Results for 'Biofuels'

65 found
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  1.  5
    Privileged Biofuels, Marginalized Indigenous Peoples: The Coevolution of Biofuels Development in the Tropics.Marvin Joseph F. Montefrio - 2012 - Bulletin of Science, Technology and Society 32 (1):41-55.
    Biofuels development has assumed an important role in integrating Indigenous peoples and other marginalized populations in the production of biofuels for global consumption. By combining the theories of commoditization and the environmental sociology of networks and flows, the author analyzed emerging trends and possible changes in institutions and behaviors brought about by the introduction of biofuels as a development option on ancestral lands. Using the Indonesian oil palm and the Philippine Jatropha experiences, the author argues that although (...)
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  2. Biofuels: Efficiency, Ethics, and Limits to Human Appropriation of Ecosystem Services. [REVIEW]Tiziano Gomiero, Maurizio G. Paoletti & David Pimentel - 2010 - Journal of Agricultural and Environmental Ethics 23 (5):403-434.
    Biofuels have lately been indicated as a promising source of cheap and sustainable energy. In this paper we argue that some important ethical and environmental issues have also to be addressed: (1) the conflict between biofuels production and global food security, particularly in developing countries, and (2) the limits of the Human Appropriation of ecosystem services and Net Primary Productivity. We warn that large scale conversion of crops, grasslands, natural and semi-natural ecosystem, (such as the conversion of grasslands (...)
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  3.  7
    Biofuel Food Disasters and Cellulosic Ethanol Problems.David Pimentel - 2009 - Bulletin of Science, Technology and Society 29 (3):205-212.
    As shortages of fossil energy, especially oil and natural gas, become evident, the United States has moved to convert corn grain into ethanol with the goal to make the nation oil independent. Using more than 20% of all U.S. corn on 15 million acres in 2007 was providing the nation with less than 1% of U.S. oil consumption. Because the corn ethanol project has been a disaster, there is growing interest to develop cellulosic ethanol. Wood, grasses, and crop residues are (...)
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  4.  64
    The legitimacy of biofuel certification.Lena Partzsch - 2011 - Agriculture and Human Values 28 (3):413-425.
    The biofuel boom is placing enormous demands on existing cropping systems, with the most crucial consequences in the agri-food sector. The biofuel industry is responding by initiating private governance and certification. The Roundtable on Sustainable Palm Oil (RSPO) and the Cramer Commission, among others, have formulated criteria on “sustainable” biofuel production and processing. This article explores the legitimacy of private governance and certification by the biofuel industry, highlighting opportunities and challenges. It argues that the concept of output based legitimacy is (...)
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  5.  25
    The Rationality of Biofuel Certification: A Critical Examination of EU Biofuel Policy.A. J. K. Pols - 2015 - Journal of Agricultural and Environmental Ethics 28 (4):667-681.
    Certification for biofuels has been developed to ensure that biofuel production methods adhere to social and environmental sustainability standards. As such, requiring biofuel production to be certified has become part of EU policy through the 2009 renewable energy directive, that aims to promote energy security, reduce emissions and promote rural development. According to the EU RED, in 2020 10 % of our transport energy should come from renewable sources, most of which are expected to be biofuels. In this (...)
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  6.  18
    Another biofuel blunder in the making?Andrew Moore - 2009 - Bioessays 31 (4):369-369.
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  7.  21
    Ethics and Biofuel Production in Chile.Celián Román-Figueroa & Manuel Paneque - 2015 - Journal of Agricultural and Environmental Ethics 28 (2):293-312.
    Chile needs to diversify its energy supply, and should establish policies that encourage the production and use of biofuels. The demand for energy resources increases with population growth and industrial development, making it urgent to find green alternatives to minimize the impacts of greenhouse gas emissions of traditional fuels. However, it is required that sophisticated strategies consider all externalities from the production of biofuels and should be established on the basis of protecting the environment, reducing GHG emissions and (...)
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  8.  21
    The Need for Governance by Experimentation: The Case of Biofuels.Lotte Asveld - 2016 - Science and Engineering Ethics 22 (3):815-830.
    The policies of the European Union concerning the development of biofuels can be termed a lock-in. Biofuels were initially hailed as a green, sustainability technology. However evidence to the contrary quickly emerged. The European Commission proposed to alter its policies to accommodate for these effects but met with fierce resistance from a considerable number of member states who have an economic interest in these first generation biofuels. In this paper I argue that such a lock-in might have (...)
