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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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A two-step method to detect broadcast ephemeris unavailable periods caused by BeiDou satellite orbital maneuvers
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作者 Jingjing Wang Chao Zhou Zhixuan Sun 《Geodesy and Geodynamics》 EI CSCD 2023年第5期456-466,共11页
The space constellation of the BeiDou navigation satellite system(BDS) is a hybrid constellation containing medium earth orbit(MEO) satellites, geostationary earth orbit(GEO) satellites, and inclined geosynchronous or... The space constellation of the BeiDou navigation satellite system(BDS) is a hybrid constellation containing medium earth orbit(MEO) satellites, geostationary earth orbit(GEO) satellites, and inclined geosynchronous orbit(IGSO) satellites. Due to the geosynchronous characteristics of GEO and IGSO, GEO satellites and IGSO satellites often need to perform orbital maneuvers, which can affect the signal-inspace(SIS) availability performance of BeiDou satellites. A two-step detection method for BeiDou satellite orbital maneuvers has been proposed in this paper. The first step is to identify orbital maneuvers based on time series analysis of broadcast ephemeris, and the second step is to verify orbital maneuvers based on bidirectional orbit prediction. The two-step detection method was used to detect the orbital maneuvers of BeiDou satellites in 2019. Through the double guarantees of identification and verification,the detection accuracy of BeiDou satellite orbital maneuvers has been effectively improved. And the orbital maneuver detection results are continued to be used to assess the SIS availability of BeiDou satellites. The results show that the availability loss of GEO satellite orbital maneuvers is about 0.45%-1.07%, and the availability loss of IGSO satellite orbital maneuvers is about 0.12%-0.19%. 展开更多
关键词 BDS Orbital maneuver Signal-in-space AVAILABILITY Time series analysis
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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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Assessment of Super Absorbent Polymer (SAP) on Plant Available Water (PAW) in Dry Lands
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作者 Vincent Ng’eno Christian Omuto +1 位作者 Duncan Mbuge Vitalis Too 《Engineering(科研)》 CAS 2023年第2期90-105,共16页
One of the ways of overcoming the cost of irrigation is through in-situ water harvesting at the plant roots. Super absorbent polymer (SAP) can facilitate water harvesting at the plant roots. This study attempted to as... One of the ways of overcoming the cost of irrigation is through in-situ water harvesting at the plant roots. Super absorbent polymer (SAP) can facilitate water harvesting at the plant roots. This study attempted to assess the effect of SAP on plant available water (PAW) of different soils. In this study, SAP was sequentially added at the rate of 0.2%, 0.3% and 0.5% of the soil weight and its impact assessed in clay, sandy clay and sandy loam