Ensure sustainable consumption and production patterns

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.

Elsevier,

Water Treatment Using Engineered Carbon Nanotubes, Micro and Nano Technologies series, 2024, Pages 63-96

Aligns with Goals 12 and 13 by describing the role of carbon-based materials in water treatment, the challenges to progress, and the future of these carbon-based materials in this field.
Elsevier,

Advances in Energy from Waste: Transformation Methods, Applications and Limitations Under Sustainability, Woodhead Advances in Pollution Research, 2024, Pages 503-524

This chapter ties into Sustainable Development Goal 7, Sustainable Development Goal 12, and Sustainable Development Goal 13 by promoting the use of waste-to-energy (WtE) technologies to convert waste into renewable and sustainable energy sources, by focusing on the circular bioeconomy and efficient waste management to ensure sustainable consumption and production patterns, and by addressing the mitigation of greenhouse gas emissions through WtE technologies to combat climate change and its impacts.
Elsevier,

Advances in Energy from Waste: Transformation Methods, Applications and Limitations Under Sustainability, Woodhead Advances in Pollution Research, 2024, Pages 225-279

This chapter ties into Sustainable Development Goal 11, Sustainable Development Goal 12, and Sustainable Development Goal 13 by focusing on designing sustainable waste management systems for smart cities, which enhances urban sustainability and resilience, by discussing AI-based waste management systems that optimize recycling, resource recovery, and efficient waste handling, promoting sustainable consumption and production patterns, and by exploring AI’s role in carbon emission assessment and energy transition processes, contributing to efforts to combat climate change and its impacts.
This chapter aligns with Goals 9, 11, 12 by emphasizing the responsible disposal of toxic building materials and providing guidance on selecting materials that have a positive effect on the health of occupants and the environment.
Elsevier,

Mxene-Based Hybrid Nano-Architectures for Environmental Remediation and Sensor Applications: From Design to Applications, Micro and Nano Technologies series, 2024, Pages 113-127

This chapter aligns with Goals 12 and 13 by highlighting the importance of various MXene-based hybrid nanomaterial types in the elimination of heavy metals from wastewater.
Elsevier,

Encyclopedia of Biodiversity, Third Edition, 2024, pp 152-166

This chapter advances the UN SDG goals 11 and 12 by reviewing the economic importance of biodiversity and the services that it provides to the rest of the economy, then considering the policy options available for better conservation of biodiversity.
This chapter advances UN SDGs 12, 11, and 7 by explaining the links between renewable energy, water, and the environment, with the explicit goal of meeting sustainable development goals.
Elsevier,

Oil Spill Detection, Identification, and Tracing, 2024, Pages 161-178

This chapter advances UN SDG goals 13 and 12 by addressing technologies that advance the detection of spills and protect marine ecology / environments as well as human health.
This chapter aligns with Goals 3 and 12 by emphasizing the development of sustainable materials and bio-inks, as well as 3D printing applications in medicine, food, and environmental science.

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