Results for 'negative emissions technologies'

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  1. The NET effect: Negative emissions technologies and the need–efficiency trade-off.Kian Mintz-Woo - 2023 - Global Sustainability 6:e5.
    Non-technical summary: -/- When developing and deploying negative emissions technologies (NETs), little attention has been paid to where. On the one hand, one might develop NETs where they are likely to contribute most to global mitigation targets, contributing to a global climate solution. On the other hand, one might develop NETs where they can help support development on a regional basis, justified by regional demands. I defend these arguments and suggest that they reflect the values of efficiency (...)
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  2. The Need-Efficiency Tradeoff for negative emissions technologies.Kian Mintz-Woo - 2022 - PLoS Climate 1 (8): e0000060.
    [Opinion] This aims to begin deliberation about investing in negative emissions technologies (NETs) by suggesting that the investment could be responsive to two particular values: need and efficiency—and that these values point us towards taking different actions. For negative emissions technologies, I suggest, we face a Need-Efficiency Tradeoff, i.e. a “NET effect”. This tradeoff also highlights several contrasts: responding to need focuses on regional and short-term moral considerations; responding to efficiency focuses on global and (...)
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  3.  28
    As Much as Possible, as Soon As Possible: Getting Negative About Emissions.Kent A. Peacock - 2022 - Ethics, Policy and Environment 25 (3):281-296.
    This paper is a report on the viability, both technical and ethical, of negative emissions technologies (NETs) in climate change mitigation. Given present levels of atmospheric carbon dioxide, NETs are almost certainly required in order to avoid the most serious consequences of anthropogenic carbonization. Critics argue that we should not rely on the promise of future NETs because that could be taken as an excuse to avoid decarbonization in the near term. The concern is genuine, but if (...)
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  4.  8
    The Impacts of Freight Trade on Carbon Emission Efficiency: Evidence from the Countries along the “Belt and Road”.Jiangfeng Hu, Haoming Shi, Qinghua Huang, Yalan Luo & Yamei Li - 2020 - Complexity 2020:1-15.
    Extensive research has been carried out on the “Belt and Road” initiative, most of it focusing on geographical economy and international trade. However, there is a lack of research on the carbon emissions efficiency of the countries along the “Belt and Road,” especially regarding the impact of freight trade. To address this research gap, this paper first employs a metafrontier nonradial directional distance function to measure the carbon emission efficiency of 32 countries along the “Belt and Road” from 1990 (...)
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  5.  20
    On the Permissibility (Or Otherwise) of Negative Emissions.Dominic Lenzi - 2021 - Ethics, Policy and Environment 24 (2):123-136.
    Limiting dangerous climate change is now widely believed to require negative emissions, a prospect some believe to be unjust and unacceptably risky. While NETs are not risk-free, I argue tha...
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  6.  45
    Assessing climate policies: Catastrophe avoidance and the right to sustainable development.Darrel Moellendorf & Daniel Edward Callies - 2021 - Politics, Philosophy and Economics 20 (2):127-150.
    With the significant disconnect between the collective aim of limiting warming to well below 2°C and the current means proposed to achieve such an aim, the goal of this paper is to offer a moral assessment of prominent alternatives to current international climate policy. To do so, we’ll outline five different policy routes that could potentially bring the means and goal in line. Those five policy routes are: (1) exceed 2°C; (2) limit warming to less than 2°C by economic de-growth; (...)
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  7.  24
    Conflicting Advice: Resolving Conflicting Moral Recommendations in Climate and Environmental Ethics.Patrik Baard - 2020 - In Brian Henning & Zack Walsh (eds.), Climate Change Ethics and the Non-Human World. New York, USA:
    Climate ethics and environmental ethics sometimes provide conflicting action guidance. For instance, favored climate policies to avoid global mean increases beyond 1.5-2 °C may have detrimental effects on biodiversity by requiring transforming environmental areas into croplands for bioenergy and for negative emission technologies. From this follows a potential moral conflict between the demands of climate ethics, according to which transforming natural ecosystems to cropland for bioenergy is permissible and perhaps even obligatory if it reduces risks of climate change, (...)
