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Identifying the Hydrochemical Characteristics,Genetic Mechanisms and Potential Human Health Risks of Fluoride and Nitrate Enriched Groundwater in the Tongzhou District,Beijing,North China
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作者 ZHANG Shouchuan LIU Kai +2 位作者 MA Yan WANG Luyao SUN Junliang 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2024年第2期468-476,共9页
Fluoride and nitrate enriched groundwater are potential threats to the safety of the groundwater supply that may cause significant effects on human health and public safety,especially in aggregated population areas an... Fluoride and nitrate enriched groundwater are potential threats to the safety of the groundwater supply that may cause significant effects on human health and public safety,especially in aggregated population areas and economic hubs.This study focuses on the high F^(−)and NO_(3)^(−)concentration groundwater in Tongzhou District,Beijing,North China.A total of 36 groundwater samples were collected to analyze the hydrochemical characteristics,elucidate genetic mechanisms and evaluate the potential human health risks.The results of the analysis indicate:Firstly,most of the groundwater samples are characterized by Mg-HCO_(3) and Na-HCO_(3) with the pH ranging from 7.19 to 8.28 and TDS with a large variation across the range 471-2337 mg/L.The NO_(3)^(−)concentration in 38.89%groundwater samples and the F^(−)concentration in 66.67%groundwater samples exceed the permissible limited value.Secondly,F^(−)in groundwater originates predominantly from water-rock interactions and the fluorite dissolution,which is also regulated by cation exchange,competitive adsorption of HCO_(3)−and an alkaline environment.Thirdly,the effect of sewage disposal and agricultural activities have a significant effect on high NO3-concentration,while the high F^(−)concentration is less influenced by anthropogenic activity.The alkaline environment favors nitrification,thus being conducive to the production of NO_(3)^(−).Finally,the health risk assessment is evaluated for different population groups.The results indicate that high NO_(3)^(−)and F^(−)concentration in groundwater would have the largest threat to children’s health.The findings of this study could contribute to the provision of a scientific basis for groundwater supply policy formulation relating to public health in Tongzhou District. 展开更多
关键词 fluoride concentration nitrate pollution genetic mechanism health risk assessment Tongzhou District
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Ash removal from inferior coal via ammonium fluoride roasting and simultaneous yield of white carbon black
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作者 Xuqin Duan Shuaiyu Lu +3 位作者 Yuxiao Fu Jiazhe Zhang Tong Liu Jian Ma 《International Journal of Mining Science and Technology》 SCIE EI CAS CSCD 2024年第2期261-279,共19页
The quality upgrading and deashing of inferior coal by chemical method still faces great challenges.The dangers of strong acid,strong alkali,waste water and exhaust gas as well as high cost limit its industrial produc... The quality upgrading and deashing of inferior coal by chemical method still faces great challenges.The dangers of strong acid,strong alkali,waste water and exhaust gas as well as high cost limit its industrial production.This paper systematically investigates the ash reduction and desilicification of two