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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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Since its adoption in 2006, SAICM has created a pro-active, inclusive and overarching platform for engagement and commitment of governments, inter-governmental organizations, non-governmental organizations and industry.

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This guidance is a high level document prepared as part of the OECD Chemical Accidents Programme.

It aims to:

• Raise awareness that ownership change is not just a business affair but can be associated with an increase in risk at a facility;

• Give

Organisation for Economic Co-operation and Development
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The Fukushima nuclear accident in March 2011 posed major threats to public health. In response, medical professionals have tried to communicate the risks to residents. To investigate forms of risk communication and to share lessons learned, this study

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A total of 21 500 people fell victim to catastrophes in 2007.

  • 14600 died as a result of natural catastrophes, though most of them - 12 500 - perished because of storms and flooding. In Bangladesh and India alone, 6 700 people lost their lives, while in

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Safety reports are intended to demonstrate that:

  • a major accident prevention policy (MAPP) and a safety management system (SMS) have been put into effect;
  • all major-accident hazards are identified and necessary measures have been taken to prevent such

United Nations Economic Commission for Europe (UNECE)
Documents and publications

These instructions on preparing and inspection of a safety report provide a checklists system for safety reports.

The document consists of three main parts:

First part, the introductory chapter, describes the purpose of safety reports and provides

United Nations Economic Commission for Europe (UNECE)
Umweltbundesamt (German Environment Agency)
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This checklist system was developed to support the preparation, auditing and inspection of safety reports.

Contents:

  • Introduction to system of checklist
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  • Sectoral checklists (SCL)
  1. SCL description of

United Nations Economic Commission for Europe (UNECE)
Umweltbundesamt (German Environment Agency)
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