Technologies for reducing corn leaf burn caused by foliar spray of urea-ammonium nitrate (UAN) during the early growing season are limited. A field experiment was carried out to evaluate the effects of humic acid on c...Technologies for reducing corn leaf burn caused by foliar spray of urea-ammonium nitrate (UAN) during the early growing season are limited. A field experiment was carried out to evaluate the effects of humic acid on corn leaf burn caused by foliar spray of undiluted UAN solution on corn canopy at Jackson, TN in 2018. Thirteen treatments of the mixtures of UAN and humic acid were evaluated at V6 of corn with different UAN application rates and different UAN/humic acid ratios. Leaf burn during 1 2, 3, 4, 5, 6, 7, and 14 days after UAN foliar spray significantly differed between with or without humic acid addition. The addition of humic acid to UAN significantly reduced leaf burn at each UAN application rate (15, 25, and 35 gal/acre). The reduction of leaf burn was enhanced as the humic acid/UAN ratio went up from 10% to 30%. Leaf burn due to foliar application of UAN became severer with higher UAN rates. The linear regression of leaf burn 14 days after application with humic acid/UAN ratio was highly significant and negative. However, the linear regression of leaf burn 14 days after application with the UAN application rate was highly significant and positive. In conclusion, adding humic acid to foliar-applied UAN is beneficial for reducing corn leaf burn during the early growing season.展开更多
目的探讨并分析急性非ST段抬高心肌梗死(NSTEMI)患者经皮冠状动脉介入治疗(PCI)术后血清纤维蛋白原/白蛋白值(FAR)、γ-谷氨酰转肽酶(γ-GGT),N端脑钠肽前体(NT-proBNP)水平对预后的预测价值。方法回顾性分析2020年2月至2023年2月邯郸...目的探讨并分析急性非ST段抬高心肌梗死(NSTEMI)患者经皮冠状动脉介入治疗(PCI)术后血清纤维蛋白原/白蛋白值(FAR)、γ-谷氨酰转肽酶(γ-GGT),N端脑钠肽前体(NT-proBNP)水平对预后的预测价值。方法回顾性分析2020年2月至2023年2月邯郸市中心医院收治的实施PCI的急性NSTEMI患者93例,根据术后30 d主要不良心血管事件(MACE)发生情况将其分为MACE组(n=21)及无MACE组(n=72)。比较术前、术后30 d MACE组及无MACE组血清FAR、γ-GGT、NT-proBNP水平,采用单因素和多因素Logistic回归分析对影响急性NSTEMI患者术后30 d MACE发生的危险因素进行分析,采用受试者操作特征(ROC)曲线分析血清FAR、γ-GGT、NT-proBNP水平对急性NSTEMI患者术后MACE发生的预测价值。结果MACE组年龄为(65.37±3.46)岁;Killip分级为Ⅰ级2例,Ⅱ级3例,Ⅲ级5例,Ⅳ级11例;病变支数双支5例,3支16例;术后30 d血清FAR、γ-GGT、NT-proBNP水平分别为(2.87±0.55)%、(53.27±3.06)U/L、(914.35±84.35)ng/mL。无MACE组的年龄为(58.71±2.86)岁;Killip分级为Ⅰ级32例,Ⅱ级27例,Ⅲ级7例,Ⅳ级6例;病变支数为双支53例,3支19例;术后30 d血清FAR、γ-GGT、NT-proBNP水平分别为(2.12±0.51)%、(44.33±3.35)U/L、(656.82±75.63)ng/mL。MACE组和无MACE组的年龄、Killip分级、病变支数及术后30 d血清FAR、γ-GGT、NT-proBNP水平比较,差异均有统计学意义(P<0.05),两组性别、吸烟史、高血压史、高血脂史、糖尿病史及术前1 d血清FAR、γ-GGT、NT-proBNP水平比较差异无统计学意义(P>0.05)。多因素Logistic回归分析结果显示,血清FAR、γ-GGT、NT-proBNP升高均为影响急性期NSTEMI患者术后MACE发生的独立危险因素(OR=3.074、2.686、3.340,P均<0.05)。ROC结果显示血清FAR、γ-GGT、NT-proBNP及其联合检测预测急性NSTEMI患者术后MACE发生的曲线下面积(AUC)分别为0.681、0.690、0.733和0.790,联合检测的AUC更高(P<0.05)。结论血清FAR、γ-GGT、NT-proBNP水平升高增加了急性NSTEMI患者PCI术后MACE的发生风险,三者联合检测对患者术后不良预后有一定预测价值。展开更多
The scarcity of wettability,insufficient active sites,and low surface area of graphite felt(GF)have long been suppressing the performance of vanadium redox flow batteries(VRFBs).Herein,an ultra-homogeneous multipledim...The scarcity of wettability,insufficient active sites,and low surface area of graphite felt(GF)have long been suppressing the performance of vanadium redox flow batteries(VRFBs).Herein,an ultra-homogeneous multipledimensioned defect,including nano-scale etching and atomic-scale N,O codoping,was used to modify GF by the molten salt system.NH_(4)Cl and KClO_(3) were added simultaneously to the system to obtain porous N/O co-doped electrode(GF/ON),where KClO_(3) was used to ultra-homogeneously etch,and O-functionalize electrode,and NH4Cl was used as N dopant,respectively.GF/ON presents better electrochemical catalysis for VO_(2)+/VO_(2)+ and V3+/V2+ reactions than only O-functionalized electrodes(GF/O)and GF.The enhanced electrochemical properties are attributed to an increase in active sites,surface area,and wettability,as well as the synergistic effect of N and O,which is also supported by the density functional theory calculations.Further,the cell using GF/ON shows higher discharge capacity,energy efficiency,and stability for cycling performance than the pristine cell at 140 mA cm^(−2) for 200 cycles.Moreover,the energy efficiency of the modified cell is increased by 9.7% from 55.2% for the pristine cell at 260 mA cm^(−2).Such an ultra-homogeneous etching with N and O co-doping through“boiling”molten salt medium provides an effective and practical application potential way to prepare superior electrodes for VRFB.展开更多
