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Technological hazard

Technical or technological disasters are caused by events that can be intense and sudden, induced by human processes. They originate from technological or industrial conditions, dangerous procedures, infrastructure failures or specific human activities (UNGA, 2016).

Technical systems are complex, with many dependent subsystems. The failure of one element within this system can cascade throughout the chain, causing a series of failures leading to a disaster. Technical hazards are increasing due to the scope of technological expansion. They include industrial activity that includes dangerous conditions, processes, all transport systems (land, sea, air), defensive or offensive weapons systems and power plants.

By 2050, most of humanity will live downstream of large dams built in the 20th century.

A new set of emerging technological risks under the Sendai Framework includes Information and communications technology (ICT)-related hazards. The increasing dependence upon complex large-scale network architectures of information technologies also increases exposure to cybersecurity threats. These threats include computer viruses, worms, Trojan horses, malware, spoofing attacks, identity theft, the theft and illegal disclosure of data, the loss of data and contamination of data. They have the potential to disrupt essential infrastructure operations such as communication, health, banking, transportation, energy, education and many other services.

Risk factors

  • Ageing, abandoned or idle installations.
  • Insufficient institutional and legal capacities.
  • Natural hazards: storms, landslides, floods or earthquakes can cause industrial accidents.

Vulnerable areas

  • Residential communities around industrial establishments tend to be most at risk because of their proximity.

Risk reduction measures

  • Assess the risks before planning and building critical infrastructure.
  • Develop policies and practices for continuity management.
  • Integrate the risks into planning, foresee and reduce cascading effects.
  • Create a hazard map to identify people at risk and their vulnerability.
  • Draft national, regional and local response plans.
  • Put in place early warning/monitoring systems to inform response.
  • Ensure contingency and response plans are in place at a national and local level to evacuate people on time.
  • Assess new technologies.
  • Improve crisis communication before, during and after the event.
  • Organize training and exercises for complex scenarios involving multiple interdependent failures.
  • Educate and raise awareness on potential risks.

Latest Technical Disaster additions in the Knowledge Base

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Update

Documents suggest that in more than 80 U.S. locations, the failure of an aging dam could flood a major toxic waste site.

Undark
Sky Designs/Shutterstock
Update

University of Florida has developed a solar powered system that uses artificial intelligence to decrease the cost of electrical devices running through a power outage.

University of Florida
Documents and publications

The article claims that to those affected, disaster is an existential experience. For them, it is an unexpected existential ‘event’ clearly separating a ‘before’ from an ‘after’. In the academic disaster domain however the ‘disaster as event’ is being

International Journal of Disaster Risk Reduction (Elsevier)
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This paper investigates past and possible future magnetic storm intensifications. As part of this work, a dataset is developed of the most intense and second most intense storms for each of the past eleven solar cycles (1902-2016) – augmenting a

AGU Advancing Earth and Space Science
Documents and publications

This rapid needs assessment indicates that while gains have been made to make preparedness methods more inclusive, such as the incorporation of inclusion into the training of community volunteers on emergency preparedness, persons with disabilities are

CBM International
Centre for Disability in Development
Documents and publications

The primary aim of this study was to evaluate the presence, distribution, and potential human health implications of polycyclic aromatic hydrocarbons (PAHs) in a residential neighborhood of Houston, Texas following a major hurricane. Hurricane Harvey made

Journal of Health and Pollution
Documents and publications

The primary aim of this study was to evaluate the presence, distribution, and potential human health implications of polycyclic aromatic hydrocarbons (PAHs) in a residential neighborhood of Houston, Texas following a major hurricane. Hurricane Harvey made

Journal of Health and Pollution
Update

Researchers analyze how flooding from Harvey increased exposure to harmful chemicals in the Manchester neighborhood of Houston

Texas A&M University System
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