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1

Bliumska-Danko, Kseniia, Sandra Charreire-Petit, Dongxu Qu und Tetiana Shevchenko. „Mapping organic packaging research: Environmental concern and health safety“. Environmental Economics 13, Nr. 1 (01.12.2022): 155–70. http://dx.doi.org/10.21511/ee.13(1).2022.13.

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The adoption of biopolymer packaging materials to replace petroleum-based plastic packaging has become a global trend, which could reduce environmental impact and potential health threats. Therefore, the paper analyzes trends in organic packaging research and the prospects of its application. This study employs bibliometric methods to select relevant studies using a preset search string. The dynamics of publications, the most influential authors and articles, as well as the most productive institutions and countries on the topic for 2017–2022 were determined. To collect the data, Elsevier’s database Scopus was selected. The analysis revealed five salient research themes through text mining analysis: packaging and public health; packaging and children’s health safety; eco-friendly packaging and consumer behavior; food packaging and labeling; and packaging with a focus on marketing and advertising. 864 terms from 40 articles were analyzed. As a result, most selected publications focused on the impact of packaging on the environment. In addition, some publications consider it from the perspective of consumer safety. Moreover, consumers unconsciously associate organic packaging with products’ safety and quality. However, the marketing and advertising of organic packaging are insufficient, as well as the application of organic packaging in children’s food products. Acknowledgment The study was conducted within the framework of the ERASMUS+ Jean Monnet Project “Production and dissemination of circular economy ideas in accordance with the EU Action Plan.” Furthermore, Kseniia Bliumska-Danko gratefully acknowledges financial support from the Government of France within the framework of the PAUSE program (National Program of Urgent Assistance and Reception of Scientists).
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2

Babaeva, A. A., und E. V. Grigorieva. „Environmental Safety of Biosphere“. IOP Conference Series: Earth and Environmental Science 988, Nr. 3 (01.02.2022): 032090. http://dx.doi.org/10.1088/1755-1315/988/3/032090.

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Abstract The present paper researches the matter of human impact on atmosphere that is currently the focus object of specialists and environment researchers all over the World. And it is not a coincidence as the most significant environmental problems of today - the “greenhouse effect”, ozone layer depletion, acid rains are in relation with the anthropogenic pollution of atmosphere. The paper also touches upon the impact of atmosphere pollution on human health and environment. There are considered various means of pollution – from direct and immediate threats (smog, etc.) to slow and gradual destruction of various organism life support systems. In many cases air pollution erodes ecosystem structural components to a degree when regulatory processes are unable to restore the initial state that causes homeostasis mechanism failure.
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3

De Henau, H., C. M. Lee und P. A. Gilbert. „Environmental Safety of Detergents“. Tenside Surfactants Detergents 23, Nr. 5 (01.09.1986): 267–71. http://dx.doi.org/10.1515/tsd-1986-230512.

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4

Ganebnykh, Elena, Tatyana Burtseva, Anastasia Petuhova und Angela Mottaeva. „Regional environmental safety assessment“. E3S Web of Conferences 91 (2019): 08035. http://dx.doi.org/10.1051/e3sconf/20199108035.

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The article provides a comparative analysis of the regions of the Volga Federal District, Russia to identify the dependence of industrial development on the environment. The research collected statistical information for all regions of the district and used it as a basis for constructing a perception map showing the actual regional situations compared to the “ideal point”.
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5

van den Braken, A. M. „Safety and Environmental Report“. Organic Process Research & Development 7, Nr. 3 (Mai 2003): 446. http://dx.doi.org/10.1021/op030015s.

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6

Reshnyak, Valery, Sergey Sokolov, Anatoliy Nyrkov und Vlad Budnik. „Inland Waterway Environmental Safety“. Journal of Physics: Conference Series 1015 (Mai 2018): 042049. http://dx.doi.org/10.1088/1742-6596/1015/4/042049.