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  8.  27
    Using Synthetic Biology to Avert Runaway Climate Change: A Consequentialist Appraisal.Daniele Fulvi & Josh Wodak - 2024 - Ethics, Policy and Environment 27 (1):89-107.
    We attempt to justify the use of synthetic biology in response to the climate crisis, based on the premise that it is impossible to avert runaway climate change without sequestering sufficient greenhouse gases (GHG), which could only become possible through Negative Emissions Technologies (NETs). Then, moving from a consequentialist standpoint, we acquiesce to how the consequences of using NETs through synthetic biology are preferable to the catastrophic consequences of runaway climate change. In conclusion, we show how our (...)
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  9.  13
    Incumbency, Trust and the Monsanto Effect: Stakeholder Discourses on Greenhouse Gas Removal.Emily Cox, Elspeth Spence & Nick Pidgeon - 2020 - Environmental Values 29 (2):197-220.
    This paper explores factors shaping perceptions of Greenhouse Gas Removal (GGR) amongst a range of informed stakeholders, with a particular focus on their role in future social and political systems. We find considerable ambivalence regarding the role of climate targets and incumbent interests in relation to GGR. Our results suggest that GGR is symbolic of a fundamental debate - occurring not only between separate people, but sometimes within the minds of individuals themselves - over whether technological solutions represent a pragmatic (...)
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  10. Feasibility and Justice in Decarbonizing Transitions.Ivo Wallimann-Helmer - 2021 - In Corey Katz & Sarah Kenehan (eds.), Principles of Justice and Real-World. pp. 191-210.
    Climate change is expected to lead to rising sea levels, higher frequency of natural hazards, extended phases of drought, and many other negative impacts. To minimize these threats, the 21st Conference of the Parties (COP 21) in Paris agreed that the global mean temperature must be kept “well below 2 °C above pre-industrial levels” (United Nations 2015). For this target to be feasible, most climate models assume not only heavy cuts in emissions but also negative emissions (...)
     
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  11. Carbon capture and storage: where should the world store CO₂? It’s a moral dilemma.Kian Mintz-Woo - 2021 - The Conversation.
    [Newspaper opinion] To give carbon storage sites the greatest chance of success, it makes sense to develop them in places where the geology has been thoroughly explored and where there is lots of relevant expertise. This would imply pumping carbon into underground storage sites in northern Europe, the Middle East and the US, where companies have spent centuries looking for and extracting fossil fuels. On the other hand, it might be important to develop storage sites in economies where the current (...)
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  12.  8
    Green technology innovation and carbon emissions nexus in China: Does industrial structure upgrading matter?Pengfei Gao, Yadong Wang, Yi Zou, Xufeng Su, Xinghui Che & Xiaodong Yang - 2022 - Frontiers in Psychology 13.
    Compared with traditional technological innovation modes, green technology innovation is more targeted for low carbon development and critical support for countries worldwide to combat climate change. The impact of green technology innovation on carbon emissions is considered in terms of fixed effect and mediating effect models through industrial structure upgrading. For this purpose, the sample dataset of 30 provincial administrative areas in China from 2008 to 2020 is employed. The results demonstrate that green technology innovation exerts significantly inhibitory effects (...)
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  13.  39
    Internalizing Negative Externalities of Carbon Emissions for Climate Justice.Justin Donhauser - 2019 - Ethics, Policy and Environment 22 (2):131-134.
    Sayegh’s discussion highlights the moral relevance of carbon-taxing by showing how such taxes can enable responses to climate injustices. This is by serving as a means of getting countries to inter...
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  14.  2
    Technological Solutions and Contested Interpretations of Scientific Results: Risk Assessment of Diesel Emissions in the United States and in West Germany, 1977–1995.Christopher Neumaier - 2020 - NTM Zeitschrift für Geschichte der Wissenschaften, Technik und Medizin 28 (4):547-588.
    This article traces the different classifications of diesel emissions either as “safe” or as “hazardous” in the US and in West Germany between 1977 and 1995. It argues that the environmental regulation of diesel emissions was a political threshold. It contributes to our general understanding of how politicians, environmental lobbyists, scientists, and engineers constructed the standards and norms that defined the “safe” limit of environmental pollutants. After discussing how diesel emissions came under review as a potential carcinogen, (...)
