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Verified CAS / Academic Author2 Decoded Studies

Prof. MAO Rui

Qinghai University, Key Laboratory of Smart Operation of New Energy Power Systems, Ministry of Education

Research Publications & English Decoded Briefs

Showing 2 publications
Acta Energiae Solaris Sinica2026DOI: 10.19912/j.0254-0096.tynxb.202608_9704

Oscillation Suppression Strategy for Multi-Parallel Grid-Forming Converter Systems Considering Decentralized Transient Damping

Parameter disparities in inertia and damping among parallel grid-forming converters (GFM-VSCs) induce power-frequency oscillations under varying operating conditions, potentially triggering protection misoperations and cascading disconnections. This study establishes an impedance-based small-signal model of a multi-parallel GFM-VSC system and identifies the dominant oscillation mechanisms through root locus and Bode analyses. A decentralized transient damping control strategy is proposed based on state feedback theory, incorporating angular frequency compensation and electromagnetic power compensation to enhance individual converter damping and introduce supplementary mutual damping torque. The strategy reduces angular frequency deviations across parallel units and improves system cooperativity. Lyapunov function analysis proves the correctness of the control strategy. Simulation and experimental validation confirm the feasibility and effectiveness of the proposed method. The approach addresses the limitations of centralized state-space modeling for high-dimensional systems and provides a scalable solution for multi-area decentralized control, maintaining steady-state characteristics while regulating transient behavior through parameter optimization.

Journal of Fuel Chemistry and Technology2026DOI: 10.1016/S1872-5813(26)60659-7

Synthesis of ZSM-5 Molecular Sieve from Coal Gasification Fine Slag and Its Adsorption Mechanisms for Pb2+ in Aqueous Solution

Coal gasification fine slag (CGFS), a solid waste from entrained-flow coal gasification, is characterized by fine particles and high silicon and aluminum content. This study proposes a simple and economical hydrothermal synthesis of ZSM-5 molecular sieve using CGFS as raw material. Impurities were removed by acid washing, followed by alkaline extraction of silicon and aluminum species. The extracted Si-Al precursors were crystallized hydrothermally at 170 °C for 48 h, yielding ZSM-5 with a high specific surface area of 358 m2/g. Adsorption experiments showed that the synthesized ZSM-5 exhibited excellent Pb2+ removal performance: at 25 °C, the removal efficiency for a 50 mg/L Pb2+ solution reached 83.7%, with an adsorption capacity of 104.625 mg/g under optimized conditions. The adsorption process is mainly governed by chemisorption mechanisms, including surface complexation, precipitation, and ion exchange. Thermodynamic analyses indicated that Pb2+ adsorption is spontaneous and endothermic, consistent with multilayer chemisorption. The synthesized ZSM-5 shows promising potential for application in the treatment of lead-containing wastewater, offering a high-value utilization route for coal-based solid waste.