Sustainable consumption and production

Sustainable consumption and production (SCP) is at the core of the United Nations Sustainable Development Goals (SDGs), specifically addressed by SDG 12. This goal aims to "ensure sustainable consumption and production patterns," acting as a cross-cutting theme that feeds into other SDGs such as those related to climate change, poverty, health, and sustainable cities.

SCP involves using services and products in a way that minimizes environmental damage, preserves natural resources, and promotes social equity. The purpose is to decouple economic growth from environmental degradation, which means pursuing economic development in a way that can be sustained by the planet over the long term. SCP requires changes at all levels of society, from individuals to businesses to governments.

At the individual level, SCP implies making lifestyle choices that reduce environmental impact. This might include reducing, reusing, and recycling waste, choosing products with less packaging, and opting for more sustainable forms of transport like cycling or public transport.

For businesses, SCP entails adopting sustainable business models and practices. This could include improving resource efficiency, investing in renewable energy, designing products that are durable and recyclable, and ensuring fair labor practices.

At the government level, SCP involves implementing policies that support sustainable business practices and incentivize sustainable consumer behavior. This might involve regulations to reduce pollution, subsidies for renewable energy, and campaigns to raise awareness about sustainable consumption.

SCP also plays a role in several other SDGs. For example, sustainable production practices can help mitigate climate change (SDG 13) by reducing greenhouse gas emissions. Additionally, by reducing the pressure on natural resources, SCP supports the goals related to life below water (SDG 14) and life on land (SDG 15).

While progress has been made in certain areas, challenges remain in achieving the shift towards SCP. These include existing patterns of overconsumption, limited awareness about the impacts of consumption, and the need for technological innovation to enable more sustainable production.

International Day for Biological Diversity 2026, celebrated under the theme “Acting locally for global impact”, highlights how local actions and community-led efforts can drive meaningful global progress in protecting biodiversity. To mark the occasion, Elsevier has curated a special collection of journal articles and book chapters exploring biodiversity, ecosystems, sustainability, and environmental resilience, including research on topics such as the diversity of soil microorganisms and their impact on soil functions. 

Energy security is closely related to national security, particularly in the realm of energy production and consumption as well as energy transformation capacity (e.g., refinement and storage capabilities). Similarly, environmental and climate and health security have been identified as key drivers of national security and associated national resilience indicators. We explore these dynamics with a focus on the Indo-Pacific region and present potential methods of reconciling competing priorities to ensure regional stability and security.
China's government has launched a series of frestation initiatives to increase forest coverage for both carbon neutrality and ecological resilience goals. This study explores whether China's forestation intiatives play a positive role overall, analyzing its implications on the land-energy-water-emission-biodiversity nexus.
Front cover of the Trailblazers & Transformers report featuring images including a wind turbine and a crate of vegetables

To help companies strengthen competitiveness and resilience, the UN Global Compact Network UK, in collaboration with University College London, Newcastle University, and Euromonitor International, has developed the report “Trailblazers & Transformers: UK Business Sectors Redefining Sustainability,” examining how six high-impact sectors in the UK are performing against the Sustainable Development Goals (SDGs).  Drawing on rigorous data and market insights, the report identifies sector-specific challenges, benchmarks performance, and presents actionable recommendations to support effectiv

Elsevier,

Integrated Strategies for Developing Sustainable Energy Systems: From Carbon Capture to Energy System Optimization, 2026, Pages 1-12

This chapter supports UN SDG 7 (Affordable and Clean Energy) and SDG 13 (Climate Action) by introducing a comprehensive approach that integrates sustainable energy systems, carbon capture, circular economy, and sustainable development.

Elsevier,

Next Generation Renewable Thermal Energy Harvesting, Conversion and Storage Technologies, Emerging Technologies and Materials in Thermal Engineering Series, 2026, Pages 449-484.

This chapter supports the UN SDGs by advancing sustainable and affordable clean energy (SDG 7), promoting innovation and infrastructure (SDG 9), and contributing to climate action through efficient geothermal energy utilization (SDG 13).

Elsevier,

Next Generation Renewable Thermal Energy Harvesting, Conversion and Storage Technologies, Emerging Technologies and Materials in Thermal Engineering Series, 2026, Pages 177-216

This chapter supports the UN SDGs by advancing sustainable and affordable clean energy (SDG 7), promoting industry innovation and infrastructure (SDG 9), and ensuring responsible consumption and production through improved nanomaterial coatings for solar energy efficiency (SDG 12).

This chapter aligns with SDG 12 (Responsible Consumption and Production) by promoting environmentally friendly and sustainable nanotechnology practices that reduce risks to humans and ecosystems. It also supports SDG 9 (Industry, Innovation, and Infrastructure) through advancing innovative, cost-effective, and green nanomaterials for diverse industrial applications.
This chapter supports SDG 2 (Zero Hunger) by exploring how nanotechnology can improve sustainable agricultural practices, improving productivity and resource efficiency. It also aligns with SDG 12 (Responsible Consumption and Production) by promoting green nanotechnology approaches that minimize environmental impact in agriculture.

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