Search Results - "Green chemical engineering"

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  1. 1

    Revisiting greenness of ionic liquids and deep eutectic solvents by Chen, Yu, Mu, Tiancheng

    Published in Green chemical engineering (01-06-2021)
    “…Green solvents are one of the hot topics of green chemistry. Ionic liquids (ILs) and deep eutectic solvents (DESs) are deemed as green solvents to a certain…”
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    Journal Article
  2. 2

    Deep eutectic solvents eutectogels: progress and challenges by Wang, Jiake, Zhang, Shangzhong, Ma, Zhongzheng, Yan, Lifeng

    Published in Green chemical engineering (01-12-2021)
    “…Deep eutectic solvents (DESs) have received widespread attention for their advantages of good electrical conductivity, stability, environmental friendliness,…”
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  3. 3

    Recent advances in electrochemical carboxylation reactions using carbon dioxide by Liu, Xiao-Fei, Zhang, Ke, Tao, Li, Lu, Xiao-Bing, Zhang, Wen-Zhen

    Published in Green chemical engineering (01-06-2022)
    “…From the viewpoint of abundance, economy, non-toxicity, and renewability, CO2 is the ideal C1 synthon in organic synthetic chemistry. Utilizing CO2 for…”
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  4. 4

    CO2 capture and in-situ conversion: recent progresses and perspectives by Shao, Bin, Zhang, Yun, Sun, Zheyi, Li, Jianping, Gao, Zihao, Xie, Zhicheng, Hu, Jun, Liu, Honglai

    Published in Green chemical engineering (01-09-2022)
    “…Global warming caused by excess carbon dioxide (CO2) emission has been a focus of the world. The development of neutral carbon technologies becomes a strategic…”
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  5. 5

    Recent advances in carbon dioxide capture and utilization with amines and ionic liquids by Wu, Yuxin, Xu, Jianhong, Mumford, Kathryn, Stevens, Geoffrey W., Fei, Weiyang, Wang, Yundong

    Published in Green chemical engineering (01-09-2020)
    “…Global warming and climate change due to anthropogenic carbon dioxide (CO2) have aroused significant concerns at the global scale due to rapid economic growth…”
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  6. 6

    Prediction of CO2 solubility in deep eutectic solvents using random forest model based on COSMO-RS-derived descriptors by Wang, Jingwen, Song, Zhen, Chen, Lifang, Xu, Tao, Deng, Liyuan, Qi, Zhiwen

    Published in Green chemical engineering (01-12-2021)
    “…This work presents the development of molecular-based mathematical model for the prediction of CO2 solubility in deep eutectic solvents (DESs). First, a…”
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  7. 7

    Recent advances in the coupling of CO2 and epoxides into cyclic carbonates under halogen-free condition by Zhang, Feng, Wang, Yanyan, Zhang, Xiaochun, Zhang, Xiangping, Liu, Huizhen, Han, Buxing

    Published in Green chemical engineering (01-12-2020)
    “…The chemical transformation of CO2 and epoxides into cyclic carbonates has been receiving much attention and is one of the successful examples for CO2…”
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  8. 8

    Thermochemical co-conversion of biomass-plastic waste to biochar: a review by Adeniyi, Adewale George, Iwuozor, Kingsley O., Emenike, Ebuka Chizitere, Ajala, Oluwaseun J., Ogunniyi, Samuel, Muritala, Kabir B.

    Published in Green chemical engineering (01-03-2024)
    “…Biomass and plastics are two of the most common municipal solid wastes globally that have continuously placed a burden on the environment. It is therefore…”
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  9. 9

    Understanding and optimizing the gasification of biomass waste with machine learning by Li, Jie, Li, Lanyu, Tong, Yen Wah, Wang, Xiaonan

    Published in Green chemical engineering (01-03-2023)
    “…Gasification is a sustainable approach for biomass waste treatment with simultaneous combustible H2-syngas production. However, this thermochemical process was…”
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  10. 10

    Mild and efficient recovery of lithium-ion battery cathode material by deep eutectic solvents with natural and cheap components by Chen, Yu, Wang, Yanlong, Bai, Yue, Feng, Minghui, Zhou, Fengyi, Lu, Yanhong, Guo, Yuting, Zhang, Yixuan, Mu, Tiancheng

    Published in Green chemical engineering (01-09-2023)
    “…Dissolution of lithium cobalt oxide (LCO) is the key step for the recovery of valuable metals (e.g., Co and Li) from spent LCO-based lithium-ion batteries…”
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  11. 11

