The sustainable materials roadmap

被引:36
|
作者
Titirici, Magda [1 ]
Baird, Sterling G. [2 ]
Sparks, Taylor D. [2 ]
Yang, Shirley Min [3 ]
Brandt-Talbot, Agnieszka [3 ]
Hosseinaei, Omid
Harper, David P. [4 ]
Parker, Richard M. [5 ]
Vignolini, Silvia [5 ]
Berglund, Lars A. [6 ]
Li, Yuanyuan [6 ]
Gao, Huai-Ling [7 ]
Mao, Li-Bo [7 ]
Yu, Shu-Hong [7 ]
Diez, Noel [8 ]
Ferrero, Guillermo A. [9 ]
Sevilla, Marta [8 ]
Szilagyi, Petra Agota [10 ]
Stubbs, Connor J. [11 ]
Worch, Joshua C. [11 ]
Huang, Yunping [12 ]
Luscombe, Christine K. [12 ,13 ]
Lee, Koon-Yang [14 ]
Luo, Hui [1 ]
Platts, M. J. [15 ]
Tiwari, Devendra [16 ,17 ]
Kovalevskiy, Dmitry [17 ]
Fermin, David J. [17 ]
Au, Heather [14 ]
Alptekin, Hande [14 ]
Crespo-Ribadeneyra, Maria [14 ]
Ting, Valeska P. [18 ]
Fellinger, Tim-Patrick [19 ]
Barrio, Jesus [1 ,20 ]
Westhead, Olivia [20 ]
Roy, Claudie [21 ]
Stephens, Ifan E. L. [20 ]
Nicolae, Sabina Alexandra [1 ,10 ,22 ]
Sarma, Saurav Ch [1 ]
Oates, Rose P. [20 ]
Wang, Chen-Gang [23 ]
Li, Zibiao [23 ]
Loh, Xian Jun [23 ]
Myers, Rupert J. [24 ]
Heeren, Niko [25 ]
Gregoire, Alice [26 ]
Perisse, Clement [26 ]
Zhao, Xiaoying [27 ,28 ]
Vodovotz, Yael [27 ,28 ]
Earley, Becky [29 ]
机构
[1] Imperial Coll London, Dept Chem Engn, London SW7 2BX, England
[2] Univ Utah, Dept Mat Sci & Engn, Salt Lake City, UT 84112 USA
[3] Imperial Coll London, Dept Chem, London W12 0BZ, England
[4] Univ Tennessee, Ctr Renewable Carbon, 2506 Jacob Dr, Knoxville, TN 37996 USA
[5] Univ Cambridge, Yusuf Hamied Dept Chem, Cambridge CB2 1EW, England
[6] KTH Royal Inst Technol, Wallenberg Wood Sci Ctr, S-10044 Stockholm, Sweden
[7] Univ Sci & Technol China, Hefei Natl Res Ctr Phys Sci Microscale, Jinzhai Rd 96, Hefei 230026, Peoples R China
[8] Inst Ciencia & Tecnol Carbono, Francisco Pintado Fe 26, Oviedo 33011, Asturias, Spain
[9] Humboldt Univ, Unter Linden 6, D-10117 Berlin, Germany
[10] Queen Mary Univ London, Sch Engn & Mat Sci, Mile End Rd, London E1 4NS, England
[11] Univ Birmingham, Sch Chem, Birmingham B15 2TT, W Midlands, England
[12] Univ Washington, Dept Mat Sci & Engn, Seattle, WA 98195 USA
[13] Grad Univ, Okinawa Inst Sci & Technol, 1919-1 Tancha, Okinawa 9040495, Japan
[14] Imperial Coll London, Dept Chem Engn, London SW7 2AZ, England
[15] Inst Mfg, Alan Reece Bldg,17 Charles Babbage Rd, Cambridge CB3 0FS, England
[16] Northumbria Univ, Dept Math Phys & Elect Engn, Ellison Pl, Newcastle Upon Tyne NE1 8ST, Tyne & Wear, England
[17] Univ Bristol, Sch Chem, Cantocks Close, Bristol BS8 1TS, Avon, England
[18] Univ Bristol, Dept Mech Engn, Bristol BS8 1TR, Avon, England
[19] Bundesanstalt Mat Forsch & Prufung BAM, Unter Eichen 87, D-12205 Berlin, Germany
[20] Imperial Coll London, Dept Mat, Mol Sci Res Hub, London W12 0BZ, England
[21] Natl Res Council Canada, Energy Min & Environm Res Ctr, Ottawa, ON, Canada
[22] Natl Inst Mat Phys, Magurele 077125, Romania
[23] ASTAR, Inst Mat Res & Engn, 2 Fusionopolis Way,Innovis 08-03, Singapore 138634, Singapore
[24] Imperial Coll London, Dept Civil & Environm Engn, London W12 0BZ, England
[25] NTNU, Dept Energy & Proc Engn, Ind Ecol Programme, Trondheim, Norway
[26] Acad France Rome, Cookies, Villa Medicis, Viale Trinita Monti 1, I-00187 Rome, Italy
[27] Ohio State Univ, Dept Food Sci & Technol, 2015 Fyffe Rd, Columbus, OH 43210 USA
[28] Beijing Technol & Business Univ, Coll Chem & Mat Engn, Beijing 100048, Peoples R China
[29] Univ Arts, 272 High Holborn, London WC1V 7EY, England
[30] KTH Royal Inst Technol, Dept Sustainable Dev Environm Sci & Engn, Stockholm, Sweden
[31] Luxembourg Inst Sci & Technol Environm Sustainabi, Belvaux, Luxembourg
[32] Univ Birmingham, Birmingham Ctr Strateg Elements & Crit Mat, Birmingham, W Midlands, England