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  15. Global Warming, Hybrid Technology, and Carbon Emissions.Ian P. Bork, Jonathan Garfinkel & Bruce Lusignan - forthcoming - Ethics.
  16.  13
    Constructing legitimacy for technologies developed in response to environmental regulation: the case of ammonia emission-reducing technology for the Flemish intensive livestock industry.Daniel van der Velden, Joost Dessein, Laurens Klerkx & Lies Debruyne - 2022 - Agriculture and Human Values 40 (2):649-665.
    This study is focused on unsustainable agri-food systems, especially intensive livestock farming and its resulting environmental harms. Specifically we focus on the development of technologies that seek to mitigate these environmental harms. These technologies are generally developed as incremental innovations in response to government regulation. Critics of these technological solutions allege that these developments legitimate unsustainable food production systems and are incapable of supporting agri-food systems transformation. At the same time, technology developers and other actors seek to present (...)
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  17. Retention of sulfur dioxide emission in the GDR: between technology, economics, diplomacy and public opinion.Michel Dupuy - 2019 - In Stephen Brain & Viktor Pál (eds.), Environmentalism under authoritarian regimes: myth, propaganda, reality. New York, NY: Routledge, Taylor & Francis Group/Earthscan from Routledge.
     
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  18.  5
    Supply Chain Investment in Carbon Emission-Reducing Technology Based on Stochasticity and Low-Carbon Preferences.Shan Yu & Qiang Hou - 2021 - Complexity 2021:1-18.
    Due to excessive greenhouse gas emissions, carbon emission-reducing measures are urgently needed. Important emission-reduction measures mainly include carbon trading and low-carbon cost subsidies. Comprehensive consideration of these two policies is a research hotspot in the field of low-carbon technology investment. Based on this background, this paper considers the impact of consumer low-carbon preferences on market demand and the impact of uncertainty in carbon emission-reduction behaviour. We construct a stochastic differential game model with upstream and downstream enterprises based on cost-sharing (...)
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  19.  34
    Which Net Zero? Climate Justice and Net Zero Emissions.Chris Armstrong & Duncan McLaren - 2022 - Ethics and International Affairs 36 (4):505-526.
    In recent years, the target of reaching “net zero” emissions by 2050 has come to the forefront of global climate politics. Net zero would see carbon emissions matched by carbon removals and should allow the planet to avoid dangerous climate change. But the recent prominence of this goal should not distract from the fact that there are many possible versions of net zero. Each of them will have different climate justice implications, and some of them could have very (...)
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  20.  13
    Together Apart: The Mitigating Role of Digital Communication Technologies on Negative Affect During the COVID-19 Outbreak in Italy.Alessandro Gabbiadini, Cristina Baldissarri, Federica Durante, Roberta Rosa Valtorta, Maria De Rosa & Marcello Gallucci - 2020 - Frontiers in Psychology 11.
    The ongoing pandemic of COVID-19 has forced governments to impose a lockdown, and many people have suddenly found themselves having to reduce their social relations drastically. Given the exceptional nature of similar situations, only a few studies have investigated the negative psychological effects of forced social isolation and how they can be mitigated in a real context. In the present study, we investigated whether the amount of digital communication technology use for virtual meetings during the lockdown promoted the perception (...)
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  21. Exacerbation of Childhood Asthma among Children Living in Highly-trafficked Areas: An Unintended Public Health Consequence of Diesel-emission Control Technology.Martha E. Richmond - 2008 - In R. C. Hillerbrand & R. Karlsson (eds.), Beyond the Global Village. Environmental Challenges Inspiring Global Citizenship. the Interdisciplinary Press.
  22.  18
    The Impact of Emissions Reduction Awareness on Moral Self-Concept: Sustaining Climate-Friendly Behaviour in the Aftermath of the Covid-19 Pandemic.Aitor Marcos, Patrick Hartmann & Jose M. Barrutia - 2023 - Environmental Values 32 (3):337-370.