    The stability of MOFs in aqueous solutions—research progress and prospects by An, Yang, Lv, Xinling, Jiang, Weiyi, Wang, Lingling, Shi, Yuxin, Hang, Xinxin, Pang, Huan

    Published in Green chemical engineering (01-06-2024)
    “…Metal-organic frameworks (MOFs) are favored in the fields of adsorption, separation, catalysis, electrochemistry, and magnetism due to their advantages of…”
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  12. 12

    Recent applications of ionic liquids in quasi-solid-state lithium metal batteries by Li, Jiajia, Li, Fangfang, Zhang, Lan, Zhang, Haitao, Lassi, Ulla, Ji, Xiaoyan

    Published in Green chemical engineering (01-09-2021)
    “…Quasi-solid-state lithium metal batteries are considered as one of the most promising energy storage devices, and the application of ionic liquids (ILs) as a…”
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  13. 13

    Microalgae cultivation in photobioreactors: sustainable solutions for a greener future by Abdur Razzak, Shaikh, Bahar, Khairul, Islam, K.M. Oajedul, Haniffa, Abdul Khaleel, Faruque, Mohammed Omar, Hossain, S.M. Zakir, Hossain, Mohammad M.

    Published in Green chemical engineering (01-12-2024)
    “…Microalgae cultivation in photobioreactors (PBRs) has emerged as a promising and sustainable approach to address various environmental and energy challenges,…”
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  14. 14

    Facilitated transport separation of CO2 and H2S by supported liquid membrane based on task-specific protic ionic liquids by Peng, Lingling, Shi, Mingzhen, Zhang, Xiaomin, Xiong, Wenjie, Hu, Xingbang, Tu, Zhuoheng, Wu, Youting

    Published in Green chemical engineering (01-09-2022)
    “…Selective separation of CO2 and H2S from CH4 is of importance to the natural gas upgrading because of its corrosivity. As is well known, amine group can…”
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  15. 15

    Surface science approach to the heterogeneous cycloaddition of CO2 to epoxides catalyzed by site-isolated metal complexes and single atoms: a review by D'Elia, Valerio, Kleij, Arjan W.

    Published in Green chemical engineering (01-09-2022)
    “…The cycloaddition of CO2 to epoxides to afford cyclic organic carbonates is an increasingly relevant non-reductive strategy to convert CO2 to useful products…”
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  16. 16

    Design of porous organic polymer catalysts for transformation of carbon dioxide by Ji, Guipeng, Zhao, Yanfei, Liu, Zhimin

    Published in Green chemical engineering (01-06-2022)
    “…The transformation of carbon dioxide (CO2) into fuels and chemicals is an interesting topic, which has been paid much attention in recent years. The materials…”
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  17. 17

    Advancements in adsorption and photodegradation technologies for Rhodamine B dye wastewater treatment: fundamentals, applications, and future directions by Oladoye, Peter Olusakin, Kadhom, Mohammed, Khan, Idrees, Hama Aziz, Kosar Hikmat, Alli, Yakubu Adekunle

    Published in Green chemical engineering (01-12-2024)
    “…Organic dye pollutants present in wastewater pose a significant global challenge. Among pollutants, the synthetic dye Rhodamine B (RB) stands out due to its…”
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  18. 18

    CO2 capture and utilization with solid waste by Xie, Wei-Hang, Li, Heng, Yang, Meng, He, Liang-Nian, Li, Hong-Ru

    Published in Green chemical engineering (01-09-2022)
    “…Nowadays, the massive consumption of fossil fuels and the resulting excessive emission of carbon dioxide (CO2) have broken the original carbon balance of…”
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  19. 19

    Recovery of natural active molecules using aqueous two-phase systems comprising of ionic liquids/deep eutectic solvents by Wang, Yicong, Wang, Shanshan, Liu, Leilei

    Published in Green chemical engineering (01-03-2022)
    “…Due to environmental protection requirements, extraction of bioactive compounds from plant materials using environment-friendly green solvents has always been…”
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  20. 20

    Polybenzimidazole (PBI) and benzimidazole-linked polymer (BILP) membranes by Cong, Shenzhen, Wang, Jixiao, Wang, Zhi, Liu, Xinlei

    Published in Green chemical engineering (01-03-2021)
    “…Polybenzimidazoles (PBIs) and benzimidazole-linked polymers (BILPs) have exceptional thermal and chemical stability, and hence, their membranes were developed…”
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