CHERNOBYL: Looking Back to Go Forward
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General Assembly Distr.: General 27 September 2019
United Nations A/74/461 General Assembly Distr.: General 27 September 2019 Original: English . Seventy-fourth session Agenda item 71 (d) Strengthening of the coordination of humanitarian and disaster relief assistance of the United Nations, including special economic assistance: strengthening of international cooperation and coordination of efforts to study, mitigate and minimize the consequences of the Chernobyl disaster Persistent legacy of the Chernobyl disaster Report of the Secretary-General Summary The present report is submitted in accordance with General Assembly resolution 71/125 on the persistent legacy of the Chernobyl disaster and provides an update on the progress made in the implementation of all aspects of the resolution. The report provides an overview of the recovery and development activities undertaken by the agencies, funds and programmes of the United Nations system and other international actors to address the consequences of the Chernobyl disaster. The United Nations system remains committed to promoting the principle of leaving no one behind and ensuring that the governmental efforts to support the affected regions are aimed at achieving the 2030 Agenda for Sustainable Development and the Sustainable Development Goals. 19-16688 (E) 041019 151019 *1916688* A/74/461 I. General situation 1. Since the Chernobyl nuclear plant accident on 26 April 1986, the United Nations, along with the Governments of Belarus, the Russian Federation and Ukraine, has been leading the recovery and development efforts to support the affected regions. While extensive humanitarian work was conducted immediately after the accident, additional recovery and rehabilitation activities were conducted in the following years to secure the area, limit the exposure of the population, provide medical follow-up to those affected and study the health consequences of the incident. -
Present and Future Environmental Impact of the Chernobyl Accident
IAEA-TECDOC-1240 Present and future environmental impact of the Chernobyl accident Study monitored by an International Advisory Committee under the project management of the Institut de protection et de sûreté nucléaire (IPSN), France August 2001 The originating Section of this publication in the IAEA was: Waste Safety Section International Atomic Energy Agency Wagramer Strasse 5 P.O. Box 100 A-1400 Vienna, Austria PRESENT AND FUTURE ENVIRONMENTAL IMPACT OF THE CHERNOBYL ACCIDENT IAEA, VIENNA, 2001 IAEA-TECDOC-1240 ISSN 1011–4289 © IAEA, 2001 Printed by the IAEA in Austria August 2001 FOREWORD The environmental impact of the Chernobyl nuclear power plant accident has been extensively investigated by scientists in the countries affected and by international organizations. Assessment of the environmental contamination and the resulting radiation exposure of the population was an important part of the International Chernobyl Project in 1990–1991. This project was designed to assess the measures that the then USSR Government had taken to enable people to live safely in contaminated areas, and to evaluate the measures taken to safeguard human health there. It was organized by the IAEA under the auspices of an International Advisory Committee with the participation of the Commission of the European Communities (CEC), the Food and Agriculture Organization of the United Nations (FAO), the International Labour Organisation (ILO), the United Nations Scientific Committee on the Effects of Atomic Radiation (UNSCEAR), the World Health Organization (WHO) and the World Meteorological Organization (WMO). The IAEA has also been engaged in further studies in this area through projects such as the one on validation of environmental model predictions (VAMP) and through its technical co-operation programme. -
The Chernobyl Liquidator Medal—An Educational Essay