    Communication campaigns often highlight environmental progress to encourage further pro-environmental behaviour. Consequently, the drop in carbon emissions caused by the COVID-19 restrictions has been framed as a positive environmental outcome of the pandemic. We conducted an experimental study with a US-representative sample (N = 500) to show that raising awareness of emissions reduction has the contrary effect: an increase in moral self-concept facilitated a negative spillover, namely, it reduced climate-friendly behavioural intentions. Normative influence was able to prevent (...)
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  23.  50
    Climate Change, Intellectual Property, and Global Justice.Monica Ştefănescu & Constantin Vică - 2012 - Public Reason 4 (1-2):197-209.
    The current situation of climate change at a global level clearly requires policy changes at local levels. Global efforts to reach a consensus regarding the reduction of greenhouse gas emissions have so far been focused on developing Climate-Friendly Technologies (CFTs). The problem is that in order for these efforts to have an actual impact at a global level we need to be concerned with more than just promotion and info-dissemination on the already existing CFTs, but also with costs, (...)
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  24.  90
    Data trimming, nuclear emissions, and climate change.Kristin Sharon Shrader-Frechette - 2009 - Science and Engineering Ethics 15 (1):19-23.
    Ethics requires good science. Many scientists, government leaders, and industry representatives support tripling of global-nuclear-energy capacity on the grounds that nuclear fission is “carbon free” and “releases no greenhouse gases.” However, such claims are scientifically questionable (and thus likely to lead to ethically questionable energy choices) for at least 3 reasons. (i) They rely on trimming the data on nuclear greenhouse-gas emissions (GHGE), perhaps in part because flawed Kyoto Protocol conventions require no full nuclear-fuel-cycle assessment of carbon content. (ii) (...)
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  25.  33
    Climate change, intellectual property rights and global justice.Cristian Timmermann & Henk van den Belt - 2012 - In Thomas Potthast & Simon Meisch (eds.), Climate Change and Sustainable Development: Ethical Perspectives on Land Use and Food Production. Wageningen Academic Publishers. pp. 75-79.
    International negotiations on anthropogenic climate change are far from running smoothly. Opinions are deeply divided on what are the respective responsibilities of developed and developing countries with regard to the reduction of greenhouse gas emissions and the alleviation of the negative effects of global warming. A major bone of contention concerns the role of intellectual property rights (especially patents) in the development and diffusion of climate-friendly technologies. While developing countries consider IPRs as a formidable barrier to the (...)
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  26.  9
    The Technological Singularity: Managing the Journey.Stuart Armstrong, Victor Callaghan, James Miller & Roman Yampolskiy (eds.) - 2017 - Berlin, Heidelberg: Imprint: Springer.
    This volume contains a selection of authoritative essays exploring the central questions raised by the conjectured technological singularity. In informed yet jargon-free contributions written by active research scientists, philosophers and sociologists, it goes beyond philosophical discussion to provide a detailed account of the risks that the singularity poses to human society and, perhaps most usefully, the possible actions that society and technologists can take to manage the journey to any singularity in a way that ensures a positive rather than a (...)
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  27.  8
    Carbon Tax, Subsidy, and Emission Reduction: Analysis Based on DSGE Model.Haoran Li & Wei Peng - 2020 - Complexity 2020:1-10.
    Carbon emission has negative externalities, which will cause severe natural and social problems. In recent years, more and more attention has been paid to carbon emission reduction issue both in academic and application fields. This paper aims to explore the impact of punitive carbon tax and incentive carbon emission reduction subsidy on economy and environment through the dynamic stochastic general equilibrium framework. The results show that both carbon tax and carbon emission reduction subsidy policies can help to reduce carbon (...)
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  28. Emerging Technologies & Higher Education.Jake Burley & Alec Stubbs - 2023 - Ieet White Papers.
    Extended Reality (XR) and Large Language Model (LLM) technologies have the potential to significantly influence higher education practices and pedagogy in the coming years. As these emerging technologies reshape the educational landscape, it is crucial for educators and higher education professionals to understand their implications and make informed policy decisions for both individual courses and universities as a whole. -/- This paper has two parts. In the first half, we give an overview of XR technologies and their (...)