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7

SCHULMEISTER, LISA. „Pacemakers and environmental safety“. Nursing 28, Nr. 7 (Juli 1998): 58–60. http://dx.doi.org/10.1097/00152193-199807000-00023.

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8

Fawcett, HowardH. „Health, safety environmental control“. Journal of Hazardous Materials 31, Nr. 1 (Juni 1992): 112–13. http://dx.doi.org/10.1016/0304-3894(92)87070-v.

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9

Bulgakova, L. S. „Safety Issues Environmental Security“. Courier of Kutafin Moscow State Law University (MSAL)) 1, Nr. 11 (23.01.2023): 183–90. http://dx.doi.org/10.17803/2311-5998.2022.99.11.183-190.

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The article is devoted to the issues of environmental safety. The author reveals the content of threats to the environment, gives their classification. The importance of forecasting the possibility of the emergence of prospective and new threats is noted, the mechanisms of such forecasting are considered. The article proves that climate change is the most important threat to the security of the Russian Federation, and therefore their timely identification and assessment are among the priorities of climate policy. Analyzing the content of the National Security Concept of 2015 and the Environmental Security Strategy of the Russian Federation for the period up to 2025, the author concludes that the legislator does not see any special differences in the terms used for the purposes of these normative legal acts, that the problem of poor quality of terms in the field of environmental protection is not only practical and legal, but also methodological aspect, since it is due to the intersectoral nature of public relations. The consequences of poor-quality terminology, confusion of important concepts will necessarily lead to mistakes in planning and ensuring environmental safety. There is a need for a unified, inter-sectoral, interdisciplinary approach to the study of the problem, coordinated in terms of goals, tasks and functions.
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10

Ved, M. V. „Functional mixed cobalt and aluminum oxide coatings for environmental safety“. Functional materials 24, Nr. 2 (22.06.2017): 005–310. http://dx.doi.org/10.15407/fm24.02.303.

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11

Kletz, Trevor A. „The Future for Safety and Environmental Management—Priorities in Safety and Environmental Management“. Safety and Reliability 26, Nr. 3 (Januar 2006): 6–14. http://dx.doi.org/10.1080/09617353.2006.11690823.

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12

Knyazeva, Ekaterina A., und Natalia A. Knyazeva. „ENVIRONMENTAL SAFETY AS AN OBJECT OF ENVIRONMENTAL CRIMES“. Азиатско-Тихоокеанский регион: экономика, политика, право, Nr. 1-2 (2018): 107–16. http://dx.doi.org/10.24866/1813-3274/2018-1-2/107-116.

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13

Nadtochiy, Julia V. „ENVIRONMENTAL SAFETY AS AN OBJECT OF ENVIRONMENTAL CRIMES“. Азиатско-Тихоокеанский регион: экономика, политика, право, Nr. 1-2 (2018): 96–106. http://dx.doi.org/10.24866/1813-3274/2018-1-2/96-106.

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14

Bera, József. „Safety Versus Modern Environmental Problems“. Műszaki Tudományos Közlemények 9, Nr. 1 (01.10.2018): 47–50. http://dx.doi.org/10.33894/mtk-2018.09.07.

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Abstract With the wide application of engineering technologies, environmental aspects increasingly focus attention on safety. Reducing environmental impacts also affects operational safety, and because of the adverse effect, there is a dual situation in the relationship of these two areas. On one hand, maintaining the acceptable environmental status is closely related to the secure operation of the technologies, on the other hand, by ensuring safety, the risks of the new environmental impacts shall be managed. Such risks prevent the development of a dynamically balanced environmental system. Based on the examination of both the environment uses and the operational conditions, we have reached the conclusion that we will analyse environmental risk management in the context of safety. In the first phase of the research we reviewed the relations between safety and the modern environmental problem.
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15

Kharchenko, S. G., und E. Yu Dorokhina. „Environmental Safety: Crisis is Continued“. Ecology and Industry of Russia 20, Nr. 3 (05.03.2016): 52–57. http://dx.doi.org/10.18412/1816-0395-2016-3-52-57.