The incorporation of heteroatoms into carbon aerogels(CAs)can lead to structural distortions and changes in active sites due to their smaller size and electronegativity compared to pure carbon.However,the evolution of...The incorporation of heteroatoms into carbon aerogels(CAs)can lead to structural distortions and changes in active sites due to their smaller size and electronegativity compared to pure carbon.However,the evolution of the electronic structure from single-atom doping to heteroatom codoping in CAs has not yet been thoroughly investigated,and the impact of codoping on potassium ion(K+)storage and diffusion pathways as electrode material remains unclear.In this study,experimental and theoretical simulations were conducted to demonstrate that heteroatom codoping,composed of multiple heteroatoms(O/N/B)with different properties,has the potential to improve the electrical properties and stability of CAs compared to single-atom doping.Electronic states near the Fermi level have revealed that doping with O/N/B generates a greater number of active centers on adjacent carbon atoms than doping with O and O/N atoms.As a result of synergy with enhanced wetting ability(contact angle of 9.26°)derived from amino groups and hierarchical porous structure,ON-CA has the most optimized adsorption capacity(−1.62 eV)and diffusion barrier(0.12 eV)of K^(+).The optimal pathway of K^(+)in ON-CA is along the carbon ring with N or O doping.As K^(+)storage material for supercapacitors and ion batteries,it shows an outstanding specific capacity and capacitance,electrochemical stability,and rate performance.Especially,the assembled symmetrical K^(+)supercapacitor demonstrates an energy density of 51.8 Wh kg^(−1),an ultrahigh power density of 443Wkg^(−1),and outstanding cycling stability(maintaining 83.3%after 10,000 cycles in 1M KPF6 organic electrolyte).This research provides valuable insights into the design of highperformance potassium ion storage materials.展开更多
Ensuring a stable power output from renewable energy sources,such as wind and solar energy,depends on the development of large-scale and long-duration energy storage devices.Zinc–bromine fl ow batteries(ZBFBs)have em...Ensuring a stable power output from renewable energy sources,such as wind and solar energy,depends on the development of large-scale and long-duration energy storage devices.Zinc–bromine fl ow batteries(ZBFBs)have emerged as cost-eff ective and high-energy-density solutions,replacing expensive all-vanadium fl ow batteries.However,uneven Zn deposition during charging results in the formation of problematic Zn dendrites,leading to mass transport polarization and self-discharge.Stable Zn plating and stripping are essential for the successful operation of high-areal-capacity ZBFBs.In this study,we successfully synthesized nitrogen and oxygen co-doped functional carbon felt(NOCF4)electrode through the oxidative polymerization of dopamine,followed by calcination under ambient conditions.The NOCF4 electrode eff ectively facilitates effi cient“shuttle deposition”of Zn during charging,signifi cantly enhancing the areal capacity of the electrode.Remarkably,ZBFBs utilizing NOCF4 as the anode material exhibited stable cycling performance for 40 cycles(approximately 240 h)at an areal capacity of 60 mA h/cm^(2).Even at a high areal capacity of 130 mA h/cm^(2),an impressive energy effi ciency of 76.98%was achieved.These fi ndings provide a promising pathway for the development of high-areal-capacity ZBFBs for advanced energy storage systems.展开更多
文摘Technologies for reducing corn leaf burn caused by foliar spray of urea-ammonium nitrate (UAN) during the early growing season are limited. A field experiment was carried out to evaluate the effects of humic acid on corn leaf burn caused by foliar spray of undiluted UAN solution on corn canopy at Jackson, TN in 2018. Thirteen treatments of the mixtures of UAN and humic acid were evaluated at V6 of corn with different UAN application rates and different UAN/humic acid ratios. Leaf burn during 1 2, 3, 4, 5, 6, 7, and 14 days after UAN foliar spray significantly differed between with or without humic acid addition. The addition of humic acid to UAN significantly reduced leaf burn at each UAN application rate (15, 25, and 35 gal/acre). The reduction of leaf burn was enhanced as the humic acid/UAN ratio went up from 10% to 30%. Leaf burn due to foliar application of UAN became severer with higher UAN rates. The linear regression of leaf burn 14 days after application with humic acid/UAN ratio was highly significant and negative. However, the linear regression of leaf burn 14 days after application with the UAN application rate was highly significant and positive. In conclusion, adding humic acid to foliar-applied UAN is beneficial for reducing corn leaf burn during the early growing season.