Article Chernobyl’s Lesser Known Design Flaw: The Chernobyl Liquidator Medal—An Educational Essay Michael McIntire * and John Luczaj Department of Natural & Applied Sciences, University of Wisconsin–Green Bay, Green Bay, WI 54311, USA * Correspondence: [email protected]; Tel.: +1-920-465-5131 Received: 26 June 2019; Accepted: 7 August 2019; Published: 9 August 2019 Abstract: The honorary Chernobyl Liquidator Medal depicts pathways of alpha, gamma, and beta rays over a drop of blood, signifying the human health impacts of the Chernobyl accident. A relativistic analysis of the trajectories depicted on the Chernobyl Liquidator Medal is conducted assuming static uniform magnetic and electric fields. The parametric trajectories are determined using the energies of alpha (α) and beta (β) particles relevant to the Chernobyl nuclear power plant accident and compared with the trajectories depicted on the liquidator medal. For minimum alpha particle velocity of 0.0512c, the beta particle trajectory depicted on the medal is highly unlikely to have come from a naturally occurring nuclear decay process. The parametric equations are used to determine the necessary beta energies to reproduce the depicted trajectories. This article documents the unfortunate misrepresentation of a famous scientific experiment on an honorary medal and illustrates the importance of better communication between artists and scientists. Keywords: Chernobyl; liquidator; medal; radiation; trajectories; physics; design 1. Introduction 1.1. The Chernobyl Power Station Accident and the Liquidators With near universal acceptance of global climate change by today’s scientific community, coupled with a looming energy shortage as carbon-based fuels become increasingly limited, there has been a revitalization of nuclear energy throughout much of the world. -
Relics of the Bulgarian National Epic
PAISStt OF HILENDAR: FOUNDER OF THE NATIONAL IDEOLOGY In modern historiography the first centuries of the of the respectful image of Mediaeval Bulgaria. In Sremski Ottoman rule of Bulgarian lands are determined as Late Karlovci, one of the most active literary centres of the Middle Ages. The time from the beginning of the 18th time, Paissi read the book of Dubrovnik Abbot Mavro century to the 1877-1878 Russo-Turkish War is called Orbini "The Realm of the Slavs" in which he discovered Bulgarian National Revival. If the National Revival period considerable evidence about the Bulgarians' past. for Northern Bulgaria and the Sofia Region continued by In 1762 he completed "Slav-Bulgarian History, about 1878, for Eastern Rumelia it was by 1885 and for the People and the Kings, the Bulgarian Saints and All Macedonia and Adrianople Thrace by 1912-1913. Bulgarian Activities and Events". In 83 hand-written The National Revival in the Bulgarian lands witnessed pages the inspired Hilendar Monk interpreted using considerable economic progress. The Bulgarian were romantic and heightened tone the grandour of increasingly getting rid of their mediaeval restricted out- Mediaeval Bulgaria, the victory of the Bulgarian army look and helplessness and were gradually getting aware over Byzantium, the impressive bravery and manliness of as people, aspiring towards economic and cultural the Bulgarians, the historic mission of the Cyril and progress. Hilendar monk Paissii became a mouthpiece of Methodius brothers and other eloquent facts, worthy to these changes in the national self-awareness. He was be remembers and respected by the successors. Already the first to perceive the beginning of the new time and in the forward this noted Bulgarian appealed with gen- the need of formulating verbally the maturing historical uine sincerity towards his compatriots to love and keep prospects and tasks before the Bulgarian people. -
Beyond Peace: Pluralizing Japan's Nuclear History 平和を越え て−−日本の核の歴史を非単純化する
Volume 10 | Issue 11 | Number 6 | Article ID 3716 | Mar 05, 2012 The Asia-Pacific Journal | Japan Focus Beyond Peace: Pluralizing Japan's Nuclear History 平和を越え て−−日本の核の歴史を非単純化する Shi-Lin Loh Beyond Peace: Pluralizing Japan's the world… Nuclear History - Koizumi Junichirō, August 6, 1 Shi-Lin Loh 2005 Abstract: This paper examines the On the 60th anniversary of the bombing of construction of Hiroshima and Nagasaki as Hiroshima, at the annual Peace Memorial signifiers of "peace" in postwar Japan. It offers Ceremony held in the city, former Japanese alternate ways of understanding the impact and Prime Minister Koizumi Junichirō made a significance of "Hiroshima and Nagasaki" in speech highlighting the "tragedy" of the world's historical context and argues that national only two atomic-bombed cities as the main readings of the history of the cities obscure reason for the present-day linkage of Hiroshima nuances in the local narratives of the atomic and Nagasaki to "world peace." His narrative of bombs in each place. atomic bombs-as-peace implicitly