The potential contribution of sustainable waste management to energy use and greenhouse gas emission reduction in the Netherlands

Future limitations on the availability of selected resources stress the need for increased material efficiency. In addition, in a climate-constrained world the impact of resource use on greenhouse gas emissions should be minimized. Waste management is key to achieve sustainable resource management. Ways to use resources more efficiently include prevention of waste, reuse of products and materials, and recycling of materials, while incineration and anaerobic digestion may recover part of the embodied energy of materials. This study used iWaste, a simulation model, to investigate the extent to which savings in energy consumption and CO2emissions can be achieved in the Netherlands through recycling of waste streams versus waste incineration, and to assess the extent to which this potential is reflected in the LAP2 (currently initiated policy). Three waste streams (i.e. household waste, bulky household waste, and construction and demolition waste) and three scenarios compare current policy to scenarios that focus on high-quality recycling (Recycling+) or incineration with increased efficiency (Incineration+). The results show that aiming for more and high-quality recycling can result in emission reductions of 2.3 MtCO2annually in the Netherlands compared to the reference situation in 2008. The main contributors to this reduction potential are found in optimizing the recycling of plastics (PET, PE and PP), textiles, paper, and organic waste. A scenario assuming a higher energy conversion efficiency of the incinerator treating the residual waste stream, achieves an emission reduction equivalent to only one third (0.7 MtCO2/year) of the reduction achieved in the Recycling+ scenario. Furthermore, the results of the study show that currently initiated policy only partially realizes the full potential identified. A focus on highest quality use of recovered materials is essential to realize the full potential energy and CO2emission reduction identified for the Netherlands. Detailed economic and technical analyses of high quality recycling are recommended to further evaluate viable integrated waste management policies. © 2013 Elsevier B.V. All rights reserved.

[1]  Evangelyn C. Alocilja,et al.  Aerobic in-vessel composting versus bioreactor landfilling using life cycle inventory models , 2008 .

[2]  Walter Klöpffer,et al.  Life cycle assessment , 1997, Environmental science and pollution research international.

[3]  T. H. Christensen,et al.  Composting and compost utilization: accounting of greenhouse gases and global warming contributions , 2009, Waste management & research : the journal of the International Solid Wastes and Public Cleansing Association, ISWA.

[4]  T. Gutowski,et al.  Bayesian Material Separation Model with Applications to Recycling , 2007, Proceedings of the 2007 IEEE International Symposium on Electronics and the Environment.

[5]  Aurora López-Delgado,et al.  Management of MSW in Spain and recovery of packaging steel scrap. , 2007, Waste management.

[6]  Ernst Worrell,et al.  New gross energy-requirement figures for materials production , 1994 .

[7]  T. Gutowski,et al.  Material efficiency: A white paper , 2011 .

[8]  Ernst Worrell,et al.  Paper and biomass for energy?: The impact of paper recycling on energy and CO2 emissions , 2010 .

[9]  Paul S Phillips,et al.  Life cycle assessment for reuse/recycling of donated waste textiles compared to use of virgin material: An UK energy saving perspective , 2006 .

[10]  Pushpam Kumar Agriculture (Chapter8) in IPCC, 2007: Climate change 2007: Mitigation of Climate Change. Contribution of Working Group III to the Fourth assessment Report of the Intergovernmental Panel on Climate Change , 2007 .

[11]  Aurora López-Delgado,et al.  Quality of ferrous scrap from MSW incinerators: a case study of Spain , 2003 .

[12]  Jacob Møller,et al.  Global warming factors modelled for 40 generic municipal waste management scenarios , 2009, Waste management & research : the journal of the International Solid Wastes and Public Cleansing Association, ISWA.