Results 21 to 30 of about 9,934 (108)

Between Dependence and Alienation: Understanding the Digital Minimalist Behavior of Chinese Millennials—An Analysis Based on SEM and fsQCA

open access: yesJournal of Adolescence, Volume 98, Issue 5, Page 1715-1736, July 2026.
ABSTRACT Introduction Following rapid iterations in media technologies, Chinese millennials (born between 1980 and 1995) find themselves in a paradoxical state where digital saturation exists alongside fatigue, making them central practitioners of digital minimalist behavior.
Chao Zhang, Yinze Hao, Jingwen Li
wiley   +1 more source

Synergistic Hydrogen Evolution and Methanol Oxidation Over BiOIO3/Zn3In2S6 Heterojunction Photocatalyst via Interfacial Charge Steering

open access: yesRare Metals, Volume 45, Issue 7, July 2026.
ABSTRACT Because of superior transportability and high energy capacity, methanol is regarded as a potential hydrogen carrier. Photocatalytic methanol dehydrogenation offers a sustainable and cost‐effective method for releasing hydrogen. Conventional photocatalysts face challenging obstacles, including the low catalytic efficiency and rapid ...
Rundong Chen   +9 more
wiley   +1 more source

膜气提法去除水体中甲基叔丁基醚的实验研究

open access: yesGongye shui chuli, 2007
对采用聚丙烯中空纤维膜组件运用膜气提法去除水体中甲基叔丁基醚(MTBE)进行了初步研究,着重考察了温度、气体流速、液体流速及气体压力等因素对去除效果的影响。结果表明,膜气提法是一种比较有效地去除水中MTBE的技术,去除率98%左右;温度、气体流速和液体流速对去除率有显著影响:去除率随水温的升高而增大,随气体流速和液体流速的增加而升高;而气体压力对去除率的影响则不明显。
姜斌, 许丽娟, 纪志永
doaj   +2 more sources

气井涡流携液机理和携液效率数值模拟研究

open access: yesShiyou jixie, 2015
针对目前气井涡流携液机理和效率认识不清,现场工程设计与分析主要依据经验,影响应用效果等问题,运用AutoCAD和Fluent流体模拟软件,建立了涡流工具气液两相流场模型,分析了气液混合物通过涡流工具前后的流动轨迹、流型变化特征和携液效率变化规律。研究结果表明,涡流工具将气液两相雾流转换为螺旋环流,液体以液膜形式沿管壁螺旋向上流动,而气体在油管中心以更高的速度流动。这种流态能够降低流动过程中的压力损失24.3%,提高流体速度13.5%,减小持液率3.3%,减弱气液两相之间的滑脱,提高气体携液能力 ...
, 1
doaj  

Wafer‐Scale Amorphous g‐C3N4 With Broadly Tunable Dielectric Properties for 2D Electronics

open access: yesRare Metals, Volume 45, Issue 7, July 2026.
ABSTRACT Two‐dimensional (2D) semiconductors are regarded as promising candidates for next‐generation electronics due to their superior electrostatic control; however, their performance is severely constrained by the lack of suitable dielectric materials.
Binyin Gao   +13 more
wiley   +1 more source

零区气流场对湍流模型参数C1e敏感度的仿真分析

open access: yesGaoya dianqi, 2016
湍流模型参数的合理设置是气流场仿真中的要素之一。对于电流零区湍流模型的选择及湍流参数的设置,研究者持有不同的观点。文中针对零区气流场对标准k-epsilon湍流模型参数敏感度大小的问题,基于磁流体动力学原理,以252 k V压气式结构燃弧阶段的动态仿真为基础,计算了电流过零阶段湍流模型参数C1e对气流场的影响偏差百分比。通过特定监测点处气压与温度的对比,分析讨论了引起敏感度数值差异较大的原因。研究表明,湍流模型参数C1e的改变对喷口区域内气体压力的影响较小,对于气体温度的影响相对较大 ...
吴杰   +6 more
doaj  

Full‐Spectrum Solar Light–Activated Chemiresistive Sensors Based on W18O49/Ag2S S‐Scheme Heterostructure for Highly Sensitive Room‐Temperature NO2 Detection

open access: yesRare Metals, Volume 45, Issue 7, July 2026.
ABSTRACT Light‐activated gas sensors hold significant potential in environmental monitoring and smart Internet of Things (IoT) owing to their advantage in room temperature operation. Nevertheless, due to a narrow light absorption range, high photocarrier recombination rate, and weak redox activity of the sensing material, the performance enhancement of
Jinyong Hu   +5 more
wiley   +1 more source

高速气流环境交流电晕对硅橡胶表面憎水性分布的影响研究

open access: yesGaoya dianqi, 2020
电晕是造成车顶绝缘子老化的主要因素之一。基于高速气流试验平台,试验研究了高速气流电晕环境下硅橡胶表面的憎水性分布,通过分析高速气流对电晕放电路径和放电电流的影响,讨论了憎水性分布发生偏移的原因。研究发现:高速气流环境下电晕强度较大时,憎水性丧失最严重的部位沿气流方向发生偏移。其原因是:当电晕放电沿针尖发展至针板间隙空间时,高速气流使得电晕放电路径沿气流方向偏转。气流速度一定时,离子所受电场力随电压的增大而增大,高速气流不易将其吹离针板间隙空间 ...
张晓青   +4 more
doaj  

Nitrogen–Doped Carbon Nanotube–Supported Ni3Se4–CeO2 Heterojunctions With Multi–Orbital Hybridization for Efficient Hydrogen Evolution Reaction

open access: yesRare Metals, Volume 45, Issue 6, June 2026.
ABSTRACT Engineering of the catalyst interface and modulation of transition–metal d–band play critical roles in the electrocatalytic hydrogen evolution reaction (HER). Herein, a synthetic strategy is developed to fabricate nitrogen‐doped carbon nanotubes (N–CNTs)–supported Ni3Se4–CeO2 heterojunction catalysts through a facile chemical vapor deposition (
Zhiqiang Sun   +10 more
wiley   +1 more source

井下涡流工具排水采气机理研究

open access: yesShiyou jixie, 2015
涡流工具排液是一种新型气井排水采气工艺。目前国内外针对井下涡流工具的室内及现场试验,仅获得部分宏观工作特性,缺乏深入的理论研究,具体排液机理不够清晰,限制了该工艺的推广应用。鉴于此,采用有限元分析方法建立涡流工具气液两相螺旋流动的数值模型,并借助CFD软件对其流动过程进行仿真。通过流动规律的预测及分析,确定出井下涡流工具排水采气机理。研究结果表明,涡流工具可形成螺旋上升的管壁液膜流和快速上升的中心气核流动;引发的高速螺旋涡流,有效降低了气液流动阻力,提升了采气速度,同时增强了气流的携液能力 ...
杨旭东, 李丽, 张军, 卫亚明
doaj  

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