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Artykuły w czasopismach na temat "LiB waste"

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Lin, Jiao, Ersha Fan, Xiaodong Zhang, et al. "A lithium-ion battery recycling technology based on a controllable product morphology and excellent performance." Journal of Materials Chemistry A 9, no. 34 (2021): 18623–31. http://dx.doi.org/10.1039/d1ta06106b.

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A LIB recycling technology based on a controllable product morphology and excellent performance was reported. We constructed a “cycle-fail-regeneration” new closed-loop utilization model of waste LIBs. Through this mode, waste materials can be regenerated in situ for LIB anode materials, providing multiple reuse scenarios. Density functional theory calculation is used to analyze the transformation mechanism of this process and provide theoretical support.
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Calvert, Giles, Anna H. Kaksonen, Ka Yu Cheng, Jonovan Van Yken, Barbara Chang, and Naomi J. Boxall. "Recovery of Metals from Waste Lithium Ion Battery Leachates Using Biogenic Hydrogen Sulfide." Minerals 9, no. 9 (2019): 563. http://dx.doi.org/10.3390/min9090563.

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Lithium ion battery (LIB) waste is increasing globally and contains an abundance of valuable metals that can be recovered for re-use. This study aimed to evaluate the recovery of metals from LIB waste leachate using hydrogen sulfide generated by a consortium of sulfate-reducing bacteria (SRB) in a lactate-fed fluidised bed reactor (FBR). The microbial community analysis showed Desulfovibrio as the most abundant genus in a dynamic and diverse bioreactor consortium. During periods of biogenic hydrogen sulfide production, the average dissolved sulfide concentration was 507 mg L−1 and the average
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He, Ze. "Towards Zero Waste Recovery of Li-Ion Battery." ECS Meeting Abstracts MA2023-02, no. 28 (2023): 3287. http://dx.doi.org/10.1149/ma2023-02283287mtgabs.

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The proliferation of lithium-ion batteries (LIBs) has prompted a critical exploration of sustainable waste management strategies within the battery life cycle. This abstract focuses on waste materials generated during LIB recycling, specifically emphasizing waste water, including the presence of lithium ions, which is most generated at delamination and leaching process, and waste graphite. Waste water, a significant outcome of LIB recycling, often contains valuable lithium ions. Efficient extraction and purification of lithium ions from waste water not only recovers a precious resource but als
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Rinne, Tommi, Anna Klemettinen, Lassi Klemettinen, et al. "Recovering Value from End-of-Life Batteries by Integrating Froth Flotation and Pyrometallurgical Copper-Slag Cleaning." Metals 12, no. 1 (2021): 15. http://dx.doi.org/10.3390/met12010015.

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In this study, industrial lithium-ion battery (LIB) waste was treated by a froth flotation process, which allowed selective separation of electrode particles from metallic-rich fractions containing Cu and Al. In the flotation experiments, recovery rates of ~80 and 98.8% for the cathode active elements (Co, Ni, Mn) and graphite were achieved, respectively. The recovered metals from the flotation fraction were subsequently used in high-temperature Cu-slag reduction. In this manner, the possibility of using metallothermic reduction for Cu-slag reduction using Al-wires from LIB waste as the main r
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Choi, Jae-Hyuk, Dae-Yeong Kim, Won-Ju Lee, and Jun Kang. "Conversion of Black Carbon Emitted from Diesel-Powered Merchant Ships to Novel Conductive Carbon Black as Anodic Material for Lithium Ion Batteries." Nanomaterials 9, no. 9 (2019): 1280. http://dx.doi.org/10.3390/nano9091280.