soils. The moisture retention characteristics of the original and SAP treated soils were studied using soil water retention curves (SWRC) and results modelled using Gardner model. PAW was estimated from SWRC as the difference between moisture content at 1.5 and 3 bar in all soils. The difference in PAW between original and treated soils was assessed at 5% level of significance. The WRC of all the samples was adequately found to be described by the Gardner model (Coefficient of determination R<sup>2</sup> ≥ 98% and residual standard error (RSE) ≤ 0.04). SWRC changed with increase in SAP percentage in clay, sandy clay and sandy loam soils. Clay had a higher change in water retention then sandy clay and lastly sandy loam. Plant available water content (PAW) in all soils increased. In clay soil it increased with increase in SAP from 0.3291 at zero SAP to 0.6223 at 0.5% SAP. Sandy clay soil increased in PAW from 0.2721 at zero SAP to 0.5335 at 0.5% SAP and Sandy loam soils from 0.1691 at zero SAP to 0.3461 at 0.5% SAP. Hence, from the study SAP can be used to conserve irrigation water in the plant roots and therefore reducing the cost since PAW has been increased. 展开更多
关键词 Plant available Water (PAW) Soil Water Retention Curve (SWRC) SOIL Super Absorbent Polymer (SAP)
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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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Efficiency of locally available filter media on fluoride and phosphate removal for household water treatment system
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作者 Mekonnen Birhane Alebel Abebe +1 位作者 Esayas Alemayehu Embialle Mengistie 《Chinese Journal of Population,Resources and Environment》 2014年第2期110-115,共6页
Since conventional water treatment is not affordable in developing countries,looking for locally available and alternative treatment options is mandatory.Removal of fluoride and phosphate can be achieved by designing ... Since conventional water treatment is not affordable in developing countries,looking for locally available and alternative treatment options is mandatory.Removal of fluoride and phosphate can be achieved by designing appropriate filtration media from different materials such as sand,calcined clay,pumice,scoria and bone char.This study was designed to determine the removal efficiency of these locally available filter media with respect to detention time and pH.The filtration apparatuses(tank)were filled separately with stone,gravel with grain size 0.6-4.75 mm and 40 cm deep,sand(ES=0.15-0.35 mm and UC=1.5-3),calcined clay,pumice,scoria and bone char with grain size 0.25-0.5 inch.Water samples were prepared using glass bottles with fluoride concentrations of 6 and 8 mg/l and phosphate concentration of 4 mg/1.Laboratory analysis was carried out before and after filtration to determine the removal efficiency of each medium.It was found that the highest removal of fluoride was achieved by bone char(89.65%),followed by pumice(82.4%).However,bone char has rather increased the concentration of phosphate by 63.8%.Sand was the most efficient media to remove phosphate,managing to remove by 70%.Therefore,it is an attractive option to use these locally available,environmental friendly and appropriate technologies for efficient removal of both fluorine and phosphate at the household or community water treatment level. 展开更多
