Authors: Mohammad Sadr, Danial Esmaeili Aliabadi, Matthias Jordan, Ronja Wollnik, Daniela Thrän
06 August 2026
Highlights
•Analyzing the cost-effective potential contributions of over 20 bio-based CDR options
•BECCS and natural sinks can together remove ∼110 Mt CO2 annually in Germany by 2050
•A residual gap of more than 80 Mt CO2 persists for Germany’s emissions target in 2045
•Combined removal strategies boost Germany’s CDR potential by 50% and reduce its costs
Summary
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.
Source: ScienceDirect