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Waste soot generated from diesel engine of merchant ships has ≥ 2 µm agglomerates consisting of 30–50 nm spherical particles, whose morphology is identical to that of carbon black (CB) used in many industrial applications. In this study, we crystallized waste soot by heat treatment to transform it into a unique completely graphitic nano-onion structure, which is considerably different from that of commercial conductive CB. While commercial CB has a large specific surface area because of many surface micropores generated due to quenching by water-spraying in the production process, the heat-tre
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Hariyadi, Asful, Afryanti Restia Masago, Rabbani Febrianur, and Dian Rahmawati. "Optimization Fungal Leaching of Cobalt and Lithium from Spent Li-Ion Batteries Using Waste Spices Candlenut." Key Engineering Materials 938 (December 26, 2022): 177–82. http://dx.doi.org/10.4028/p-lkr100.

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Lithium-ion battery (LIB) applications in consumer electronics nowdays are rapidly growing resulting the increase of batteries solid waste containing toxic and corrosive substances for the environment. On the other hand, the main active cathode components in LIB are Lithium and Cobalt, which are hazardous and limited in nature but are valuable metals. This study aims to use bio-hydrometallurgical techniques to recover heavy metals from LIB using microorganisms to avoid toxic waste from used solvents which are usually generated in conventional chemical leaching. Filamentous fungi have an import
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Noudeng, Vongdala, Nguyen Van Quan, and Tran Dang Xuan. "A Future Perspective on Waste Management of Lithium-Ion Batteries for Electric Vehicles in Lao PDR: Current Status and Challenges." International Journal of Environmental Research and Public Health 19, no. 23 (2022): 16169. http://dx.doi.org/10.3390/ijerph192316169.

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Lithium-ion batteries (LIBs) have become a hot topic worldwide because they are not only the best alternative for energy storage systems but also have the potential for developing electric vehicles (EVs) that support greenhouse gas (GHG) emissions reduction and pollution prevention in the transport sector. However, the recent increase in EVs has brought about a rise in demand for LIBs, resulting in a substantial number of used LIBs. The end-of-life (EoL) of batteries is related to issues including, for example, direct disposal of toxic pollutants into the air, water, and soil, which threatens
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YAMASHITA, Yu, and Junichi TAKAHASHI. "Effect of Elements Contained in Waste LIB on Slag Melting Temperature." Journal of MMIJ 137, no. 10 (2021): 98–102. http://dx.doi.org/10.2473/journalofmmij.137.98.

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Chuang, Yu-Sen, Hong-Ping Cheng, and Chin-Chi Cheng. "Reuse of Retired Lithium-Ion Batteries (LIBs) for Electric Vehicles (EVs) from the Perspective of Extended Producer Responsibility (EPR) in Taiwan." World Electric Vehicle Journal 15, no. 3 (2024): 105. http://dx.doi.org/10.3390/wevj15030105.

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Over the last 50 years since Whittingham created the world’s first lithium-ion battery (LIB) in 1970, LIBs have continued to develop and have become mainstream for electric vehicle (EV) batteries. However, when an LIB for an EV reaches 80% of its state of health (SOH), although it still retains about 80% of its capacity, it is no longer suitable for use in general EVs and must be retired. This is problematic because not only is a retired LIB still viable for use and not totally obsolete, if not properly disposed of, a retired LIB may cause environmental pollution on top of being a waste of res
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Zhang, Xumei, Yangyi He, Yan Wang, Wei Yan, and Nachiappan Subramanian. "Assessing the GHG Emissions and Savings during the Recycling of NMC Lithium-Ion Batteries Used in Electric Vehicles in China." Processes 10, no. 2 (2022): 342. http://dx.doi.org/10.3390/pr10020342.

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Driven by the global campaign against the dual pressures of environmental pollution and resource exhaustion, the Chinese government has proposed the target of carbon neutrality. On account of this, the increasing number of waste lithium-ion batteries (LIBs) from electric vehicles (EVs) is causing emergent waste-management challenges and it is urgent that we implement an appropriate waste-LIB recycling program, which would bring significant environmental benefits. In order to comprehensively estimate the total greenhouse gas (GHG) emissions from waste-LIB recycling, the GHG savings also need to
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Rozprawy doktorskie na temat "LiB waste"

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Barthen, Michael L. "Analysis of Shipley Microposit Remover 1165 and AZ P4620 Photoresist waste disposal for Company XYZ." Online version, 2001. http://www.uwstout.edu/lib/thesis/2001/2001barthenm.pdf.