typical inferior coal utilizing ammonium fluoride roasting method.Under the optimal conditions,for fat coal and gas coal,the deashing rates are 69.02%and 54.13%,and the desilicification rates are 92.64%and 90.27%,respectively.The molar dosage of ammonium fluoride remains consistent for both coals;however,the gas coal,characterized by a lower ash and silica content(less than half that of the fat coal),achieves optimum deashing effect at a reduced time and temperature.The majority of silicon in coal transforms into gaseous ammonium fluorosilicate,subsequently preparing nanoscale amorphous silica with a purity of 99.90%through ammonia precipitation.Most of the fluorine in deashed coal are assigned in inorganic minerals,suggesting the possibility of further fluorine and ash removal via flotation.This research provides a green and facile route to deash inferior coal and produce nano-scale white carbon black simultaneously. 展开更多
关键词 Inferior coal Deashing treatment Silicon recycling Ammonium fluoride roasting White carbon black
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Enhanced Redox Electrocatalysis in High‑Entropy Perovskite Fluorides by Tailoring d–p Hybridization
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作者 Xudong Li Zhuomin Qiang +4 位作者 Guokang Han Shuyun Guan Yang Zhao Shuaifeng Lou Yongming Zhu 《Nano-Micro Letters》 SCIE EI CSCD 2024年第3期333-350,共18页
High-entropy catalysts featuring exceptional properties are,in no doubt,playing an increasingly significant role in aprotic lithium-oxygen batteries.Despite extensive effort devoted to tracing the origin of their unpa... High-entropy catalysts featuring exceptional properties are,in no doubt,playing an increasingly significant role in aprotic lithium-oxygen batteries.Despite extensive effort devoted to tracing the origin of their unparalleled performance,the relationships between multiple active sites and reaction intermediates are still obscure.Here,enlightened by theoretical screening,we tailor a high-entropy perovskite fluoride(KCoMnNiMgZnF_(3)-HEC)with various active sites to overcome the limitations of conventional catalysts in redox process.The entropy effect modulates the d-band center and d orbital occupancy of active centers,which optimizes the d–p hybridization between catalytic sites and key intermediates,enabling a moderate adsorption of LiO_(2)and thus reinforcing the reaction kinetics.As a result,the Li–O2 battery with KCoMnNiMgZnF_(3)-HEC catalyst delivers a minimal discharge/charge polarization and long-term cycle stability,preceding majority of traditional catalysts reported.These encouraging results provide inspiring insights into the electron manipulation and d orbital structure optimization for advanced electrocatalyst. 展开更多
关键词 Lithium-oxygen batteries KCoMnNiMgZnF_(3)-HEC perovskite fluoride Entropy effect Catalytic kinetics d-p orbital hybridization
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Mechanism of Learning and Memory Impairment in Rats Exposed to Arsenic and/or Fluoride Based on Microbiome and Metabolome 被引量:2
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作者 ZHANG Xiao Li YU Sheng Nan +12 位作者 QU Ruo Di ZHAO Qiu Yi PAN Wei Zhe CHEN Xu Shen ZHANG Qian LIU Yan LI Jia GAO Yi LYU Yi YAN Xiao Yan LI Ben REN Xue Feng QIU Yu Lan 《Biomedical and Environmental Sciences》 SCIE CAS CSCD 2023年第3期253-268,共16页
