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Adsorptive Transformation of Ultralow-Temperature Heat Using a “Heat from Cold” Cycle Научная публикация

Журнал Energy
ISSN: 0360-5442 , E-ISSN: 1873-6785
Вых. Данные Год: 2022, Том: 238, Номер: Part C, Номер статьи : 122083, Страниц : 9 DOI: 10.1016/j.energy.2021.122083
Ключевые слова Adsorption heat conversion; Ultralow-temperature heat; HeCol cycle; Methanol; Silica gel; Lithium chloride
Авторы Tokarev M.M. 1 , Girnik I.S. 1 , Aristov Yu.I. 1
Организации
1 Boreskov Institute of Catalysis, Lavrentiev ave., 5, Novosibirsk, 630090, Russia

Информация о финансировании (2)

1 Российский научный фонд 16-19-10259
2 Министерство науки и высшего образования Российской Федерации (с 15 мая 2018) 0239-2021-0007

Реферат: Adsorptive transformation of ultralow-temperature heat from various sources and its involvement in beneficial processes require pioneer approaches and intelligent solutions. One such approach, the so-called “Heat from Cold” (HeCol), has recently been proposed to amplify heat with an ultralow-temperature potential of only 0–20 °C to the temperature level sufficient for heating dwellings. This work addresses testing a HeCol prototype by simulating conditions of three locations in the Russian Federation (Moscow, Novosibirsk, and Oymyakon) with quite different climates. The effects of the cycle time, evaporator and condenser temperatures on the cycle useful heat and power were studied. The specific power was found to reach 300 W/kg-adsorbent under climatic conditions of Moscow city and more than 500 W/kg under the much colder conditions of Oymyakon. Furthermore, the maximal temperature of heat transfer fluid (water) experimentally measured under closed-loop conditions gradually reached 36 °C that is of certain practical interest. Finally, the feasibility of using the HeCol cycle for the adsorptive transformation of ultralow temperature heat was clearly demonstrated.
Библиографическая ссылка: Tokarev M.M. , Girnik I.S. , Aristov Y.I.
Adsorptive Transformation of Ultralow-Temperature Heat Using a “Heat from Cold” Cycle
Energy. 2022. V.238. NPart C. 122083 :1-9. DOI: 10.1016/j.energy.2021.122083 WOS Scopus РИНЦ OpenAlex
Даты:
Поступила в редакцию: 31 мая 2021 г.
Принята к публикации: 4 сент. 2021 г.
Опубликована online: 16 сент. 2021 г.
Опубликована в печати: 1 янв. 2022 г.
Идентификаторы БД:
Web of science: WOS:000709440300009
Scopus: 2-s2.0-85115325803
РИНЦ: 47087043
OpenAlex: W3200215977
Цитирование в БД:
БД Цитирований
Scopus 2
Web of science 2
РИНЦ 2
OpenAlex 3
Альметрики: