Environmental Engineering articles for Tsinghua University, China

Time frame: 1 June 2025 - 30 May 2026
Count: 32

Article ‘Count’ for Environmental Engineering.

Journal Count Share
1 0.05
Green Upcycling Strategy for Spent Lithium-Ion Batteries: One-Step Coupling of Fluoridation Inhibition and Lattice Stabilization 0.05
1 0.13
Targeted Etching of Heterogeneous Phases and Crystal-Induced Regrowth for Direct Single-Crystal Regeneration of Spent Cathode Materials 0.13
7 3.70
All-Dry and Scalable Direct Recycling of Spent Ternary Black Mass Toward Long-Life Ah‑Level Pouch Cell 0.50
Efficient Direct Recycling Strategy of Spent LiFePO4 Cathodes by Structural Defect Repair and Interface Construction 1.00
Regeneration of Single‐Crystal with Repaired of the (003) Crystal Plane from Degraded Polycrystalline Ternary Cathode 0.02
Effective Ionic Potential Guided Dual-Gradient Structural Engineering for Spent LiCoO2 Upcycling 0.03
Direct Construction of a LiF-Rich Interphase for Sustainable Regeneration of Spent Graphite Electrodes via In Situ Decarbonization-Fluorination Strategy 0.15
Integrating High-Efficient Delamination and Structural Reconstruction Boosting Direct Regeneration of Spent Cathode Materials 1.00
Unraveling and Modulating the Competitive Dynamics in Direct Regeneration of Ni‐Rich Cathode Material 1.00
4 2.21
Surface Spin-State Manipulation via a Strong Electronegative Ligand Field Enables Direct Regeneration of Spent Lithium-Ion Battery Cathodes 0.29
Surface Segregation-Assisted Direct Regeneration of Spent Layer Cathodes 1.00
One‐Step Silver Leaching from Manganese–Silver Ore Enabled by Hydrogen‐Bonded Network Formation 0.64
Redox-Mediated Lithium Recovery From Spent LiFePO4 Stabilizes Ferricyanide Catholyte for Durable Zinc-Ferricyanide Flow Batteries 0.29
1 0.06
Life cycle assessment of the pumped hydro energy storage system in China 0.06
1 0.07
Upcycling spent medium-Ni cathodes via novel liquified salt sourcing 0.07
6 2.41
Selective and Sustainable Recovery of High-Value Metals from e-Waste via a Glucose-Mediated Hydrothermal Process 0.03
Role Transformation of Incineration Plants in Carbon Emissions from Municipal Solid Waste Treatment after Source Classification 1.00
Real-World Life-Cycle Assessment of Industrial-Scale Lithium-Ion-Battery Hydrometallurgical Recycling 0.39
Inversion Approach for Inferring Mixing State and Improving Optical Estimation of Coated Black Carbon Using Bulk-Volume Variables and Number-Size Distributions 0.05
Beyond Tires: 45 Years of Rubber Flows and Stocks in China (1978–2022) 0.38
Mapping the Recycling Potential of Bottom Ashes from Waste-to-Energy Plants toward Circular Economy: Evidence from China 0.57
8 2.23
Challenges of bismuth interference to copper-arsenic separation during electrolytic purification 0.07
UCO provides greater carbon reduction potential than plant oils across diverse biodiesel production technologies 0.77
An integrated framework for synergistic multi-element, cross-media pollution control in organic solid waste treatment system 0.25
Multi-scale cross-media modeling of ammonia emissions in membrane-covered aerobic composting of dairy cow manure and wheat straw 0.10
Selective platinum recovery from Pt-Co solutions via amine/phosphine oxide-loaded solvent-impregnated resins: mechanisms and selectivity 0.13
Unlocking the recycling potential of dysprosium for balancing supply and demand across Chinese provinces 0.22
Recovering copper as high-purity CuO nanoflowers from the acidic waste etchant via selective Fe and As removal and reactive crystallization 0.50
From mining to recycling: Identifying carbon mitigation pathways across the full life cycle of China's lithium-ion battery industry 0.20
1 0.33
Upcycling Waste Polypropylene into Multifunctional Homogeneous Additives for Simultaneously Enhanced Mechanical Performance and Processability 0.33
2 0.73
Self-Driven Electrochemical Separation-Recovery System for Simultaneous Recovery of Copper, Phosphate and EDTA from Electroless Plating Wastewater 0.05
Sustainable Production of High-Purity Crystalline FePO4 from Sludge for Battery Electrodes 0.68

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