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  29.  10
    Corrigendum: Together Apart: The Mitigating Role of Digital Communication Technologies on Negative Affect During the COVID-19 Outbreak in Italy.Alessandro Gabbiadini, Cristina Baldissarri, Federica Durante, Roberta Rosa Valtorta, Maria De Rosa & Marcello Gallucci - 2021 - Frontiers in Psychology 12.
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  30.  53
    The technological change of reality: Opportunities and dangers.Wolfgang Bibel - 1989 - AI and Society 3 (2):117-132.
    This essay discusses the trade-off between the opportunities and the dangers involved in technological change. It is argued that Artificial Intelligence technology, if properly used, could contribute substantially to coping with some of the major problems the world faces because of the highly complex interconnectivity of modern human society.In order to lay the foundation for the discussion, the symptoms of general unease which are associated with current technological progress, the concept of reality, and the field of Artificial Intelligence are very (...)
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  31.  19
    Medical technologies, time, and the good life.Claudia Bozzaro - 2022 - History and Philosophy of the Life Sciences 44 (2):1-16.
    Against the backdrop of emerging medical technologies that promise transgression of temporal limits, this paper aims to show the importance that an individual lifetime’s finitude and fugacity have for the question of the good life. The paper’s first section examines how the passing of an individual’s finite lifetime can be experienced negatively, and thus cause “suffering from the passing of time.” The second section is based on a sociological analysis within the conceptual framework of individualization and capitalism, which characterizes (...)
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  32.  34
    Technologically-Mediated Nursing Care: the Impact on Moral Agency.Sheila O'Keefe-McCarthy - 2009 - Nursing Ethics 16 (6):786-796.
    Technology is pervasive and overwhelming in the intensive care setting. It has the power to inform and direct the nursing care of critically ill patients. Technology changes the moral and social dynamics within nurse—patient encounters. Nurses use technology as the main reference point to interpret and evaluate clinical patient outcomes. This shapes nurses’ understanding and the kind of care provided. Technology inserts itself between patients and nurses, thus distancing nurses from patients. This situates nurses into positions of power, granting them (...)
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  33.  68
    Technology and prognostic predicaments.Don Ihde - 1999 - AI and Society 13 (1-2):44-51.
    As societies become increasingly technologised, the need for careful and critical assessment rises. However, attempts to assess or normatively evaluate technological development invariably meet with an antinomy: both structurally and historically, technologies display multistable possibilities regarding uses, effects, side effects and other outcomes. Philosophers, usually expected to play applied ethics roles, often come to the scene after these effects are known. But others who participate at the research and development stages find even more difficulties with prognosis. Recent work on (...)
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  34. Climate change and negative duties.Thom Brooks - 2012 - POLITICS 32:1-9.
    It is widely accepted by the scientific community and beyond that human beings are primarily responsible for climate change and that climate change has brought with it a number of real problems. These problems include, but are not limited to, greater threats to coastal communities, greater risk of famine, and greater risk that tropical diseases may spread to new territory. In keeping with J. S. Mill's 'Harm Principle', green political theorists often respond that if we are contributing a harm to (...)
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  35.  75
    Negative freedom, rational deliberation, and non-satiating goods.Tito Magri - 1998 - Topoi 17 (2):97-105.
    Negative freedom (as opposed to positive freedom) has been widely considered an inherently non problematic notion. This paper attempts to show that, if considered as a good with a minimally objective structure, negative freedom can disrupt the capacity for deliberating in a substantively (that is, non purely formal, decision-theoretic) rational way. The argument turns on the notion of non-satiation, as a property of the objective value of some goods of not changing when the availability of the good is (...)
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  36.  13
    How Technological Innovation Influences Environmental Pollution: Evidence from China.Duan Xin, Zhang Zhi Sheng & Sun Jiahui - 2022 - Complexity 2022:1-9.
