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1.
《Advanced Powder Technology》2022,33(9):103722
Through a facile hydrothermal method, we have successfully prepared Ti3C2/Bi2.15WO6 (TC/BWO) composite, and systematically investigated their reactivity for the photocatalytic reduction of Cr(VI) under visible light. X-ray diffraction and Raman analysis confirm the formation of heterostructure between Bi2.15WO6 and Ti3C2. The resultant 7TC/BWO composite exhibits enhanced photoactivity toward Cr(VI) reduction. After 120 min irradiation, the conversion of Cr(VI) reaches 92.5% with the quasi-first-order kinetic constant of k = 0.0145 min?1, which is higher than that of pure BWO (30% and k = 0.0005 min?1). The electrochemical and photoluminescent characterization confirm that the introduction of Ti3C2 is conducive to the separation of carriers, thus significantly improves the photocatalytic performance of TC/BWO. Furthermore, the radical capture experiments verify that the electrons are important for enhancing reduction of Cr(VI) to Cr(III). As a result, this research provides a comprehensive understanding of the reduction of Cr(VI) by TC/BWO composite under visible light. 相似文献
2.
《International Journal of Hydrogen Energy》2022,47(85):36216-36231
The fuel cell/battery durability and hybrid system stability are major considerations for the power management of fuel cell hybrid electric bus (FCHEB) operating on complicated driving conditions. In this paper, a real time nonlinear adaptive control (NAC) with stability analyze is formulated for power management of FCHEB. Firstly, the mathematical model of hybrid power system is analyzed, which is established for control-oriented design. Furthermore, the NAC-based strategy with quadratic Lyapunov function is set up to guarantee the stability of closed-loop power system, and the power split between fuel cell and battery is controlled with the durability consideration. Finally, two real-time power management strategies, state machine control (SMC) and fuzzy logic control (FLC), are implemented to evaluate the performance of NAC-based strategy, and the simulation results suggest that the guaranteed stability of NAC-based strategy can efficiently prolong fuel cell/battery lifespan and provide better fuel consumption economy for FCHEB. 相似文献
3.
为研究高面板堆石坝的地震易损性,基于增量动力分析(IDA)与支持向量机(SVM)相结合的方法,首先利用拉丁超立方抽样(LHS)方法从人工生成的100条地震动中随机选取30条,选定PGA为地震动强度指标,坝顶竖向位移为性能指标,通过对每条地震动进行等间距调幅,对面板坝进行有限元计算及对结果进行IDA分析,提取各条地震动在所选性能指标不同极限状态下的PGA;然后引入SVM,以代表地震动特性的参数为输入,以PGA为输出,训练并测试SVM模型;最后利用SVM模型做快速预测,在考虑不同地震动数目的条件下,分析面板坝的地震易损性,并绘制地震易损性曲线。研究结果表明,IDA-SVM方法在分析大坝易损性的问题上具有可行性和有效性,且考虑不同地震动数目所得的地震易损性曲线不尽相同。 相似文献
4.
《International Journal of Hydrogen Energy》2022,47(67):28782-28793
Highly-efficient and stable non-noble metal electrocatalysts for overcoming the sluggish kinetics of oxygen evolution reaction (OER) is urgent for water electrolysis. Biomass-derived biochar has been considered as promising carbon material because of its advantages such as low-cost, renewable, simple preparation, rich structure, and easy to obtain heteroatom by in-situ doping. Herein, Ni2P–Fe2P bimetallic phosphide spherical nanocages encapsulated in N/P-doped pine needles biochar is prepared via a simple two-step pyrolysis method. Benefiting from the maximum synergistic effects of bimetallic phosphide and biochar, high conductivity of biochar encapsulation, highly exposed active sites of Ni2P–Fe2P spherical nanocages, rapid mass transfer in porous channels with large specific surface area, and the promotion in adsorption of reaction intermediates by high-level heteroatom doping, the (Ni0.75Fe0.25)2P@NP/C demonstrates excellent OER activity with an overpotential of 250 mV and a Tafel slope of 48 mV/dec at 10 mA/cm2 in 1 M KOH. Also it exhibits a long-term durability in 10 h electrolysis and its activity even improves during the electrocatalytic process. The present work provides a favorable strategy for the inexpensive synthesis of biochar-based transition metal electrocatalysts toward OER, and improves the water electrolysis for hydrogen production. 相似文献
5.
6.