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  9. Synthetic Biology and Biofuels.Catherine Kendig - 2012 - In Paul B. Thompson & David M. Kaplan (eds.), Encyclopedia of Food and Agricultural Ethics. New York: Springer Verlag.
    Synthetic biology is a field of research that concentrates on the design, construction, and modification of new biomolecular parts and metabolic pathways using engineering techniques and computational models. By employing knowledge of operational pathways from engineering and mathematics such as circuits, oscillators, and digital logic gates, it uses these to understand, model, rewire, and reprogram biological networks and modules. Standard biological parts with known functions are catalogued in a number of registries (e.g. Massachusetts Institute of Technology Registry of Standard Biological (...)
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  10.  2
    Overview on Biofuels From a European Perspective.Andrew Paul Gutierrez & Luigi Ponti - 2009 - Bulletin of Science, Technology and Society 29 (6):493-504.
    In light of the recently developed European Union (EU) Biofuels Strategy, the literature is reviewed to examine (a) the coherency of biofuel production with the EU nonindustrial vision of agriculture, and (b) given its insufficient land base, the implications of a proposed bioenergy pact to grow biofuel crops in the developing world to meet EU biofuel demands. The EU acknowledged that the use of food crops for biofuel production was based on wrong assumptions concerning climate change mitigation, and its (...)
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  11.  2
    Bioeconomic Sustainability of Cellulosic Biofuel Production on Marginal Lands.Luigi Ponti & Andrew Paul Gutierrez - 2009 - Bulletin of Science, Technology and Society 29 (3):213-225.
    The use of marginal land (ML) for lignocellulosic biofuel production is examined for system stability, resilience, and eco-social sustainability. A North American prairie grass system and its industrialization for maximum biomass production using biotechnology and agro-technical inputs is the focus of the analysis. Demographic models of ML biomass production and ethanol farmer/producers are used to examine the stability properties of the ML system. A bio-economic model that maximizes the utility of consumption having the dynamics of MLs and the farmer/producers as (...)
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  12.  95
    Toward Political Explanation of Change in Corporate Responsibility: Political Scholarship on CSR and the Case of Palm Oil Biofuels.Martin Fougère & Ville-Pekka Sorsa - 2021 - Business and Society 60 (8):1895-1923.
    Corporate social responsibility (CSR) has been recently conceptualized and studied as a political phenomenon. Most debates in this scholarship have thus far focused on normative issues. Less attention has been paid to the explanatory potential of CSR research grounded in political theory and philosophy. In this article, we conduct a pragmatist reading of political scholarship on CSR and seek to deploy existing knowledge for research pursuing political explanation. We argue that the political ontologies that underlie scholarship on CSR can be (...)
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  13.  42
    The agricultural ethics of biofuels: climate ethics and mitigation arguments.Paul Thompson - 2012 - Poiesis and Praxis 8 (4):169-189.
    An environmental, climate mitigation rationale for research and development on liquid transportation fuels derived from plants emerged among many scientists and engineers during the last decade. However, between 2006 and 2010, this climate ethic for pursuing biofuel became politically entangled and conceptually confused with rationales for encouraging greater use of plant-based ethanol that were both unconnected to climate ethics and potentially in conflict with the value-commitments providing a mitigation-oriented reason to promote and develop new and expanded sources of biofuel. I (...)
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  14.  8
    Ethical Implications of Biofuel Production and Use and Its Relationship with Environment and Society.Baishali Kanjilal & Subrata Saha - 2019 - Ethics in Biology, Engineering and Medicine 10 (1):69-83.
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  15.  13
    Holistic Assessment and Ethical Disputation on a New Trend in Solid Biofuels.Simona Hašková - 2017 - Science and Engineering Ethics 23 (2):509-519.
    A new trend in the production technology of solid biof uels has appeared. There is a wide consensus that most solid biofuels will be produced according to the new production methods within a few years. Numerous samples were manufactured from agro-residues according to conventional methods as well as new methods. Robust analyses that reviewed the hygienic, environmental, financial and ethical aspects were performed. The hygienic and environmental aspect was assessed by robust chemical and technical analyses. The financial aspect was (...)
