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<dim:field authority="0000-0001-9441-3073" element="contributor" qualifier="author" confidence="ACCEPTED" language="es-ES" mdschema="dc">Gutiérrez Guerra, Juan Francisco</dim:field>
<dim:field authority="0000-0002-6528-1865" element="contributor" qualifier="author" confidence="ACCEPTED" language="es-ES" mdschema="dc">Chaves Ávila, José Pablo</dim:field>
<dim:field authority="0000-0002-8871-1872" element="contributor" qualifier="author" confidence="ACCEPTED" language="es-ES" mdschema="dc">Ramos Galán, Andrés</dim:field>
<dim:field authority="8C9BE683-DE66-480F-A814-03B4B71B58F0" element="contributor" qualifier="author" confidence="ACCEPTED" language="es-ES" mdschema="dc">Bartlett, Michael</dim:field>
<dim:field authority="A067F748-6C1D-4B68-869C-098AA008FD5B" element="contributor" qualifier="author" confidence="ACCEPTED" language="es-ES" mdschema="dc">Pålsson, Jens</dim:field>
<dim:field element="date" qualifier="accessioned" mdschema="dc">2026-06-02T04:30:42Z</dim:field>
<dim:field element="date" qualifier="available" mdschema="dc">2026-06-02T04:30:42Z</dim:field>
<dim:field element="date" qualifier="issued" language="es_ES" mdschema="dc">2026-09-01</dim:field>
<dim:field element="identifier" qualifier="issn" language="es_ES" mdschema="dc">2590-1745</dim:field>
<dim:field element="identifier" qualifier="uri" language="es_ES" mdschema="dc">https://doi.org/10.1016/j.ecmx.2026.102018</dim:field>
<dim:field element="identifier" qualifier="uri" mdschema="dc">http://hdl.handle.net/11531/110373</dim:field>
<dim:field element="description" language="es_ES" mdschema="dc">Artículos en revistas</dim:field>
<dim:field element="description" qualifier="abstract" language="es-ES" mdschema="dc">Despite ongoing efforts to decarbonise industrial processes, energy-intensive industries still rely primarily on fossil fuels for high-temperature heat supply. This study addresses the need for competitive decarbonisation strategies by proposing the integration of a biomass-based combined heat and power (CHP) unit with steam generating heat pumps for electricity and process steam supply. A mixed-integer linear programming model is developed to optimise the operation of gas turbine-based CHP plants under dynamic multi-market conditions. The formulation accounts for fuel, start-up, shutdown, and emission costs, and enables participation in the day-ahead and frequency control markets, with an explicit distinction between balancing capacity and energy. The model is applied to a real Spanish industrial plant in which the biomass-based system is tested against conventional natural gas-fired CHP units. Results show that the proposed configuration reduces fossil fuel emissions by 76.9%. The integration of heat pumps enhances waste heat recovery, improves overall system efficiency, and decouples steam production from electricity market conditions. Accounting for emission costs allows the biomass-based system to exploit higher electricity price hours, maximising surplus electricity production without incurring emissions. Additional revenue from steam export leads to a 51.2% improvement in net profit compared with the fossil-based scenario. Participation in the balancing markets further increases total revenues by 3.5%, mainly through the provision of upward balancing energy. This comes at the expense of higher natural gas consumption during balancing activation, reducing emission savings to 74.3%. By maintaining compliance with EU sustainability criteria, this work offers a multi-market decarbonisation pathway for energy-intensive industries.</dim:field>
<dim:field element="description" qualifier="abstract" language="en-GB" mdschema="dc">Despite ongoing efforts to decarbonise industrial processes, energy-intensive industries still rely primarily on fossil fuels for high-temperature heat supply. This study addresses the need for competitive decarbonisation strategies by proposing the integration of a biomass-based combined heat and power (CHP) unit with steam generating heat pumps for electricity and process steam supply. A mixed-integer linear programming model is developed to optimise the operation of gas turbine-based CHP plants under dynamic multi-market conditions. The formulation accounts for fuel, start-up, shutdown, and emission costs, and enables participation in the day-ahead and frequency control markets, with an explicit distinction between balancing capacity and energy. The model is applied to a real Spanish industrial plant in which the biomass-based system is tested against conventional natural gas-fired CHP units. Results show that the proposed configuration reduces fossil fuel emissions by 76.9%. The integration of heat pumps enhances waste heat recovery, improves overall system efficiency, and decouples steam production from electricity market conditions. Accounting for emission costs allows the biomass-based system to exploit higher electricity price hours, maximising surplus electricity production without incurring emissions. Additional revenue from steam export leads to a 51.2% improvement in net profit compared with the fossil-based scenario. Participation in the balancing markets further increases total revenues by 3.5%, mainly through the provision of upward balancing energy. This comes at the expense of higher natural gas consumption during balancing activation, reducing emission savings to 74.3%. By maintaining compliance with EU sustainability criteria, this work offers a multi-market decarbonisation pathway for energy-intensive industries.</dim:field>
<dim:field element="language" qualifier="iso" language="es_ES" mdschema="dc">en-GB</dim:field>
<dim:field element="source" language="es_ES" mdschema="dc">Revista: Energy Conversion and Management-X, Periodo: 1, Volumen: online, Número: , Página inicial: 102018-1, Página final: 102018-18</dim:field>
<dim:field element="subject" qualifier="other" language="es_ES" mdschema="dc">Instituto de Investigación Tecnológica (IIT) - Derecho ambiental, salud pública y desarrollo sostenible</dim:field>
<dim:field element="title" language="es_ES" mdschema="dc">Biomass CHP combined with steam generating heat pumps: a multi-market strategy for industrial decarbonisation</dim:field>
<dim:field element="type" language="es_ES" mdschema="dc">info:eu-repo/semantics/article</dim:field>
<dim:field element="description" qualifier="version" language="es_ES" mdschema="dc">info:eu-repo/semantics/publishedVersion</dim:field>
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<dim:field element="rights" qualifier="accessRights" language="es_ES" mdschema="dc">info:eu-repo/semantics/openAccess</dim:field>
<dim:field element="keywords" language="es-ES" mdschema="dc">Decarbonisation; Energy intensive industries; Biomass; Cogeneration plants; Heat pump systems; Mixed-integer linear programming; Balancing market</dim:field>
<dim:field element="keywords" language="en-GB" mdschema="dc">Decarbonisation; Energy intensive industries; Biomass; Cogeneration plants; Heat pump systems; Mixed-integer linear programming; Balancing market</dim:field>
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