Research of a Biomass Boiler with Stirling Engine Microgeneration Unit

Author:

Kramens Jānis1,Vīgants Edgars1,Liepiņš Ivars1,Vērnieks Linards1,Terjanika Viktorija1

Affiliation:

1. Institute of Energy systems and Environment , Riga Technical University , Azenes st. 12/1 , Riga , Latvia

Abstract

Abstract A number of intergovernmental agreements, the most important of which are the Paris Agreement (UN Framework Convention on Climate Change) and the European Green Deal, provide for resource efficiency and the reduction of greenhouse gas and particulate matter (PM2.5, PM10) emissions to 2030 (short-term program to reduce emissions by at least 55 %) and to achieve emissions-neutral production, transport and household activities by 2050. The European Union (EU) has taken the lead in developing and implementing climate change mitigation policies for both industrial and private residential homes in the world through a green course. As an EU country, Latvia has joined both the EU-level climate policy and developed its policy, regulatory documents and action plans for 2021–2030 (Latvia’s National Energy and Climate Plan for 2021–2030), climate policy, including a policy aimed at significantly reducing GHG emissions and increasing efficiency in the household sector. Achieving these climate policy goals requires both a change in human habits and more efficient technologies. This article discusses one of the technological solutions that can reduce both greenhouse gas emissions and the release of PM2.5 and PM10 from individual heating systems in private homes and small commercial facilities. Calculations of electrical energy production in mCHP mode of the system for household self-consumption based on experiments will be done. The technology involves the production of heat from biomass or other types of renewable energy sources while generating electricity for self-consumption. Conclusions of CHP mode on overall efficiency will be done.

Publisher

Walter de Gruyter GmbH

Subject

General Environmental Science,Renewable Energy, Sustainability and the Environment

Reference15 articles.

1. [1] Ministry of Environmental Protection and Regional Development Republic of Latvia. Latvijas Gaisu Piesārņojošo Vielu Emisiju Esošās Situācijas Izpēte, Emisiju Aprēķinu Veikšana Valsts Gaisa Piesārņojuma Samazināšanas Rīcības Plāna 2020.–2030. Gadam Izstrādei (Existing Latvian air pollutants emissions situation research, emissions calculation reduction for the development of an action plan for 2020-2030). Riga: VARAM, 2018. (in Latvian)

2. [2] Cabinet of Ministers. Par Latvijas Nacionālo enerģētikas un klimata plānu 2021.–2030. gadam (On the Latvian National Energy and Climate Plan 2021–2030 year). Latvijas Vēstnesis 2020:29. (in Latvian)

3. [3] Central Statistical Bureau Republic of Latvia. Energy consumption in households. Environment and Energy databases [Online]. [Accessed 8.03.2021]. Available: http://data1.csb.gov.lv/pxweb/en/vide/vide__energetika__energ_pat/

4. [4] Padinger R., et al. Best practise report on decentralized biomass fired CHP plants and status of biomass fired smalland micro scale CHP technologies. IEA Bioenergy, 2019.

5. [5] Sheykhia M., et al. Performance investigation of a combined heat and power system with internal and external combustion engines. Energy Conversion and Management 2019:185:291–303. https://doi.org/10.1016/j.enconman.2019.01.116

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