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  16. An expanding liquid biofuel market: investigating the likely impacts on welfare and environment.A. Rawlings - 2007 - Environmental Ethics 1:26-37.
     
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  17.  37
    What Next after Determinism in the Ontology of Technology? Distributing Responsibility in the Biofuel Debate.Philip Boucher - 2011 - Science and Engineering Ethics 17 (3):525-538.
    This article builds upon previous discussion of social and technical determinisms as implicit positions in the biofuel debate. To ensure these debates are balanced, it has been suggested that they should be designed to contain a variety of deterministic positions. Whilst it is agreed that determinism does not feature strongly in contemporary academic literatures, it is found that they have generally been superseded by an absence of any substantive conceptualisation of how the social shaping of technology may be related to, (...)
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  18.  43
    Distributing responsibility in the debate on sustainable biofuels.Laurens Landeweerd, Patricia Osseweijer & Julian Kinderlerer - 2009 - Science and Engineering Ethics 15 (4):531-543.
    In the perception of technology innovation two world views compete for domination: technological and social determinism. Technological determinism holds that societal change is caused by technological developments, social determinism holds the opposite. Although both were quite central to discussion in the philosophy, history and sociology of technology in the 1970s and 1980s, neither is seen as mainstream now. They do still play an important role as background philosophies in societal debates and offer two very different perspectives on where the responsibilities (...)
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  19. The agricultural ethics of biofuels: A first look. [REVIEW]Paul B. Thompson - 2008 - Journal of Agricultural and Environmental Ethics 21 (2):183-198.
    A noticeable push toward using agricultural crops for ethanol production and for undertaking research to expand the range of possible biofuels began to dominate discussions of agricultural science and policy in the United States around 2005. This paper proposes two complementary philosophical approaches to examining the philosophical questions that should be posed in connection with this turn of events. One stresses a critique of underlying epistemological commitments in the scientific models being developed to determine the feasibility of various (...) proposals. The second begins with a broader set of questions about the philosophical goals of agriculture, then queries the place that a turn to biofuels might have within the philosophy of agriculture. Both are portrayed as viable and important. The paper itself is a preliminary stage-setting reflection on the need for these two types of philosophical inquiry. (shrink)
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  20. Food security and the moral differences between climate mitigation and geoengineering: the case of biofuels and BECCS.Hanna Schübel & Ivo Wallimann-Helmer - 2021 - In Hanna Schübel & Ivo Wallimann-Helmer (eds.), Justice and food security in a changing climate. Wageningen Academic Publishers. pp. 71-76.
    Both biofuels and BECCS serve the purpose of reducing the concentration of carbon in the atmosphere, biofuels by reducing the quantity of CO2 newly added and BECCS by removing the CO2 already emitted. Both rely on the large-scale growth of biomass and hence compete with food production for arable land. Consequently, the implementation of both at large scales potentially endangers food security. Given this conflict and the need for climate action, this paper discusses whether there are differences between (...)
     
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  21.  12
    Bio-, Agro- or even Social Fuels: Discourse Dynamics on Biofuels in Germany.Kirsten Selbmann - 2015 - Environmental Values 24 (4):483-510.
    Within the EU, Germany took a pioneering role in the production and promotion of biofuels. To explain this role the article analytically examines public discourses on biofuels. The analysis points out how the subject is interpreted and positioned by relevant actors and thus results in a specific public perception of biofuels in Germany. This perception in turn influences political decision-making processes. Since the analysis of discourses contributes to a better understanding of today's biofuel policy in Germany, the (...)
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  22.  7
    Having an Anthropocene Body: Hydrocarbons, Biofuels and Metabolism.Adrian Mackenzie - 2014 - Body and Society 20 (1):3-30.
    What does it mean to have an Anthropocene body? The Anthropocene period is putatively defined by flows of hydrocarbons and hydrocarbon derivatives (fuels, plastics, fertilizers, etc.), and the very term ‘Anthropocene’ suggests an increasing awareness of the finitude and contingency of contemporary corporealities. This article explores the idea of modelling an Anthropocene body as a living/non-living metabolic process. While identifying bodies with molecules raises a host of problems, metabolism and hydrocarbon biomolecules display a gamut of forms of possession and ways (...)
