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Artykuły w czasopismach na temat "Abiotic resource depletion"

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Çolak, Ayşenur, Bertrand Laratte, Birol Elevli, and Semra Çoruh. "Abiotic Depletion of Boron: An Update Characterization Factors for CML 2002 and ReCiPe." Minerals 12, no. 4 (2022): 435. http://dx.doi.org/10.3390/min12040435.

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The risk of resource depletion for future generations of humanity is often cited as an important issue. The choice of impact categories and characterization models for resource extraction in LCA is no more precise than other impact categories and models. This means that more discussion is needed on the use of resources. In this article, the potential depletion of Boron and Boron minerals (Colemanite, Ulexite, Tincal) are studied. These minerals have a big role for the world and for Turkey; however, this resource is limited. Using the life cycle assessment methodology, one can estimate the reso
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Kim, yong yeon, geum seon Oh, and dong hak Park. "Life cycle assessment of drinking water treatment process." Korean Journal of Life Cycle Assessment 8, no. 1 (2007): 41–51. http://dx.doi.org/10.62765/kjlca.2007.8.1.41.

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This study is about practicing LCA on the water treatment plant. The Environmental impact categories used is Abiotic resource depletion potentials, Global Warming potentials, Ozone depletion potentials, Acidification potentials, Photochemical oxidant creation potentials, Eutrophication potentials, Freshwater aquatic ecotoxicity potentials. Terrestrial ecotoxicity potentials, Human toxicity potentials. As a result of LCA, The most impact categories to produce clean water is abiotic resources depletion potentials(27.13%). The most burdening stage in the entire production and supply system is tra
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Schneider, Laura, Markus Berger, and Matthias Finkbeiner. "Abiotic resource depletion in LCA—background and update of the anthropogenic stock extended abiotic depletion potential (AADP) model." International Journal of Life Cycle Assessment 20, no. 5 (2015): 709–21. http://dx.doi.org/10.1007/s11367-015-0864-0.

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Koch, Björn, Fernando Peñaherrera, and Alexandra Pehlken. "Criticality and LCA – Building comparison values to show the impact of criticality on LCA." European Journal of Sustainable Development 8, no. 4 (2019): 304. http://dx.doi.org/10.14207/ejsd.2019.v8n4p304.

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Including criticality into Life Cycle Assessment (LCA) has always been challenging to achieve but desirable to accomplish. In this article, we present a new approach for the evaluation of resource consumption of products by building comparison values based on Life Cycle Impact Assessment (LCIA) combined with weighted criticality values to show the direct impacts of criticality on LCA results. For this purpose, we develop an impact indicator based on the Abiotic Depletion Potential (ADP) of natural resources and use the two main parameters defined by the EU to determine the criticality of a mat
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Zhang, Yan Jiao, Feng Gao, and Zhi Hong Wang. "Updated Resource Depletion Characterization Factors for Life Cycle Assessment-Case Studies on Iron and Steel Production in China." Materials Science Forum 847 (March 2016): 358–65. http://dx.doi.org/10.4028/www.scientific.net/msf.847.358.

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In this study, the CML model for resource depletion was updated based on the current status of the mineral resources and the characteristics of relevant statistics in China; and the characterization factors of resource depletion were determined for the majority of natural minerals which are most used in materials industry. Besides, case studies on iron and steel production (BF-BOF and EAF process) were carried out to demonstrate the valid of the modified and localized resource depletion model. The results show that in terms of category, the development of Chinese steel industry is mainly based
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Peters, Jens F. "Reinventing exergy as indicator for resource depletion impacts in LCA." Matériaux & Techniques 108, no. 5-6 (2020): 504. http://dx.doi.org/10.1051/mattech/2021003.

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While resource aspects are gaining increasing importance for the sustainability assessment of new technologies, the question of how to assess the depletion of abiotic resources is still controversially discussed. Different methodologies exist for their quantification within life cycle assessment (LCA). Among them, thermodynamic approaches have the advantage of considering aspects of absolute quantity (reserves or amount of a substance contained in total in earth’s crust) and of quality (concentration of the target element in the mined resource), making them a potentially appealing approach for
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Steen, Bengt A. "Abiotic Resource Depletion Different perceptions of the problem with mineral deposits." International Journal of Life Cycle Assessment 11, S1 (2005): 49–54. http://dx.doi.org/10.1065/lca2006.04.011.

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Zaikova, Anna, Natalia Vinitskaia, Ivan Deviatkin, Jouni Havukainen, and Mika Horttanainen. "Life Cycle Assessment of Existing and Alternative Options for Municipal Solid Waste Management in Saint Petersburg and the Leningrad Region, Russia." Recycling 7, no. 2 (2022): 19. http://dx.doi.org/10.3390/recycling7020019.