Objective Arsenic(As) and fluoride(F) are two of the most common elements contaminating groundwater resources. A growing number of studies have found that As and F can cause neurotoxicity in infants and children, lead... Objective Arsenic(As) and fluoride(F) are two of the most common elements contaminating groundwater resources. A growing number of studies have found that As and F can cause neurotoxicity in infants and children, leading to cognitive, learning, and memory impairments. However, early biomarkers of learning and memory impairment induced by As and/or F remain unclear. In the present study, the mechanisms by which As and/or F cause learning memory impairment are explored at the multi-omics level(microbiome and metabolome).Methods We stablished an SD rats model exposed to arsenic and/or fluoride from intrauterine to adult period.Results Arsenic and/fluoride exposed groups showed reduced neurobehavioral performance and lesions in the hippocampal CA1 region. 16S rRNA gene sequencing revealed that As and/or F exposure significantly altered the composition and diversity of the gut microbiome, featuring the Lachnospiraceae_NK4A136_group, Ruminococcus_1, Prevotellaceae_NK3B31_group, [Eubacterium]_xylanophilum_group. Metabolome analysis showed that As and/or F-induced learning and memory impairment may be related to tryptophan, lipoic acid, glutamate, gamma-aminobutyric acidergic(GABAergic) synapse, and arachidonic acid(AA) metabolism. The gut microbiota, metabolites, and learning memory indicators were significantly correlated.Conclusion Learning memory impairment triggered by As and/or F exposure may be mediated by different gut microbes and their associated metabolites. 展开更多
关键词 ARSENIC fluoride Learning and memory impairment MICROBIOME METABOLOME
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The mechanism for tuning the corrosion resistance and pore density of plasma electrolytic oxidation(PEO)coatings on Mg alloy with fluoride addition 被引量:1
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作者 Zhu Lujun Li Hongzhan +2 位作者 Ma Qingmei Lu Jiangbo Li Zhengxian 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2023年第8期2823-2832,共10页
Here we prepared PEO coatings on Mg alloys in silicate-NaOH-phosphate electrolyte containing different concentrations of NaF addition.The detailed microstructural characterizations combining with potentiodynamic polar... Here we prepared PEO coatings on Mg alloys in silicate-NaOH-phosphate electrolyte containing different concentrations of NaF addition.The detailed microstructural characterizations combining with potentiodynamic polarization and electrochemical impedance spectra(EIS)were employed to investigate the roles of fluoride in the growth and corrosion properties of PEO coating on Mg.The result shows the introduction of NaF led to a fluoride-containing nanolayer(FNL)formed at the Mg/coating interface.The FNL consists of MgO nanoparticles and insoluble MgF_(2)nanoparticles(containing rutile phase and cubic phase).The increase in the NaF concentration of the electrolyte increases the thickness and the MgF_(2)content in the FNL.When anodized in the electrolyte containing 2 g/L NaF,the formed FNL has the highest thickness of 100-200 nm along with the highest value of x of∼0.6 in(MgO)_(1-x)(MgF_(2))x resulted in the highest corrosion performance of PEO coating.In addition,when anodized in the electrolyte containing a low NaF concentration(0.4-0.8 g/L),the formed FNL was thin and discontinuous,which would decrease the pore density and increase the coating's uniformness simultaneously. 展开更多