links the Keywords: Hiroshima, Nagasaki, nuclear local, the national and the international. The weapons, postwar Japan, atomic bombings, atomic bombs, a "tragedy" for the cities of culture, commemoration, history, science, Hiroshima and Nagasaki, are also claimed for Atoms for Peace the entirety of Japan, the "only nation in human history to be bombed with atomic weapons." Finally, this national victimization is then …As the only nation in human transposed into the universal, moral goal of history to be bombed with atomic "world peace." weapons, Japan will continue to comply with its Peace Constitution and firmly maintain the Three Non- Nuclear Principles, with its strong commitment not to repeat the tragedy of Hiroshima and Nagasaki. -
Chornobyl Center for Nuclear Safety, Radioactive Waste and Radioecology the Report Prepared in a Framework of GEF UNEP Project &
Chornobyl Center for Nuclear Safety, Radioactive Waste and Radioecology The report prepared in a framework of GEF UNEP Project "Project entitled "Conserving, Enhancing and Managing Carbon Stocks and Biodiversity in the Chornobyl Exclusion Zone" (Project ID: 4634; IMIS: GFL/5060-2711-4C40) Revision and optimization of the systems of routine and scientific radiological monitoring of terrestrial and aquatic ecosystems in the ChEZ Slavutich - 2016 1 Analysis by Prof. V. Kashparov Director of UIAR of NUBiP of Ukraine Dr S. Levchuk Head of the Laboratory of UIAR of NUBiP of Ukraine Dr. V. Protsak Senior Researcher of UIAR of NUBiP of Ukraine Dr D. Golyaka Researcher of UIAR of NUBiP of Ukraine Dr V. Morozova Researcher of UIAR of NUBiP of Ukraine M. Zhurba Researcher of UIAR of NUBiP of Ukraine This report, publications discussed, and conclusions made are solely the responsibility of the au- thors 2 Table of Contents 1. INTRODUCTION...................................................................................................................................... 8 1.1 System of the radioecological monitoring in the territory of Ukraine alienated after the Chernobyl accident 8 2. Exclusion Zone....................................................................................................................................... 11 2.1 Natural facilities11 2.2 Industrial (technical) facilities 12 2.2.1 Facilities at the ChNPP industrial site.....................................................................................12 2.2.2 Facilities -
Navigation on the Danube (Allied Powers: Czechoslovakia, Greece, Romania, Serb-Croat-Slovene Kingdom); Germany, Austria, Hungary and Bulgaria
REPORTS OF INTERNATIONAL ARBITRAL AWARDS RECUEIL DES SENTENCES ARBITRALES Navigation on the Danube (Allied Powers: Czechoslovakia, Greece, Romania, Serb-Croat-Slovene Kingdom); Germany, Austria, Hungary and Bulgaria 2 August 1921 VOLUME I pp. 97-212 NATIONS UNIES - UNITED NATIONS Copyright (c) 2006 IV. CESSION OF VESSELS AND TUGS FOR NAVIGATION ON THE DANUBE *. PARTIES : Allied Powers (Czechoslovakia, Greece, Rumania, Serb-Croat-Slovene Kingdom); Germany, Austria, Hungary and Bulgaria. COMPROMIS : Treaty of Versailles, Article 339 2 ; Article 300 of Treaty of St. Germain 3 ; Article 284 of Treaty of Trianon and Article 228 of Treaty of Neuilly-sur- Seine. ARBITRATOR : Walker D. Hines (U.S.A.). DECISION : Paris, August 2, 1921. Confiscation of private property in warfare.—Allocation and condition of vessels of disputed ownership and nationality.—Question of jurisdiction. —Fourth Hague Convention of 1907 (Articles 46 and 53 of its annexed Regulations).—Legal character of private property hired by belligerent State for military purposes.—Effect of military acts after armistice between some but not all of the belligerents. General conditions for effectual ion of permanent allocation.—Delivery of vessels.—Claim for excess fittings and gear.—Vessels whose nationality is affected by change of nationality of owners.—Claims to allocation asserted by Czechoslovakia as a succession State. Cession by Germany, Austria ,md Hungary to meet legitimate needs of Allied and Associated Powers concerned.—Legitimate needs of States for freight traffic.—International character of the River Save,—Basic freight traffic on the Danube in 1911 to be considered in estimating legitimate needs of parties concerned.—Modification of such basis on account of subsequent developments. -
Impact of Disturbances on the Carbon Cycle of Forest Ecosystems in Ukrainian Polissya
