Results for 'Environmental risk assessment'

975 found
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  1.  21
    Environmental risk assessment.Jerry L. R. Chandler - 1986 - Bioessays 5 (4):176-180.
  2. Environmental Risk Assessment and Nuclear Waste Disposal.K. Shrader-Frechette - 1994 - Epistemologia 17 (1):53-72.
  3.  58
    Problem Formulation and Option Assessment (PFOA) Linking Governance and Environmental Risk Assessment for Technologies: A Methodology for Problem Analysis of Nanotechnologies and Genetically Engineered Organisms.Kristen C. Nelson, David A. Andow & Michael J. Banker - 2009 - Journal of Law, Medicine and Ethics 37 (4):732-748.
    Societal evaluation of new technologies, specifically nanotechnology and genetically engineered organisms, challenges current practices of governance and science. When a governing body is confronted by a technology whose use has potential environmental risks, some form of risk analysis is typically conducted to help decision makers consider the range of possible benefits and harms posed by the technology. Environmental risk assessment is a critical component in the governance of nanotechnology and genetically engineered organisms because the uncertainties (...)
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  4.  34
    Valuing Birds in the Bush: For Pluralism in Environmental Risk Assessment.Peter Lucas - 2002 - Environmental Values 11 (2):177-191.
    It is now widely acknowledged that social theorists can make an important contribution to our understanding of environmental risk. There is however a danger that the current ascendancy of social theory will encourage a tendency to assimilate issues around environmental risk to those at stake in entrenched debates between realist and constructivist social theorists. I begin by citing a recent example of this trend, before going on to argue that framing the issues in terms of a (...)
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  5.  12
    Book Review: Handbook of Environmental Risk Assessment and Management. [REVIEW]Clive L. Spash - 2000 - Environmental Values 9 (1):109-111.
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  6.  11
    Comparative Risk Assessment: Where Does the Public Fit In?Ralph M. Perhac - 1998 - Science, Technology and Human Values 23 (2):221-241.
    Comparative risk assessment is playing an ever-increasing role in environmental policy priority setting, as manifested in national and numerous subnational comparative risk projects. It is widely accepted that public values, interests, and concerns should play an important role in CRA. However, the philosophical basis for public involvement in CRA has not been adequately explored, nor have comparative risk projects always made explicit their rationales for public involvement. The author examines the political, normative, and epistemic rationales (...)
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  7. Environmental Risks, Uncertainty and Intergenerational Ethics.Kristian Skagen Ekeli - 2004 - Environmental Values 13 (4):421-448.
    The way our decisions and actions can affect future generations is surrounded by uncertainty. This is evident in current discussions of environmental risks related to global climate change, biotechnology and the use and storage of nuclear energy. The aim of this paper is to consider more closely how uncertainty affects our moral responsibility to future generations, and to what extent moral agents can be held responsible for activities that inflict risks on future people. It is argued that our moral (...)
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  8.  51
    Environmental Risk Problems and the Language of Ethics.W. Michael Hoffman - 1995 - Business Ethics Quarterly 5 (4):699-711.
    In this paper we present six criteria for assessing proposed solutions to environmental risk problems. To assess the final criterion-the criterion of ethical responsibility-we suggest another series of criteria. However, before these criteria can be used to address ethical problems, business persons must be wiIling to discuss the problem in ethical terms. Yet many decision makers are unwilling to do so. Drawing on research by James Waters and Frederick Bird, we discuss this “moral muteness”-the inability or unwillingness to (...)
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  9.  62
    Complex Governance to Cope with Global Environmental Risk: An Assessment of the United Nations Framework Convention on Climate Change. [REVIEW]Bruno Turnheim & Mehmet Y. Tezcan - 2010 - Science and Engineering Ethics 16 (3):517-533.
    In this article, a framework is suggested to deal with the analysis of global environmental risk governance. Climate Change is taken as a particular form of contemporary environmental risk, and mobilised to refine and characterize some salient aspects of new governance challenges. A governance framework is elaborated along three basic features: (1) a close relationship with science, (2) an in-built reflexivity, and (3) forms of governmentality. The UNFCCC-centered system is then assessed according to this three-tier framework. (...)