关键词 Mg alloys Plasma electrolytic oxidation CORROSION Pore density fluoride
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F-μbond length andμSR depolarization spectrum calculation for fluoride using two-component density functional theory
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作者 潘智康 邓力 +3 位作者 潘子文 原钺 张宏俊 叶邦角 《Chinese Physics B》 SCIE EI CAS CSCD 2023年第8期120-123,共4页
First-principles calculation of muons in ionic fluorides has been proposed recently.However,there is a considerable difference between the obtained F-μbond length and the experimental data obtained by muon spin relax... First-principles calculation of muons in ionic fluorides has been proposed recently.However,there is a considerable difference between the obtained F-μbond length and the experimental data obtained by muon spin relaxation(μSR).Considering that the difference may be caused by ignoring the quantum effect of muons,we use two-component density functional theory(TCDFT)to consider the quantized muon and recalculate the bond length and theμSR depolarization spectrum.After testing several muon-electron correlation,we show that TCDFT can give better results than the commonly used“DFT+μ”. 展开更多
关键词 muon spin relaxation/rotation fluoride density-functional theory
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Investigation of the sodium storage mechanism of iron fluoride hydrate cathodes using X-ray absorption spectroscopy and mossbauer spectroscopy
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作者 Ghulam Ali Muhammad Akbar +4 位作者 Faiza Jan Iftikhar Qamar Wali Beata Kalska Szostko Dariusz Satuła Kyung Yoon Chung 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第2期535-542,I0014,共9页
Elucidation of a reaction mechanism is the most critical aspect for designing electrodes for highperformance secondary batteries.Herein,we investigate the sodium insertion/extraction into an iron fluoride hydrate(FeF_... Elucidation of a reaction mechanism is the most critical aspect for designing electrodes for highperformance secondary batteries.Herein,we investigate the sodium insertion/extraction into an iron fluoride hydrate(FeF_(3)·0.5H_(2)O)electrode for sodium-ion batteries(SIBs).The electrode material is prepared by employing an ionic liquid 1-butyl-3-methylimidazolium-tetrafluoroborate,which serves as a reaction medium and precursor for F^(-)ions.The crystal structure of FeF_(3)·0.5H_(2)O is observed as pyrochlore type with large open 3-D tunnels and a unit cell volume of 1129A^(3).The morphology of FeF_(3)·0.5H_(2)O is spherical shape with a mesoporous structure.The microstructure analysis reveals primary particle size of around 10 nm.The FeF_(3)·0.5H_(2)O cathode exhibits stable discharge capacities of 158,210,and 284 mA h g^(-1) in three different potential ranges of 1.5-4.5,1.2-4.5,and 1.0-4.5 V,respectively at 0.05 C rate.The specific capacities remained stable in over 50 cycles in all three potential ranges,while the rate capability was best in the potential range of 1.5-4.5 V.The electrochemical sodium storage mechanism is studied using X-ray absorption spectroscopy,indicating higher conversion at a more discharged state.Ex-situ M?ssbauer spectroscopy strengthens the results for reversible reduction/oxidation of Fe.These results will be favorable to establish high-performance cathode materials with selective voltage window for SIBs. 展开更多
