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  1. 3901

    Wind Power Potential Analysis for Sustainable Development in Northern Sumba by Hesty N.W., Fithri S.R., Aminuddin, Nurrohim A., Raharja M.B., Kuncoro A.H., Nurliyanti V., Niode N., Pranoto B., Pandin M.

    Published 2025-01-01
    “…The data were obtained from NASA’s Langley Research Center (LaRC) POWER Project and processed using windographer software. …”
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    Solar still double slope evaporation improvement using palm kernel as sensible heat storage material by Yogie Probo Sibagariang, Oo Abdul Rosyid, Himsar Ambarita, Adjat Sudrajat, M. Rosyid Ridlo, Nelly Malik Lande, Ma'arif Hasan, Ahmad Fudholi

    Published 2025-02-01
    “…The scarcity of fresh water encouraged researchers to look for alternatives sourced from renewable energy. …”
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  10. 3910

    Transformation of NO in Combustion Gases by DC Corona by Oleksandr Molchanov, Kamil Krpec, Jiří Horák, Lenka Kuboňová, František Hopan, Jiří Ryšavý, Marcelina Bury

    Published 2025-01-01
    “…The reactions involving O and OH radicals were more important in positive corona, whereas ozone-mediated oxidation dominated in negative corona. The research results demonstrate that ESP technology with DC corona offers a promising, energy-efficient solution for NO<sub>x</sub> control in small-scale combustion systems.…”
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    Article
  11. 3911

    Numerical Simulation of Impact of Different Redox Couples on Flow Characteristics and Electrochemical Performance of Deep Eutectic Solvent Electrolyte Flow Batteries by Zhiyuan Xiao, Ruiping Zhang, Mengyue Lu, Qiang Ma, Zhuo Li, Huaneng Su, Huanhuan Li, Qian Xu

    Published 2025-01-01
    “…This study also highlighted that TEMPO and Quinoxaline DES electrolytes exhibited less flow resistance and more uniform concentration distributions, which helped reduce overpotentials and enhance battery energy efficiency. Furthermore, this research identified that the highest average overpotentials occurred near the membrane for all the redox couples, demonstrating that electrochemical reactions in DES electrolyte flow batteries primarily occur in the region close to the membrane. …”
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