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设计串联S型光催化体系:机理见解、表征技术与应用
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作者 Rohit Kumar Anita Sudhaik +5 位作者 Aftab Asalam Pawaz Khan Van Huy Neguyen Archana singh pardeep singh Sourbh Thakur Pankaj Raizada 《物理化学学报》 北大核心 2025年第11期4-29,共26页
串联S型异质结已成为光催化领域一项极具前景的创新技术,为环境修复提供了有效解决方案。与传统Z型或II型光催化剂不同,S型结构选择性保留了高效参与氧化还原反应的高能光生载流子。这种独特机理能增强电荷分离、强化内建电场并提升光... 串联S型异质结已成为光催化领域一项极具前景的创新技术,为环境修复提供了有效解决方案。与传统Z型或II型光催化剂不同,S型结构选择性保留了高效参与氧化还原反应的高能光生载流子。这种独特机理能增强电荷分离、强化内建电场并提升光吸收能力。然而,单结S型体系存在量子效率低的问题。因此,构建多组分S型体系可有效提升光催化性能。串联S型体系由多个具有交错能带位置的半导体/材料组成,形成阶梯式或定向电荷转移机制。这种阶梯式电位梯度可显著提升电荷分离、光吸收、氧化还原能力、稳定性及整体光催化活性。本文深入阐述了串联S型异质结的作用原理,探讨了通过半导体配对、助催化剂添加和介质嵌入等设计策略实现电荷迁移最大化与复合最小化的方法;系统分析了多种合成路径及其动力学与热力学原理;讨论了包括密度泛函理论(DFT)模拟、原位X射线光电子能谱(XPS)、瞬态吸收光谱(TAS)、光致发光(PL)和电化学阻抗谱(EIS)在内的一系列先进表征手段,这些技术为揭示电子行为与界面动力学提供了重要见解。文章还探讨了该类异质结在二氧化碳还原、产氢和有机污染物降解等主要领域的应用。尽管潜力显著,但仍需解决合成工艺复杂、材料稳定性和规模化生产等挑战。针对现有局限,本文提出了未来研究方向。总体而言,串联S型异质结是构建高效可持续光催化技术的卓越方案。 展开更多
关键词 串联S型异质结 二氧化碳还原 能源生产 水分解 DFT
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Borophene-based nanomaterials: Promising candidates for next-generation gas/vapor chemiresistors
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作者 Vishal Chaudhary Sonu Sonu +6 位作者 Bakr Ahmed Taha Pankaj Raizada Sarvesh Rustagi Surjeet Chahal pardeep singh Ajit Khosla Van-Huy Nguyen 《Journal of Materials Science & Technology》 2025年第15期236-262,共27页
Rapidly growing population,escalating urbanization,and industrialization are causing the depletion of non-renewable resources and air pollution,a silent pandemic responsible for billions of global mortalities.Sensors ... Rapidly growing population,escalating urbanization,and industrialization are causing the depletion of non-renewable resources and air pollution,a silent pandemic responsible for billions of global mortalities.Sensors are crucial vectors for monitoring the emission of various gases/volatile organic compoundsbased pollutants from various anthropogenic sources.Borophene-based nanomaterials(BNMs)are the latest two-dimensional flatlands to this emergent next-generation sensors family with exceptional and tunable physicochemical attributes characterized by high anisotropy,thermal/mechanical resilience,tunable bandgaps,light-weight,high charge carrier mobility,and excellent adsorption efficacies.However,the practical implementation and scalability of BNMs grapple with challenges,including instability,substrateto-device transfer complications,and optimization intricacies.This comprehensive review delves into state-of-the-art BNM sensor fabrication techniques,intertwining theoretical insights derived from density functional theory and molecular dynamics with practical evaluations and on-site applications.Besides,the fundamental challenges associated with engineering BNM sensors and their alternate solutions by employing various strategies,including surface termination,functionalization,hydrogenation,hybridization,architecting composites,and green chemistry,are detailed.This review offers a roadmap from lab to market,bridging theoretical insights with practical implementation and expediting the advanced BNM sensors with wearable,remotely accessible,point-of-care,scavenging,self-powered,biocompatible,and intelligent modules for pollution management. 展开更多
关键词 Borophene 2D nanomaterial Gas/vapor sensors Pollution DFT
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Soil Carbon Dynamics Under Changing Climate A Research Transition from Absolute to Relative Roles of Inorganic Nitrogen Pools and Associated Microbial Processes:A Review 被引量:6
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作者 pratap srivastava rishikesh singh +5 位作者 sachchidanand tripathi pardeep singh shikha singh hema singh akhilesh singh raghubanshi pradeep kumar mishra 《Pedosphere》 SCIE CAS CSCD 2017年第5期792-806,共15页
It is globally accepted that soil carbon (C) dynamics are at the core of interlinked environmental problems, deteriorating soil quality and changing climate. Its management remains a complex enigma for the scientifi... It is globally accepted that soil carbon (C) dynamics are at the core of interlinked environmental problems, deteriorating soil quality and changing climate. Its management remains a complex enigma for the scientific community due to its intricate relationship with soil nitrogen (N) availability and moisture-temperature interactions. This article reviews the management aspects of soil C dynamics in light of recent advances, particularly in relation to the availability of inorganic N pools and associated microbial processes under changing climate. Globally, drastic alterations in soil C dynamics under changing land use and management practices have been primarily attributed to the variation in soil N availability, resulting