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  10. Environmental risks: Scientific concepts and social perception.Paolo Vineis - 1995 - Theoretical Medicine and Bioethics 16 (2).
    Using the example of air pollution, I criticize a restricted utilitarian view of environmental risks. It is likely that damage to health due to environmental pollution in Western countries is relatively modest in quantitative terms (especially when considering cancer and comparing such damage to the effects of some life-style exposures). However, a strictly quantitative approach, which ranks priorities according to the burden of disease attributable to single causes, is questionable because it does not consider such aspects as inequalities (...)
     
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  11.  36
    Conceptual Questions and Challenges Associated with the Traditional Risk Assessment Paradigm for Nanomaterials.Jutta Jahnel - 2015 - NanoEthics 9 (3):261-276.
    Risk assessment is an evidence-based analytical framework used to evaluate research findings related to environmental and public health decision-making. Different routines have been adopted for assessing the potential risks posed by substances and products to human health. In general, the traditional paradigm is a hazard-driven approach, based on a monocausal toxicological perspective. Questions have been raised about the applicability of the general chemical risk assessment approach in the specific case of nanomaterials. Most scientists and stakeholders (...)
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  12.  12
    The Interplay of Science and Values in Assessing and Regulating Environmental Risks.Frances M. Lynn - 1986 - Science, Technology, and Human Values 11 (2):40-50.
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  13.  18
    Citizen Participation and Environmental Risk: A Survey of Institutional Mechanisms.Daniel J. Fiorino - 1990 - Science, Technology and Human Values 15 (2):226-243.
    Standard approaches to defining and evaluating environmental risk tend to reflect technocratic rather than democratic values. One consequence is that institutional mechanisms for achieving citizen participation in risk decisions rarely are studied or evaluated. This article presents a survey of five institutional mechanisms for allowing the lay public to influence environmental risk decisions: public hearings, initiatives, public surveys, negotiated rule making, and citizens review panels. It also defines democratic process criteria for assessing these and other (...)
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  14. Risk assessment of genetically modified food and neoliberalism: An argument for democratizing the regulatory review protocol of the Food and Drug Administration.Zahra Meghani - 2014 - Journal of Agricultural and Environmental Ethics 27 (6):967–989.
    The primary responsibility of the US Food and Drug Administration is to protect public health by ensuring the safety of the food supply. To that end, it sometimes conducts risk assessments of novel food products, such as genetically modified food. The FDA describes its regulatory review of GM food as a purely scientific activity, untainted by any normative considerations. This paper provides evidence that the regulatory agency is not justified in making that claim. It is argued that the FDA’s (...)
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  15.  59
    The US' food and drug administration, normativity of risk assessment, gmos, and american democracy.Zahra Meghani - 2009 - Journal of Agricultural and Environmental Ethics 22 (2):125-139.
    The process of risk assessment of biotechnologies, such as genetically modified organisms (GMOs), has normative dimensions. However, the US’ Food and Drug Administration (FDA) seems committed to the idea that such evaluations are objective. This essay makes the case that the agency’s regulatory approach should be changed such that the public is involved in deciding any ethical or social questions that might arise during risk assessment of GMOs. It is argued that, in the US, neither aggregative (...)
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  16.  17
    Remote Sensing Monitoring and Ecological Risk Assessment of Landscape Patterning in the Agro-Pastoral Ecotone of Northeast China.Min Guo & Shijun Wang - 2021 - Complexity 2021:1-13.
    The agro-pastoral ecotone, an ecological transition zone connecting adjacent areas of agricultural planting area and grassland animal husbandry, has three features: a complex natural condition, relatively pronounced population pressure, and a fragile ecological environment. In this study, we conducted an ecosystem risk assessment in the western part of Jilin Province, China, based on multiscale and multitemporal remote sensing images and land-use data. Furthermore, we focused on land-use change from 1995 to 2015 by applying the dynamic change information survey (...)