文摘目的探讨并分析急性非ST段抬高心肌梗死(NSTEMI)患者经皮冠状动脉介入治疗(PCI)术后血清纤维蛋白原/白蛋白值(FAR)、γ-谷氨酰转肽酶(γ-GGT),N端脑钠肽前体(NT-proBNP)水平对预后的预测价值。方法回顾性分析2020年2月至2023年2月邯郸市中心医院收治的实施PCI的急性NSTEMI患者93例,根据术后30 d主要不良心血管事件(MACE)发生情况将其分为MACE组(n=21)及无MACE组(n=72)。比较术前、术后30 d MACE组及无MACE组血清FAR、γ-GGT、NT-proBNP水平,采用单因素和多因素Logistic回归分析对影响急性NSTEMI患者术后30 d MACE发生的危险因素进行分析,采用受试者操作特征(ROC)曲线分析血清FAR、γ-GGT、NT-proBNP水平对急性NSTEMI患者术后MACE发生的预测价值。结果MACE组年龄为(65.37±3.46)岁;Killip分级为Ⅰ级2例,Ⅱ级3例,Ⅲ级5例,Ⅳ级11例;病变支数双支5例,3支16例;术后30 d血清FAR、γ-GGT、NT-proBNP水平分别为(2.87±0.55)%、(53.27±3.06)U/L、(914.35±84.35)ng/mL。无MACE组的年龄为(58.71±2.86)岁;Killip分级为Ⅰ级32例,Ⅱ级27例,Ⅲ级7例,Ⅳ级6例;病变支数为双支53例,3支19例;术后30 d血清FAR、γ-GGT、NT-proBNP水平分别为(2.12±0.51)%、(44.33±3.35)U/L、(656.82±75.63)ng/mL。MACE组和无MACE组的年龄、Killip分级、病变支数及术后30 d血清FAR、γ-GGT、NT-proBNP水平比较,差异均有统计学意义(P<0.05),两组性别、吸烟史、高血压史、高血脂史、糖尿病史及术前1 d血清FAR、γ-GGT、NT-proBNP水平比较差异无统计学意义(P>0.05)。多因素Logistic回归分析结果显示,血清FAR、γ-GGT、NT-proBNP升高均为影响急性期NSTEMI患者术后MACE发生的独立危险因素(OR=3.074、2.686、3.340,P均<0.05)。ROC结果显示血清FAR、γ-GGT、NT-proBNP及其联合检测预测急性NSTEMI患者术后MACE发生的曲线下面积(AUC)分别为0.681、0.690、0.733和0.790,联合检测的AUC更高(P<0.05)。结论血清FAR、γ-GGT、NT-proBNP水平升高增加了急性NSTEMI患者PCI术后MACE的发生风险,三者联合检测对患者术后不良预后有一定预测价值。
基金This work is supported by the National Natural Science Foundation of China(No.22103075,No.21827804,and No.22173089)the National Key R&D Program of China(No.2021YFA0716801andNo.2017YFA0303502).
基金supported by the National Natural Science Foundation of China(No.51872090)Natural Science Foundation of Hebei Province(No.E2019209433,E2022209158)Colleges and Universities in Hebei Province Science and Technology Research Project(No.JZX2024026).