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16

Fatkhutdinov, V., L. Yarmol, T. Musiiets, O. Lagovska und L. Kryukova. „State regulation of environmental safety“. Naukovyi Visnyk Natsionalnoho Hirnychoho Universytetu, Nr. 4 (2021): 96–102. http://dx.doi.org/10.33271/nvngu/2021-4/096.

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Purpose. To conduct a systematic analysis of the state environmental policy, to identify threats to ecologization and the necessary directions for improvement of the state environmental policy. Methodology. To perform scientific research there were used: the method of content analysis to assess the scientific achievements and identify unresolved aspects of the problem; method of comparative analysis for evaluation and processing of statistical information; method of analysis and synthesis to form the purpose of the study; methods of abstraction and generalization, formalization for detailed elaboration of various aspects of the problem; system-structural method and the method of convergence from the abstract to the concrete for the formation of conclusions and proposals. Findings. New risks and threats to the state environmental policy have been identified and their impact has been analyzed. The analysis revealed that the state environmental policy does not always extend into regional and sectoral environmental policy. It is established that departmental structures responsible for environmental monitoring do not have proper coordination of their actions, even in time, which complicates integrated information processing. In many areas there is no long-term state forecasting of environmental and economic factors. There is no adequate level of systematization in the formation of structured economic and tax incentives for the introduction of effective environmental technologies and compliance with norms and rules in environmental protection. Originality. A systematic analysis of the state environmental policy has been carried out, the formation of the emergent nature of ecological and economic factors has been indicated. Mechanisms of the state ecological policy have been formulated. Threats for ecologization policy and necessary directions of improvement of the state ecological policy have been detected. Practical value. The results of statistical analysis can be used by scientists and practitioners. To reform environmental and economic policy, the threat of imbalance in economic and tax incentives for greening has been pointed out, which may lead to delays in the development and slowdown of technological renewal of industrial sectors, in particular, the energy sector. It has been pointed out that the state ecological and economic policy should be a systemic tool of social policy, help stabilize the situation and overcome the crisis in all spheres of life. The importance of the role of the civil sector in the ecologization of the country and of the need to form a system for developing the environmental consciousness of society has been indicated.
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17

Wright, Ariel, Amy Paredes und Lanette Stuckey. „Mental Health Environmental Safety Assessment“. Nurse Educator 44, Nr. 6 (2019): 320. http://dx.doi.org/10.1097/nne.0000000000000686.

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18

Ермаков, A. Ermakov, Ермаков und Dmitriy Ermakov. „Environmental Safety: Condition, Problems, Prospects“. Safety in Technosphere 4, Nr. 4 (25.08.2015): 69–76. http://dx.doi.org/10.12737/14437.

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VII Nevsky International Ecological Congress "Environmental Safety Strategies: Implementation Tools" took place on May 28–29th 2015 in St. Petersburg. The congress has been heldsince 2008. The main goal of this congress is to assist in the development of international system of environmental safety through international collaboration, to improve international environmental law, and to coordinate the legislation of members of the Common wealth of Independent States that regulates public relations in interaction between society and nature. In this article, we present basic results of discussion of the problems of Russian environmental safetyin international context (including the project of Strategy of ecological security of the Russian Federation for the period until 2025). Members of legislative and executive branches of the government, representatives of international organizations, business communities, educational and research establishments, mass media from 32 countries and 62 regions of Russia discussed issues during the plenary session and round tables.
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19

Хованский, А., A. Hovanskiy, Владимир Дьяченко und Vladimir Dyachenko. „Environmental Safety at the Enterprise“. Safety in Technosphere 7, Nr. 4 (24.06.2019): 55–60. http://dx.doi.org/10.12737/article_5cf66c9468d048.45246445.