in a higher decomposition rate and a considerable decline in soil organic C (SOC) levels due to increased soil CO2 emissions, degraded soil quality, and increased atmospheric CO2 concentrations, leading to climate warming. Predicted climate warming is proposed to enhance SOC decomposition, which may further increase soil N availability, leading to higher soil CO2 effiux. However, a literature survey revealed that soil may also act as a potential C sink, if we could manage soil inorganic N pools and link microbial processes properly. Studies also indicated that the relative, rather than the absolute, availability of inorganic N pools might be of key importance under changing climate, as these N pools are variably affected by moisture-temperature interactions, and they have variable impacts on SOC turnover. Therefore, multi-factorial studies are required to understand how the relative availability of inorganic N pools and associated microbial processes may determine SOC dynamics for improved soil C management. 展开更多
关键词 agro-management IMMOBILIZATION NH4+-N to NO3-N ratio NITRIFICATION relative availability soil C02 effiux
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Sulphur vacancy defects engineered metal sulfides for amended photo(electro)catalytic water splitting: A review 被引量:3
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作者 Kusum Sharma Abhinandan Kumar +7 位作者 Tansir Ahamad Quyet Van Le Pankaj Raizada Archana singh Lan Huong Nguyen Sourbh Thakur Van-Huy Nguyen pardeep singh 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2023年第21期50-64,共15页
Vacancy engineering in metal sulfides has garnered enormous attention from researchers because of their outstanding ability to modulate the optical and physiochemical properties of photocatalysts.Typically,in the case... Vacancy engineering in metal sulfides has garnered enormous attention from researchers because of their outstanding ability to modulate the optical and physiochemical properties of photocatalysts.Typically,in the case of sulfides,the catalytic activity is drastically hindered by the quick reassembly of excitons and the photocorrosion effect.Hence designing and generating S-vacancies in metal sulfides has emerged as a potential strategy for attaining adequate water splitting to generate H_(2) and O_(2) because of the simulta-neous improvement in the optoelectronic features.However,developing efficient catalysts that manifest optimal photo(electro)catalytic performance for large-scale applicability remains challenging.Therefore,it is of utmost interest to explore the insightful features of creating S-vacancy and study their impact on catalytic performance.This review article aims to comprehensively highlight the roles of S-vacancy in sulfides for amended overall water-splitting activity.The photocatalytic features of S-vacancies modulated metal sulfides are deliberated,followed by various advanced synthetic and characterization techniques for effectual generation and identification of vacancy defects.The specific aspects of S-vacancies in refin-ing the optical absorption range charge carrier dynamics,and photoinduced surface chemical reactions are critically examined for overall water splitting applications.Finally,the vouchsafing outlooks and op-portunities confronting the defect-engineered(S-vacancy)metal sulfides-based photocatalysts have been summarized. 展开更多
关键词 S-vacancy Photo(electro)catalysis Metal sulfides Water splitting Engineering Identification of S-vacancies
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Novel Z-Scheme ZnIn_(2)S_(4)-based photocatalysts for solar-driven environmental and energy applications: Progress and perspectives 被引量:3
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作者 Yogesh Kumar Rohit Kumar +4 位作者 Pankaj Raizada Aftab Aslam Parwaz Khan Quyet Van Le pardeep singh Van-Huy Nguyen 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2021年第28期234-257,共24页
Benefiting from strong redox ability,improved charge transport,and enhanced charge separation,Zscheme heterostructures of ZnIn_(2)S_(4) based photocatalysts have received considerable interest to tackle energy needs a... Benefiting from strong redox ability,improved charge transport,and enhanced charge separation,Zscheme heterostructures of ZnIn_(2)S_(4) based photocatalysts have received considerable interest to tackle energy needs and environmental issues.The present review highlights the properties of ZnIn_(2)S_(4),which make it a promising photocatalyst,and a suitable combination with oxidation photocatalyst to form Zscheme,leading to improve their photocatalytic properties dramatically.As the central part of this review,various types of Z-scheme heterojunction developed recently based on ZnIn_(2)S_(4) and their application in pollutant degradation,water splitting,CO_(2) reduction,and toxic metals remediation.Some analytical techniques to detect or trap the active radical and study the charge separation and lifetime of charge carriers in these Z-schemes are highlighted.This review offers its readers a broad optical window for the structural architecture of ZnIn_(2)S_(4)-based Z-schemes,photocatalytic activity,stability,and their technological applications.Finally,we discuss the challenges and opportunities for further development on Z-Scheme ZnIn_(2)S_(4)-based photocatalysts toward energy and environmental applications based on the recent progress. 展开更多