关键词 Iron fluoride Sodium-ion batteries PYROCHLORE X-ray absorption spectroscopy Mössbauer spectroscopy
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Soft Template-Induced Porous Polyvinylidene Fluoride Membrane for Vanadium Flow Batteries
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作者 Dingqin Shi Chunyang Li +1 位作者 Zhizhang Yuan Guojun Li 《Transactions of Tianjin University》 EI CAS 2023年第4期284-292,共9页
Vanadium flow batteries(VFBs)are considered ideal for grid-sc ale,long-duration energy storage applications owing to their decoupled output power and storage capacity,high safety,efficiency,and long cycle life.However... Vanadium flow batteries(VFBs)are considered ideal for grid-sc ale,long-duration energy storage applications owing to their decoupled output power and storage capacity,high safety,efficiency,and long cycle life.However,the widespread adoption of VFB s is hindered by the use of expensive Nafion membranes.Herein,we report a soft template-induced method to develop a porous polyvinylidene fluoride(PVDF)membrane for VFB applications.By incorporating water-soluble and flexible polyethylene glycol(PEG 400)as a soft template,we induced the aggregation of hydrophilic sulfonated poly(ether ether ketone),resulting in phase separation from the hydrophobic PVDF polymer during membrane formation.This process led to the creation of a porous PVDF membrane with controllable morphologies determined by the polyethylene glycol content in the cast solution.The optimized porous PVDF membrane enabled a stable VFB performance for 200 cycles at a current density of 80 mA/cm^(2),and the VFB exhibited a Coulombic efficiency of 95.2%and a voltage efficiency of 87.8%.These findings provide valuable insights for the development of highly stable membranes for VFB applications. 展开更多
关键词 Energy storage Vanadium flow battery Porous polyvinylidene fluoride membrane Soft template-induced phase separation
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Effect of fluoride ions on coordination structure of titanium in molten NaCl–KCl
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作者 Shanshan Liu Shaolong Li +2 位作者 Chenhui Liu Jilin He Jianxun Song 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2023年第5期868-876,共9页
The effects of fluoride ions(F^(-)) on the electrochemical behavior and coordination properties of titanium ions(Ti^(n+)) were studied in this work,by combining electrochemical and mathematical analysis as well as spe... The effects of fluoride ions(F^(-)) on the electrochemical behavior and coordination properties of titanium ions(Ti^(n+)) were studied in this work,by combining electrochemical and mathematical analysis as well as spectral techniques.The α was taken as a factor to indicate the molar concentration ratio of F^(-) and Ti^(n+).Cyclic voltammetry(CV),square wave voltammetry(SWV),and open circuit potential method(OCP)were used to study the electrochemical behavior of titanium ions under conditions of various α,and in-situ sampler was used to prepare molten salt samples when α equal to 0.0,1.0,2.0,3.0,4.0,5.0,6.0,and 8.0.And then,samples were analyzed by X-ray photoelectron spectroscopy(XPS) and Raman spectroscopy.The results showed that F^(-) in molten salt can reduce the reduction steps of titanium ions and greatly affects the proportion of valence titanium ions which making the high-valence titanium content increased and more stable.Ti^(2+) cannot be detected in the molten salt when α is higher than 3.0 and finally transferred to titanium ions with higher valence state.Investigation revealed that the mechanism behind those phenomenon is the coordination compounds(TiCl_(j) F_(i)^(m-)) forming. 展开更多