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For the implementation of the principal directions of the Russian Federation Environmental Security Strategy, a system of measures to ensure environmental safety at the enterprise has been developed, including identifying and assessing sources of environmental hazards, measures for: protecting the environment in the process of daily economic activity, ensuring industrial safety of hazardous production facilities, preventing and eliminating natural and man-made emergencies, introducing industrial and environmental safety management systems, monitoring compliance with environmental requirements legislation, industrial and environmental safety.
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20

Basilaia, Mariana, Irina Bogdanova und Olga Dymnikova. „Cosmoharmonic principles of environmental safety“. E3S Web of Conferences 135 (2019): 01079. http://dx.doi.org/10.1051/e3sconf/201913501079.

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In the course of globalization the humanity tends to critically regard the traditional ideals of the civilization evolution. It is in the arduous quest for rational routes of advancement, novel values capable of untying antagonisms and protecting the civilization from the global disaster. Any philosophical system is a resolution of the time’s antagonisms. Philosophical comprehension of the environmental antagonism and way of ascending into the noosphere is attainable through a concept of cosmoharmony resting upon dialectical uniformity of fundamental and philosophical knowledge giving rise to a new world outlook.
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21

Simbirskikh, E. S. „Environmental safety of livestock facilities“. Journal of Physics: Conference Series 1679 (November 2020): 052061. http://dx.doi.org/10.1088/1742-6596/1679/5/052061.

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22

Laser, Manfred. „Recent Safety and Environmental Legislation“. Process Safety and Environmental Protection 78, Nr. 5 (September 2000): 419–22. http://dx.doi.org/10.1205/095758200530853.

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23

Laser, Manfred. „Recent Safety and Environmental Legislation“. Process Safety and Environmental Protection 79, Nr. 3 (Mai 2001): 191–93. http://dx.doi.org/10.1205/09575820150511984.

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24

Laser, Manfred. „Recent Safety and Environmental Legislation“. Process Safety and Environmental Protection 79, Nr. 1 (Januar 2001): 53–55. http://dx.doi.org/10.1205/095758201531149.

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25

Laser, Manfred. „Recent Safety and Environmental Legislation“. Process Safety and Environmental Protection 80, Nr. 1 (Januar 2002): 65–67. http://dx.doi.org/10.1205/095758202753502451.

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26

Laser, Manfred. „Recent Safety and Environmental Legislation“. Process Safety and Environmental Protection 80, Nr. 5 (September 2002): 277–81. http://dx.doi.org/10.1205/095758202762277641.

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27

Laser, Manfred. „Recent Safety and Environmental Legislation“. Process Safety and Environmental Protection 81, Nr. 1 (Januar 2003): 55–59. http://dx.doi.org/10.1205/095758203762852001.

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28

Laser, Manfred. „Recent Safety and Environmental Legislation“. Process Safety and Environmental Protection 81, Nr. 3 (Mai 2003): 217–20. http://dx.doi.org/10.1205/095758203765639924.

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29

Laser, Manfred. „Recent Safety and Environmental Legislation“. Process Safety and Environmental Protection 82, Nr. 3 (Mai 2004): 261–63. http://dx.doi.org/10.1205/095758204323066046.

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30

Laser, Manfred. „Recent Safety and Environmental Legislation“. Process Safety and Environmental Protection 74, Nr. 4 (November 1996): 291–93. http://dx.doi.org/10.1205/095758296528653.

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31

Laser, Manfred. „Recent Safety and Environmental Legislation“. Process Safety and Environmental Protection 75, Nr. 1 (Februar 1997): 60–62. http://dx.doi.org/10.1205/095758297528698.

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32

Laser, Manfred. „Recent Safety and Environmental Legislation“. Process Safety and Environmental Protection 75, Nr. 3 (August 1997): 195–97. http://dx.doi.org/10.1205/095758297528931.