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  17.  16
    Using risk assessment to define domestic animal welfare.Gary P. Moberg - forthcoming - Journal of Agricultural and Environmental Ethics.
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  18. Science and values in risk assessment: The case of deliberate release of genetically engineered organisms. [REVIEW]Soemini Kasanmoentalib - 1996 - Journal of Agricultural and Environmental Ethics 9 (1):42-60.
    To make more responsible decisions regarding risk and to understand disagreements and controversies in risk assessments, it is important to know how and where values are infused into risk assessment and how they are embedded in the conclusions. In this article an attempt is made to disentangle the relationship of science and values in decision-making concerning the deliberate release of genetically modified organisms (GMOs) into the environment. This exercise in applied philosophy of science is based on (...)
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  19.  77
    From Environmental Ethics to Sustainable Decision-Making: Assessment of Potential Ecological Risk in Soils Around Abandoned Mining Areas-Case Study “Larga de Sus mine” (Romania).Adriana M. Chirilă Băbău, Ioana M. Sur, Valer Micle & Gianina E. Damian - 2019 - Journal of Agricultural and Environmental Ethics 32 (1):27-49.
    The present study aimed at investigating the heavy metals concentrations in the soils around “Larga de Sus” abandoned mine (Zlatna, Romania), evaluating the potential ecological risk of heavy metal pollution and highlighting ethical aspects related to risk assessment, ecological restoration, and soil remediation. The results of the chemical analysis showed that the soil in the study area is highly polluted with heavy metals since the average concentrations of Pb (32.4–2318.1 mg/kg), and Ni (321.6–562.8 mg/kg) in soil exceed (...)
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  20.  7
    Measuring Environmental Health Risks: The Negotiation of a Public Right-to-Know Law.Joshua Dunsby - 2004 - Science, Technology, and Human Values 29 (3):269-290.
    Quantitative health risk assessment is a procedure for estimating the likelihood that exposure to environmental contaminants will produce certain adverse health effects, most commonly cancer. One instance of its use has been a California air toxics public “right-to-know” law. This article examines the ways in which credible health risk measurements were produced and challenged during the implementation of the California public policy. Fieldwork and documentary analysis finds that stakeholders negotiated within the formal constraints of the (...) assessment procedures but still expressed their competing visions for the implementation of the risk communication policy. The abstract results of the method were contextualized according to different time frames and allocations of uncertainty. Furthermore, the article demonstrates that the political process privileged consistency of measurement over accuracy, revealing political negotiations at a fundamentally technical level. The struggle and variation in interpretations can be explained best by the demand to organize the program around the discordant values of democratic accountability and technical efficiency. (shrink)
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  21.  42
    Risk, Uncertainty and Precaution in Science: The Threshold of the Toxicological Concern Approach in Food Toxicology.Karim Bschir - 2017 - Science and Engineering Ethics 23 (2):489-508.
    Environmental risk assessment is often affected by severe uncertainty. The frequently invoked precautionary principle helps to guide risk assessment and decision-making in the face of scientific uncertainty. In many contexts, however, uncertainties play a role not only in the application of scientific models but also in their development. Building on recent literature in the philosophy of science, this paper argues that precaution should be exercised at the stage when tools for risk assessment are (...)
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  22.  16
    Essay Review: Assessing and Managing Environmental Risks. [REVIEW]Rochelle Christian - 2008 - Minerva 46 (2):275-283.
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  23.  44
    Value assumptions in risk assessment: A case study of the alachlor controversy. [REVIEW]Hugh Lehman - 1992 - Journal of Agricultural and Environmental Ethics 5 (1):110-112.
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  24.  22
    European Biotechnology Regulation: Framing the Risk Assessment of a Herbicide-Tolerant Crop.Rene von Schomberg, David Wield, Susan Carr & Les Levidow - 1997 - Science, Technology and Human Values 22 (4):472-505.