文摘The scarcity of wettability,insufficient active sites,and low surface area of graphite felt(GF)have long been suppressing the performance of vanadium redox flow batteries(VRFBs).Herein,an ultra-homogeneous multipledimensioned defect,including nano-scale etching and atomic-scale N,O codoping,was used to modify GF by the molten salt system.NH_(4)Cl and KClO_(3) were added simultaneously to the system to obtain porous N/O co-doped electrode(GF/ON),where KClO_(3) was used to ultra-homogeneously etch,and O-functionalize electrode,and NH4Cl was used as N dopant,respectively.GF/ON presents better electrochemical catalysis for VO_(2)+/VO_(2)+ and V3+/V2+ reactions than only O-functionalized electrodes(GF/O)and GF.The enhanced electrochemical properties are attributed to an increase in active sites,surface area,and wettability,as well as the synergistic effect of N and O,which is also supported by the density functional theory calculations.Further,the cell using GF/ON shows higher discharge capacity,energy efficiency,and stability for cycling performance than the pristine cell at 140 mA cm^(−2) for 200 cycles.Moreover,the energy efficiency of the modified cell is increased by 9.7% from 55.2% for the pristine cell at 260 mA cm^(−2).Such an ultra-homogeneous etching with N and O co-doping through“boiling”molten salt medium provides an effective and practical application potential way to prepare superior electrodes for VRFB.
基金financially supported by the Natural Science Foundation of China(Grant No.22005165)the Major Science and Technology Innovation Project of Shandong(Grant No.2019JZZY010507)+1 种基金the Qingdao Municipal Science and Technology Bureau(Grant No.17-1-1-86-jch)the Key Technology Research and Development Program of Shandong(Grant No.2018GGX108005).
文摘The incorporation of heteroatoms into carbon aerogels(CAs)can lead to structural distortions and changes in active sites due to their smaller size and electronegativity compared to pure carbon.However,the evolution of the electronic structure from single-atom doping to heteroatom codoping in CAs has not yet been thoroughly investigated,and the impact of codoping on potassium ion(K+)storage and diffusion pathways as electrode material remains unclear.In this study,experimental and theoretical simulations were conducted to demonstrate that heteroatom codoping,composed of multiple heteroatoms(O/N/B)with different properties,has the potential to improve the electrical properties and stability of CAs compared to single-atom doping.Electronic states near the Fermi level have revealed that doping with O/N/B generates a greater number of active centers on adjacent carbon atoms than doping with O and O/N atoms.As a result of synergy with enhanced wetting ability(contact angle of 9.26°)derived from amino groups and hierarchical porous structure,ON-CA has the most optimized adsorption capacity(−1.62 eV)and diffusion barrier(0.12 eV)of K^(+).The optimal pathway of K^(+)in ON-CA is along the carbon ring with N or O doping.As K^(+)storage material for supercapacitors and ion batteries,it shows an outstanding specific capacity and capacitance,electrochemical stability,and rate performance.Especially,the assembled symmetrical K^(+)supercapacitor demonstrates an energy density of 51.8 Wh kg^(−1),an ultrahigh power density of 443Wkg^(−1),and outstanding cycling stability(maintaining 83.3%after 10,000 cycles in 1M KPF6 organic electrolyte).This research provides valuable insights into the design of highperformance potassium ion storage materials.
基金supported by Natural Science Foundation of Anhui Higher Education Institution of China(2023AH051318).
文摘Ensuring a stable power output from renewable energy sources,such as wind and solar energy,depends on the development of large-scale and long-duration energy storage devices.Zinc–bromine fl ow batteries(ZBFBs)have emerged as cost-eff ective and high-energy-density solutions,replacing expensive all-vanadium fl ow batteries.However,uneven Zn deposition during charging results in the formation of problematic Zn dendrites,leading to mass transport polarization and self-discharge.Stable Zn plating and stripping are essential for the successful operation of high-areal-capacity ZBFBs.In this study,we successfully synthesized nitrogen and oxygen co-doped functional carbon felt(NOCF4)electrode through the oxidative polymerization of dopamine,followed by calcination under ambient conditions.The NOCF4 electrode eff ectively facilitates effi cient“shuttle deposition”of Zn during charging,signifi cantly enhancing the areal capacity of the electrode.Remarkably,ZBFBs utilizing NOCF4 as the anode material exhibited stable cycling performance for 40 cycles(approximately 240 h)at an areal capacity of 60 mA h/cm^(2).Even at a high areal capacity of 130 mA h/cm^(2),an impressive energy effi ciency of 76.98%was achieved.These fi ndings provide a promising pathway for the development of high-areal-capacity ZBFBs for advanced energy storage systems.