Journal of Energy Storage· 2026Q1
Cu(II) Yakalayan ve Faz Değişim Malzemelerini Geliştiren Fe-Modifiye Biyokömür
Fe-modified biochar for aqueous Cu(II) capture and its reutilization in enhanced phase change materials
- 0atıf
- Q1SCImago
- 2026yıl
Kısa özet
Manyetik olarak geri kazanılabilir Fe-modifiye biyokömür (PFeC), atık sudan 70 mg/g Cu(II) yakalar ve CuC'ye dönüştürüldükten sonra, parafin balmumu (PW) faz değişim malzemesinin termal iletkenliğini %101,02 oranında (0,987 W/(m·K)'ye) CuC/PW kompozitinde artırır.
Yapay zekâ ile başlık ve abstract'tan üretildi; tam metin okunmaz.
Ana noktalar
- Atık beyaz çamdan hazırlanan Fe-modifiye biyokömür (PFeC), litre başına 70 mg Cu(II) yakaladı.
- Cu(II) yüklü biyokömür, termal iletkenliği yüksek bir yapıya (CuC) dönüştürüldü.
- Bu yapı kullanılarak hazırlanan kompozit PCM (CuC/PW), geleneksel OC/PW'ye göre termal iletkenliği %101,02 artırarak 0,987 W/(m·K)'ye ulaştırdı.
- CuC/PW kompoziti, 149,4 J/g gizli ısı ve 100 termal döngü boyunca kararlılık gösterdi.
Yapay zekâ ile başlık ve abstract'tan üretildi; tam metin okunmaz.
Özet (abstract)
To address the dual challenges of developing high-performance phase change materials (PCMs) and heavy metal water pollution, this study proposes an eco-friendly integrated strategy coupling Cu(II) wastewater treatment with TES performance enhancement. Magnetically recoverable Fe-modified biochar (PFeC) was prepared from waste white pine via medium-temperature activation with ferric nitrate and was subsequently employed as an adsorbent for aqueous Cu(II) capture. After that, the Cu-loaded biochar was subjected to high-temperature carbothermal reduction. During this process, the adsorbed Cu(II) ions were converted in situ into uniformly distributed Cu phases, thereby forming a biochar framework with enhanced thermal conductivity (CuC). By loading paraffin wax (PW) into CuC via vacuum impregnation, a high thermal conductivity composite PCM (CuC/PW) was prepared. Characterization results indicate that the specific surface area of the FeC reaches 516.67 m 2 /g and the Cu(II) adsorption ability is about 70 mg/g. Thermal performance tests demonstrate that the thermal conductivity of CuC/PW reaches 0.987 W/(m·K), representing a 101.02% improvement over the traditional OC/PW. The composite also exhibited a latent heat of 149.4 J/g, a high encapsulation efficiency of 74.21%, and good stability over 100 thermal cycles. In addition, CuC/PW exhibits excellent light harvesting ability across the ultraviolet, visible, and near-infrared spectrum regions. In this work, magnetically recovered Cu(II)-laden biochar was used as a thermally conductive support for PW, thereby integrating aqueous-phase metal capture with the preparation and performance enhancement of PCMs. This capture–conversion–reuse pathway provides a sustainable approach for fabricating functional composite phase-change materials from biomass waste and recovered metal species.
Yazarların özeti; kaynağından alınmıştır. Journal of Energy Storage, 2026 · DOI ↗
Ücretsiz hesapla devam et
Makaleye Sor ile bu makaleye günde 3 soru ücretsiz; makaleyi kaydet, kaynakçasını al, ilgi alanına göre her gün yeni özetler. Çıkarımlar Premium.
Web'de ücretsiz devam etGoogle ya da Apple hesabınla giriş; kart istemez. Bu makaleye geri dönersin.
Telefonda:
Alan: Makine Mühendisliği
Mechanical EngineeringEngineering