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Piñero, Juan Carlos. "Composting food waste as an alternative to landfill disposal proposed guide for the city of Menomonie, Wisconsin /." Online version, 2009. http://www.uwstout.edu/lib/thesis/2009/2009pineroj.pdf.

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Gillette, Justin D. "Evaluation of current wastewater treatment practices at Company XYZ." Menomonie, WI : University of Wisconsin--Stout, 2007. http://www.uwstout.edu/lib/thesis/2007/2007gillettej.pdf.

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Chongwatpol, Jongsawas. "Analysis of waste electrical and electronic equipment (WEEE) in Thailand and implementation of risk management plan to comply with future WEEE regulations." Menomonie, WI : University of Wisconsin--Stout, 2004. http://www.uwstout.edu/lib/thesis/2004/2004chongwatpolj.pdf.

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Pennock, Michael. "Waste electrical and electronic equipment (WEEE) creating an electronics equipment takeback program in light of current European Union directives and possible U.S. legislation /." Online version, 2003. http://www.uwstout.edu/lib/thesis/2003/2003pennockm.pdf.

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Золотницький, Анатолій Володимирович, та Anatolii Zolotnytskyi. "Енергоефективність комбінованих систем енергозабезпечення на базі міні-ТЕЦ". Bachelor's thesis, Тернопільський національний технічний університет імені Івана Пулюя, кафедра електричної інженерії,Тернопіль, Україна, 2021. http://elartu.tntu.edu.ua/handle/lib/35311.

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Традиційні теплофікаційні системи не забезпечують розрахункової економії палива і загальної ефективності. Це пов'язано, в основному, з двома причинами. Ефект економії палива від централізації теплопостачання практично зведений до нуля внаслідок того, що ККД котелень підвищений до рівня ККД енергетичних котлів. Друга складова паливного ефекту від комбінованого виробництва електричної та теплової енергії на ТЕЦ також виявилася нижче розрахункової внаслідок теплових втрат і витрат з витоками при транспорті гарячої води на великі відстані. Таким чином, будівництво нових великих ТЕЦ для покриття д
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Бутрак, Назар Русланович, та Nazar Butrak. "Обгрунтування параметрів технологічного процесу виготовлення баку для збирання промислових відходів та дослідження якості зварних з’єднань". Master's thesis, Тернопільський національний технічний університет імені Івана Пулюя, 2020. http://elartu.tntu.edu.ua/handle/lib/33588.

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Роботу виконано на кафедрі інжинірингу машинобудівних технологій Тернопільського національного технічного університету імені Івана Пулюя Міністерства освіти і науки України. Захист відбудеться на засіданні екзаменаційної комісії № 8 у Тернопільському національному технічному університеті імені Івана Пулюя за адресою: 46001, м. Тернопіль, вул. Федьковича, 9, навчальний корпус № 3, ауд. 12.<br>Кваліфікаційна робота магістра присвячена питанням обґрунтування технологічного процесу виготовлення баку для збирання промислових відходів та дослідження якості зварних з’єднань. В роботі розроблено техно
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Коваль, Сергій Вікторович, та Serhii Koval. "Розробка заходів підвищення енергоефективності підприємства з технологією цукроваріння". Master's thesis, Тернопільський національний технічний університет імені Івана Пулюя, 2019. http://elartu.tntu.edu.ua/handle/lib/29691.

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In this diploma paper the modernization of the power supply system enterprise with the technology of sugar production to solve the problem of improving energy efficiency and reliability of electricity supply to consumers has been carried out. Measures on creation of technological installations working conditions from electrical and thermal network with cogeneration biogas installations that working on the by-products and waste of beet-sugar production, with the involvement of external electricity supply, has been developed. Mathematical models of waste-free processing of energy-intensive crops
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Козак, Іван Романович, та Ivan Kozak. "Енергоефективність використання біогазу зі звалищ та полігонів ТПВ в якості поновлюваного джерела енергії". Master's thesis, ТНТУ імені Івана Пулюя, 2019. http://elartu.tntu.edu.ua/handle/lib/29977.