[33] UKRI Interdisciplinary Circular Econ Ctr Technol, Exeter, Devon, England
[34] Univ Birmingham, EPSRC Crit Elements & Mat Network CREAM, Birmingham, W Midlands, England
[35] Faraday Inst, ReLiB Project, Quad One,Harwell Sci & Innovat Campus, Didcot, Oxon, England
来源
JOURNAL OF PHYSICS-MATERIALS | 2022年 / 5卷 / 03期
基金
英国生物技术与生命科学研究理事会; 英国工程与自然科学研究理事会;
关键词
research; project; materials; sustainable; sustainable materials; DIRECT (HETERO)ARYLATION POLYMERIZATION; BIO-BASED PLASTICS; POROUS CARBON; ACTIVE-SITES; CELLULOSE NANOCRYSTALS; MECHANICAL-PROPERTIES; ENVIRONMENTAL-IMPACT; CONJUGATED POLYMERS; INDUSTRIAL ECOLOGY; ION BATTERIES;
D O I
10.1088/2515-7639/ac4ee5
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Over the past 150 years, our ability to produce and transform engineered materials has been responsible for our current high standards of living, especially in developed economies. However, we must carefully think of the effects our addiction to creating and using materials at this fast rate will have on the future generations. The way we currently make and use materials detrimentally affects the planet Earth, creating many severe environmental problems. It affects the next generations by putting in danger the future of the economy, energy, and climate. We are at the point where something must drastically change, and it must change now. We must create more sustainable materials alternatives using natural raw materials and inspiration from nature while making sure not to deplete important resources, i.e. in competition with the food chain supply. We must use less materials, eliminate the use of toxic materials and create a circular materials economy where reuse and recycle are priorities. We must develop sustainable methods for materials recycling and encourage design for disassembly. We must look across the whole materials life cycle from raw resources till end of life and apply thorough life cycle assessments (LCAs) based on reliable and relevant data to quantify sustainability. We need to seriously start thinking of where our future materials will come from and how could we track them, given that we are confronted with resource scarcity and geographical constrains. This is particularly important for the development of new and sustainable energy technologies, key to our transition to net zero. Currently 'critical materials' are central components of sustainable energy systems because they are the best performing. A few examples include the permanent magnets based on rare earth metals (Dy, Nd, Pr) used in wind turbines, Li and Co in Li-ion batteries, Pt and Ir in fuel cells and electrolysers, Si in solar cells just to mention a few. These materials are classified as 'critical' by the European Union and Department of Energy. Except in sustainable energy, materials are also key components in packaging, construction, and textile industry along with many other industrial sectors. This roadmap authored by prominent researchers working across disciplines in the very important field of sustainable materials is intended to highlight the outstanding issues that must be addressed and provide an insight into the pathways towards solving them adopted by the sustainable materials community. In compiling this roadmap, we hope to aid the development of the wider sustainable materials research community, providing a guide for academia, industry, government, and funding agencies in this critically important and rapidly developing research space which is key to future sustainability.
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页数:98
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