Developing a biobased chemical industry that copes with the current environmental challenges relies on understanding the influence of the different stages of the value chain on economic and environmental performance. This paper investigates the use of a life cycle optimization framework to assess trade-offs between environmental and economic criteria for designing supply chains for biobased polyethylene terephthalate as a case study. A multi-objective optimization model was formulated to account for the environmental impacts (through life cycle assessment) and total costs (through life cycle costing) of the case study. High environmental priority (w = 0.9) in the design of the supply chain resulted in environmental gains (in 8 out of 9 midp...
Biofuels have become popular in recent years, as a result of growing concerns about climate change c...
The present paper discusses the development of a model to multi-objective optimization of product li...
Corporate approaches to improve environmental performance cannot be undertaken in isolation, so a co...
Developing a biobased chemical industry that copes with the current environmental challenges relies ...
Bioplastics are considered a sustainable alternative to (partly) substitute fossil-based plastics. N...
Plastic is one of the most versatile materials, but its production relies on fossil-based resources ...
This chapter describes how to optimise energy systems considering their economic and environmental p...
Supply Chain optimisation tools may help managing the oncoming transition from first to second gener...
The transition to a bioeconomy is one of the ambitions of the European Union for 2030. Biobased indu...
With the increasing pressures imposed upon industries on the environmental impacts of the manufactur...
Several optimization models, which consider economic and environmental perspectives, have been devel...
A decision support tool has been developed, which uses global multi-objective optimisation based on:...
Biofuels have become popular in recent years, as a result of growing concerns about climate change c...
The present paper discusses the development of a model to multi-objective optimization of product li...
Corporate approaches to improve environmental performance cannot be undertaken in isolation, so a co...
Developing a biobased chemical industry that copes with the current environmental challenges relies ...
Bioplastics are considered a sustainable alternative to (partly) substitute fossil-based plastics. N...
Plastic is one of the most versatile materials, but its production relies on fossil-based resources ...
This chapter describes how to optimise energy systems considering their economic and environmental p...
Supply Chain optimisation tools may help managing the oncoming transition from first to second gener...
The transition to a bioeconomy is one of the ambitions of the European Union for 2030. Biobased indu...
With the increasing pressures imposed upon industries on the environmental impacts of the manufactur...
Several optimization models, which consider economic and environmental perspectives, have been devel...
A decision support tool has been developed, which uses global multi-objective optimisation based on:...
Biofuels have become popular in recent years, as a result of growing concerns about climate change c...
The present paper discusses the development of a model to multi-objective optimization of product li...
Corporate approaches to improve environmental performance cannot be undertaken in isolation, so a co...