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Пpoвeдeнo oцiнку iснуючиx тexнoлoгiй oтpимaння бioгaзу з дiючиx пoлiгoнiв твepдиx пoбутoвиx вiдxoдiв. Пoкaзaнa тexнoлoгiчнa тa тexнiчнa пepспeктивa викopистaння у мaйбутньoму бioгaзу як мiсцeвoгo виду пaливa для кoмбiнoвaнoгo виpoбництвa тeплoвoї тa eлeктpичнoї eнepгiї.<br>An estimation of existing technologies for obtaining biogas from existing solid waste landfills is carried out. The technological and technical perspective of future use of biogas as a local fuel for combined heat and power generation is shown.<br>ПEPEЛIК УМOВНИX СКOPOЧEНЬ...8 ВСТУП...9 POЗДIЛ 1. ЛIТEPAТУPНИЙ OГЛЯД...12
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Креховецька, Вікторія Мирославівна, та Viktoriia Krekhovetska. "Оптимізація виробничого процесу автоматизованої переробки макулатури". Master's thesis, Тернопільський національний технічний університет ім. І. Пулюя, Факультет прикладних інформаційних технологій та електроінженерії, Кафедра автоматизації технологічних процесів і виробництв, 2019. http://elartu.tntu.edu.ua/handle/lib/29661.

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Робота виконана на кафедрі автоматизації технологічних процесів і виробництв факультету прикладних інформаційних технологій та електроінженерії Тернопільського національного технічного університету імені Івана Пулюя Міністерства освіти і науки України. Захист відбудеться «23» грудня 2019р.о 8.00год. на засіданні екзаменаційної комісії №43 у Тернопільському національному технічному університеті імені Івана Пулюя<br>Креховецька В.М. Оптимізація виробничого процесу автоматизації переробки макулатури. 151 – «Автоматизація та комп’ютерно-інтегровані технології» – Тернопільський національний техн
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Książki na temat "LiB waste"

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Redwoods, College of the, and California Environmental Protection Agency. Dept. of Toxic Substances Control., eds. No-waste lab manual for educational institutions. The Dept., 1993.

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Washington (State). Dept. of Ecology. and Washington (State). Solid Waste and Financial Assistance Program., eds. Focus on methamphetamine lab cleanup grants: Grants for the cleanup of hazardous substances from methamphetamine labs. The Dept., 2003.

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Waste-to-Energy Conference (6th 1998 Miami Beach, Fla.). 6th Annual Waste-to-Energy Conference: Proceedings of a Specialty Conference sponsored by the Air & Waste Management Association, Integrated Waste Services Association, U.S. Department of Energy, National Renewable Energy Lab, U.S. Environmental Protection Agency, Solid Waste Association of North America, and the American Society of Mechanical Engineers : May 11-13, 1998, Miami Beach, FL. Air & Waste Management Association, 1998.

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Office, General Accounting. Department of Defense: DOD's training program for polygraph examiners : briefing report for the chairman and ranking minority member, Committee on Armed Services, United States Senate. The Office, 1985.

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Qian, Xiaoqing, Liying Ge, and Youcai Zhao. Ye jin guo cheng fei shui chu li yu li yong. Ye jin gong ye chu ban she, 2008.

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Office, General Accounting. Department of Defense: Military assistance provided at Branch Davidian incident : report to the Secretary of Defense, the Attorney General, and the Secretary of the Treasury. The Office, 1999.

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Office, General Accounting. Department of Defense: Status of achieving outcomes and addressing major management challenges : report to the ranking minority member, Committee on Governmental Affairs, U.S. Senate. The Office, 2001.

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Office, General Accounting. Department of Defense: DOD's training program for polygraph examiners : briefing report for the chairman and ranking minority member, Committee on Armed Services, United States Senate. The Office, 1985.