关键词 molten salt sodium chloride–potassium chloride ratio of fluoride and titanium ions coordination mechanism
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Fluoride Ion Adsorption Effect and Adsorption Mechanism of Self-Supported Adsorbent Materials Based on Desulfurization Gypsum-Aluminate Cement
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作者 Xuefeng Song Minjuan Sun +1 位作者 Juan He Lei Wang 《Journal of Renewable Materials》 EI 2023年第12期4079-4095,共17页
The adsorption method has the advantages of low cost,high efficiency,and environmental friendliness in treating fluorinated wastewater,and the adsorbent material is the key.This study combines the inherent anion-excha... The adsorption method has the advantages of low cost,high efficiency,and environmental friendliness in treating fluorinated wastewater,and the adsorbent material is the key.This study combines the inherent anion-exchange adsorption properties of layered double hydroxides(LDHs).Self-supported porous adsorbent materials loaded with AFm and AFt were prepared from a composite cementitious system consisting of calcium aluminate cement(CAC)and flue gas desulfurization gypsum(FGDG)by chemical foaming technique.The mineral composition of the adsorbent material was characterized by X-ray diffraction(XRD)and Scanning electron microscopy(SEM).Through the static adsorption experiment,the adsorption effect of the mineral composition of the adsorbent on fluoride ions was deeply analyzed,and the adsorption mechanism was revealed.XRD and SEM showed that the main hydration phases of the composite cementitious system consisting of CAC and FGDG are AFm,AFt,AH_(3),and CaSO_(4)·2H_(2)O.FGDG accelerates the hydration process of CAC and inhibits the transformation of AFt to AFm.The AFt content increased,and the AFm content decreased or even disappeared as the amount of FGDG increased.Static adsorption experiment results showed that AFm and AFt in adsorbent materials could significantly enhance the adsorption of fluoride ions.The adsorption of F^(−)in aqueous solution by PAG tends more towards monolayer adsorption with a theoretical maximum capacity of 108.70 mg/g and is similar to the measured value of 112.77 mg/g. 展开更多
关键词 Flue gas desulfurization gypsum(FGDG) Calcium aluminate cement(CAC) AFM AFt fluoride ions adsorption
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可穿戴汗液传感器系统的研究进展
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作者 王正 孙莉 +3 位作者 李胜民 王会如 薛宁 刘春秀 《传感器与微系统》 CSCD 北大核心 2024年第5期1-5,共5页
在新材料和新技术广泛应用的背景下,柔性可穿戴汗液监测设备成为当前国内外研究的热点。目前,基于柔性可穿戴设备的汗液检测一般需要3个环节:汗液的取样、目标分析物的选择性检测以及系统的集成与控制。本文主要从汗液原位检测的优势出... 在新材料和新技术广泛应用的背景下,柔性可穿戴汗液监测设备成为当前国内外研究的热点。目前,基于柔性可穿戴设备的汗液检测一般需要3个环节:汗液的取样、目标分析物的选择性检测以及系统的集成与控制。本文主要从汗液原位检测的优势出发,总结了汗液的刺激和提取的方法,并对电化学类的汗液传感器的研究进展进行多角度的分析与评价。最后讨论了可穿戴的汗液传感器存在的不足,以及未来系统的发展方向。 展开更多
关键词 汗液检测 穿戴式设备 电化学传感器 离子电渗
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小尺寸Mn^(4+) 掺杂氟化物制备方法的研究进展
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作者 罗沛兰 罗志怀 +3 位作者 周志军 陈哲 何雪龙 张文华 《南昌工程学院学报》 CAS 2024年第1期102-106,共5页
Mn^(4+)掺杂氟化物荧光材料展现出众多优势,包括无毒、蓝光激发、超窄发射谱带、高发光效率、符合Rec.2020标准的发射波长、无重吸收以及优良的热稳定性。这些特点使其成为下一代Mini/Micro-LED显示技术的理想红光介质材料。然而,要应用... Mn^(4+)掺杂氟化物荧光材料展现出众多优势,包括无毒、蓝光激发、超窄发射谱带、高发光效率、符合Rec.2020标准的发射波长、无重吸收以及优良的热稳定性。这些特点使其成为下一代Mini/Micro-LED显示技术的理想红光介质材料。然而,要应用于Mini/Micro-LED,需要小尺寸的氟化物。因此,本文从制备方法入手,深入探讨了国内外小尺寸Mn^(4+)掺杂氟化物的研究现状。在此基础上,总结并提出当前小尺寸Mn^(4+)掺杂氟化物面临的关键问题,旨在为研发高效优质的小尺寸Mn^(4+)掺杂氟化物提供参考。 展开更多