关键词 CONVENTIONAL water treatment methods CHEMICAL impu
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钝化剂对土壤有效态镉、铅及其在三叶青块根中累积的影响
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作者 王贤波 阮松林 +3 位作者 朱霄岚 钱丽华 童朝明 严建立 《生态与农村环境学报》 CAS CSCD 北大核心 2024年第4期565-571,共7页
采用温室大棚内袋栽培的方法,研究了有机肥、生物炭、海泡石及生物炭和海泡石的混合物(质量比为1∶1)对重金属污染土壤的pH值、镉和铅有效态含量的影响,并分析了三叶青块根中镉、铅含量的变化。结果表明,不同钝化剂处理均能不同程度提... 采用温室大棚内袋栽培的方法,研究了有机肥、生物炭、海泡石及生物炭和海泡石的混合物(质量比为1∶1)对重金属污染土壤的pH值、镉和铅有效态含量的影响,并分析了三叶青块根中镉、铅含量的变化。结果表明,不同钝化剂处理均能不同程度提高土壤pH值,降低土壤中有效态镉、铅含量,降低三叶青块根中镉、铅含量。与对照相比,添加w为1%~5%的钝化剂可使土壤pH值升高0.05~1.03,土壤中有效态镉、铅含量分别降低2.95%~42.46%和6.21%~55.77%,三叶青块根中镉、铅含量分别降低15.61%~48.33%和8.18%~61.67%,其中以添加5%的生物炭和海泡石的混合物对土壤的pH值、镉和铅有效态含量及三叶青块根中镉、铅含量的影响最大,说明在土壤-三叶青体系的重金属钝化修复中,添加w为5%的混合钝化剂(生物炭与海泡石质量比为1∶1)效果最佳。 展开更多
关键词 钝化剂 三叶青 有效态镉 有效态铅
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两种调理剂对水稻土pH值和重金属吸收的影响
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作者 张璐 文石林 +2 位作者 上官方钦 秦松 张会民 《中国土壤与肥料》 CAS CSCD 北大核心 2024年第1期79-85,共7页
探明两种调理剂对近中性水稻土pH值、重金属有效性和水稻吸收的影响,及其与土壤性质的关系,为调理剂的科学开发及合理施用提供科学依据。选取水淬高炉渣源调理剂(T1)及其腐殖质改性调理剂(T2),分别设置2个施用量梯度(T1L、T1H和T2L、T2... 探明两种调理剂对近中性水稻土pH值、重金属有效性和水稻吸收的影响,及其与土壤性质的关系,为调理剂的科学开发及合理施用提供科学依据。选取水淬高炉渣源调理剂(T1)及其腐殖质改性调理剂(T2),分别设置2个施用量梯度(T1L、T1H和T2L、T2H),通过盆栽试验分析了两种调理剂及不同用量对土壤pH值、有效硅、镉、锌、铜含量,以及水稻籽粒和秸秆镉、锌、铜含量的影响。与对照(CK)相比,2个施用T1调理剂处理土壤pH值分别升高0.64和1.02,2个施用T2调理剂处理pH值分别升高0.27和0.56(P<0.05),土壤pH值随调理剂施用量的增加而增加。T1L和T1H处理土壤有效硅含量与CK相比分别提高5和22倍(P<0.05),且显著高于施用T2调理剂处理。与CK相比,T1H处理土壤有效镉、锌、铜含量分别降低37.21%、45.57%和95.30%(P<0.05);T2L和T2H处理土壤有效锌含量分别降低31.55%和30.67%,有效铜含量分别降低6.53%和19.32%(P<0.05)。与CK相比,T1L和T1H水稻籽粒锌含量分别降低23.44%和18.12%(P<0.05);施用T2调理剂后,籽粒和秸秆锌、铜含量无显著变化。土壤pH值、有效硅含量与土壤有效镉、锌、铜含量呈显著或极显著负相关,土壤有效硅含量与籽粒、秸秆镉含量呈显著负相关。研究表明,在近中性水稻土上施用富含硅的强碱性调理剂,既有利于提高土壤p H值和有效硅含量,又可有效降低土壤重金属有效性及其水稻吸收量。 展开更多
关键词 调理剂 水稻土 PH值 有效硅 重金属
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基于劝导式思维的地铁车厢空间设计策略
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作者 何灿群 刘珂 《包装工程》 CAS 北大核心 2024年第6期299-307,共9页
目的从劝导式思维出发,通过设计介入寻求合理的地铁车厢布局,借助行为导向来规避公共环境下的不良行为习惯。方法首先,梳理劝导设计和可供性作用机制的构成内涵,归纳出劝导设计与可供性的结合特性;其次,利用劝导式设计思维,探讨地铁乘... 目的从劝导式思维出发,通过设计介入寻求合理的地铁车厢布局,借助行为导向来规避公共环境下的不良行为习惯。方法首先,梳理劝导设计和可供性作用机制的构成内涵,归纳出劝导设计与可供性的结合特性;其次,利用劝导式设计思维,探讨地铁乘客行为及其发生机制,寻找地铁车厢空间设计的劝导机会点;最后,通过调研和实地观察,找出造成车厢人流分布不均的主要因素。结果通过剖析车厢空间设计三要素,结合FBM模型和可供性作用机制,构建地铁车厢空间设计框架和劝导式设计模型,最终提出以乘客行为为中心的地铁车厢劝导式设计策略,即利用不同功能件的差异化舒适度调整区域吸引率;利用系统内部元素透明性进行路径劝导;利用视觉传达系统的符号暗示性实现行为触发。结论在车厢空间设计中引入劝导式思维,可有效缓解车厢人流分布不均的情况,为地铁空间设计改良提供了新思路。 展开更多
关键词 劝导设计 可供性 FBM模型 地铁车厢 乘客行为
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基于多项式混沌展开的电力系统概率可用输电能力评估
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作者 姜涛 李春晖 +2 位作者 张儒峰 陈厚合 李国庆 《中国电机工程学报》 EI CSCD 北大核心 2024年第2期489-503,I0005,共16页