    As products of the "new biotechnology," genetically modified organisms have provoked a wide-ranging risk debate on potential harm, especially from herbicide-tolerant crops. In response to this legitimacy problem, the European Community adopted precautionary legislation, which left open the definition of environmental harm. When the U.K. proposed Europe-wide market approval of a herbicide-tolerant oilseed rape, the proposal encountered dissent from some countries and environmentalist groups. Further debate on normative judgments became necessary to implement the precaution ary legislation. In dispute (...)
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  25.  18
    Better policy through better science: Using metascience to improve dose-response curves in biology and in ICRP ecological risk assessment.Kristin Shrader-Frechette - unknown
    Many people argue that uncertain science -- or controversial policies based on science -- can be clarified primarily by greater attention to the social and ethical values influencing the science and the policy and by greater attention to the vested, economic interests involved. This paper argues that while such clarification is necessary, it is neither a sufficient condition, nor even the primary means, by which to achieve better science and better policy. Using a case study involving the current, highly politicized (...)
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  26. Valuing environmental costs and benefits in an uncertain future: risk aversion and discounting.Fabien Medvecky - 2012 - Erasmus Journal for Philosophy and Economics 5 (1):1-1.
    A central point of debate over environmental policies concerns how future costs and benefits should be assessed. The most commonly used method for assessing the value of future costs and benefits is economic discounting. One often-cited justification for discounting is uncertainty. More specifically, it is risk aversion coupled with the expectation that future prospects are more risky. In this paper I argue that there are at least two reasons for disputing the use of risk aversion as a (...)
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  27.  51
    The Songlines of Risk.Sheila Jasanoff - 1999 - Environmental Values 8 (2):135-152.
    Two decades of social and political analysis have helped to enrich the concept of risk that underlies the bulk of modern environmental regulation. Risk is no longer seen merely as the probability of harm arising from more or less determinable physical, biological or social causes. Instead, it seems more appropriate to view risk as the embodiment of deeply held cultural values and beliefs – the songlines of the paper's title – concerning such issues as agency, causation, (...)
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  28. Risk: Philosophical Perspectives.Tim Lewens (ed.) - 2007 - New York: Routledge.
    How can we determine an acceptable level of risk? Should these decisions be made by experts, or by the people they affect? How should safety and security be balanced against other goods, such as liberty? This is the first collection to examine the philosophical dimensions of these pressing practical problems. Leading scholars exploring the full range of philosophical implications of risk, including: risk and ethics risk and rationality risk and scientific expertise risk and lay (...)
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  29.  46
    Risk of public disclosure in environmental farm plan programs: Characteristics and mitigating legal and policy strategies. [REVIEW]Emmanuel K. Yiridoe - 2000 - Journal of Agricultural and Environmental Ethics 13 (1):101-120.
    Although various studies have shown thatfarmers believe there is the need for a producer-ledinitiative to address the environmental problems fromagriculture, farmers in several Canadian provinceshave been reluctant to widely participate inEnvironmental Farm Plan (EFP) programs. Few studieshave examined the key issues associated with adoptingEFP programs based on farmers', as opposed to policymakers', perspectives on why producers are reluctantto participate in the program. A study adapting VanRaaij's (1981) conceptual model of the decision-makingenvironment of the firm, and prospect theory on valuefunctions (...)
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  30.  10
    How Much Risk?: A Guide to Understanding Environmental Health Hazards.Inge F. Goldstein & Martin Goldstein - 2002 - Oxford University Press USA.
    An excellent critical analysis and scientific assessment of the nature and actual level of risk leading environmental health hazards pose to the public. Issues such as radiation from nuclear testing, radon in the home, and the connection between electromagnetic fields and cancer, environmental factors and asthma, pesticides and breast cancer and leukemia clusters around nuclear plants are discussed and how scientists assess these risks is illuminated.
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  31.  17
    Behavioral Assessment of Aquatic Pollutants.Craig Steele - 2013 - Ethics, Policy and Environment 16 (2):177 - 187.