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  23.  34
    Depoliticizing land and water “grabs” in Colombia: the limits of Bonsucro certification for enhancing sustainable biofuel practices.Theresa Selfa, Carmen Bain & Renata Moreno - 2014 - Agriculture and Human Values 31 (3):455-468.
    As concerns heighten over links between biomass production and land grabs in the global south, attention is turning to understanding the role of governance of biofuels systems, whereby decision-making and conduct are not solely determined through government regulations but increasingly shaped by non-state actors, including multi-stakeholder initiatives. Launched in 2005, Bonsucro is the principal MSI that focuses on sustainability standards for sugar and sugarcane ethanol production. Bonsucro claims that because it is free from government interference and draws on scientific (...)
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  24.  44
    Ethical risks of attenuating climate change through new energy systems: The case of a biofuel system.Sarah M. Jordaan - 2007 - Ethics in Science and Environmental Politics 2007:23-29.
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  25.  32
    (Bio)fueling farm policy: the biofuels boom and the 2008 farm bill. [REVIEW]Nadine Lehrer - 2010 - Agriculture and Human Values 27 (4):427-444.
    In the mid-2000s, rising gas prices, political instability, pollution, and fossil fuel depletion brought renewable domestic energy production onto the policy agenda. Biofuels, or fuels made from plant materials, came to be seen as America’s hope for energy security, environmental conservation, and rural economic revitalization. Yet even as the actual environmental, economic, and energy contributions of a biofuels boom remained debatable, support for biofuels swelled and became a prominent driver of not only US energy policy but of (...)
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  26.  3
    Ethical Implications of the Production and Use of Biofuels and Their Relationships to Environment and Society.Baishali Kanjilal & Subrata Saha - forthcoming - Ethics in Biology, Engineering and Medicine: An International Journal.
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  27. The Ethics of Food, Fuel, and Feed.Brian G. Henning - 2015 - Daedalus 144 (4):90-98.
    As the collective impact of human activity approaches Earth’s biophysical limits, the ethics of food become increasingly important. Hundreds of millions of people remain undernourished, yet only 60 percent of the global harvest is consumed by humans, while 35 percent is fed to livestock and 5 percent is used for biofuels and other industrial products. This essay considers the ethics of such use of edible nutrition for feedstock and biofuel. How humanity uses Earth’s land is a reflection of its (...)
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  28.  29
    Renewable resources and the idea of nature – what has biotechnology got to do with it?Nicole C. Karafyllis - 2003 - Journal of Agricultural and Environmental Ethics 16 (1):3-28.
    The notion that the idea of nature isnot quite the unbiased rule to designsustainable futures is obvious. But,nevertheless, questions about nature, how itfunctions and what it might aim at, is leadingthe controversial debates about bothsustainability and biotechnology. These tworesearch areas hardly have the same theorybackground. Whereas in the first concept, theidea of eternal cyclical processes is basic,the latter focuses on optimization. However,both concepts can work together, but only undera narrow range of public acceptance in Europe.The plausibility of arguments for usingbiotechnology (...)
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  29.  21
    Framing and reframing the environmental risks and economic benefits of ethanol production in Iowa.Carmen Bain & Theresa Selfa - 2013 - Agriculture and Human Values 30 (3):351-364.
    Recent research exposing environmental and social externalities of biofuels has undermined the earlier national consensus that they would provide climate mitigation and rural development benefits, but support for ethanol remains strong in Iowa. The objective of this paper is to understand how stakeholder groups in Iowa have framed the benefits and risks associated with ethanol’s impact on the local economy and environment. Our case study draws on in-depth, semi-structured interviews conducted with key informants from agricultural organizations, environmental organizations, and (...)
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  30.  17
    Agrarian Ideals, Sustainability Ethics, and US Policy: A Critique for Practitioners. [REVIEW]Elisabeth Graffy - 2012 - Journal of Agricultural and Environmental Ethics 25 (4):503-528.
    Abstract If tacit ethical ideals shape policy and practice, even when practitioners are not fully aware of underlying philosophical assumptions, then philosophical frameworks that support diagnostic, evaluative, and adaptive capacity in the sphere of action are critical to sustainability. Thompson’s agrarian-influenced sustainability framework substantially advances beyond the prevailing triple bottom line approach, as experimental evaluation of biofuels sustainability illustrates. By suggesting that governance of complex social-natural systems lies at the core of contemporary sustainability challenges, Thompson illuminates the critical importance (...)
