Chemical Engineering
Mechanistic Window of Limonene Formation in Tire Pyrolysis
SIGNIFICANCE Reference Yusong Zhang, Xingdong Li, Wensheng Xie, Yongming Lu, Xin Wang, Lei Zhang, Guozhao Ji, Yuan Gao, Aimin Li, Pyrolysis behavior and production characteristics of limonene in tire pyrolysis: Implications for waste valorization, Fuel, Volume 390, 2025, 134663,
Read More »Interfacial Oxide Modulation for Stabilizing Iron-Based Fischer–Tropsch Catalysts via Mechanically Powder-Mixing Strategies
Reference Yan CHEN, Huanhuan HE, Yufeng LI, Bing LIU, Xiaohao LIU, Study on the regulation of Fischer-Tropsch synthesis catalytic performance by mixing oxides with iron-based catalysts, Journal of Fuel Chemistry and Technology, Volume 53, Issue 8, 2025, Pages 1212-1222,
Read More »Architected Iron–Graphene Catalysts Unlock High-Efficiency Lignin Fuel Cells
Reference Jiajia Tai, Quanxiong Lu, Xianliang Song, Fe-N carbon black oxide as catalysts for oxygen reduction reaction and application to room temperature direct lignin fuel cells, Electrochimica Acta, Volume 524, 2025, 146083,
Read More »Spatiotemporal Neural Identification for Robust SOC Estimation in Lithium-Ion Batteries
Reference Dou, Weiqiang & Yang, Yong & Cui, Xiangbo. (2025). A Novel Parameter Identification Method for SOC Estimation of Lithium-Ion Batteries based on Spatiotemporal Coupling Strategy. Journal of The Electrochemical Society. 172. 10.1149/1945-7111/adf9d1.
Read More »Selective Volatilization Pathway for Phosphorus Recovery from Carbonized Sewage Sludge
Significance REFERENCE Yuuki Mochizuki, Naoto Tsubouchi, Recovery of phosphate from carbonized sewage sludge by chlorination, Biomass and Bioenergy, Volume 199, 2025, 107890,
Read More »Streamlined Growth of Monolayer Graphene via Strain-Free Abnormal Grain Growth on Cu(111)
Significance REFERENCE Tu, Jia & Zhou, Wentong & Kiani, Amin & Wolf, Lawrence & Yan, Mingdi. (2025). Chemical Vapor Deposition of Monolayer Graphene on Centimeter-Sized Cu(111) for Nanoelectronics Applications. ACS Applied Nano Materials. 8. 4926-4939. 10.1021/acsanm.5c00588.
Read More »The 3,4-Dihydroquinolizinium Ring as a Minimal Cysteine-Selective Electrophile Derived from Quinocidin
Significance REFERENCE Nakagawa Y, Manabe Y, Kondo W, Kondo T, Irie K. 3,4-Dihydroquinolizinium Ring, the Core Structure of Quinocidin, as a Cysteine-Selective Electrophile. Chempluschem. 2025;90(7):e202500149. doi: 10.1002/cplu.202500149.
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Advances in Engineering Advances in Engineering features breaking research judged by Advances in Engineering advisory team to be of key importance in the Engineering field. Papers are selected from over 10,000 published each week from most peer reviewed journals.