关键词 Mn^(4+) Micro-LED 红色荧光粉 氟化物
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折叠结构的PVDF/BTO复合薄膜压电纳米发电机的制备及性能研究
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作者 张昌松 王向阳 +1 位作者 魏立柱 王如鹏 《材料导报》 EI CAS CSCD 北大核心 2024年第6期234-239,共6页
为提高聚偏氟乙烯(PVDF)的压电输出性能,将钛酸钡(BTO)纳米颗粒引入到PVDF溶液中,使用流延法制备PVDF/BTO复合压电薄膜,采用高温拉伸与电极化工艺处理复合薄膜。使用扫描电子显微镜、X射线衍射仪、傅里叶变换红外光谱仪、差示扫描量热... 为提高聚偏氟乙烯(PVDF)的压电输出性能,将钛酸钡(BTO)纳米颗粒引入到PVDF溶液中,使用流延法制备PVDF/BTO复合压电薄膜,采用高温拉伸与电极化工艺处理复合薄膜。使用扫描电子显微镜、X射线衍射仪、傅里叶变换红外光谱仪、差示扫描量热仪和准静态压电常数测试仪对复合薄膜的形貌和压电性能进行表征,探究BTO含量对PVDF/BTO复合薄膜的影响,研究BTO诱导PVDF链条偶极子重新排列形成β晶型的机理。结果表明,当BTO含量为10%(质量分数)时,PVDF/BTO复合薄膜的晶体结构中β晶型的含量最多,压电性能最强。最后设计了不同层数的折叠结构并组装制成压电纳米发电机(PENG),发现折叠层数越多,PENG的最大输出电压越高。 展开更多
关键词 聚偏氟乙烯 钛酸钡 压电纳米发电机 压电性能
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罗汉果籽吸附氟离子效果的不同预测模型研究
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作者 邓忠惠 谢微 《食品安全质量检测学报》 CAS 2024年第6期246-255,共10页
目的建立不同罗汉果籽吸附氟离子预测模型。方法以吸附量为评价指标,筛选影响吸附效果的因素。在单因素的基础上,通过响应面法(response surface methodology,RSM)优化吸附温度、接触时间、吸附剂投加量、氟离子初始质量浓度和溶液pH。... 目的建立不同罗汉果籽吸附氟离子预测模型。方法以吸附量为评价指标,筛选影响吸附效果的因素。在单因素的基础上,通过响应面法(response surface methodology,RSM)优化吸附温度、接触时间、吸附剂投加量、氟离子初始质量浓度和溶液pH。以吸附温度、接触时间、吸附剂投加量、氟离子初始质量浓度和溶液pH作为输入参数构建基于反向传播人工神经网络(back propagation artificial neural network,BP-ANN)的吸附量预测模型。根据模型在预测集上的表现确定具体的输入参数,将优化隐含层神经元数的BP-ANN与其他学习模型[遗传算法(genetic algorithm,GA)]优化的模型对比。结果通过两种模型的决定系数(coefficient of determination,R^(2))、平均绝对误差(mean absolute error,MAE)、均方误差(mean square error,MSE)、均方根误差(root mean square error,RMSE)、平均绝对百分比误差(mean absolute percentage error,MAPE)值比较,得出GA-BP-ANN预测模型(R^(2)=0.92594)的预测效果较优于BP-ANN(R^(2)=0.88498)。结论相较于BP-ANN预测模型,经过优化后的GA-BP-ANN预测模型对吸附量的预测精度更高。GA-BP-ANN预测模型可为罗汉果籽吸附氟离子效果提供技术参考,去除水中氟离子效果较好。 展开更多
关键词 罗汉果籽 反向传播人工神经网络 遗传算法 氟离子 预测模型 响应面
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土壤环境氟化物测定中的离子选择电极分析方法
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作者 徐伟 王桃源 +3 位作者 高基景 赵剑 李殿春 秦超 《科学技术创新》 2024年第3期40-43,共4页
本文使用离子选择电极法测定土壤样品中的氟化物。为提高测定结果的精确性,测定实验中需要使用总离子强度调节缓冲液。选取TISAB1和TISAB2两种常用缓冲液进行对比实验,结果表明TISAB1缓冲液的3次测定结果均在保证值规定范围内,可以更好... 本文使用离子选择电极法测定土壤样品中的氟化物。为提高测定结果的精确性,测定实验中需要使用总离子强度调节缓冲液。选取TISAB1和TISAB2两种常用缓冲液进行对比实验,结果表明TISAB1缓冲液的3次测定结果均在保证值规定范围内,可以更好地满足氟化物测定实验中提高测定精度的需要。金属离子干扰实验表明,在Al^(3+)浓度不超过10 mg/L、Fe^(3+)浓度不超过50 Mg/L、Ca^(2+)浓度不超过100 mg/L的情况下,3种金属离子不会对氟化物测定结果产生干扰。土壤水溶态氟化物的检出限为2.1μg,土壤全态氟化物的检出限为2.2μg,可以满足土壤环境氟化物测定要求。 展开更多
关键词 氟化物测定实验 离子选择电极分析法 校准曲线
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小麦粉加工车间硫酰氟整体熏蒸杀虫效果评估
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作者 王智颖 王殿轩 +11 位作者 郭超 赖世椿 劳传忠 何梦婷 李丹青 王双雄 林乾 刘子立 王丽娜 冼庆 张小松 黄敏鹏 《中国粮油学报》 CAS CSCD 北大核心 2024年第2期25-30,共6页
研究了我国华南地区某小麦粉加工车间B区、C区,长为108 m,宽为25 m,高为35.2 m,总体积为95040 m^(3),有效熏蒸体积为53842 m^(3)的空间,采用硫酰氟剂量为40 g/m^(3)、密闭时间为48 h的整体性结构熏蒸。在不补充硫酰氟熏蒸剂的条件下,熏... 研究了我国华南地区某小麦粉加工车间B区、C区,长为108 m,宽为25 m,高为35.2 m,总体积为95040 m^(3),有效熏蒸体积为53842 m^(3)的空间,采用硫酰氟剂量为40 g/m^(3)、密闭时间为48 h的整体性结构熏蒸。在不补充硫酰氟熏蒸剂的条件下,熏蒸过程浓度随时间变化的规律,建立了熏蒸剂的日损失率L d和浓度半数衰减时间HLT,分析了各楼层硫酰氟浓度变化规律和熏蒸剂泄漏程度,评估了杀虫效果。熏蒸剂的日损失率符合模型:L_(d)=100×(1-e^(-b))(e为自然常数;b为衰减常数),浓度半数衰减时间HLT符合模型:HLT=ln^(2)/b。熏蒸剂日损失率的变化随着衰减常数的增大而增大,浓度半数衰减时间HLT的变化随着衰减常数的增大而减小。单次熏蒸时衰减常数为固定值,熏蒸剂日损失率、浓度半数衰减时间HLT为恒定变化。经模型评估,6楼~8楼的日损失率L_(d)和半数衰减时间介于56.7%~71.3%和0.56~0.83 d。3、4楼区域损失率L_(d)和半数衰减时间介于85.0%~92.6%和0.27~0.37 d;除8楼硫酰氟熏蒸剂浓度半数衰减时间HLT超过15 h,其余楼层均未超过15 h。熏蒸后22 d,取样检测发现小麦粉加工车间设备和管道中均发现赤拟谷盗幼虫活虫。采用硫酰氟进行建筑物结构40 g/m^(3)剂量、密闭时间48 h方式熏蒸,可将车间空间区域害虫各虫态以及管道和设备中成虫杀死,存在于设备和管道内的卵可能存活且发育成新幼虫或蛹。 展开更多
