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Evaluation of Integrated Anaerobic Digestion and Hydrothermal Carbonization for Bioenergy Production
Published on: June 15, 2014
Unleashing the combined potential of bio-based carbon dioxide removal in Germany's path to net zero from the
Mohammad Sadr1, Danial Esmaeili Aliabadi1, Matthias Jordan1
1Helmholtz Centre for Environmental Research - UFZ, Permoserstraße 15, 04318 Leipzig, Germany.
Abstract:
Carbon dioxide removal (CDR) is an essential measure for achieving national and international climate targets, complementing emission reductions. Germany aims for net-zero greenhouse gas emissions by 2045 and net-negative emissions thereafter. Nonetheless, current deployment levels are still a far cry from what is needed. This study employs a comprehensive modeling approach to examine the regional deployment of bio-based CDR in Germany, integrating techno-economic and regional conditions. We focus on two key CDR approaches: technical and natural sinks, thereby coupling energy and non-energy sectors and providing a cross-sectoral view. The selected CDR concepts are implemented in the extended bioenergy optimization model (BENOPTex) to assess their deployment for achieving climate targets cost-effectively in Germany. Our analysis demonstrates that a co-deployment strategy of technical and natural sinks, as opposed to deploying solely technical sinks, can enhance overall CDR potential by at least 50% while cutting removal costs, achieving around ∼110 Mt CO2 removal annually by 2050.
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