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Office, General Accounting. Department of Defense: Changes needed to the Humanitarian and Civic Assistance Program : report to Congressional requesters. The Office, 1993.

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Johnson, Bea, and Henrietta Meire. Zero Waste Home Lib/E: The Ultimate Guide to Simplifying Your Life by Reducing Your Waste. Tantor Audio, 2021.

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Części książek na temat "LiB waste"

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Dolker, Tenzin, and Deepak Pant. "Bioremediation of Metals from Lithium-Ion Battery (LIB) Waste." In Energy, Environment, and Sustainability. Springer Singapore, 2017. http://dx.doi.org/10.1007/978-981-10-7413-4_14.

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Shrivastava, Kriti, and Ankur Jain. "Waste Plastic Generated High-Performance Nanocomposites for Modern EDLC and LIB: A Two-Way Sustainable Approach." In Advances in Sustainability Science and Technology. Springer Nature Singapore, 2024. http://dx.doi.org/10.1007/978-981-99-9009-2_17.

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Singh Mathuriya, Abhilasha. "MFCs - from Lab to field." In Waste to Sustainable Energy. CRC Press, 2019. http://dx.doi.org/10.1201/9780429448799-1.

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Wang, J., L. Chen, R. Su, et al. "Lab and Field Experimental Infrastructures." In Thermo-Hydro-Mechanical-Chemical (THMC) Processes in Bentonite Barrier Systems. Springer Nature Switzerland, 2024. http://dx.doi.org/10.1007/978-3-031-53204-7_2.

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AbstractLong-term safe disposal of high-level radioactive waste (HLW) is a challenging task for countries with nuclear power production. Due to its high radioactivity and long half-life, the HLW needs to be permanently isolated from the human environment.
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Chawla, Niti, Sanjeev Kumar, and Lalita Gupta. "Advancing Phytoremediation from Lab Research to Field Applications." In Environmental Engineering and Waste Management. Springer Nature Switzerland, 2024. http://dx.doi.org/10.1007/978-3-031-58441-1_17.

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Glavee-Geo, Richard, Sardar Wasi Uddin AI Ahmed, Arron Wilde Tippett, Siv Marina Flø Grimstad, and Mark Pasquine. "The Role of Non-profit Organisations (NGOs) in Value Creation: Lessons from the Recycling of Fishing Gear in Norway." In Marine Plastics: Innovative Solutions to Tackling Waste. Springer Nature Switzerland, 2023. http://dx.doi.org/10.1007/978-3-031-31058-4_9.

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AbstractValue chain collaboration and volunteering by non-governmental organisations (NGOs) are success factors that enhance fishing gear recycling. Using multiple cases of NGOs from the Norwegian value chain of recycled plastic fishing gear, we highlight the role of NGOs in fishing gear recycling through collaborative partnerships with small- and medium-sized enterprises (SMEs). The Blue Circular Economy (BCE) project provided us with the opportunity to understudy and highlight this contextually rich phenomenon. Our study shows that sustainable value creation can be achieved through marine pl
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Talukdar, Kamaljyoti. "Use of Water-LiBr Vapour Absorption Refrigeration System Operated by Municipal Solid Waste for an Apartment Room Air Conditioning." In Advancement in Solid Waste Management and Treatment. Springer Nature Switzerland, 2024. http://dx.doi.org/10.1007/978-3-031-64873-1_13.

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Reetsch, Anika, Didas Kimaro, Karl-Heinz Feger, and Kai Schwärzel. "Traditional and Adapted Composting Practices Applied in Smallholder Banana-Coffee-Based Farming Systems: Case Studies from Kagera and Morogoro Regions, Tanzania." In Organic Waste Composting through Nexus Thinking. Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-36283-6_8.

