Climate Change

Climate change, a global phenomenon characterized by alterations in weather patterns, rising global temperatures, and an increase in extreme weather events, poses a significant challenge to sustainable development and directly impacts the United Nations' Sustainable Development Goals (SDGs). The SDGs, a collection of 17 interlinked global goals designed as a "blueprint to achieve a better and more sustainable future for all" by 2030, are intrinsically connected to climate action.

Central to this relationship is SDG 13: Climate Action, which calls for urgent measures to combat climate change and its impacts. This goal acknowledges that without immediate and sustained action to reduce greenhouse gas emissions, the achievement of other SDGs is at risk. Climate change exacerbates existing challenges such as poverty (SDG 1), hunger (SDG 2), and health issues (SDG 3) by disrupting livelihoods, food security, and health conditions. For instance, increased temperatures and changing precipitation patterns affect crop yields, leading to food insecurity. Similarly, the spread of diseases is influenced by climatic conditions, directly impacting public health.

Furthermore, climate change has a disproportionate impact on vulnerable populations, including those living in poverty, exacerbating inequalities (SDG 10). It affects access to clean water (SDG 6) and sanitation, with changing weather patterns disrupting water supply. The degradation of natural habitats and ecosystems under climate stress threatens life below water (SDG 14) and life on land (SDG 15), leading to biodiversity loss and affecting the livelihoods of those dependent on these ecosystems.

The economic impacts of climate change are also profound, affecting sustainable industrialization (SDG 9) and undermining economic growth (SDG 8). Severe weather events cause extensive damage to infrastructure and lead to economic losses, while changes in climatic conditions can impact industries such as agriculture, fishing, and tourism.

Moreover, climate change poses challenges to achieving sustainable cities and communities (SDG 11) as urban areas face increased risks of flooding, heatwaves, and air pollution. This necessitates the development of resilient infrastructure and adaptive urban planning. Additionally, the energy sector, integral to most economic activities, must transition towards clean and renewable sources (SDG 7) to mitigate climate change, highlighting the interdependence of the SDGs.

Global partnerships (SDG 17) are crucial in addressing climate change, as it is a global issue requiring international cooperation and funding. Developed countries are urged to support developing nations in climate mitigation and adaptation efforts, recognizing the shared responsibility and differing capacities among nations.

This study examines how climate change negatively affects education completion rates across communities in Cameroon, Ethiopia, Guinea, and Nigeria. It finds that rising temperatures, reduced rainfall, and environmental degradation are linked to lower completion rates, especially in disadvantaged areas, highlighting the urgent need for targeted mitigation policies.
Elsevier,

Control Engineering Practice, Volume 151, October 2024

A paper highlighting innovations designed to lower the emissions of newly constructed buildings, focusing on a study of adaptive high-rise buildings which can save significant resources and reduce the emissions seen in more traditional structures. The article supports SDGs 9, 11, 12 and 13.
Addressing the environmental impacts of lithium mining requires a multifaceted approach, from innovative recycling technologies to reducing reliance on lithium, funding research into mining alternatives, and stringent regulations on lithium mining.
Elsevier,

Resilient Futures
System Dynamics, Tech Innovations, and Climate Resilience
2025, Pages 113-134

This chapter ties into Sustainable Development Goal 13: Climate Action by focusing on the assessment and quantification of resilience to manage climate change risks and enhance adaptive capacity. By exploring methodologies, models, and real-world case studies, it provides valuable insights for stakeholders to effectively incorporate resilience metrics and climate change effects into research and policy.

This systematic literature review investigates the several impacts of climate change on smallholder farmers across the country.
Elsevier,

Sexual and Reproductive Healthcare, Volume 41, September 2024

How to prepare midwives for humanitarian catastrophes.
Elsevier,

The Climate Energy Nexus: Understanding the Relationship between Energy Production Systems and Climate Trends
2025, Pages 1-22

This chapter notably supports SDGs 7 (Affordable and Clean Energy), 12 (Responsible Consumption), and 13 (Climate Action) by helping readers to understand the interactions between energy consumption, emissions, and climate, and by introducing modeling approaches.

In this episode of the "World We Want" podcast, Márcia Balisciano interviews Michael L. Sena, founder and principal of ‘Michael L. Sena Consulting AB’, an expert in connected and automated vehicles, author of The Real Case for Driverless Mobility, and publisher and editor of The Dispatcher. In this episode they discuss about how and why we should be focusing on SDG goals that are directly related to transportation.
Elsevier,

Adaptive Engineering: a Sustainable Development Endeavor, Volume , 1 January 2024

This research aligns with Sustainable Development Goal 7 (Affordable and Clean Energy) by exploring the potential of ocean wave energy as a clean and renewable alternative to fossil fuels. Focusing on the performance improvement of Wells turbines, the study highlights advancements in turbine efficiency, energy production, and system optimization. The findings contribute to the development of sustainable renewable energy technologies, supporting the global transition towards cleaner, more efficient energy sources while addressing the challenges of pollution and resource depletion.
This study supports Sustainable Development Goals 7 (Affordable and Clean Energy) and 13 (Climate Action) by examining the role of renewable energy sectors, specifically solar photovoltaic and wind energy, in Europe's path toward climate neutrality by 2050. By analyzing innovation and R&D efficiency across EU countries, the study emphasizes how enhanced efficiency in renewable energy technologies can drive climate change mitigation and adaptation efforts. The findings provide valuable insights for future policies aimed at fostering sustainable energy transition and reducing Europe's carbon footprint.

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