关键词 ZnIn_(2)S_(4) Z-scheme photocatalyst Charge transfer mechanism Pollutant degradation Environmental remediation
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2020 Roadmap on two-dimensional nanomaterials for environmental catalysis 被引量:2
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作者 Yulu Yang Mingguang Wu +36 位作者 Xingwang Zhu Hui Xu Si Ma Yongfeng Zhi Hong Xia Xiaoming Liu Jun Pan Jie-Yinn Tang Siang-Piao Chai Leonardo Palmisano Francesco Parrino Junli Liu Jianzhong Ma Ze-Lin Wang Ling Tan Yu-Fei Zhao Yu-Fei Song pardeep singh Pankaj Raizada Deli Jiang Di Li R.A.Geioushy Jizhen Ma Jintao Zhang Song Hu Rongjuan Feng Gang Liu Minghua Liu Zhenhua Li Mingfei Shao Neng Li Jiahe Peng Wee-Jun Ong Nikolay Kornienko Zhenyu Xing Xiujun Fan Jianmin Ma 《Chinese Chemical Letters》 SCIE CAS CSCD 2019年第12期2065-2088,共24页
Environmental catalysis has drawn a great deal ofattention due to its clean ways to produce useful chemicals or carry out some chemical processes.Photocatalysis and electrocatalysis play important roles in these field... Environmental catalysis has drawn a great deal ofattention due to its clean ways to produce useful chemicals or carry out some chemical processes.Photocatalysis and electrocatalysis play important roles in these fields.They can decompose and remove organic pollutants from the aqueous environment,and prepare some fine chemicals.Moreover,they also can carry out some important reactions,such as 02 reduction reaction(ORR),O2 evolution reaction(OER),H2 evolution reaction(HER),CO2 reduction reaction(C02 RR),and N2 fixation(NRR).For catalytic reactions,it is the key to develop high-performance catalysts to meet the demand fortargeted reactions.In recentyears,two-dimensional(2 D) materials have attracted great interest in environmental catalysis due to their unique layered structures,which offer us to make use of their electronic and structural characteristics.Great progress has been made so far,including graphene,black phosphorus,oxides,layered double hydroxides(LDHs),chalcogenides,bismuth-based layered compounds,MXenes,metal organic frameworks(MOFs),covalent organic frameworks(COFs),and others.This content drives us to invite many famous groups in these fields to write the roadmap on two-dimensional nanomaterials for environmental catalysis.We hope that this roadmap can give the useful guidance to researchers in future researches,and provide the research directions. 展开更多
关键词 Two-dimensional materials Graphene Black phosphorus C3N4 Metal organic frameworks MXenes
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Tailoring S-scheme-based carbon nanotubes(CNTs)mediated Ag-CuBi_(2)O_(4)/Bi_(2)S_(3)nanomaterials for photocatalytic dyes degradation in the aqueous system 被引量:1
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作者 Vishal Dutta Anita Sudhaik +7 位作者 Sonu Pankaj Raizada Archana singh Tansir Ahamad Sourbh Thakur Quyet Van Le Van-Huy Nguyen pardeep singh 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2023年第31期11-24,共14页
In this study,S-scheme-based hydrothermal synthesis of Ag-CuBi_(2)O_(4)/CNTs/Bi_(2)S_(3)layered composites has been successfully reported.The photo-degradation of toxic dyes,viz.methyl orange(MO),and methylene blue(MB... In this study,S-scheme-based hydrothermal synthesis of Ag-CuBi_(2)O_(4)/CNTs/Bi_(2)S_(3)layered composites has been successfully reported.The photo-degradation of toxic dyes,viz.methyl orange(MO),and methylene blue(MB),has been used to examine nanocomposites with varying weight percent of Bi_(2)S_(3)for photocat-alytic activity in the visible range.Among candidates,Ag-CuBi_(2)O_(4)/CNTs/Bi_(2)S_(3)with a 10%loading of Bi_(2)S_(3)outperformed both pure and hybrid composites in photocatalytic activity.For MO degradation,the hybrid composite with 10%Bi_(2)S_(3)loading degrades 7.04 times higher than pristine CuBi_(2)O_(4)and Bi_(2)S_(3)samples,and for MB degradation,it degrades 4.96 times higher than pristine samples.High surface area,less re-combination rate of photogenerated charge carriers,photogenerated carriers faster separation,and high redox ability of Ag-CuBi_(2)O_(4)/CNTs/Bi_(2)S_(3)(10%)are all attributed to the improving photocatalytic perfor-mance.Even after ten cycles,the hybrid composite is chemically stable and reusable.Carbon nanotubes(CNTs)are a transfer bridge in layered structure for electrons because of their coordinated Fermi level between Ag-CuBi_(2)O_(4)and Bi_(2)S_(3).In addition,the scavenger and electron spin resonance(ESR)experiments verified that·O_(2)^(−),·OH,and h+were the important reactive species that successfully facilitated the pho-tocatalytic degradation process to degrade dyes.This study presents a straightforward and economical approach for obtaining a stable semiconductor-based photocatalytic system and a potential technique for future applications. 展开更多
