Disaster risk reduction

Disaster Risk Reduction plays a pivotal role in the pursuit of the Sustainable Development Goals (SDGs), a set of global objectives established by the United Nations in 2015. These goals aim to end poverty, protect the planet, and ensure prosperity and peace for all by the year 2030. Within this framework, Disaster Risk Reduction, with its focus on mitigating the impacts of natural and man-made hazards, is integral to several of these goals.

Specifically, Sustainable Development Goal 11, which aims to make cities and human settlements inclusive, safe, resilient, and sustainable, includes a target (11.5) dedicated to significantly reducing deaths, the number of people affected, and the direct economic losses resulting from disasters. This target emphasizes the protection of the poor and those in vulnerable situations, who are disproportionately affected by disasters. Implementing effective Disaster Risk Reduction strategies can enhance the resilience of cities and communities against various disasters, including water-related events like floods, tsunamis, and storm surges.

Disaster Risk Reduction's influence extends beyond Sustainable Development Goal 11. It significantly impacts Sustainable Development Goal 1 (No Poverty) and Sustainable Development Goal 2 (Zero Hunger). Disasters often exacerbate poverty by destroying livelihoods and resources. By reducing vulnerability to disasters, Disaster Risk Reduction measures can prevent such setbacks, aiding in the fight against poverty. Similarly, Disaster Risk Reduction is critical for achieving Zero Hunger. Disasters can disrupt food production and distribution, leading to shortages and malnutrition. Resilient agricultural systems, as part of Disaster Risk Reduction strategies, are essential in safeguarding food security.

Sustainable Development Goal 3, which focuses on Good Health and Well-being, is also closely linked to Disaster Risk Reduction. Disasters can have a devastating impact on public health, both directly through injuries and indirectly through the spread of diseases and disruption of healthcare services. Preparing for and mitigating the impacts of disasters is a key component of maintaining and improving public health.

Furthermore, Disaster Risk Reduction plays a key role in achieving Sustainable Development Goals 14 (Life Below Water) and 15 (Life on Land). Disasters can cause significant damage to terrestrial and marine ecosystems. For example, floods and landslides can result in habitat destruction and pollution. Therefore, measures that mitigate the environmental impacts of disasters are crucial for the preservation of biodiversity and ecosystems.

Disaster Risk Reduction is also intertwined with Sustainable Development Goal 13 (Climate Action). Many disasters are exacerbated by climate change, such as the increased intensity and frequency of extreme weather events. Disaster Risk Reduction strategies contribute indirectly to climate change adaptation efforts.

Additionally, Disaster Risk Reduction contributes to Sustainable Development Goal 9 (Industry, Innovation, and Infrastructure) by promoting resilient infrastructure, and to Sustainable Development Goal 16 (Peace, Justice, and Strong Institutions) by fostering effective, accountable, and inclusive institutions at all levels, which are essential for disaster risk management.

Disaster Risk Reduction is not an isolated concept but is deeply integrated into the broader framework of sustainable development. Its effective implementation is vital for building societies that are resilient to disasters, ensuring progress towards all Sustainable Development Goals. The interconnectedness of Disaster Risk Reduction with multiple goals underscores the necessity of a holistic, multi-sectoral approach to disaster risk management. This approach highlights the importance of collaboration among governments, international organizations, civil society, and the private sector in achieving these objectives.

This book chapter advances SDGs 6, 10 and 11 by discussing our vulnerability to water disasters to help us avoid some of them in the future.
Elsevier,

Evaluating Water Quality to Prevent Future Disasters, 2019, Pages 1-12

Water-quality disasters occur frequently worldwide. They do not necessarily occur only in underdeveloped world. Detailed water-quality evaluations can help prevent occurrence of some of these disasters. Contributing to SDGs 10 and 11, this chapter discusses our vulnerability to water disasters to help us avoid some of them in the future.
This viewpoint reviews key assessments from the IPCC Special Report on Global Warming of 1.5 °C and examines the implications for the Sendai Framework for Disaster Risk Reduction (SFDRR). Disaster risks are expected to be higher at 1.5 °C and continue to increase at 2 °C. Current and future disaster risk management particularly those that deal with the impacts of coastal flooding, heat-related health impacts, sea level rise, and forest fires are to be strengthened, particularly the Arctic, Caribbean, SIDS and low-lying coastal areas are particularly at risk.
The UN has adopted the Sendai Framework for Disaster Risk Reduction (2015–2030; SFDRR) in March 2015 and the member countries agreed to shift from disaster management to disaster risk management. The SFDRR is in line with the UN Sustainable Development Goals (SDGs; September 2015). In 2016, the UNISDR together with partner organizations has prepared roadmap for mainstreaming Science and Technology in SFDRR. Out of four priority areas, this paper focuses on the appraisal of challenges in SFDRR priority 1 “understanding disaster risk” through the lens of science, technology and innovations.

The “build back better” (BBB) approach to disaster recovery was first introduced in 2006 by the United Nations Secretary-General's Special Envoy for Tsunami Recovery, former US President William Clinton. In 2015, BBB became the second half of Priority 4 of the Sendai Framework for Disaster Risk Reduction 2015–2030, in recognition of its widespread use and adoption among disaster risk management practitioners, policy-makers, and researchers.

Elsevier,

Introductory Immunology (Second Edition), Basic Concepts for Interdisciplinary Applications, 2019, Pages 123-131

Examines the coordinated effort of cells and blood components to detect and defend against cancers. Supports SDG 3.4.1 By 2030, reduce by one third mortality rate attributed to cardiovascular disease, cancer, diabetes or chronic respiratory disease
Water-quality disasters occur frequently worldwide and do not necessarily occur only in underdeveloped world. Detailed water-quality evaluations can help prevent occurrence of some of these disasters.This book chapter addresses goals 3, 6 and 14 by discussing our vulnerability to water disasters to help us avoid some of them in the future.
Elsevier,

Radioactivity in the Environment (Second Edition), 2019, Pages 635-656

This book chapter addresses goal 3 by discussing the decontamination measures needed after radiation exposure and the protection of first responders and the general public.
Elsevier,

Douglas E. Soltis, Pamela S. Soltis, Chapter 6 - Fate of the Tree of Life, Editor(s): Douglas E. Soltis, Pamela S. Soltis, The Great Tree of Life, Academic Press, 2019, Pages 117-150, ISBN 9780128125533, https://doi.org/10.1016/B978-0-12-812553-3.00006-0.

This book chapter advances SDGs 13 and 15 by explaining human and environmental activity and their potential role in extinction.
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