    Animal behavior is the link between organisms and their environment and is critical for biological adaptation. Despite many studies demonstrating the sensitivity and utility of behavioral endpoints in bioassays assessing potential pollutant effects in aquatic ecosystems, behavioral toxicity testing has not, historically, been included routinely in assessments of aquatic toxicity and subsequent environmental policy formulation. The results of behavioral risk assessments may allow behavioral toxicologists to demonstrate that a chemical is not merely a potential hazard, but that it (...)
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  32.  46
    On the Validity of Environmental Performance Metrics.Natalia Semenova & Lars G. Hassel - 2015 - Journal of Business Ethics 132 (2):249-258.
    Different proprietary databases have been used extensively in research to assess the environmental performance and environmental risk of companies. This study explores the convergent validity of the environmental ratings of MSCI ESG STATS, Thomson Reuters ASSET4 and Global Engagement Services. The study shows that the ratings have common dimensions, but on aggregate, they do not converge. On the environmental opportunity side, KLD environmental strengths, and ASSET4 and GES environmental performance metrics correlate highly and (...)
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  33.  28
    Utilizing a social ethic toward the environment in assessing genetically engineered insect-resistance in trees.R. R. James - 1997 - Agriculture and Human Values 14 (3):237-249.
    Social policies are used to regulate how members of a society interact and share resources. If we expand our sense of community to include the ecosystem of which we are a part, we begin to develop an ethical obligation to this broader community. This ethic recognizes that the environment has intrinsic value, and each of us, as members of society, are ethically bound to preserve its sustainability. In assessing the environmental risks of new agricultural methods and technologies, society should (...)
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  34.  14
    Book Review: Flood Risk and Social Justice: From Quantitative to Qualitative Flood Risk Assessment and Mitigation. [REVIEW]David Luscombe - 2013 - Environmental Values 22 (5):672-674.
  35. Risks associated with genetic modification: – An annotated bibliography of Peer reviewed natural science publications. [REVIEW]Sean A. Weaver & Michael C. Morris - 2005 - Journal of Agricultural and Environmental Ethics 18 (2):157-189.
    We present an annotated bibliography of peer reviewed scientific research highlighting the human health, animal welfare, and environmental risks associated with genetic modification. Risks associated with the expression of the transgenic material include concerns over resistance and non-target effects of crops expressing Bt toxins, consequences of herbicide use associated with genetically modified herbicide-tolerant plants, and transfer of gene expression from genetically modified crops through vertical and horizontal gene transfer. These risks are not connected to the technique of genetic modification (...)
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  36.  37
    Responsible Learning About Risks Arising from Emerging Biotechnologies.Lotte Asveld & Britte Bouchaut - 2021 - Science and Engineering Ethics 27 (2):1-20.
    Genetic engineering techniques (e.g., CRISPR-Cas) have led to an increase in biotechnological developments, possibly leading to uncertain risks. The European Union aims to anticipate these by embedding the Precautionary Principle in its regulation for risk management. This principle revolves around taking preventive action in the face of uncertainty and provides guidelines to take precautionary measures when dealing with important values such as health or environmental safety. However, when dealing with ‘new’ technologies, it can be hard for risk (...)
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  37.  20
    Research on the Human Rights and Cultural Protection of Environmentally Displaced Persons under Rising Sea Levels.Rui Xie, Wen-Bo Li, Meng-Chun Lin & Jia-Ming di LuZhu - 2021 - Complexity 2021:1-11.
    In recent years, due to factors such as rising sea levels, several island nations such as Maldives, Tuvalu, Kiribati, and the Marshall Islands are in danger of disappearing completely. When the land of an island country disappeared, the human rights protection of Environmentally Displaced Persons in the migration process and the possible loss of their unique culture, language, and lifestyle have aroused great concern. We call such Environmentally Displaced Persons as EDPs. This study selects the EDPs’ data of 241 countries (...)
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  38. Green Microfinance: Characteristics of Microfinance Institutions Involved in Environmental Management.Marion Allet & Marek Hudon - 2015 - Journal of Business Ethics 126 (3):395-414.