    Technological innovation has an important impact on environmental pollution. In this paper, first, we analyze the influence mechanism of technological innovation on environmental pollution and then design the index system of technological innovation. Then, we use the entropy method to calculate the technological innovation level of different regions in China based on provincial panel data from 2004 to 2016. Finally, the panel vector autoregression model is adopted, and taking the discharge of sewage, solid waste, and exhaust gas as the research (...)
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  37.  9
    Contested technology: Social scientific perspectives of behaviour-based insurance.Maiju Tanninen - 2020 - Big Data and Society 7 (2).
    In this review, I analyse how ‘behaviour-based personalisation’ in insurance – that is, insurers’ increased interest in tracking and manipulating insureds’ behaviour with, for instance, wearable devices – has been approached in recent social scientific literature. In the review, I focus on two streams of literature, critical data studies and the sociology of insurance, discussing the new insurance schemes that utilise sensor-generated and digital data. The aim of this review is to compare these two approaches and to analyse what kinds (...)
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  38.  7
    Science, Technology, and Society: Policy Implications.James W. Altschuld & David D. Kumar - 2000 - Bulletin of Science, Technology and Society 20 (2):133-138.
    A reanalysis of selected national and state-level STS implementation data is reported in this article. The results indicate that teacher education, suitable curriculum materials, and insufficient class time are major issues affecting STS implementation in the United States. Only three states have addressed 50% or more of the STS implementation criteria in their science curriculum frameworks as recommended by the National Science Education Standards. A closer look at one state (Florida) revealed that approximately half of the school districts had STS (...)
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  39.  57
    Ethical and economic issues in the use of zero-emission vehicles as a component of an air-pollution mitigation strategy.Tim Duvall, Fred Englander, Valerie Englander, Thomas J. Hodson & Mark Marpet - 2002 - Science and Engineering Ethics 8 (4):561-578.
    The air pollution generated by motor vehicles and by static sources is, in certain geographic areas, a very serious problem, a problem that exists because of a failure of the marketplace. To address this marketplace failure, the State of California has mandated that by 2003, 10% of the Light-Duty Vehicle Fleet (LDV) be composed of Zero-Emission Vehicles (ZEVs). However, the policy-making process that was utilized to generate the ZEV mandate was problematic and the resulting ZEV mandate is economically unsound. Moreover, (...)
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  40.  73
    The Future Is the Termination Shock: On the Antinomies and Psychopathologies of Geoengineering. Part One.Andreas Malm - 2022 - Historical Materialism 30 (4):3-53.
    As capitalist society remains incapable of addressing climate breakdown, one measure is waiting in the wings: solar geoengineering. No other technology can cut global temperatures immediately. It would alleviate the symptoms of the crisis, not its causes. But might it be combined with radical emissions cuts? This essay, the first instalment of two, scrutinises the rationalist-optimist case for geoengineering: the idea that soot planes in the sky can shield the Earth from the worst heat while society rids itself of (...)
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  41. From the Nadir of Negativity towards the Cusp of Reconciliation.Hub Zwart - 2017 - Techné: Research in Philosophy and Technology 21 (2/3):175-198.
    This contribution addresses the anthropocenic challenge from a dialectical perspective, combining a diagnostics of the present with a prognostic of the emerging future. It builds on the oeuvres of two prominent dialectical thinkers, namely Georg Wilhelm Friedrich Hegel and Pierre Teilhard de Chardin. Hegel himself was a pre-anthropocenic thinker who did not yet thematise the anthropocenic challenge as such, but whose work allows us to emphasise the unprecedented newness of the current crisis. I will especially focus on his views on (...)
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  42.  45
    Ethics, Technology Development, and Innovations.Vincent di Norcia - 1994 - Business Ethics Quarterly 4 (3):235-252.
    The aim of this essay is to present a model of ethical technology management which assumes that elites who make the system design and development decisions should minimize the risks to stakeholders rather than maximize gains for their organizations. Given the unsettled state in ethical theory a familiar substantive Social, Economic, Environmental and Rights value set or ‘SEER’ ethic is presented. To enable foresight of the negative SEER effects of innovations a technology life cycle is introduced. A cognate issue (...)
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  43.  30
    Let them Eat Cultured Meat: Diagnosing the Potential for Meat Alternatives to Increase Inequity.Brendan Mahoney - 2022 - Food Ethics 7 (2):1-18.