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AbstractIn Tanzania, about 90% of the banana-coffee-based farming systems lie in the hands of smallholder farmer families. In these systems, smallholder farmers traditionally add farm waste to crop fields, making soils rich in organic matter (humus) and plant-available nutrients. Correspondingly, soils remained fertile during cultivation for over a century. Since the 1960s, the increasing demand for food and biofuels of a growing population has resulted in an overuse of these farming systems, which has occurred in tandem with deforestation, omitted fallows, declined farm size, and soil erosion
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Viniani, P., S. Abdurrahman, and H. Azhar. "Reduce mycelium leather (Mylea) waste from Mycotech Lab Indonesia into fashion accessories." In Embracing the Future: Creative Industries for Environment and Advanced Society 5.0 in a Post-Pandemic Era. Routledge, 2022. http://dx.doi.org/10.1201/9781003263135-39.

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Landesz, Tamás. "Future of Food." In Future of Business and Finance. Springer International Publishing, 2023. http://dx.doi.org/10.1007/978-3-031-36382-5_12.

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AbstractThe world is facing significant challenges in providing food and water security to a growing population without harming the environment. To address these challenges, the production of bioproducts and healthy, high-quality foods will become more critical, with protein coming from synthetic processes and insects. Agricultural production will move closer to where people live, using technologies such as horizontal agriculture, rooftops, synthetic biology, and genetically modified plants. Governments need to facilitate the dialogue surrounding the societal impacts of new technologies relate
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Streszczenia konferencji na temat "LiB waste"

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Liebhart, Steve, Ravi Nagarajan, and Pedro Escudero. "Biofuel Tank Lining- From Lab to the Field Journey." In CONFERENCE 2024. AMPP, 2024. https://doi.org/10.5006/c2024-20722.

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Abstract The unprecedented growth in the use of bio-based feedstocks in the Oil and Gas industry has led to several research efforts on the part of coating manufacturers to determine best options for the lining of feedstock storage tanks. While a few technologies have emerged as good, better, and best candidates to withstand the chemical exposure and storage temperature of the feedstocks, their application requirements for application conditions vary widely. Given the geographical locations of the facilities that are involved in the production of biofuels, the site environmental conditions mak
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Eckhardt, M., A. Ossenberg-Engels, L. Zell, and L. Paul. "Filler Metal 50 as a Weld Overlay in Waste Incineration Applications." In CORROSION 2005. NACE International, 2005. https://doi.org/10.5006/c2005-05311.

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Abstract The lifetime of boiler tubes and waterwall panels in waste incineration plants can be increased significantly by weld cladding. For this purpose FM 625 is widely used. In lab trials in artificial waste incinceration gas and in field trials in waste incineration plants also overlay weldments of FM 50 on carbon steel showed excellent corrosion resistance. Due to its demonstrated corrosion resistance and because of its good weldability FM 50 was recently selected as a weld overlay material for super heater tubes of a waste incineration plant in Italy.; This paper introduces FM 50 and pre
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Imrich, K. J., and C. F. Jenkins. "Materials Performance in a Radioactive Waste/Glass Melter System Environment." In CORROSION 1996. NACE International, 1996. https://doi.org/10.5006/c1996-96135.

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Abstract Corrosion coupons were exposed in a 1/10 scale demonstration melter system in order to evaluate the performance of alternate materials for use as top head and off gas components in the Defense Waste Processing Facility (DWPF) melter at the DOE's Savannah River Site. The demonstration system is a prototypic version of the DWPF melter, in which high activity radioactive waste will be vitrified and encapsulated for long term storage. Fifteen different nickel and cobalt base alloys were exposed for five months to corrosive vapors and molten glass, characteristic of the DWPF melter except
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Zinkevych, Petro, Serhii Baliuta, and Iuliia Kuievda. "Recycling and disposal of lithium-ion batteries." In VI International Conference on European Dimensions of Sustainablе Development. National University of Food Technologies, 2024. https://doi.org/10.24263/edsd-2024-6-40.

