Spent Yeast-Derived 3D Porous Carbon Skeleton as Low-Cost D-Mannitol Supporting Material for Medium Temperature Thermal Energy Storage

Author:

Lv Xifeng12,Cao Hui1,Li Guohua1,Zhu Mengying1,Ji Wei1,Wang Kai1ORCID,Zhang Changwei1,Su Changsheng1,Ren Wenqiang3,Cai Di1

Affiliation:

1. National Energy R&D Center for Biorefinery, Beijing University of Chemical Technology, Beijing 100029, China

2. College of Chemistry and Chemical Engineering, Tarim University, Alar 843300, China

3. Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China

Abstract

Shape-stable phase change materials (ss-PCMs) are extensively applied in renewable energy storage. The core for realizing high latent heat and good thermal stability of ss-PCMs is the designation of suitable supporting skeletons that can effectively preserve the PCMs from leaking out. In this study, ss-PCMs impregnated by D-mannitol were prepared using a waste yeast-derived carbon (YC) as the support material. YC possesses a large surface area (669.90 m2/g), which can provide sufficient phase transition space and nucleation sites for D-mannitol. The results indicated that a reduced supercooling of 44.76 °C for YC/D-mannitol ss-PCMs can be realized. The ss-PCMs also exhibited good cycling stability, with latent heat loss rates of 4.00% and 2.15% after 200 thermal cycles. We further demonstrate that YC provides restricted space for mannitol to inhibit the supercooling mechanism. The YC/D-mannitol ss-PCMs exhibited great promise for solar heat storage and industrial waste heat recovery in the medium temperature domain.

Funder

Bingtuan Science and Tecnology Program

Key Research and Development Program of Hebei Province

Publisher

MDPI AG

Subject

General Materials Science

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