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  31.  21
    Pauvreté, crise du climat et agrocarburants.Natalie Gandais-Riollet & Alain Lipietz - 2008 - Multitudes 34 (3):217.
    Biofuel development not only condemns the poorest of the poor to famine, it also deprives peasant communities of their property rights - think of the 10 million acres of land robbed by Columbian paramilitaries for conversion into oil palm estates. Biofuel development takes place at the expense of biodiversity, it finishes off the last of the pristine rainforests, as in Indonesia where the ecosystems catering for orang-outangs are disapearing. And it also savages the floral resources within the European Union. And (...)
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  32. Responding to global injustice: On the right of resistance.Simon Caney - 2015 - Social Philosophy and Policy 32 (1):51-73.
    Imagine that you are a farmer living in Kenya. Though you work hard to sell your produce to foreign markets you find yourself unable to do so because affluent countries subsidize their own farmers and erect barriers to trade, like tariffs, thereby undercutting you in the marketplace. As a consequence of their actions you languish in poverty despite your very best efforts. Or, imagine that you are a peasant whose livelihood depends on working in the fields in Indonesia and you (...)
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  33. A food regime analysis of the 'world food crisis'.Philip McMichael - 2009 - Agriculture and Human Values 26 (4):281-295.
    The food regime concept is a key to unlock not only structured moments and transitions in the history of capitalist food relations, but also the history of capitalism itself. It is not about food per se, but about the relations within which food is produced, and through which capitalism is produced and reproduced. It provides, then, a fruitful perspective on the so-called ‘world food crisis’ of 2007–2008. This paper argues that the crisis stems from a long-term cycle of fossil-fuel dependence (...)
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  34.  32
    Bioenergy and Land Use: Framing the Ethical Debate. [REVIEW]C. Gamborg, K. Millar, O. Shortall & P. Sandøe - 2012 - Journal of Agricultural and Environmental Ethics 25 (6):909-925.
    Increasingly, ethical concerns are being raised regarding bioenergy production. However, the ethical issues often do not stand out very clearly. The aim of the present paper is to improve on this situation by analyzing the bioenergy discussion from the perspective of land use. From this perspective, bioenergy production may give rise to ethical problems because it competes with other forms of land use. This may generate ethical problems mainly for two reasons. First, bioenergy production may compete, directly or indirectly, with (...)
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  35.  6
    Energy Dreams: Of Actuality.Michael Marder - 2017 - Columbia University Press.
    The question of energy is among the most vital for the future of humanity and the flourishing of life on this planet. Yet, only very rarely (if at all) do we ask what energy is, what it means, what ends it serves, and how it is related to actuality, meaning-making, and instrumentality. Energy Dreams interrogates the ontology of energy from the first coinage of the word energeia by Aristotle to the current practice of fracking and the popularity of "energy drinks." (...)
  36.  28
    Biocombustibles: ¿una estrategia de desarrollo o de mercado lucrativamente sostenible?Lázaro Camilo Recompensa Joseph, Benedito Dias Pereira, Arturo Zabala Zabala, Alexandre de Melo Farias & Pedro Ramos - 2008 - Polis 21.
    El trabajo tiene como objetivo analizar la incompatibilidad teórica existente entre el concepto (y/o los principios) del desarrollo sostenible y la producción de biocombustibles fundamentada en el modelo del agronegocio o agribusiness. Así en el primer ítem describimos los principales alertas emitidos a través de los Informes del IPCC (Intergovernmental Panel on Climate Change, o Panel Inter gubernamental sobre los Cambios Climáticos) destacando: a) la influencia y el papel de las actividades humanas en el proceso del calentamiento global y la (...)
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  37.  14
    Pollinators and Global Food Security: the Need for Holistic Global Stewardship.Jeroen P. van der Sluijs & Nora S. Vaage - 2016 - Food Ethics 1 (1):75-91.
    Over the past decades, both wild and domesticated insect pollinators are in dramatic decline, which puts at stake the existence of species, ecosystem resilience and global food security. Globally, 87 of major food crops depend on animal pollination. Together these account for 35 % of the world food production volume. Pollinator mediated crops are indispensable for essential micronutrients in the human diet. Many ornamental plants as well as crops for fibre, fodder, biofuels, timber and phytopharmaceuticals also depend on insect (...)