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The number of lithium-ion batteries (LIBs) is steadily increasing to meet the ever-increasing demand for sustainable energy and improved human quality of life. However, this growth is accompanied by a significant amount of LIB waste, which, if not properly disposed of, poses a safety and environmental threat due to its toxic content. In addition, the high consumption of scarce resources of precious metals, which are essential for the production of batteries, is also a serious problem. Due to the serious environmental, resource, safety and recycling issues, the recycling of used LIBs is extreme
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Klemettinen, L., J. Biswas, A. Klemettinen, et al. "Towards integration of pyro- and hydrometallurgical unit operations for efficient recovery of battery metals from waste lithium-ion batteries." In 12th International Conference of Molten Slags, Fluxes and Salts (MOLTEN 2024) Proceedings. Australasian Institute of Mining and Metallurgy (AusIMM), 2024. http://dx.doi.org/10.62053/eurl8600.

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Waste lithium-ion batteries (LIBs) are important secondary sources of many valuable materials, including Critical Raw Materials (CRMs) defined by the European Union (EU): lithium, cobalt, manganese, and graphite. Additionally, LIBs typically contain nickel and copper, which are classified as Strategic Raw Materials for EU since 2023. In recent years, great effort has been made to develop efficient recycling processes for waste LIBs. Pyrometallurgical processes have been essential in industrial production of metals for many decades. These technologies are relatively mature, with high adaptabili
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Azam, Reem, Tasneem ElMakki, Sifani Zavahir, Zubair Ahmad, Gago Guillermo Hijós, and Dong Suk Han. "Lithium capture in Seawater Reverse Osmosis (SWRO) Brine using membrane-based Capacitive Deionization (MCDI) System." In Qatar University Annual Research Forum & Exhibition. Qatar University Press, 2021. http://dx.doi.org/10.29117/quarfe.2021.0013.

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Lithium-battery based industries including vehicles, electronics, fusion and thermonuclear, consume lithium rapidly, which raises the need for developing a lithium recovery system. Lithium global market consumption in 2016 was reported to be 35% in batteries manufacturing. The total content of lithium in seawater and oceans is estimated at 2.5 × 1014 kg, with an average concentration of 0.17 mg/L. Salt lakes contain 1,000–3,000 mg/L of lithium, while geothermal water up to 15 mg/L. In 2020, the US Geological Survey (USGS) reported that the total Li resource is about 80 million ton. In nature,
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Al-Shammari, Hammad, and Siamak Farhad. "Recovering and Regenerating of Spent Anode Material From the Scrap of Used Lithium Ion Batteries." In ASME 2023 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2023. http://dx.doi.org/10.1115/imece2023-114474.

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Abstract Lithium-ion batteries (LIBs) have been used intensively as energy storage for products powered by electricity, such as phones, laptops, electric vehicles, etc. Nevertheless, the increasing usage of LIBs is estimated to grow in the upcoming years due to the involvement of the technology of the electric vehicle. Therefore, the spent LIBs will increase in parallel to the demand growth which considers an obstacle to the environment as well as the economy in case left without recycling. So far, there are some recycling procedures that are focusing on the valuable metals existed in the spen
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Alshammari, Salem, Shiv Shankar Sangaru, Hussain Saleem, and Subhash Ayirala. "Lithium Extraction from Produced Water using Lithium Aluminum Layered Double Hydroxide Chloride Sorbent." In ADIPEC. SPE, 2024. http://dx.doi.org/10.2118/222226-ms.

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Abstract Lithium-ion batteries (LIB) are crucial components for renewable energy generation and storage technologies, making lithium an essential mineral due to its irreplaceable role in LIB because of its unique physiochemical properties. While lithium is traditionally extracted from solid mineral deposits or Salar brines in the lithium triangle of South America, alternative sources such as produced water from oil and gas reservoirs offer a promising yet underutilized opportunity. Nevertheless, produced water from oil and gas reservoirs contains low lithium levels but can be enriched through
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Kot-Niewiadomska, Alicja, Krzysztof Galos, and Katarzyna Guzik. "SAFEGUARDING OF MINERAL DEPOSITS AS THE BASIS OF EUROPEAN UNION RAW MATERIALS SECURITY IN THE ERA OF UNSTABLE GEOPOLITICAL CONDITIONS." In 22nd SGEM International Multidisciplinary Scientific GeoConference 2022. STEF92 Technology, 2022. http://dx.doi.org/10.5593/sgem2022/1.1/s03.046.