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A waste reform was recently introduced in Russia to divert waste from landfills. To help advance the reform, this paper presents a life cycle assessment of the municipal solid waste management system in Russia’s second largest city—Saint Petersburg—and its neighboring Leningrad region. Five scenarios were evaluated: the current state of the system (S0), its expected post-reform state in 2024 (S1), and its state improved by increased landfill gas collection (S2), by increased waste incineration (S3), and by separate collection of waste (S4). The environmental impact was assessed in terms of cli
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Na, Kwang-ju, Hae-jin Yang, Il-hwan Byun, Jong-suk Kim, and Yong-moon Jung. "Life cycle assessment of Tap water treatment process; A Comparison of Tap water, Industrial water and Bottled water." Korean Journal of Life Cycle Assessment 9, no. 1 (2008): 7–19. http://dx.doi.org/10.62765/kjlca.2008.9.1.7.

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This study is about practicing LCA on the Cheongju water treatment plant to produce drinking tap water, industrial tap water and bottle water. The environmental impact categories used is Abiotic Resource Depletion, Global Warming Potentials, Ozone Depletion Potentials, Acidification Potentials, Eutrophication Potentials, Photochemical Oxidant Creation Potentials, Freshwater aquatic ecotoxicity potentials, Terrestial ecotoxicity potentials, Human toxicity potentials. As a result of LCA, the impact category that has the most environmental burden to produce clean water is Abiotic Resource Depleti
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Mykhaylenko, Volodymyr, and Oleksiy Antonov. "THE INFLUENCE OF THE ORGANIZATION OF SOCIETY ON THE STATE OF THE ENVIRONMENT." Environmental Problems 7, no. 3 (2022): 134–39. http://dx.doi.org/10.23939/ep2022.03.134.

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The article is aimed at researching the current problem of socioecology - the causes and consequences of possible resource depletion, as well as establishing the possibility of its averting. There are two classifications of natural resources from the point of view of ecology: according to their renewability and according to the possibility of use. Based on the concept of the Rouche limit, the law of the resource balance of society is formulated, which relates the social productivity of labor to the population density and the depletion of available natural resources. This law is another form of
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Części książek na temat "Abiotic resource depletion"

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Muntean, Leon, Ioana Virginia Berindean, Ionut Racz, and Andreea Ona. "Challenges in Wheat Breeding in the Twenty-First Century." In Triticum - The Pillar of Global Food Security [Working Title]. IntechOpen, 2025. https://doi.org/10.5772/intechopen.1009175.

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The chapter “Challenges in Wheat Breeding in the 21st Century” explores the profound impact of climate change and population growth on wheat cultivation, emphasizing the urgent need to develop high-performing cultivars. The depletion of natural resources, such as water and soil, further complicates this process. The role of wheat in the circular economy is highlighted, providing insights into the efficient use of agricultural resources. New genomic techniques and next-generation sequencing are revolutionizing wheat breeding, accelerating the identification of favorable genes for adaptability a
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Mendes, Madalena, Alina Hillinger, Kay Ihle, et al. "Seaweed Aquaculture Importance in Sustainable Economy in an Era of Climate Change." In Oceanography - Relationships of the Oceans With the Continents, Their Biodiversity and the Atmosphere [Working Title]. IntechOpen, 2024. http://dx.doi.org/10.5772/intechopen.114366.

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Seaweeds have been used globally for different purposes. Recent developments in technology coupled with an increasing interest in the resource have created a need for seaweed aquaculture to meet the demand. This review tackles the question of whether seaweed aquaculture has the potential to support the blue economy as well as climate change adaptation. Seaweed aquaculture represents an economically viable sector that has the potential to support the blue economy. The sector succeeds in meeting sustainability requirements while supporting human health and wealth through qualities such as natura
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Rao, Deepak, Rahul Chandel, C. P. Sachan, and Ravish Choudhary. "Breeding for Biotic and Abiotic Stress Tolerance." In Genetic Horizons: Advancement in Plant Breeding. Iterative International Publishers, Selfypage Developers Pvt Ltd, 2025. https://doi.org/10.58532/nbennurghch2.

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Global food production system, under pressure from climate change, resource depletion, and biodiversity loss, faces the challenge of feeding a population of nearly 9 billion by 2050, requiring a 70% increase in food output. Crop yields, particularly cereal grains in Asia and Africa, are increasingly at risk due to extreme climate change and shifting of climate or environmental stresses like cold, drought heat pests, and diseases. Moreover, intensive farming and excessive chemical usage have degraded soil health, heightened the likelihood of crop failures, and significantly contributed to green
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Vijayalakshmi, M., Christobel R. Gloria Jemmi, G. Ramanathan, and S. Karthika. "Role of Microbes and Microbiomes in Biotic and Abiotic Stress Management in Agriculture." In The Role of Microbes and Microbiomes in Ecosystem Restoration. BENTHAM SCIENCE PUBLISHERS, 2024. https://doi.org/10.2174/9789815256598124010007.