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  38.  11
    Ethics and Engineering: An Introduction.Behnam Taebi - 2021 - New York, NY, USA: Cambridge University Press.
    The world population is growing, yet we continue to pursue higher levels of well-being, and as a result, increasing energy demands and the destructive effects of climate change are just two of many major threats that we face. Engineers play an indispensable role in addressing these challenges, and whether they recognize it or not, in doing so they will inevitably encounter a whole range of ethical choices and dilemmas. This book examines and explains the ethical issues in engineering, showing how (...)
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  39.  15
    Climate Change, Energy Policy and Justice: A Systematic Review.Jason Byrne & Chloe Portanger - 2014 - Analyse & Kritik 36 (2):315-344.
    Energy efficiency and energy security are emerging concerns in climate change policy. But. there is little acknowledgment of energy justice issues. Marginalised and vulnerable communities may be disproportionately exposed to both climate change impacts (e.g. heat, flooding) and costs associated with energy transitions related to climate change mitigation and adaptation (e.g. particulate exposure from biofuel combustion). Climate change is producing energy-related impacts such as increased cooling costs. In some cases it threatens energy security. Higher electricity costs associated with ‘climate proofing’ (...)
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  40.  29
    Evaluation of Sustainability Practices in the United States and Large Corporations.M. Anaam Hashmi, Amal Damanhouri & Divya Rana - 2015 - Journal of Business Ethics 127 (3):673-681.
    A survey-based research study was conducted to analyze sustainability practices of large U.S. corporations in their domestic and international operations. Large U.S. corporations were slow to address global environmental challenges, but a majority of them now demonstrate a clear understanding of their responsibilities. Most large U.S. corporations are proactively involved in sustainability and environmentally friendly measures, and their involvement at home is more intense than abroad. Analyses revealed that U.S. corporations engage in eight activities related to sustainability: investing in energy-efficient (...)
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  41.  61
    Psychological drivers in the adoption of morally controversial innovations: the moderating role of ethical self‐identity.Alessandro M. Peluso - 2014 - Business Ethics: A European Review 24 (3):252-263.
    The present article conceptualizes morally controversial innovations as a category of innovations that raise ethical issues due to their potentially undesirable long-term consequences on society or the natural environment. Then, it analyzes the case of biofuel crops by applying an extended version of the theory of planned behavior, which includes moral norm and ethical self-identity. The obtained results show that attitude and subjective norms are positively related to farmers' intention to grow biofuel crops. Yet the intention of those farmers with (...)
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  42.  16
    Beyond Cost‐Benefit Analysis in the Governance of Synthetic Biology.Wendell Wallach, Marc Saner & Gary Marchant - 2018 - Hastings Center Report 48 (S1):70-77.
    For many innovations, oversight fits nicely within existing governance mechanisms; nevertheless, others pose unique public health, environmental, and ethical challenges. Synthetic artemisinin, for example, has many precursors in laboratory‐developed drugs that emulate natural forms of the same drug. The policy challenges posed by synthetic artemisinin do not differ significantly in kind from other laboratory‐formulated drugs. Synthetic biofuels and gene drives, however, fit less clearly into existing governance structures. How many of the new categories of products require new forms of (...)
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  43.  44
    Philosophical perspectives on synthetic biology.Gabriele Gramelsberger, Tarja Knuuttila & Axel Gelfert - 2013 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 44 (2):119-121.
    Although the emerging field of synthetic biology looks back on barely a decade of development, the stakes are high. It is a multidisciplinary research field that aims at integrating the life sciences with engineering and the physical/chemical sciences. The common goal is to design and construct novel biological components, functions and systems in order to implement, in a controlled way, biological devices and production systems not necessarily found in nature. Among the many potential applications are novel drugs and pesticides, cancer (...)
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  44. Women and the Gendered Politics of Food.Vandana Shiva - 2009 - Philosophical Topics 37 (2):17-32.
    From seed to table, the food chain is gendered. When seeds and food are in women’s hands, seeds reproduce and multiply freely, food is shared freely and respected. However, women’s seed and food economy has been discounted as “productive work.” Women’s seed and food knowledge has been discounted as knowledge. Globalization has led to the transfer of seed and food from women’s hands to corporate hands. Seed is now patented and genetically engineered. It is treated as the creation and “property” (...)