关键词 小麦粉车间 结构熏蒸 硫酰氟
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基于两级强化化学混凝沉淀法的低浓度含氟工业废水深度除氟研究
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作者 李金印 杨曦 +3 位作者 黄维巍 罗本福 陈强 黄以强 《水处理技术》 CAS CSCD 北大核心 2024年第2期121-124,共4页
针对低浓度含氟工业废水处理厂深度除氟至1.5 mg/L的需求,充分利用CaCl_(2)和废水处理厂内PAC、PAM等常规混凝剂及投加设施,考察在废水处理工艺流程的前端与尾端分别采用化学沉淀法除氟、一级/两级化学絮凝沉淀法除氟的效能。结果表明:... 针对低浓度含氟工业废水处理厂深度除氟至1.5 mg/L的需求,充分利用CaCl_(2)和废水处理厂内PAC、PAM等常规混凝剂及投加设施,考察在废水处理工艺流程的前端与尾端分别采用化学沉淀法除氟、一级/两级化学絮凝沉淀法除氟的效能。结果表明:化学沉淀法不适合处理低浓度含氟废水,投加200 mg/LCaCl_(2)仅能将[F-]由10 mg/L降至6.8 mg/L;一级化学混凝沉淀法采用120 mg/LCaCl_(2)+600 mg/L PAC+3 mg/L PAM组合投加,能将[F-]由10 mg/L降至3.8 mg/L;两级化学混凝沉淀工艺的除氟效率明显优于一级,将120 mg/L CaCl_(2)+600 mg/L PAC+3 mg/L PAM按1:1分两段投加时,能将[F-]由10 mg/L降至1.38 mg/L,可达到深度除氟的目标浓度1.5 mg/L。研究可为含氟工业废水处理项目提供深度除氟工艺设计参考。 展开更多
关键词 工业废水 氟化物 深度除氟 化学混凝沉淀
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聚偏氟乙烯基柔性压电传感器的研究进展
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作者 齐芳汐 徐思懿 +1 位作者 刘皓 李晓志 《化工新型材料》 CAS CSCD 北大核心 2024年第2期43-47,52,共6页
随着智能化时代的到来,柔性压电传感器作为传感器的主要类型之一,是感知信息、发出信号的关键,柔性压电材料的选择与传感器的性能参数密切相关。与传统的压电材料相比,聚偏氟乙烯(PVDF)在柔性、可拉伸性、化学稳定性、机电转换、易用性... 随着智能化时代的到来,柔性压电传感器作为传感器的主要类型之一,是感知信息、发出信号的关键,柔性压电材料的选择与传感器的性能参数密切相关。与传统的压电材料相比,聚偏氟乙烯(PVDF)在柔性、可拉伸性、化学稳定性、机电转换、易用性和声传播阻抗方面具有显著优势,因此PVDF成为研究的热点。详细介绍PVDF柔性压电式传感器的工作原理,全面介绍了不同类型基于PVDF的柔性压电式传感器,分析了其优缺点及发展前景,为高性能、多功能的柔性PVDF压电传感器提供一些启示。 展开更多
关键词 聚偏氟乙烯 压电传感器 柔性
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钙质添加剂作用下废阴极炭还原红土镍矿脱毒机理研究
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作者 惠舜尧 李博 +2 位作者 魏永刚 周世伟 王勋 《中国有色冶金》 CAS 北大核心 2024年第2期100-106,共7页
废阴极炭是铝电解工业生产过程中产生的固体废弃物,数量庞大,目前主要处理方法是堆存。废阴极炭成分主要是碳(60%~70%),还含有部分Na_(3) AlF_(6)、NaF、CaF_(2)及NaCN等,其中的氰化物和氟化物会对环境造成严重危害,属于危险废弃物。现... 废阴极炭是铝电解工业生产过程中产生的固体废弃物,数量庞大,目前主要处理方法是堆存。废阴极炭成分主要是碳(60%~70%),还含有部分Na_(3) AlF_(6)、NaF、CaF_(2)及NaCN等,其中的氰化物和氟化物会对环境造成严重危害,属于危险废弃物。现已有利用废阴极炭替代碳质还原剂进行炼铁的研究,用来还原红土镍矿的相关研究还没有发现。本文以云南元江红土镍矿为原料,废阴极炭为还原剂,CaCO_(3)为添加剂,对废阴极炭还原红土镍矿的还原效果及固氟效果进行试验研究。试验结果表明:在废阴极炭的添加量14%、还原温度1250℃、还原时间75 min、CaCO_(3)添加量8%的较佳条件下,还原焙烧产物镍和铁品位分别为5.82%和66.23%,镍回收率为94.04%;固氟率为94.9%,此时毒性浸出溶液中F-浓度为30 mg·L^(-1),远小于100 mg·L^(-1)的排放要求;还原焙烧条件下,废阴极炭中的CN-生成CO_(2)和N_(2),F-以CaF_(2)形式留在焙烧矿中,且可作为助熔剂降低镍铁合金熔点,有利于后期焙烧矿的处理。本文研究为废阴极炭的无害化处理提供了一个新思路。 展开更多
关键词 废阴极炭 红土镍矿 氟化物 氰化物 CaCO_(3) CaF_(2) 固氟率 危险废弃物
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黄河流域典型煤矿矿井水协同除浊除氟药剂的制备及应用
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作者 李强 章丽萍 +5 位作者 姚瑞涵 赵晓曦 崔行健 陈加乐 何绪文 马泽钰 《环境工程技术学报》 CAS CSCD 北大核心 2024年第1期248-257,共10页
黄河流域是我国煤炭潜力最大的区域,矿井水涌水量大但资源利用率不高,尤其在干旱和半干旱的高氟地区,矿井水中氟离子超标已成为制约提高矿井水资源利用率的主要因素之一。采用正交试验筛选出高效除氟药剂的5种组分[聚合氯化铝(PAC)、聚... 黄河流域是我国煤炭潜力最大的区域,矿井水涌水量大但资源利用率不高,尤其在干旱和半干旱的高氟地区,矿井水中氟离子超标已成为制约提高矿井水资源利用率的主要因素之一。采用正交试验筛选出高效除氟药剂的5种组分[聚合氯化铝(PAC)、聚合硅酸铝、硝酸镁、聚合氯化铁、羧甲基淀粉钠],采用单因素试验探讨了不同制备条件和反应条件对除氟效果的影响,并通过X射线能谱分析(EDS)、X射线光电子能谱(XPS)和傅里叶变换红外光谱(FT-IR)表征探讨了除氟机理。结果表明:在金属总量M/Si、Al/Mg、Al/Fe的摩尔比分别为43、40、40条件下研制的除氟药剂,均可将含氟废水中氟离子浓度由20mg/L降至1.0 mg/L以下,达到GB 3838—2002《地表水环境质量标准》Ⅲ类中氟化物浓度限值要求(1.0 mg/L);当除氟药剂投加量为1.25 g/L,初始p H为2~12,悬浮物浓度为100~2000 mg/L,聚丙烯酰胺(PAM)投加量为0.4 mg/L时,处理后上清液剩余氟离子浓度均可控制在1.0 mg/L以下,氟离子去除率达95%以上;除氟药剂中Al、Si元素起到重要的除氟作用,主要通过形成Al—F—Al等金属络合物沉淀被去除;将除氟药剂应用于黄河流域某煤矿含氟矿井水的处理,在除氟药剂投加量为400 mg/L、PAM投加量为0.2 mg/L时,氟离子浓度从5.6 mg/L降至0.85 mg/L,并协同将矿井水浊度从500 NTU降至4.59 NTU,吨水处理药剂成本为1.602元。该除氟药剂在黄河流域含氟矿井水处理中具有较好的应用潜力。 展开更多
关键词 除氟药剂 铝盐 硅盐 含氟矿井水 除氟机理 协同除浊除氟
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