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DOI10.1016/j.scitotenv.2019.01.135
Low carbon heating and cooling by combining various technologies with Aquifer Thermal Energy Storage
Pellegrini, M.1; Bloemendal, M.2,3; Hoekstra, N.4; Spaak, G.4; Andreu Gallego, A.5; Rodriguez Comins, J.6; Grotenhuis, T.7; Picone, S.8; Murrell, A. J.9; Steeman, H. J.10
发表日期2019
ISSN0048-9697
EISSN1879-1026
卷号665页码:1-10
英文摘要

A transition to a lowcarbon energy systemis needed to respond to global challenge of climate change mitigation. Aquifer Thermal Energy Storage (ATES) is a technology with worldwide potential to provide sustainable space heating and cooling by (seasonal) storage and recovery of heat in the subsurface. However, adoption of ATES varies strongly across Europe, because of both technical as well as organizational barriers, e.g. differences in climatic and subsurface conditions and legislation respectively. After identification of all these barriers in a Climate-KIC research project, six ATES pilot systems have been installed in five different EU-countries aiming to show how such barriers can be overcome. This paper presents the results of the barrier analysis and of the pilot plants. The barriers are categorized in general barriers, and barriers for mature and immature markets. Two pilots show how ATES can be successfully used to re-develop contaminated sites by combining ATES with soil remediation. Two other pilots show the added value of ATES because its storage capacity enables the utilization of solar heat in combination with solar power production. Finally, two pilots are realized in countries with legal barriers where ATES systems have not previously been applied at all. Crown Copyright (c) 2019 Published by Elsevier B.V. All rights reserved.


WOS研究方向Environmental Sciences & Ecology
来源期刊SCIENCE OF THE TOTAL ENVIRONMENT
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/89834
作者单位1.Univ Bologna, Dept Ind Engn, Forli, Italy;
2.Delft Univ Technol, Dept Water Management, Delft, Netherlands;
3.KWR Watercycle Res Inst, Nieuwegein, Netherlands;
4.Stichting Deltares, Utrecht, Netherlands;
5.Ceram Technol Inst, Sustainabil Dept, Castellon De La Plana, Spain;
6.Itecon, Castellon De La Plana, Spain;
7.Wageningen Univ, Subdept Environm Technol, Wageningen, Netherlands;
8.Technol Dev Agcy Emilia Romagna Reg, ASTER, Bologna, Italy;
9.Naked Energy Ltd, Crawley, England;
10.Arcadis Belgium Nv Sa, Ghent, Belgium
推荐引用方式
GB/T 7714
Pellegrini, M.,Bloemendal, M.,Hoekstra, N.,et al. Low carbon heating and cooling by combining various technologies with Aquifer Thermal Energy Storage[J],2019,665:1-10.
APA Pellegrini, M..,Bloemendal, M..,Hoekstra, N..,Spaak, G..,Andreu Gallego, A..,...&Steeman, H. J..(2019).Low carbon heating and cooling by combining various technologies with Aquifer Thermal Energy Storage.SCIENCE OF THE TOTAL ENVIRONMENT,665,1-10.
MLA Pellegrini, M.,et al."Low carbon heating and cooling by combining various technologies with Aquifer Thermal Energy Storage".SCIENCE OF THE TOTAL ENVIRONMENT 665(2019):1-10.
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