关键词 Ag-CuBi_(2)O_(4) Bi_(2)S_(3) Carbon nanotubes(CNTs) S-scheme charge transfer Dye degradation
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Recent progress in emerging BiPO_(4)-based photocatalysts:Synthesis,properties,modification strategies,and photocatalytic applications 被引量:1
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作者 Rohit Kumar Pankaj Raizada +7 位作者 Aftab Aslam Parwaz Khan Van-Huy Nguyen Quyet Van Le Suresh Ghotekar Rangabhashiyam Selvasembian Vimal Gandhi Archana singh pardeep singh 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2022年第13期208-225,共18页
In this perspective,we have highlighted the current literature and explained the synthesis,structure,morphology,modification strategies,and photocatalytic applications of emerging BiPO_(4)-based photocatalysts.Since B... In this perspective,we have highlighted the current literature and explained the synthesis,structure,morphology,modification strategies,and photocatalytic applications of emerging BiPO_(4)-based photocatalysts.Since BiPO_(4)is a large bandgap photocatalyst,it uses UV light for the excitation of electrons,and also,the recombination of charge carriers is an issue in BiPO_(4).Various novel modification strategies of BiPO_(4)photocatalysts viz.defect modifications,heterojunction formation,phase-junctions,surface plasmon resonance,Schottky junction have been successfully proposed and highlighted.These modifications enhance the light absorption and inhibit the recombination of charge carriers BiPO_(4)photocatalyst.Finally,future aspects for further research on BiPO_(4)-based photocatalysts are also explored.It expects that BiPO_(4)-based photocatalysts represent a promising strategy for developing practical photocatalysts for energy and environmental remediation applications. 展开更多
关键词 PHOTOCATALYSIS Modification strategies Environmental remediation BiPO_(4)photocatalyst
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Structural Analysis of ^(23)O Through Single-Neutron Stripping Reaction
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作者 Rajesh Kharab Ravinder Kumar +1 位作者 pardeep singh H.C.Sharma 《Communications in Theoretical Physics》 SCIE CAS CSCD 2008年第4期1004-1008,共5页
We have studied the single-neutron stripping reaction induced by ^23O on carbon target at beam energy of 72 MeV//A with a motive to analyze its ground state structure. The partial stripping cross sections as well as l... We have studied the single-neutron stripping reaction induced by ^23O on carbon target at beam energy of 72 MeV//A with a motive to analyze its ground state structure. The partial stripping cross sections as well as longitudinal momentum distribution of ^22O core have been calculated within the framework of the eikonal approximation approach. Several core-neutron spin coupling configurations, corresponding to J^π= 1/2 + as ground state spin parity of ^23O, along with their suitable admixtures have been considered. The major outcome of the present work is that the s and d admixed configuration with a large contribution of s state seems to explain the longitudinal momentum distribution data more satisfactorily. 展开更多
关键词 STRIPPING halo nuclei admixed state
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Cognitive-Inspired and Computationally Intelligent Early Melanoma Detection Using Feature Analysis Techniques
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作者 Sunil Gupta Neha Sharma +3 位作者 Ritu Tyagi pardeep singh Alankrita Aggarwal Sunil Chawla 《Journal of Artificial Intelligence and Technology》 2023年第4期215-224,共10页
