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100 _a20210823a2021 k y0engy50 ba
101 0 _aeng
_deng
102 _aNL
135 _adrcn ---uucaa
181 0 _ai
182 0 _ab
200 1 _aTrade-offs between the recovery, exergy demand and economy in the recycling of multiple resources
_fL. Gai, P. S. Varbanov, Fan Yee Van [et al.]
203 _aText
_celectronic
300 _aTitle screen
330 _aThe trade-off between the degree of circularity in industrial and urban processes and the spent resources in terms of energy and funds poses a challenging task. Material and energy flows feature different global patterns, which sets them as two interacting dimensions in the process. This work proposes the Multi-Resource Integration Map concept for modelling the recycling processes and representing the trade-off. The criteria used are based on exergy expenditure and cost, evaluated against the degree of circularity represented by the newly formulated Total Circularity Index (TCI), combining the Circular Material Use rate and Circular Exergy Use rate. The method is demonstrated in a case study from the domain of urban symbiosis where a set of waste resources are available to serve, after processing, part of specified product demands. The results show that the optimal exergy consumption (690 kW, TCI=0.396) and the optimal Total Annual Cost (102.7 kEUR/y, TCI=0.359) take place at different but correlating Total Circularity Index values. The optima are 33% lower in terms of cost and 22% lower in terms of exergy than the point of maximum circularity. The method proposed in this paper provides guidance for the integration of multi-resource systems, allowing the decision-makers to estimate the economic and exergy performance of the proposed Circular Economy solutions, aiding in improving the sustainability contributions of industrial and urban systems.
333 _aРежим доступа: по договору с организацией-держателем ресурса
461 _tResources, Conservation and Recycling
463 _tVol. 167
_v[105428, 16 p.]
_d2021
610 1 _aэлектронный ресурс
610 1 _aтруды учёных ТПУ
610 1 _amulti-resource system
610 1 _aCircular Economy
610 1 _aindex
610 1 _awaste recovery
610 1 _aэкономика
610 1 _aпоказатели
610 1 _aутилизация
610 1 _aотходы
610 1 _aэкономия
701 1 _aGai
_bL.
_gLimei
701 1 _aVarbanov
_bP. S.
_gPetar Sabev
701 0 _aFan Yee Van
701 1 _aKlemesh
_bZh.
_gZhiri
701 1 _aRomanenko
_bS. V.
_cspecialist in the field of ecology and life safety
_chead of the Department of Tomsk Polytechnic University, doctor of chemical Sciences
_f1972-
_gSergey Vladimirovich
_2stltpush
_3(RuTPU)RU\TPU\pers\34932
712 0 2 _aНациональный исследовательский Томский политехнический университет
_bИсследовательская школа химических и биомедицинских технологий
_c(2017- )
_h8120
_2stltpush
_3(RuTPU)RU\TPU\col\23537
801 2 _aRU
_b63413507
_c20210823
_gRCR
856 4 _uhttps://doi.org/10.1016/j.resconrec.2021.105428
942 _cCF