    In recent years, development practice has seen that microfinance institutions are starting to consider their environmental bottom line in addition to their financial and social objectives. Yet, little is known about the characteristics of institutions involved in environmental management. This paper empirically identifies the characteristics of these MFIs for the first time using a sample of 160 microfinance institutions worldwide. Basing our analysis on various econometric tests, we find that larger MFIs and MFIs registered as banks tend to (...)
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  39.  61
    Herbicide resistant sugar beet – what is the problem?Kathrine Hauge Madsen & Peter Sandøe - 2001 - Journal of Agricultural and Environmental Ethics 14 (2):161-168.
    Risk assessment studies of herbicide resistant sugarbeet have revealed no risks to human health or the environment.Indeed it appears that commercial growth of this crop mightsecure benefits such as decreased pesticide use and increasedbiodiversity. However, widespread resistance to GM crops such asherbicide resistant sugar beet still persists in Europe. It isargued that this is not just because people do not know therelevant facts. Rather it is because popular resistance to GMfood is driven in part by concerns other than (...)
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  40.  8
    Translating at Work: Genetically Modified Mouse Models and Molecularization in the Environmental Health Sciences.Sara Shostak - 2007 - Science, Technology, and Human Values 32 (3):315-338.
    This paper examines processes of translation through which molecular genetic technologies and practices are incorporated into environmental health research and regulation. Specifically, it considers how scientists, risk assessors, and regulators have used genetically modified mouse models to translate across scientific disciplines, articulate emergent molecular forms, standards, and practices with the extant? gold standard,? and establish roles for molecular knowledge in risk assessment and regulation. Noting variation both within and between regulatory agencies in responses to data from (...)
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  41.  24
    What Scientists Say about the Changing Risk Calculation in the Marine Environment under the Harper Government of Canada.Melanie G. Wiber & Allain J. Barnett - 2019 - Science, Technology, and Human Values 44 (1):29-51.
    This paper examines how the Harper Government of Canada shut down both debate about threats and research into environmental risk, a strategy that Canadian scientists characterized as the “death of evidence.” Based on interviews with scientists who research risks to the marine environment, we explore the shifting relationship between science and the Canadian government by tracing the change in the mode of risk calculation supported by the Harper administration and the impact of this change. Five themes emerged (...)
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  42.  11
    Lay–Expert Risk Perception Divide: Downscaling Global Problems to National Concerns.Aistė Balžekienė, Eimantė Zolubienė & Agnė Budžytė - 2022 - Filosofija. Sociologija 33 (4).
    In the modern world, risks are complex and systemic, and their effects are interconnected with the transformations in different layers of social systems. Global issues are not necessarily reflected in local contexts, and public perceptions of risks may differ significantly from expert assessments. The aim of the article is to reveal the differences between the opinions of the Lithuanian population and experts on economic, environmental, technological, geopolitical and social risks, and to compare the differences between the opinions of local (...)
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  43.  25
    Putting precaution to debate – about the precautionary principle and participatory technology assessment.Barbara Skorupinski - 2002 - Journal of Agricultural and Environmental Ethics 15 (1):87-102.
    Technology assessment (TA) as aninstitution was introduced nearly thirty yearsago as an instrument to render possible themaking of responsible decisions concerning newtechnological options. Another recentdevelopment however has been the introductionof participatory technology assessment (pTA),mainly connected to the growing insight thatthe evaluation of technological options withrespect to their risks and benefits, is not –only – a scientific question. This paper willfocus on the questions, to what degree theideas of technology assessment and thePrecautionary Principle are connected and how.Without naming (...)
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  44. Ethics, Science and Environmental Regulation.Donald A. Brown - 1987 - Environmental Ethics 9 (4):331-349.
    Because complex environmental problems are relegated to scientific experts, the ethical questions that are embedded in these problems are often hidden or distorted in scientific and administrative methodology and communication. The administrative process requires that facts and values be separated. Those values that cannot simply be ignored are usually translated into technical economic language and settled in terms of economic costs and benefits. Calls for regulatory reform-i.e., to reduce or eliminate environmental regulation--create additional pressures on analysts that encourage (...)
