Technological Landscape and Ideation in the Field of Waste Separation with Help of TRIZ
Author:
Publisher
Springer International Publishing
Link
http://link.springer.com/content/pdf/10.1007/978-3-030-32497-1_27
Reference47 articles.
1. Ragaert, K., Delva, L., Van Geem, K.: Mechanical and chemical recycling of solid plastic waste. Waste Manag. 69, 24–58 (2017)
2. Mellor, W., Wright, E., Clift, R., Azapagic, A., Stevens, G.: A mathematical model and decision-support framework for material recovery, recycling and cascaded use. Chem. Eng. Sci. 57(22), 4697–4713 (2002)
3. Van Schaik, A., Reuter, M.A.: Dynamic modelling of E-waste recycling system performance based on product design. Miner. Eng. 23(3), 192–210 (2010)
4. Ip, K., Testa, M., Raymond, A., Graves, S., Gutowski, T.: Performance evaluation of material separation in a material recovery facility using a network flow model. Resour. Conserv. Recycl. 131, 192–205 (2018)
5. Gundupalli, S.P., Hait, S., Thakur, A.: A review on automated sorting of source-separated municipal solid waste for recycling. Waste Manag. 60(C), 56–74 (2017)
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