Exploring the emergence of waste recovery and exchange in industrial clusters.
Self‐organized industrial symbiosis (IS) starts with one actor's decision to invest in a waste recovery plant and the other actors' decision to buy the recovered flow. Technical and institutional conditions of the cluster influence actors' decisions. This paper explores the emergence of IS collabora...
| Publicado en: | Journal of Industrial Ecology Vol. 27; no. 3; pp. 937 - 951 |
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| Autores principales: | , , , |
| Formato: | Artículo |
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Springer Nature
Jun2023
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| Materias: | |
| Acceso en línea: | Ver este registro en EBSCOhost |
| fields | @attributes: recordID: 1 pdfLink: plink: https://search.ebscohost.com/login.aspx?direct=true&db=ssf&AN=164372757&site=ehost-live header: @attributes: shortDbName: ssf uiTerm: 164372757 longDbName: Social Sciences Full Text (H.W. Wilson) uiTag: AN controlInfo: bkinfo: jinfo: jid: 10881980 FL1 jtl: Journal of Industrial Ecology issn: 10881980 maglogo: Y pubinfo: dt: Jun2023 vid: 27 iid: 3 pid: 237 pub: Springer Nature artinfo: ui: 164372757 10.1111/jiec.13381 ppf: 937 ppct: 14 formats: tig: atl: Exploring the emergence of waste recovery and exchange in industrial clusters. aug: au: Noori, Shiva Korevaar, Gijsbert Stikkelman, Rob Ramírez, Andrea affil: Department of Engineering Systems and Services, Faculty of Technology, Policy and Management, Delft University of Technology, Delft, Netherlands su: Iran Persian Gulf Waste recycling Industrial clusters Special economic zones Waste heat Industrial wastes Heat recovery sug: subj: Waste recycling Iran Persian Gulf Administration of Air and Water Resource and Solid Waste Management Programs Hazardous Waste Treatment and Disposal Waste treatment and disposal Materials Recovery Facilities Other Waste Collection Industrial clusters Special economic zones Waste heat Industrial wastes Heat recovery keyword: carbon emissions complex industrial systems industrial ecology industrial symbiosis MILP model techno‐economic analysis carbon emissions complex industrial systems industrial ecology industrial symbiosis MILP model techno‐economic analysis ab: Self‐organized industrial symbiosis (IS) starts with one actor's decision to invest in a waste recovery plant and the other actors' decision to buy the recovered flow. Technical and institutional conditions of the cluster influence actors' decisions. This paper explores the emergence of IS collaborations in industrial clusters under different techno‐economic conditions in the long term. We propose a mixed‐integer linear programming model that incorporates costs and constraints associated with waste recovery and exchange to study actors' investment decisions and investigate shaped symbiotic exchanges under rising energy prices and limited electricity supply. The approach is implemented in Iran's Persian Gulf Mining and Metals Special Economic Zone as a case study. The results revealed that changes in internal or external condition simultaneously influence the industrial and waste recovery plants. For instance, increasing energy prices without raising product prices significantly decreased the production level of industrial plants and, consequently, heat recovery potential. Furthermore, the waste heat recovery plants' contribution to improving the cluster's economic and environmental performance was not the same. Electricity recovery from a power plant's waste heat can result in 55 PJ grid electricity intake reduction and 720 M€ cluster cash flow increase. Recovered cooling or electricity from the steelmaking plant waste heat was consumed internally rather than shaping IS. These model outcomes show its capability to study IS within the socio‐technical structure of the cluster, not a standalone phenomenon. Implemented conceptualization offers a novel system‐level approach, which could be adjusted to assess other industrial development strategies. pubtype: Academic Journal doctype: Article src: R language: English refInfo: copyright: @attributes: flag: N holdings: @attributes: islocal: N |
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