Melanoma is the most malignant kind of skin cancer,and it is responsible for the majority of deaths caused by skin cancer.However,this can be easily addressed by reverting to the standard method of damage removal if i... Melanoma is the most malignant kind of skin cancer,and it is responsible for the majority of deaths caused by skin cancer.However,this can be easily addressed by reverting to the standard method of damage removal if it is discovered in a timely manner.In this view,it is of the utmost importance to develop procedures for the early and reliable identification of melanomas.Since images for melanoma diagnosis are recorded in the clinic as an epiluminant image using a specific kind of equipment,the technique is machine-dependent.We make use of a method for managing images as well as a high-resolution shading image of a skin ulcer captured by a high-resolution camera or other device.Instead of depending on the epilumination images that are produced by the emergency equipment,the initial task that needs to be done in the present research is to capture high-resolution photographs of skin injuries.The category limit will be determined with the use of machine learning,and then highlight extraction will take place.The research focuses on clinical photos obtained from fast cameras that were taken of individuals suffering from skin cancer.The problem of uneven illumination was kept at a strategic distance by the use of medial separation and preprocessing using the histogram.A brand new image segmentation method called“Otsu”is used for the extraction of sores.The extraction of ABCD(Asymmetry,Border,Color,and Dimension)involves the use of innovative methodologies as well as the total dermoscopic value in order to characterize the weight coefficients.A solution to the problem of upgrading the categorization error is based on machine learning.The parameters that are taken into consideration for evaluating the proposed model are sensitivity,specificity,precision,and accuracy,and the results obtained are 1,0.93,0.93,and 0.93,respectively.It has been observed that the proposed model performs better as compared to the ones present in the existing literature. 展开更多
关键词 MELANOMA ML MRI skin cancer SVM
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Surface defect engineering of metal oxides photocatalyst for energy application and water treatment 被引量:6
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作者 Pankaj Raizada Vatika Soni +5 位作者 Abhinandan Kumar pardeep singh Aftab Aslam Parwaz Khan Abdullah M.Asiri Vijay Kumar Thakur Van-Huy Nguyen 《Journal of Materiomics》 SCIE EI 2021年第2期388-418,共31页
Despite metal oxides offer excellent characteristics in the field of photocatalysis,they often suffer from charge carrier recombination as well as limited visible response,which indeed reduce the charge kinetics proce... Despite metal oxides offer excellent characteristics in the field of photocatalysis,they often suffer from charge carrier recombination as well as limited visible response,which indeed reduce the charge kinetics process and ultimately reduce the photocatalytic output.Defect engineering is a sophisticated technique to manufacture defects and alter the geometric structure and chemical environment of the host.The present study provides an all-inclusive outline of recent developments on the classification of metal oxide defects based on the dimensions of a host crystal lattice.Precisely,surface modification of metal oxides through 0D(point),1D(line),2D(planar),and 3D(volume)defects with their subsequent mechanism and impact on photocatalytic performance are presented.By wisely amending the morphology(cores along with the shells)and electronic structure of metal oxide photocatalysts(TiO_(2),ZnO,Bi_(2)O_(3),Fe_(2)O_(4) etc.)through different attuned and veritable approaches,their photocatalytic activity can be substantially improved.Optimal studies on defect engineering not only expose the altered physicochemical features but also modulate the electron-hole pair dynamics,stability,and active radical production for various photoredox reactions.Altered atomic,as well as electronic configuration,facilitated a photocatalyst material to have different optical features,adsorption properties along with improved carrier transfer as well as isolation rate.Thus,the systematic exploration of photocatalytic rudiments of defect rich metal oxide for various applications such as H_(2) evolution,CO_(2) reduction,pollutant degradation,and bacterial disinfection could bring significant research advancement in this field. 展开更多
关键词 Defect engineering Nanostructured metal oxides PHOTOCATALYSIS Surface reactions Point defects Dislocations Boundaries Voids
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Impact of sole and combined application of biochar,organic and chemical fertilizers on wheat crop yield and water productivity in a dry tropical agro-ecosystem 被引量:7
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作者 Rishikesh singh pardeep singh +1 位作者 Hema singh A.S.Raghubanshi 《Biochar》 2019年第2期229-235,共7页