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  45.  54
    Synthetic Biology Needs A Synthetic Bioethics.Paul B. Thompson - 2012 - Ethics, Policy and Environment 15 (1):1 - 20.
    Recent developments in synthetic biology are described and characterized as moving the era of biotechnology into platform technologies. Platform technologies enable rapid and diffuse innovations and simultaneous product development in diffuse markets, often targeting sectors of the economy that have traditionally been thought to have little relationship to one another. In the case of synthetic biology, pharmaceutical and biofuel product development are occurring interactively. But the regulatory and ethical issues associated with these two applications share very little overlap. As such, (...)
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  46.  40
    Mining Thacker Pass: Environmental Justice and the Demands of Green Energy.Manuel Rodeiro - 2023 - Environmental Justice 16 (2):91-95.
    This paper considers the environmental justice issues presented by the proposed open-pit lithium mine in Thacker Pass, Nevada (Peehee mm’huh). Unlike the environmental destruction wrought from fossil fuel extraction, lithium is used to create lithium-ion batteries for storing and using electricity from “green energy” sources. Can the potential reduction in carbon emissions resulting from the lithium mined morally and politically justify the destruction of the Pass’s sagebrush sea – a critical wildlife habitat and sacred land to the People of Red (...)
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  47.  5
    Teaching Green Engineering: The Case of Ethanol Lifecycle Analysis.Chris Braiser & Daniel A. Vallero - 2008 - Bulletin of Science, Technology and Society 28 (3):236-243.
    Lifecycle assessment (LCA) is a valuable tool in teaching green engineering and has been used to assess biofuels, including ethanol. An undergraduate engineering course at Duke University has integrated LCA with other interactive teaching techniques to enhance awareness and to inform engineering decision making related to societal issues, such as energy sources and environmental quality. The course also includes a three-part studio beginning with application of thermodynamics, moving to team projects, and ending with a “green” innovation proposal by each (...)
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  48.  18
    Mitosis in diatoms: rediscovering an old model for cell division.Alessandra De Martino, Alberto Amato & Chris Bowler - 2009 - Bioessays 31 (8):874-884.
    Diatoms are important protists that generate one fifth of the oxygen produced annually on earth. These aquatic organisms likely derived from a secondary endosymbiosis event, and they display peculiar genomic and structural features that reflect their chimeric origin. Diatoms were one of the first models of cell division and these early studies revealed a range of interesting features including a unique acentriolar microtubule‐organising centre. Unfortunately, almost nothing is known at the molecular level, in contrast to the advances in other experimental (...)
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  49.  11
    Cell wall composition and candidate biosynthesis gene expression during rice development.Fan Lin, Chithra Manisseri, Alexandra Fagerström, Matthew L. Peck, Miguel E. Vega-Sánchez, Brian Williams, Dawn M. Chiniquy, Prasenjit Saha, Sivakumar Pattathil, Brian Conlin, Lan Zhu, Michael G. Hahn, William G. T. Willats, Henrik V. Scheller, Pamela C. Ronald & Laura E. Bartley - unknown
    © The Author 2016. Published by Oxford University Press on behalf of Japanese Society of Plant Physiologists. All rights reserved.Cell walls of grasses, including cereal crops and biofuel grasses, comprise the majority of plant biomass and intimately influence plant growth, development and physiology. However, the functions of many cell wall synthesis genes, and the relationships among and the functions of cell wall components remain obscure. To better understand the patterns of cell wall accumulation and identify genes that act in grass (...)
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    Current Agricultural Practices Threaten Future Global Food Production.Yongbo Liu, Xubin Pan & Junsheng Li - 2015 - Journal of Agricultural and Environmental Ethics 28 (2):203-216.
    In future decades, food demand for an increased population with elevated standards of living poses a huge challenge, particularly in the sense of the environmental impacts of agricultural systems. We have analyzed agricultural data from the past 50 years, and found that the current agricultural practices will have negative effects on global food production: total agricultural area has decreased since 2000, fertilizer and pesticide consumption increased while their efficiency decreased, and available water sources are already being used for irrigation. Expansion (...)
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