大规模开发和利用风能有利于实现电力系统清洁低碳转型,是实现国家“碳达峰、碳中和”战略目标的重要技术手段,但风电出力的强不确定性对电力系统区域间可用输电能力(available transfer capability,ATC)评估带来了全新的挑战,传统用于... 大规模开发和利用风能有利于实现电力系统清洁低碳转型,是实现国家“碳达峰、碳中和”战略目标的重要技术手段,但风电出力的强不确定性对电力系统区域间可用输电能力(available transfer capability,ATC)评估带来了全新的挑战,传统用于求解计及风电出力不确定性的概率ATC评估模型在计算效率和计算精度方面均存在一定的不足。为此,该文提出一种基于多项式混沌展开(polynomialchaos expansion,PCE)的电力系统概率ATC评估方法,该方法首先构建基于机会约束的电力系统概率ATC评估模型;然后,根据风电出力预测误差的概率分布特征,选择对应的正交多项式为基函数以近似风电出力预测误差及电力网络中与之相关联的其他随机变量;进一步,借助Galerkin投影和基于一阶矩、二阶矩的机会约束转化方法,将所构建的机会约束模型的概率约束转化为确定性约束,实现基于机会约束的概率ATC评估模型向易于求解的确定性优化模型的转化;进而,将概率ATC评估模型的求解问题转化为ATC的最优多项式逼近系数的求解问题,根据求得的最优多项式逼近系数和选取的基函数计算电力系统ATC的概率分布特征;最后,通过修改后的PJM-5节点测试系统、IEEE-118节点测试系统及吉林西部电网实际算例验证了所提基于多项式混沌展开的电力系统概率ATC评估方法的准确性和有效性。 展开更多
关键词 可用输电能力 多项式混沌展开 概率模型 机会约束 不确定性分析
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秸秆还田及磷细菌对土壤微生态及豆角产量的影响
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作者 孙翠焕 郭玲玲 +3 位作者 陈丽媛 陈杰 赵博伦 王智学 《微生物学杂志》 CAS CSCD 北大核心 2024年第1期84-89,共6页
为研究秸秆还田及外源添加磷细菌对土壤微生态及农作物产量的影响,以玉米秸秆和具有解磷能力的恶臭假单胞菌(Pseudomonas putida)为研究对象,通过在设施大棚中栽培豆角,研究了不同处理对土壤和豆角根际解磷类细菌数量、土壤有效磷含量... 为研究秸秆还田及外源添加磷细菌对土壤微生态及农作物产量的影响,以玉米秸秆和具有解磷能力的恶臭假单胞菌(Pseudomonas putida)为研究对象,通过在设施大棚中栽培豆角,研究了不同处理对土壤和豆角根际解磷类细菌数量、土壤有效磷含量、解磷能力以及豆角产量的影响。研究结果显示,玉米秸秆(处理1)、玉米秸秆+磷细菌(处理2)、磷细菌(处理3)三个处理的土壤中解磷类细菌数量有较大差异,其中处理2数量最高,比对照区高31.89%,差异显著(P<0.05);三个处理均能明显增加豆角根际解磷类细菌数量,差异达到显著水平(P<0.05),其中处理2最高,比对照高86.30%,差异达到极显著水平(P<0.01);三个处理土壤有效磷含量均明显高于对照,差异显著(P<0.05),其中处理2最高,比对照高9.8%;三个处理土壤解磷能力差异较大,处理1和处理2可明显提高土壤解磷能力,分别比对照高50.2%和65.2%,差异极显著(P<0.01);三个处理对豆角均有增产效果,但差异较大,处理2比处理1、处理3产量增加明显,分别增产6.8%、10.3%,差异达到显著水平(P<0.05);处理2比对照增产15.5%,差异达极显著水平(P<0.01)。研究结果表明,玉米秸秆配合外源添加磷细菌恶臭假单胞菌,较单一使用玉米秸秆和磷细菌可显著增加土壤及豆角根际解磷类细菌数量、增加土壤有效磷含量、提高土壤解磷能力、促进豆角增产,说明玉米秸秆和磷细菌有相互促进作用。本研究可为秸秆还田和磷细菌田间施用方法的研究和应用提供参考。 展开更多
关键词 秸秆 磷细菌 恶臭假单胞菌(Pseudomonas putida) 土壤微生态 有效磷 解磷能力 豆角产量
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施用有机肥和调理剂对田间土壤重金属有效态变化影响及水稻降镉效应研究
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作者 黄奇娜 党洪阳 +4 位作者 张燕 李春福 林光号 邵国胜 季卫东 《中国稻米》 北大核心 2024年第2期37-42,共6页
以春优84和中浙优8号为试验材料,在浙江衢州典型镉污染农田开展大田小区试验,研究有机肥与土壤调理剂施用对土壤酸碱度(pH)、土壤重金属元素(Cd、Fe、Mn、Zn等)有效态、水稻植株(稻草、籽粒)重金属元素积累量的影响,并探究了施用有机肥... 以春优84和中浙优8号为试验材料,在浙江衢州典型镉污染农田开展大田小区试验,研究有机肥与土壤调理剂施用对土壤酸碱度(pH)、土壤重金属元素(Cd、Fe、Mn、Zn等)有效态、水稻植株(稻草、籽粒)重金属元素积累量的影响,并探究了施用有机肥与土壤调理剂降低籽粒Cd积累的机理。结果表明,单施有机肥(1.5 t/hm^(2))对土壤金属元素有效态、稻草和籽粒重金属元素含量无显著影响;在有机肥(1.5 t/hm^(2))+土壤调理剂(2.7 t/hm^(2))联合施用处理后,土壤pH增加9.48%,土壤重金属有效态含量和植株中重金属元素含量均呈下降趋势。其中,土壤有效态Cd含量降低16.41%(DTPA提取)和48.96%(CaCl_(2)提取),稻草和籽粒Cd含量分别降低40.04%和48.22%。逐步回归和通径分析表明,稻草Cd含量、土壤Cd有效态与籽粒Cd含量显著相关。由此可见,施用土壤调理剂通过提升土壤pH,从而降低土壤重金属元素有效态含量,其中有效态Cd含量下降尤为显著,以此调控水稻稻草和籽粒中的Cd积累。说明供试土壤调理剂可以在酸性土地区推广应用,具有提升酸性土壤pH、降低稻米Cd富集的效果。 展开更多
关键词 水稻 有机肥 土壤调理剂 重金属 有效态
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想象可供性视角下的“量化自我”研究——以运动应用程序Keep为例
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作者 唐忠会 王超 《太原学院学报(社会科学版)》 2024年第1期104-114,共11页
在量化自我的数据生成过程中,以Keep为代表的自我追踪技术有着“自我可读写”这一基本可供性,但用户个体对自我追踪技术的使用、对自我数据的解释偏离了技术的设计愿景,使想象可供性得以生发。一方面用户对数据进行再语境化,这丰富了主... 在量化自我的数据生成过程中,以Keep为代表的自我追踪技术有着“自我可读写”这一基本可供性,但用户个体对自我追踪技术的使用、对自我数据的解释偏离了技术的设计愿景,使想象可供性得以生发。一方面用户对数据进行再语境化,这丰富了主体生命叙事;另一方面用户借时空定位、衡量比较为数据赋予意义,进行自我确认。从对抗功绩社会的角度而言,生命叙事可供性与自我确认可供性体现了技术意义上的“世俗化”效果。 展开更多
关键词 量化自我 可供性 技术想象 功绩社会 Keep APP
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