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Adsorption of Phenanthrene in Soil to Biochar Modified by β-Cyclodextrin
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作者 wanke chen Qing Guo +3 位作者 Xiaoyan Wang Xiao Wang Jing Yuan Qianfeng Zhang 《Journal of Materials Science and Chemical Engineering》 2024年第9期44-54,共11页
In this study, the adsorption effect of β-cyclodextrin modified biochar (BC) on phenanthrene (PHE) in contaminated soil was investigated, aiming to provide an efficient and environmentally friendly remediation strate... In this study, the adsorption effect of β-cyclodextrin modified biochar (BC) on phenanthrene (PHE) in contaminated soil was investigated, aiming to provide an efficient and environmentally friendly remediation strategy for Polycyclic Aromatic Hydrocarbons (PAHs) contaminated soil. Through kinetic and isotherm analysis, β-CDBC-CA showed excellent phenanthrene adsorption performance, and the adsorption effect increased with the increase of time and was affected by temperature. The results show that β-CDBC-CA can not only effectively adsorb phenanthrene in soil, but also serve as a surfactant to help desorption phenanthrene adsorbed by soil organic matter and improve the efficiency of microbial degradation. The experimental data showed that the Elovich model could describe the adsorption behavior of β-CDBC-CA on phenanthrene well, while Langmuir and Freundlich models performed better in fitting parameters, revealing the adsorption mechanism of phenanthrene in contaminated soil by β-cyclodextrin-modified biochar. In addition, temperature has a significant effect on the adsorption capacity of β-CDBC-CA, and its application in soil remediation can be optimized by adjusting temperature. This study not only provides new materials and technical means for soil remediation but also provides important data support for an in-depth understanding of the environmental behavior of PAHs. By citing relevant research results, this study further improves the control and understanding of environmental risks of PAHs, which is of great significance for the protection of ecological environment and human health. 展开更多
关键词 PAHS BIOCHAR Β-CYCLODEXTRIN MODIFICATION ADSORPTION Soil Remediation
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Synthesis and Characterization of β-Cyclodextrin Modified Biochar Environmental Remediation Materials
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作者 Qing Guo Xiao Wang +3 位作者 wanke chen Xiaoyan Wang Jing Yuan Qianfeng Zhang 《Journal of Materials Science and Chemical Engineering》 2024年第4期42-52,共11页
In this paper, biochar (BC) was used as raw material, activated by deionizing aqueous solution, NaCl solution, CA solution and HCl solution respectively. Epichlorohydrin (EPI) was used as crosslinking agent, and β-cy... In this paper, biochar (BC) was used as raw material, activated by deionizing aqueous solution, NaCl solution, CA solution and HCl solution respectively. Epichlorohydrin (EPI) was used as crosslinking agent, and β-cyclodextrin (β-CD) was used to modify biochar (BC). The prepared modified biochar materials were labeled with β-CDBC, β-CDBC-Na, β-CDBC-CA and β-CDBC-H, respectively. The infrared spectrum, X-ray diffractometer, scanning electron microscope and specific surface area of the four modified materials were tested. The results showed that the C-O stretching vibration peak at 1020 cm<sup>−</sup><sup>1</sup> of the modified materials was slightly offset compared with that of biochar. The characteristic absorption peaks of XRD pattern decrease obviously at 2θ = 26.7˚ and 29.5˚. It can be obviously observed on the electron microscope image that the surface is loaded or formed clathrates, and BET data and graphs also show that the specific surface area of the modified biochar is larger. Therefore, β-cyclodextrin successfully modified biochar and formed clathrates on the surface of biochar or was loaded in the pore structure of biochar, especially β-CDBC-CA achieved better modification effect. Because biochar and β-cyclodextrin raw materials are cheap, easy to prepare and green, and less prone to secondary pollution, it has a good advantage in environmental governance. 展开更多
关键词 BIOCHAR Β-CYCLODEXTRIN MODIFICATION CLATHRATE Green Environmental Protection
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Steady-state and dynamic simulation of gas phase polyethylene process
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作者 Xiaodong Hong wanke chen +6 位作者 Zuwei Liao Xiaoqiang Fan Jingyuan Sun Yao Yang Chunhui Zhao Jingdai Wang Yongrong Yang 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2024年第11期110-120,共11页
Gas-phase polyethylene(PE)processes are among the most important methods for PE production.A deeper understanding of the process characteristics and dynamic behavior,such as properties of PE and reactor stability,hold... Gas-phase polyethylene(PE)processes are among the most important methods for PE production.A deeper understanding of the process characteristics and dynamic behavior,such as properties of PE and reactor stability,holds substantial interest for both academic researchers and industries.In this study,both steady-state and dynamic models for a gas-phase polyethylene process are established as a simulation platform,which can be used to study a variety of operation tasks for commercial solution polyethylene processes,such as new product development,process control and real-time optimization.The copolymerization kinetic parameters are fitted by industrial data.Additionally,a multi-reactor series model is developed to characterize the temperature distribution within the fluidized bed reactor.The accuracy in predicting melt index and density of the polymer,and the dynamic behavior of the developed models are verified by real plant data.Moreover,the dynamic simulation platform is applied to compare four practical control schemes for reactor temperature by a series of simulation experiments,since temperature control is important in industrial production.The results reveal that all four schemes effectively track the setpoint temperature.However,only the demineralized water temperature cascade control demonstrates excellent performance in handling disturbances from both the recycle gas subsystem and the heat exchange subsystem. 展开更多
关键词 Gas-phase polyethylene process Steady state Dynamic modeling CONTROL
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Chitosan-Composite Modified Biochar for Remediation of Polycyclic Aromatic Hydrocarbon Pollution
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作者 Han Wang wanke chen +3 位作者 Heng Wang Meifeng chen Jing Yuan Qianfeng Zhang 《Journal of Geoscience and Environment Protection》 2025年第10期104-120,共17页
Chitosan was composited with raw biochar in different ratios to prepare CBC series materials. The successful loading of chitosan was manifested in the formation of a microporous-dominated membrane structure and a redu... Chitosan was composited with raw biochar in different ratios to prepare CBC series materials. The successful loading of chitosan was manifested in the formation of a microporous-dominated membrane structure and a reduction in the specific surface area of the materials, which was subsequently accompanied by an enhancement in structural ordering and an increase in the abundance of surface functional groups, thereby providing more active sites for subsequent adsorption. A novel material was developed in this study for efficiently remediating polycyclic aromatic hydrocarbon-contaminated soils and aquatic environments by blending biochar with chitosan in varying ratios, providing boththeoretical foundations and practical references for green environmental remediation technologies. 展开更多
关键词 Soil Water REMEDIATION POLYCYCLIC AROMATIC Hydrocarbons Chitosan-Biochar Composite Adsorption Mechanism
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