@inproceedings{LerchSchellerBruckner2023, author = {Lerch, Philipp and Scheller, Fabian and Bruckner, Thomas}, title = {Potential of demand response for chlor-alkali electrolysis processes}, booktitle = {19th International Conference on the European Energy Market (EEM)}, isbn = {979-8-3503-1258-4}, doi = {10.1109/eem58374.2023.10161892}, institution = {Fakult{\"a}t Wirtschaftsingenieurwesen; Institut f{\"u}r Sustainable Energy Systems (INSYS)}, pages = {1 -- 7}, year = {2023}, abstract = {Chlor-alkali electrolysis indicates significant demand response potential, accounting for over 2\% of Germany's total electricity demand. To fully analyze this potential, digital models or digital twins are necessary. In this study, we use the IRPopt modeling framework to develop a digital model of an electrolysis process and examine the cost-optimal load shifting application in the day-ahead spot and balancing reserve market for various price scenarios (2019, 2030, 2040). We also investigate the associated CO 2 emissions. Combined optimization at both markets results in greater and more robust cost savings of 16.1\% but cannibalizes the savings that are possible through optimization separately at each market. In future scenarios, the shares of savings from spot and reserve market could potentially reverse. CO 2 savings between 2.5\% and 9.2\% appear only through optimization at the spot market and could even turn negative if optimized solely at the reserve market.}, language = {en} }