Article Impact of Disturbances on the Carbon Cycle of Forest Ecosystems in Ukrainian Polissya Petro Lakyda 1, Anatoly Shvidenko 2, Andrii Bilous 1 , Viktor Myroniuk 1, Maksym Matsala 1, Sergiy Zibtsev 1, Dmitry Schepaschenko 2 , Dmytrii Holiaka 3, Roman Vasylyshyn 1 , Ivan Lakyda 1,*, Petro Diachuk 1 and Florian Kraxner 2 1 Education and Research Institute of Forestry and Landscape-Park Management, National University of Life and Environmental Sciences of Ukraine, 03041 Kyiv, Ukraine; [email protected] (P.L.); [email protected] (A.B.); [email protected] (V.M.); [email protected] (M.M.); [email protected] (S.Z.); [email protected] (R.V.); [email protected] (P.D.) 2 International Institute for Applied Systems Analysis, A-2361 Laxenburg, Austria; [email protected] (A.S.); [email protected] (D.S.); [email protected] (F.K.) 3 Ukrainian Institute of Agricultural Radiology, 08162 Chabany, Ukraine; [email protected] * Correspondence: [email protected]; Tel.: +38-067-771-6818 Received: 11 February 2019; Accepted: 9 April 2019; Published: 15 April 2019 Abstract: Climate change continues to threaten forests and their ecosystem services while substantially altering natural disturbance regimes. Land cover changes and consequent management entail discrepancies in carbon sequestration provided by forest ecosystems and its accounting. Currently there is a lack of sufficient and harmonized data for Ukraine that can be used for the robust and spatially explicit assessment of forest provisioning and regulation of ecosystem services. In the frame of this research, we established an experimental polygon (area 45 km2) in Northern Ukraine aiming at estimating main forest carbon stocks and fluxes and determining the impact caused by natural disturbances and harvest for the study period of 2010–2015. -
Learning from Fukushima: Nuclear Power in East Asia
LEARNING FROM FUKUSHIMA NUCLEAR POWER IN EAST ASIA LEARNING FROM FUKUSHIMA NUCLEAR POWER IN EAST ASIA EDITED BY PETER VAN NESS AND MEL GURTOV WITH CONTRIBUTIONS FROM ANDREW BLAKERS, MELY CABALLERO-ANTHONY, GLORIA KUANG-JUNG HSU, AMY KING, DOUG KOPLOW, ANDERS P. MØLLER, TIMOTHY A. MOUSSEAU, M. V. RAMANA, LAUREN RICHARDSON, KALMAN A. ROBERTSON, TILMAN A. RUFF, CHRISTINA STUART, TATSUJIRO SUZUKI, AND JULIUS CESAR I. TRAJANO Published by ANU Press The Australian National University Acton ACT 2601, Australia Email: [email protected] This title is also available online at press.anu.edu.au National Library of Australia Cataloguing-in-Publication entry Title: Learning from Fukushima : nuclear power in East Asia / Peter Van Ness, Mel Gurtov, editors. ISBN: 9781760461393 (paperback) 9781760461409 (ebook) Subjects: Nuclear power plants--East Asia. Nuclear power plants--Risk assessment--East Asia. Nuclear power plants--Health aspects--East Asia. Nuclear power plants--East Asia--Evaluation. Other Creators/Contributors: Van Ness, Peter, editor. Gurtov, Melvin, editor. All rights reserved. No part of this publication may be reproduced, stored in a retrieval system or transmitted in any form or by any means, electronic, mechanical, photocopying or otherwise, without the prior permission of the publisher. Cover design and layout by ANU Press. Cover image: ‘Fukushima apple tree’ by Kristian Laemmle-Ruff. Near Fukushima City, 60 km from the Fukushima Daiichi Nuclear Power Plant, February 2014. The number in the artwork is the radioactivity level measured in the orchard—2.166 microsieverts per hour, around 20 times normal background radiation. This edition © 2017 ANU Press Contents Figures . vii Tables . ix Acronyms and abbreviations . -
Late Lessons from Chernobyl, Early Warnings from Fukushima
Emerging issues | Late lessons from Chernobyl, early warnings from Fukushima 18 Late lessons from Chernobyl, early warnings from Fukushima Paul Dorfman, Aleksandra Fucic and Stephen Thomas The nuclear accident at Fukushima in Japan occurred almost exactly 25 years after the Chernobyl nuclear accident in 1986. Analysis of each provides valuable late and early lessons that could prove helpful to decision-makers and the public as plans are made to meet the energy demands of the coming decades while responding to the growing environmental costs of climate change and the need to ensure energy security in a politically unstable world. This chapter explores some key aspects of the Chernobyl and Fukushima accidents, the radiation releases, their effects and their implications for any construction of