Agriculture under changing climate scenario is facing major challenges of water scarcity and resource imbalances.Crop water productivity(WP)may act as an indicator of crop responses to water limitation.Organic amendme... Agriculture under changing climate scenario is facing major challenges of water scarcity and resource imbalances.Crop water productivity(WP)may act as an indicator of crop responses to water limitation.Organic amendments such as biochar and manure application to soil are suggested for improving soil quality and reducing water requirements from agricultural sector.However,studies exploring the impact of biochar as sole or in combination with organic and/or chemical fertilizers on WP in dry tropical agro-ecosystems are limited.In this study,we observed the effect of rice-husk ash(RHA,biochar)along with farm-yard manure(FYM)and chemical fertilizers(CF)under varying water conditions on soil hydro-physical properties,yield and WP of wheat crop.Water-filled pore space(WFPS),grain and straw yield,irrigation and total water productivity varied significantly(at P<0.001)at treatment level.Grain and straw yield were found higher under sole and combined CF applied treatments.Sole and combined RHA and FYM amendment improved water holding capacity(WHC)and WFPS,whereas a decrease in crop yield was observed as compared to the control.Irrigation and total water productivity were found higher under combined RHA+FYM and sole CF treatments with reduced water supply(except sole CF)as compared to control and sole RHA treatments with full water irrigation.Crop water productivity was found positively correlated with grain and straw yields,however,significant correlations were not observed with WHC and WFPS.Results indicate that increasing soil hydro-physical properties in silty-loam soil may hinder crop yield and WP under sole biochar applied soils.Overall,the implications of the study would help in devising agro-management practices based on combined application of RHA and FYM with reduced chemical fertilizer and water inputs to mitigate the impacts of climate change without compromising crop yield in the highly vulnerable dry tropical agro-ecosystem of India.Moreover,long-term studies are needed in these ecosystems to identify the appropriate agricultural package for mitigating the forthcoming water scarcity conditions. 展开更多
关键词 AGRO-ECOSYSTEMS BIOCHAR Indo-Gangetic plains INCEPTISOL Silty-loam texture Water saving
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Adjuvant-attenuated symptom severity of influenza infections in vaccinated children
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作者 Charlotte Switzer Chris P.Verschoor +2 位作者 Eleanor Pullenayegum pardeep singh Mark Loeb 《Infectious Medicine》 2022年第3期163-170,共8页
Background:Young children are at high risk for developing complications of influenza,as well as severe clinical presentation of disease.Vaccination provides direct protection and reduces symptom severity in breakthrou... Background:Young children are at high risk for developing complications of influenza,as well as severe clinical presentation of disease.Vaccination provides direct protection and reduces symptom severity in breakthrough in-fections.We assessed whether adjuvanted trivalent seasonal influenza vaccine is associated with symptom severity in children who developed laboratory-confirmed influenza,as compared to children who received quadrivalent inactivated influenza.Methods:A cluster randomized controlled trial of influenza vaccines in Canadian Hutterite colonies was conducted from the 2016-2017 to the 2018-2019 influenza season.Children were vaccinated with either quadrivalent inactivated influenza vaccine(QIV),or the MF59 adjuvanted trivalent influenza vaccine(aTIV).We assessed children who developed PCR-confirmed influenza infection for symptom severity outcomes using multivariable generalized negative binomial regression.Results:Among vaccinated children,49 infections were observed across 1779 person-days.Vaccine formulation(aTIV vs QIV)was not significantly associated with composite symptom outcomes,including total number of symptoms or total duration of symptom presentation(p>0.05 for all outcomes).Receipt of aTIV vaccination was significantly associated with attenuation of fever,with an estimated 74%reduction in fever severity.In influenza A type infections,adjuvanted vaccination was significantly associated with reduced systemic symptoms(incidence rate ratios:0.16,95%confidence intervals:0.03,0.64,p=0.01).No associations were observed between vaccine formulation and symptom severity in influenza B infections.Conclusions:In vaccinated children who develop an influenza infection,vaccine formulation was associated with attenuated fever severity,leading to reduced systemic symptoms.In influenza A infections,adjuvanted vaccination was significantly associated with reduced systemic symptoms. 展开更多
关键词 INFLUENZA Adjuvanted influenza vaccine VACCINATION SYMPTOMS
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