growth and population expansion have dramatically increased these emissions since the Industrial Revolution.
The IPCC’s Sixth Assessment Report found that human influence on the climate system is now “unequivocal.” Atmospheric COโ concentrations have reached levels unprecedented in at least two million years. Fossil fuel combustion accounts for approximately 64% of global anthropogenic greenhouse gas emissions, with energy-related COโ emissions reaching a record 37.8 gigatons in 2024.
Climate change impacts at the global level
The consequences of rising greenhouse gas concentrations are already visible across the planet. Global temperatures have risen approximately 1.1ยฐC above pre-industrial levels, triggering changes that the IPCC describes as “widespread and rapid.” These include rising sea levels, more frequent and intense heatwaves, shifts in precipitation patterns, and the rapid disappearance of sea ice.
Every additional fraction of a degree matters significantly. According to the AR6 Synthesis Report, each 0.5ยฐC of additional warming causes clearly discernible increases in the frequency and severity of heat extremes, heavy rainfall events, and regional droughts. The window to limit warming to 1.5ยฐC above pre-industrial levels is rapidly closing.
Climate change impacts in India
India faces particular vulnerability to climate change due to its geography, population density, and economic dependence on climate-sensitive sectors like agriculture. Temperatures in India have risen by 0.7ยฐC between 1901 and 2018, and heat waves have increased in both frequency and intensity.
Changing monsoon patterns
The monsoon delivers about 80% of India’s annual rainfall and is crucial for agriculture, which employs over half the population. Climate change is making the monsoon increasingly erratic. The Council on Energy, Environment and Water reports that unpredictable rainfall patterns now trigger severe floods in some cities while leaving core monsoon states with significant deficits.
Research indicates a three-fold rise in extreme precipitation events across central India from 1950 to 2015. Climate projections suggest a 10-14% increase in southwest monsoon rainfall by the end of this century, accompanied by more heavy rainfall days. Paradoxically, this increased rainfall often comes in shorter, more intense bursts separated by longer dry spells, creating conditions for both floods and droughts in the same season.
Glacial retreat and water security
The Himalayan glaciers, which feed major rivers across India, are retreating at alarming rates. Approximately 67% of these glaciers have receded in recent decades, threatening long-term water security for millions who depend on rivers like the Ganga and Brahmaputra.
Climate change impacts at the city level
Cities face unique climate vulnerabilities due to their dense populations, extensive infrastructure, and the urban heat island effect. The Urban Climate Change Research Network’s ARC3.2 report provides climate projections for approximately 100 cities worldwide, documenting significant projected changes.
Temperature increases and urban heat islands
Indian cities are warming at nearly twice the rate of rural areas, with an average increase of 0.53ยฐC per decade according to a 2024 Nature study. Of this warming, 0.2ยฐC is directly attributed to urbanization itself-meaning cities experience roughly 38% more warming than surrounding regions. The urban heat island effect, caused by concrete surfaces, reduced vegetation, and waste heat from buildings and vehicles, amplifies the impacts of climate change in cities.
Precipitation variability and flooding
Cities face increasing risks from both too much and too little rain. The ARC3.2 report projects that extreme events including heat waves, droughts, heavy downpours, and coastal flooding will increase in frequency and intensity in cities worldwide. In India, this is already visible: Mumbai experienced rainfall 67,600% above average for late May 2024, shattering century-old records.
Sea-level rise for coastal cities
Coastal cities face the additional threat of rising seas. The UCCRN projects significant sea-level rise for coastal urban areas by the 2080s, threatening infrastructure, housing, and economic activity. Combined with more intense storm surges from tropical cyclones, this creates compound risks for cities like Mumbai, Chennai, and Kolkata.
Responses to climate change
Addressing climate change requires coordinated action across multiple governance levels, combining efforts to reduce emissions with strategies to adapt to unavoidable impacts.
International frameworks
The UNFCCC provides the overarching legal framework for international climate cooperation, with the goal of stabilizing greenhouse gas concentrations to prevent dangerous interference with the climate system. The 2015 Paris Agreement requires all parties to submit nationally determined contributions outlining their emission reduction commitments. The IPCC provides the scientific assessments that inform these negotiations and national policies.
India’s national response
India launched its National Action Plan on Climate Change (NAPCC) in 2008, establishing eight national missions covering solar energy, energy efficiency, sustainable habitat, water, Himalayan ecosystems, green India (forestry), sustainable agriculture, and strategic knowledge for climate change. The plan aims to advance development objectives while reducing the emission intensity of India’s economy.
The Apex Committee for Implementation of Paris Agreement now reviews progress on these missions, and states have developed their own State Action Plans on Climate Change aligned with national goals and local contexts.
Urban pathways to transformation
At the city level, the ARC3.2 Summary for City Leaders outlines five pathways to urban transformation. First, disaster risk reduction and climate adaptation form the cornerstones of resilient cities. Second, mitigation actions must reduce emissions while simultaneously building resilience. Third, inclusive planning processes must engage all urban stakeholders, particularly vulnerable communities. Fourth, urban institutions require strengthening to coordinate climate action across sectors. Fifth, cities must integrate climate considerations into all aspects of urban planning and design.
Indian cities like Ahmedabad, Nagpur, and Surat have begun implementing heat action plans and climate adaptation strategies. These include expanding urban forests, restoring water bodies, installing cool roofs, and improving drainage systems. Such integrated approaches address the interconnected challenges of heat, flooding, and air quality that climate change intensifies in urban environments.
The path forward
The scientific evidence is clear: climate change is happening, human activities are the primary cause, and cities are both major contributors and highly vulnerable to its impacts. The IPCC’s Sixth Assessment warns that even with sharp emission reductions today, decades more warming should be expected. Adaptation is essential, particularly for the world’s most vulnerable urban populations.
Yet the same reports confirm that effective solutions exist. Cities that take integrated action-reducing emissions while building resilience, engaging communities in planning, and strengthening urban governance-can secure more livable futures for their residents. The challenge lies in implementing these solutions at the scale and speed required.
What do you think? How can cities in developing countries balance urgent climate adaptation needs with their development priorities? What role should urban residents play in shaping their cities’ climate responses?
References
- https://www.ipcc.ch/sr15/chapter/glossary/
- https://unfccc.int/process-and-meetings/united-nations-framework-convention-on-climate-change
- https://css.umich.edu/publications/factsheets/climate-change/greenhouse-gases-factsheet
- https://www.wri.org/insights/2023-ipcc-ar6-synthesis-report-climate-change-findings
- https://www.weforum.org/stories/2023/03/the-ipcc-just-published-its-summary-of-5-years-of-reports-here-s-what-you-need-to-know/
- https://en.wikipedia.org/wiki/Climate_of_India
- https://www.ceew.in/publications/decoding-changing-monsoon-rainfall-patterns-due-to-climate-change-in-india
- https://e360.yale.edu/features/as-the-monsoon-and-climate-shift-india-faces-worsening-floods
- https://uccrn.ei.columbia.edu/arc3.2
- https://time.com/7300435/india-urbanization-climate-impacts-heat-monsoons/
- https://enb.iisd.org/negotiations/un-framework-convention-climate-change-unfccc
- https://pmc.ncbi.nlm.nih.gov/articles/PMC2822162/
- https://www.pib.gov.in/PressReleasePage.aspx?PRID=1845820
- https://www.uccrn-europe.org/second-uccrn-assessment-report-climate-change-and-cities-arc32-summary-city-leaders
- https://www.nrdc.org/stories/ipcc-climate-change-reports-why-they-matter-everyone-planet
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