new nuclear plants in Europe. There are also lessons to be learned about nuclear construction costs, liabilities, future investments and risk assessment of foreseeable and unexpected events that affect people and the environment. Since health consequences may start to arise from the Fukushima accident and be documented over the next 5–40 years, a key lesson to be learned concerns the multifactorial nature of the event. In planning future radiation protection, preventive measures and bio-monitoring of exposed populations, it will be of great importance to integrate the available data on both cancer and non-cancer diseases following overexposure to ionising radiation; adopt a complex approach to interpreting data, considering the impacts of age, gender and geographical dispersion of affected individuals; and integrate the evaluation of latency periods between exposure and disease diagnosis development for each cancer type. -
Science C Author(S) 2020
Discussions https://doi.org/10.5194/essd-2019-174 Earth System Preprint. Discussion started: 23 January 2020 Science c Author(s) 2020. CC BY 4.0 License. Open Access Open Data 1 Spatial radionuclide deposition data from the 60 km area around the 2 Chernobyl nuclear power plant: results from a sampling survey in 1987. 3 4 Valery Kashparov1,3, Sviatoslav Levchuk1, Marina Zhurba1, Valentyn Protsak1, Nicholas A. 5 Beresford2, and Jacqueline S. Chaplow2 6 7 1 Ukrainian Institute of Agricultural Radiology of National University of Life and Environmental Sciences of 8 Ukraine, Mashinobudivnykiv str.7, Chabany, Kyiv region, 08162 Ukraine 9 2 UK Centre for Ecology & Hydrology, Lancaster Environment Centre, Library Avenue, Bailrigg, Lancaster, 10 LA1 4AP, UK 11 3 CERAD CoE Environmental Radioactivity/Department of Environmental Sciences, Norwegian University of 12 Life Sciences, 1432 Aas, Norway 13 Correspondence to: Jacqueline S. Chaplow ([email protected]) 14 Abstract. The dataset “Spatial radionuclide deposition data from the 60 km area around the 15 Chernobyl nuclear power plant: results from a sampling survey in 1987” is the latest in a series of data 16 to be published by the Environmental Information Data Centre (EIDC) describing samples collected 17 and analysed following the Chernobyl nuclear power plant accident in 1986. The data result from a 18 survey carried out by the Ukrainian Institute of Agricultural Radiology (UIAR) in April and May 19 1987 and include information on sample sites, dose rate, radionuclide (zirconium-95, niobium-95, 20 ruthenium-106, caesium-134, caesium-137 and cerium-144) deposition, and exchangeable caesium- 21 134 and 137. -
Chernobyl: Chronology of a Disaster
MARCH 11, 2011 | No. 724 CHERNOBYL: CHRONOLOGY OF A DISASTER CHERNOBYL; CHRONOLOGY OF A DISASTER 1 INHOUD: 1- An accident waiting to happen 2 2- The accident and immediate consequences ( 1986 – 1989) 4 3- Trying to minimize the consequences (1990 – 2000) 8 4- Aftermath: no lessons learned (2001 - 2011) 5- Postscript 18 Chernobyl - 200,000 sq km contaminated; 600,000 liquidators; $200 billion in damage; 350,000 people evacuated; 50 mln Ci of radiation. Are you ready to pay this price for the development of nuclear power? (Poster by Ecodefence, 2011) 1 At 1.23 hr on April 26, 1986, the fourth reactor of the Cherno- power plants are designed to withstand natural disasters (hur- byl nuclear power plant exploded. ricanes, fl oods, earthquakes, etc.) and to withstand aircraft The disaster was a unique industrial accident due to the crash and blasts from outside. The safety is increased by scale of its social, economic and environmental impacts and the possibility in Russia to select a site far away from bigger longevity. It is estimated that, in Ukraine, Belarus and Russia towns." (page 647: "Zur Betriebssicherheit sind die Kraftwerke alone, around 9 million people were directly affected resulting (VVER and RBMK) mit drei parallel arbeitenden Sicherheit- from the fact that the long lived radioactivity released was systeme ausgeruested. Die Kraftwerke sing gegen Naturka- more than 200 times that of the atomic bombs dropped on tastrophen (Orkane, Ueberschwemmungen, Erdbeben, etc) Hiroshima and Nagasaki. und gegen Flugzeugabsturz und Druckwellen von aussen ausgelegt. Die Sicherheit wird noch durch die in Russland Across the former Soviet Union the contamination resulted in moegliche Standortauswahl, KKW in gewisser Entfernung van evacuation of some 400,000 people.