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33

Laser, Manfred. „Recent Safety and Environmental Legislation“. Process Safety and Environmental Protection 76, Nr. 1 (Februar 1998): 73–77. http://dx.doi.org/10.1205/095758298529191.

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34

Laser, Manfred. „Recent Safety and Environmental Legislation“. Process Safety and Environmental Protection 76, Nr. 3 (August 1998): 265–68. http://dx.doi.org/10.1205/095758298529489.

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35

Laser, Manfred. „Recent Safety and Environmental Legislation“. Process Safety and Environmental Protection 77, Nr. 1 (Januar 1999): 57–59. http://dx.doi.org/10.1205/095758299529721.

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36

Laser, Manfred. „Recent Safety and Environmental Legislation“. Process Safety and Environmental Protection 77, Nr. 2 (März 1999): 103–5. http://dx.doi.org/10.1205/095758299529901.

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37

Laser, Manfred. „Recent Safety and Environmental Legislation“. Process Safety and Environmental Protection 77, Nr. 4 (Juli 1999): 243–47. http://dx.doi.org/10.1205/095758299530035.

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38

Laser, Manfred. „Recent Safety and Environmental Legislation“. Process Safety and Environmental Protection 77, Nr. 5 (September 1999): 311–13. http://dx.doi.org/10.1205/095758299530206.

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39

Laser, Manfred. „Recent Safety and Environmental Legislation“. Process Safety and Environmental Protection 83, Nr. 1 (Januar 2005): 71–73. http://dx.doi.org/10.1205/psep.le.0501.

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40

Laser, Manfred. „Recent Safety and Environmental Legislation“. Process Safety and Environmental Protection 83, Nr. 2 (März 2005): 197–98. http://dx.doi.org/10.1205/psep.le.0502.

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41

Laser, Manfred. „Recent Safety and Environmental Legislation“. Process Safety and Environmental Protection 83, Nr. 4 (Juli 2005): 398–99. http://dx.doi.org/10.1205/psep.le.0504.

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42

Laser, Manfred. „Recent Safety and Environmental Legislation“. Process Safety and Environmental Protection 84, Nr. 1 (Januar 2006): 75–76. http://dx.doi.org/10.1205/psep.le.0601.

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43

Laser, Manfred. „Recent Safety and Environmental Legislation“. Process Safety and Environmental Protection 84, Nr. 3 (Mai 2006): 227–28. http://dx.doi.org/10.1205/psep.le.0603.

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44

Laser, Mantred. „Recent Safety and Environmental Legislation“. Process Safety and Environmental Protection 85, Nr. 1 (Januar 2007): 111–12. http://dx.doi.org/10.1205/psep.re.0701.

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45

Laser, Manfred. „Recent Safety and Environmental Legislation“. Process Safety and Environmental Protection 85, Nr. 2 (Januar 2007): 185–87. http://dx.doi.org/10.1205/psep.re.0702.

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46

Laser, Manfred. „Recent Safety and Environmental Legislation“. Process Safety and Environmental Protection 85, Nr. 4 (Januar 2007): 341–42. http://dx.doi.org/10.1205/psep.re.0704.

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47

Laser, Manfred. „Recent Safety and Environmental Legislation“. Process Safety and Environmental Protection 85, Nr. 5 (2007): 503–4. http://dx.doi.org/10.1205/psep.re.0705.

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48

„Environmental Safety and Technology“. Applied Catalysis B: Environmental 11, Nr. 1 (27.12.1996): N5. http://dx.doi.org/10.1016/s0926-3373(97)80032-x.

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49

„Safety & Environmental Management“. Biomedical Safety & Standards 22, Nr. 22 (Dezember 1992): 175. http://dx.doi.org/10.1097/00149078-199212150-00016.

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„Safety and environmental management“. Environment International 22, Nr. 6 (Januar 1996): 764. http://dx.doi.org/10.1016/0160-4120(97)81267-6.

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