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  45.  31
    Riscophrenia and "animal spirits": clarifying the notions of risk and uncertainty in environmental problems.Helena Mateus Jerónimo - 2014 - Scientiae Studia 12 (SPE):57-74.
    This article seeks to clarify the concepts of risk and uncertainty, restricting its focus to environmental problems and to three strands of reflection. Firstly, I suggest that we should apply the label riscophrenia to the tendency to envisage most environmental problems excessively in terms of probabilistic risk, erecting the concept to a core dogma of certainty based on the image it offers of safety and control of the random. Looking at the most serious environmental problems (...)
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  46.  78
    Risk regulation, EU law and emerging technologies: Smother or smooth? [REVIEW]Geert van Calster - 2008 - NanoEthics 2 (1):61-71.
    Risk analysis as a regulatory driver has now become firmly entrenched in public health and environmental protection. Risk analysis at any level essentially has to accommodate two gut feelings of the constituency: whether society should be risk-prone or risk averse, and whether government and its institutions can be trusted to make the necessary decisions with a high or a low degree of discretion. The precautionary principle (or rejection thereof) arguably is the ultimate reflection of the (...)
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  47.  32
    Social Theories of Risk.Sheldon Krimsky & Dominic Golding (eds.) - 1992 - Praeger.
    The social science approach to risk has matured over the past two decades, with distinct paradigms developing in disciplines such as anthropology, economics, geography, psychology, and sociology. Social Theories of Risk traces the intellectual origins and histories of twelve of the established and emerging paradigms from the perspective of their principal proponents. Each contributor examines the underlying assumptions of his or her paradigm, the foundational issue it seeks to address, and likely future directions of research. Taken together, these (...)
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  48.  82
    Ethics of risk analysis and regulatory review: From bio- to nanotechnology. [REVIEW]Jennifer Kuzma & John C. Besley - 2008 - NanoEthics 2 (2):149-162.
    Risk analysis and regulatory systems are usually evaluated according to utilitarian frameworks, as they are viewed to operate “objectively” by considering the health, environmental, and economic impacts of technological applications. Yet, the estimation of impacts during risk analysis and the decisions in regulatory review are affected by value choices of actors and stakeholders; attention to principles such as autonomy, justice, and integrity; and power relationships. In this article, case studies of biotechnology are used to illustrate how non-utilitarian (...)
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  49.  21
    Environmental Decision Making on Acid Mine Drainage Issues in South Africa: An Argument for the Precautionary Principle.T. J. Morodi & Charles Mpofu - 2018 - Science and Engineering Ethics 24 (4):1181-1199.
    This paper examines the issue of acid mine drainage in South Africa and environmental decision making processes that could be taken to mitigate the problem in the context of both conventional risk assessment and the precautionary principle. It is argued that conventional risk assessment protects the status quo and hence cannot be entirely relied upon as an effective tool to resolve environmental problems in the context of South Africa, a developing country with complex (...) health concerns. The complexity of the environmental issues is discussed from historical and political perspectives. An argument is subsequently made that the precautionary principle is an alternative tool, and its adoption can be used to empower local communities. This work, therefore, adds to new knowledge by problematising conventional risk assessment and proposing the framing of the acid mine drainage issues in a complex and contextual scenario of a developing country—South Africa. (shrink)
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  50. Reconceptualizing and Defining Exposomics within Environmental Health: Expanding the Scope of Health Research.Caspar Safarlou, Karin R. Jongsma & Roel Vermeulen - 2024 - Environmental Health Perspectives 132 (9):095001.
    Background: Exposomics, the study of the exposome, is flourishing, but the field is not well defined. The term “exposome” refers to all environmental influences and associated biological responses throughout the lifespan. However, this definition is very similar to that of the term “environment”—the external elements and conditions that surround and affect the life and development of an organism. Consequently, the exposome seems to be nothing more than a synonym for the environment, and exposomics a synonym for environmental research. (...)
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