Towards the design of Smart Parks : Development of industrial ecology tools for industrial and service parks in Brazil and Spain

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1 Towards the design of Smart Parks : Development of industrial ecology tools for industrial and service parks in Brazil and Spain Dr. Joan Rieradevall ICTA (UAB, Barcelona) VI Conferencia Internacional de Análisis de Ciclo de Vida en Latinoamérica Lima, Perú July 2015

2 Contents 1. Introduction 2. Objectives 3. Methods: Smart Park project 4. WP1: Tools for Smart Parks 5. WP2: Sustainable planning and eco-design 6. WP3: Water management 7. WP4: Environmental indicators 8. Conclusions

3 1. Introduction Current urban design:

4 1. Introduction Current urban design: Future sustainable design of industrial areas:

5 1. Introduction An Smart park is an innovative model designed to integrate the inflows and outflows of energy, water and waste streams for multiple businesses in a sustainable and synergistic manner

6 1. Introduction

7 2. Objectives The Smart Parks project aims to: -Evaluate industrial ecology methods -Provide tools towards eco-innovation -Propose a set of sustainability indicators

8 2. Objectives Eco-innovation can be understood as the creation, development, assimilation, and dissemination of new or significantly improved business processes, products, technologies, business model and institutional structures in a competitive way, which are developed by firms and industrial parks, governments or non-profit organizations aiming to improve eco-efficiency (reduce costs and improve enviromental performance) in order to satisfy human needs and provide a better quality of life for everyone

9 3. Methods: Smart parks project WP 1 WP 2 Life cycle assessment, Material flow analysis Sustainable planning, eco-design for the integration of multiple functions: industry, services, agriculture, urban Eco-innovation in Smart Parks: Assessment of methods and sustainability strategies towards the symbiosis of industrial, urban and agriculture in Brazil and Spain WP 3 WP 4 Water management Environmental indicators

10 3. Methods: Smart parks project Barcelona (Spain): Service park UAB university Campus Sao Carlos (Brazil): Industrial park Damha eco-innovative park Service park UFSCar university campus

11 4. WP1: Industrial ecology tools Coupling MFA and LCA to assess industrial or services parks provide a comprehensive analysis of the environmental performance of such complex systems. System boundaries Study area: UAB campus

12 4. WP1: Industrial ecology tools -MFA shows that UAB campus has greater inputs than outputs -The stock of materials is related to land use -MFA and LCA indicate that energy consumption is the main hotspot

13 5. WP2: Sustainable planning and eco-design

14 5. WP2: Sustainable planning and eco-design

15 5. WP2: Sustainable planning and eco-design Guide for planning and designing new Smart parks: -Combination of eco-design and PESMU -Framework to integrate sustainability into planning -Environmental issues included: energy, water, waste, land use, mobility and public spaces

16 6. WP3: Water management Integration of stormwater Best Management Practices into urban and industrial design 1 Attributional LCA of a pilot filter, swale and infiltration trench (FST) in Brazil Compared with a conventional stormwater network, the FST is a suitable decentralized alternative b c

17 6. WP3: Water management Integration of stormwater Best Management Practices into urban and industrial design 2 Consequential LCA of flood prevention Attributional LCA of the FST Environmental investment FST Lifespan: 10 years FST Lifespan: 10 years Avoided burdens after flooding RAW MATERIAL Sand Gravel Concrete PVC Geotextile HDPE - Cast iron Steel CAR Grass Lifespan: 10 years Diesel Material losses CAR when a flood is prevented SIDEWALK Lifespan: 10 years RAW MATERIAL Lifespan: 45 years Aluminium Copper Glass Iron Lead Magnesium Plastic Rubber Steel - Zinc Electricity RAW MATERIAL Sand Gravel Concrete PVC Geotextile HDPE - Cast iron Steel Grass Diesel T RAW MATERIAL Aluminium Copper Glass Iron Lead Magnesium Plastic Rubber Steel - Zinc Electricity RAW MATERIAL Cement Aggregates Water - Additives Diesel T T CONSTRUCTION Channel Manifold Infiltration trench T Grass cover CONSTRUCT Channel Stormwa Manifold Infiltration tren Grass cover CONSTRUCT Body and Doo Brakes Chassis Engine Vehicle interior exterior Tyres Avoided and whe Others CONSTRUCTION Net Environmental Impact (NEI) Body and Doors Brakes Chassis T Engine Vehicle interior and exterior Tyres and wheels Others Av CONSTRUCT Concrete bas Concrete slab Mortar Grout b c SIDEWALK Excluded Included T : Transport

18 7. WP4: Environmental indicators

19 7. WP4: Environmental indicators

20 7. WP4: Environmental indicators Example: Monitoring indicators

21 8. Conclusions 1. The use of industrial ecology tools is essential for characterizing new forms of service and industrial parks from a quantitative approach 2. The combination of planning and eco-design resulted in a comprehensive guide with a set of environmental requirements for design and management 3. Specific issues related to the case study areas (Brazil and Spain) were included in the assessment (e.g., water management) 4. A set of environmental indicators establish the framework to guarantee the sustainable development of Smart Parks

22 Thanks for your attention! VI Conferencia Internacional de Análisis de Ciclo de Vida en Latinoamérica Lima, Perú July 2015

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