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Agriculture is our sensible recreation and the foremost food source for all animals and human beings. It gives laurels to us, but knowingly or unknowingly, agricultural systems face stress, resource quality degradation, and depletion by human activities. Abiotic stresses, such as nutrient deficiency, water logging, extreme cold, frost, heat, and drought, affect agricultural productivity. Biotic factors like insects, weeds, herbivores, pathogens, bacteria, viruses, fungi, parasites, algae, and other microbes limit good-quality products. Climate change leads to more complications when interpreti
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"The Depletion of Non-Renewable Abiotic Resources." In Thanatia: The Destiny of the Earth's Mineral Resources. WORLD SCIENTIFIC, 2014. http://dx.doi.org/10.1142/9789814273947_0001.

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Alanis-Ramírez, Claudia Ivett, Liliana Ávila-Cordoba, Rubi Romero-Romero, and Reyna Natividad. "Biodiesel production as an alternative to reduce the environmental impact of University food courts." In CIERMMI Women in Science Engineering and Technology TXV. ECORFAN, 2021. http://dx.doi.org/10.35429/h.2021.6.37.50.

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The objective of this work was to assess the environmental impacts of producing biodiesel by heterogeneous and homogeneous catalysis. The raw material for the process was the waste cooking oil (WCO) generated at 27 food courts of Autonomous University of the State of Mexico. The study was conducted by applying Life Cycle Assessment methodology and the environmental impacts were calculated with the SimaPro 9.1.0.11 PhD software with the Ecoinvent database. The method was CML-IA base line C3.06/EU25. The assessed impact categories were: Abiotic Depletion Potential (ADP, elements), Abiotic Deplet
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Kumar, P. Senthil, and P. R. Yaashikaa. "Agriculture Pollution." In Advanced Treatment Techniques for Industrial Wastewater. IGI Global, 2019. http://dx.doi.org/10.4018/978-1-5225-5754-8.ch009.

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Vast industrialization and population expansion forced an increase in the utilization of natural resources for human survival. Agriculture is a critical process in which livestock and growth of crops have to be balanced equally. Humans completely depend on agriculture for food and nutrition. Presently, the agricultural sector faces destructive activities due to chemical fertilizers and pesticides which cause environmental pollution. Agricultural pollution signifies biotic and abiotic side effects of cultivating practices that outcome in infection and deterioration of the environment and encomp
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ÖZTÜRK, Hasan Sabri, and H. Kağan YENİÇERİ. "SÜRDÜRÜLEBİLİR ATIK YÖNETİMİ UYGULAMALARI." In GIDA, SU KAYBI ve İSRAFI. Türkiye Bilimler Akademisi, 2024. http://dx.doi.org/10.53478/tuba.978-625-6110-08-3.ch08.

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This article examines the necessity and benefits of using wastes as raw materials, separating their valuable components, and reusing them. The aim is to prove that recyclable products can be created from domestic or industrial plants or animal wastes. It has been examined with reasons and examples that these substances, which cause problems in their current state, are raw materials and that a sustainable life can be achieved in this way. This will reduce additional threats to natural resources already nearing depletion and provide easier access to quality food. Wastes such as cherry stalks, on
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Streszczenia konferencji na temat "Abiotic resource depletion"

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Yamaki, Ayumi, Shoma Fujii, Yuichiro Kanematsu, and Yasunori Kikuchi. "Dynamic Simulation and Life Cycle Assessment of Energy Storage Systems Connecting Variable Renewable Sources with Regional Energy Demand." In The 35th European Symposium on Computer Aided Process Engineering. PSE Press, 2025. https://doi.org/10.69997/sct.182022.

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To achieve carbon neutrality, the installation of variable renewable energy (VRE) has been accelerated. However, the inherent variability of VRE can be mitigated through the installation of energy storage. This study aims to evaluate life cycle impacts of energy storage systems utilizing batteries, hydrogen storage, or thermal energy storage. A model of the energy storage systems with VRE was developed, and the annual energy flow simulations were conducted. The energy storage system targeted in this study assumed that all energy derived from VRE was stored in the energy storage and supplied to
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Diaz-Mendez, Sosimo E., Abel Hernandez-Guerrero, Jose M. Rodriguez-Lelis, and Cuauhte´moc Rubio-Arana. "Environmental Impact Index Using Exergy Destruction Within an Ecosystem: Methodology." In ASME 2009 International Mechanical Engineering Congress and Exposition. ASMEDC, 2009. http://dx.doi.org/10.1115/imece2009-12016.

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Theoretical bases of the use of the irreversibilities concept in an ecosystem as an environment impact index are presented in this paper. Because an ecosystem is composed by different biotics and abiotics parts, each part has a specific function in the processes to transport energy inside the ecosystem, all these processes having a large dependence between them. When anthropogenic emissions is produced part of the useful energy of the process are used to assimilate or to absorb those emissions, and irreversibilities are produced in the processes of the ecosystem when emissions are made by the
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