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The economic results of many dynamically developing European countries largely depend on the availability of mineral raw materials. For this reason, securing their supplies from import must be supported by a committed foreign policy as well as a sustainable raw materials policy in the field of their obtaining from domestic sources, both from mineral deposits, as well as secondary and waste sources. Raw material security must be based on the diversification of supply sources and minimizing supply risks. The results of analyses show that the European Union relies heavily on imported raw material
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Tatàno, F., L. Barbadoro, S. Pretelli, L. Tombari, and F. Mangani. "Industrial wood residuals: experimental property characterization and lab-scale burning tests." In WASTE MANAGEMENT 2008. WIT Press, 2008. http://dx.doi.org/10.2495/wm080651.

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Raporty organizacyjne na temat "LiB waste"

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Anast, Kurt Roy. Standard Waste Box Lid Screw Removal Option Testing. Office of Scientific and Technical Information (OSTI), 2016. http://dx.doi.org/10.2172/1241645.

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MILLER, E. M. CSER 95-007 Acceptability of Bettis Lab Waste Shipment to WHC Solid Waste. Office of Scientific and Technical Information (OSTI), 1999. http://dx.doi.org/10.2172/798850.

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Flaherty, Julia, and Ernest Antonio. Hanford Waste Treatment Plant LAB Facility Stack Effluent Monitoring. Office of Scientific and Technical Information (OSTI), 2023. http://dx.doi.org/10.2172/2369461.

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Glissmeyer, John A., and John GH Geeting. Assessment of Waste Treatment Plant Lab C3V (LB-S1) Stack Sampling Probe Location for Compliance with ANSI/HPS N13.1-1999. Office of Scientific and Technical Information (OSTI), 2013. http://dx.doi.org/10.2172/1064574.

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HAMILTON, D. W. HANFORD MEDIUM & LOW CURIE WASTE PRETREATMENT PROJECT PHASE 1 LAB REPORT. Office of Scientific and Technical Information (OSTI), 2006. http://dx.doi.org/10.2172/876000.

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Beatriz Santos Carvalho, Beatriz Santos Carvalho. Reducing scientific research waste production: Can we recycle lab plastics for 3D printing? Experiment, 2018. http://dx.doi.org/10.18258/11301.

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Flaherty, Julia, and Ernest Antonio. Hanford Waste Treatment Plant LAB Facility Stack Effluent Monitoring - Sampling Probe Location Qualification Evaluation. Office of Scientific and Technical Information (OSTI), 2021. http://dx.doi.org/10.2172/1814642.

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Flaherty, Julia, and Ernest Antonio. Hanford Waste Treatment Plant LAB Facility Stack Effluent Monitoring - Sampling Probe Location Qualification Evaluation. Office of Scientific and Technical Information (OSTI), 2022. http://dx.doi.org/10.2172/1872735.

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Hannah Chang, Hannah Chang. How low cost agriculture waste material can be used to support lab-grown meat production? Experiment, 2022. http://dx.doi.org/10.18258/25299.

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Quak, Evert-jan. Implementation Obstacles and Political Appeal of Environmental Taxes in Sub-Saharan Africa: Reflections from Selected Countries. Institute of Development Studies, 2024. http://dx.doi.org/10.19088/ictd.2024.079.

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Low-income countries (LICs) are looking at the potential of environmental taxes – such as charges on air pollutants, levies on household waste, and taxes on energy use – to increase revenue and tackle environmental issues. LICs are slow to adopt environmental taxes, and international financial institutions, multilateral development banks, and international donors are helping LIC governments assess them. Little is known about the institutional, administrative, and political obstacles leading to slow adoption of environmental taxes, and how these taxes can be made more appealing, especially in s
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