    Given the substantial contribution of livestock agriculture to global greenhouse gas emissions, significant changes in that sector will likely occur as part of a comprehensive climate mitigation and adaptation plan. One option for reducing the sector’s climate footprint is the development and introduction of new forms of plant-based and lab-grown meat alternatives that accurately replicate the sensory and nutritional qualities of meat. Since the current global trend is toward increased meat consumption, these products are designed to appeal primarily to (...)
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  44.  2
    Imaging Technologies.Don Ihde - 2009 - In Jan Kyrre Berg Olsen Friis, Stig Andur Pedersen & Vincent F. Hendricks (eds.), A Companion to the Philosophy of Technology. Oxford, UK: Wiley-Blackwell. pp. 205–209.
    This chapter contains sections titled: References and Further Reading.
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  45.  15
    Technology in Espionage and Counterintelligence: Some Cautionary Lessons from Armed Conflict.Alex Leveringhaus - 2023 - Ethics and International Affairs 37 (2):147-160.
    This essay contends that the ethics around the use of spy technology to gather intelligence (TECHINT) during espionage and counterintelligence operations is ambiguous. To build this argument, the essay critically scrutinizes Cécile Fabre's recent and excellent book Spying through a Glass Darkly, which argues that there are no ethical differences between the use of human intelligence (HUMINT) obtained from or by human assets and TECHINT in these operations. As the essay explains, Fabre arrives at this position by treating TECHINT as (...)
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  46.  6
    Technology and professional identity of librarians: the making of the cybrarian.Deborah Hicks - 2014 - Hershey, PA: Information Science Reference.
    This book brings into focus both the positive and negative aspects that technology places on the professional identity of librarians, highlighting the new methods involved in data management, communication, and library information education and research.
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  47.  11
    Climate change and vulnerability of agribusiness: Assessment of climate change impact on agricultural productivity.Shruti Mohapatra, Swati Mohapatra, Heesup Han, Antonio Ariza-Montes & Maria del Carmen López-Martín - 2022 - Frontiers in Psychology 13.
    The current study has mapped the impact of changes in different climatic parameters on the productivity of major crops cultivated in India like cereal, pulses, and oilseed crops. The vulnerability of crops to different climatic conditions like exposure, sensitivity, and adaptive indicators along with its different components and agribusiness has been studied. The study uses data collected over the past six decades from 1960 to 2020. Analytical tools such as the Tobit regression model and Principal Component Analysis were used for (...)
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  48.  6
    Environmental Law and Economics.Bruce R. Huber & Klaus Mathis (eds.) - 2017 - Cham: Imprint: Springer.
    This anthology discusses important issues surrounding environmental law and economics and provides an in-depth analysis of its use in legislation, regulation and legal adjudication from a neoclassical and behavioural law and economics perspective. Environmental issues raise a vast range of legal questions: to what extent is it justifiable to rely on markets and continued technological innovation, especially as it relates to present exploitation of scarce resources? Or is it necessary for the state to intervene? Regulatory instruments are available to create (...)
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  49.  8
    Technology Run Amok: Crisis Management in the Digital Age.Ian I. Mitroff - 2018 - Cham: Imprint: Palgrave Macmillan.
    The recent data controversy with Facebook highlights the tech industry as a whole was utterly unprepared for the backlash it faced as a result of its business model of selling user data to third parties. Despite the predominant role that technology plays in all of our lives, the controversy also revealed that many tech companies are reactive, rather than proactive, in addressing crises. This book examines society's failure to manage technology and its resulting negative consequences. Mitroff argues that the (...)
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    Creating value with science and technology.Eliezer Geisler - 2001 - Westport, Conn.: Quorum Books.
    Do science and technology create value for society and the economy, and how might one go about measuring it? How do we evaluate its benefits? Can we even be certain that there are benefits? Geisler argues that there are benefits, and that they outweigh in value the negative impacts that inevitably accompany them. His revolutionary new book goes on to show that they can also be measured and evaluated, and in one volume all of the existing knowledge on how (...)
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