金属材料难以避免地会经常产生表面吸附与腐蚀,从而造成材料表面腐蚀失效,给生命安全与社会经济造成巨大的危害与损失,研发高效的金属表面防护涂层是一种关键技术手段。利用自由基共聚法,制备了兼具高疏水性与优异的防腐功能的有机硅-丙烯酸酯复合树脂材料。通过核磁共振氢谱、原子力显微镜、接触角以及腐蚀溶液浸泡等测试手段,对复合材料进行了化学结构、形貌及性能的测试和表征。研究结果表明:复合涂层的表面呈现典型的纳米级粗糙结构,分布着微纳米富硅储液池;复合树脂在金属表面成膜后可显示很高的疏水特性,其表面水滴的前进、后退接触角(θA,θR)分别为106和94 °,优异的疏水性能使其可应用于高效油水分离;该涂层对常见液体以及脱氮假单胞菌Pseudomonas sp均显示出优异的防吸附性能,特别是该复合树脂涂层还具有良好的抗酸、碱、盐腐蚀性和机械稳定性。上述结果表明,有机硅-丙烯酸酯复合树脂涂层在诸多领域均具有较高的应用潜力。 相似文献
7.
研究硬脂酰辅酶A去饱和酶1(stearoyl-coenzyme A desaturase 1,SCD1)基因表达对草原安格斯牛血液脂肪酸组成的影响,采集38 头平均体质量(698±34) kg、48 月龄草原安格斯牛血液样品,测定其脂肪酸组成与含量,采用实时荧光定量聚合酶链式反应测定SCD1基因表达量,一代测序技术检测SCD1基因在C878T位点的突变对实验牛血液脂肪酸组成的影响,分析SCD1基因表达与脂肪酸组成间的相关性。结果表明:血液样品中共测得36 种主要脂肪酸,饱和脂肪酸(saturated fatty acids,SFA)以棕榈酸(C16:0)和硬脂酸(C18:0)为主,含量分别达22.53%和26.95%,单不饱和脂肪酸(monounsaturated fatty acids,MUFA)中油酸(C18:1 n-9c)含量最高(15.09%);由SCD1基因表达与脂肪酸组成的显著性分析结果可知,SCD1基因表达对肉豆蔻酸(C14:0)、肉豆蔻油酸(C14:1)、C16:0、棕榈油酸(C16:1)、C18:0、C18:1 n-9c、亚油酸(C18:2 n-6c)、MUFA和MUFA/SFA以及C14指数、C18指数、脂肪酸总不饱和指数和伸长指数均影响显著;相关性分析结果显示,SCD1基因表达量与C16:0、C16:1、C18:0、C18:1 n-9c和MUFA含量均呈正相关;SCD1基因在878位点处出现了C/T突变,有CC、TT和CT 3 种基因型,不同基因型与脂肪酸组成之间均无显著相关性。综上所述,草原安格斯牛血液中的SCD1基因表达对其脂肪酸组成具有调控作用,可作为遗传标记参考基因。 相似文献
8.
Nonintrusive load monitoring (NILM) is crucial for extracting patterns of electricity consumption of household appliance that can guide users’ behavior in using electricity while their privacy is respected. This study proposes an online method based on the transient behavior of individual appliances as well as system steady-state characteristics to estimate the operating states of the appliances. It determines the number of states for each appliance using the density-based spatial clustering of applications with noise (DBSCAN) method and models the transition relationship among different states. The states of the working appliances are identified from aggregated power signals using the Kalman filtering method in the factorial hidden Markov model (FHMM). Thereafter, the identified states are confirmed by the verification of system states, which are the combination of the working states of individual appliances. The verification step involves comparing the total measured power consumption with the total estimated power consumption. The use of transient features can achieve fast state inference and it is suitable for online load disaggregation. The proposed method was tested on a high-resolution data set such as Labeled hIgh-Frequency daTaset for Electricity Disaggregation (LIFTED) and it outperformed other related methods in the literature. 相似文献
9.
Shuai JI Changgan LAI Huan ZHOU Helin WANG Ling MA Cong WANG Keying ZHANG Fajun LI Lixu LEI 《Frontiers in Energy》2022,16(4):595
Nickel selenide electrocatalysts for hydrogen evolution reaction (HER) with a high efficiency and a low-cost have a significant potential in the development of water splitting. However, the inferiority of the high overpotential and poor stability restricts their practical applications. Herein, a composite nanostructure consists of ultrasmall NiSe2 nanocrystals embedded on graphene by microwave reaction is reported. The prepared NiSe2/reduced graphite oxide (rGO) electrocatalyst exhibited a high HER activity with an overpotential of 158 mV at a current density of 10 mA/cm2 and a corresponding moderate Tafel slope of 56 mV/dec in alkaline electrolyte. In addition, a high retention of electrochemical properties (approximately 100%) was demonstrated with an unchangeable microstructure after 100 h of continuous operation. 相似文献
10.
Sorption selective catalytic reduction of nitrogen oxides (NOx) (sorption-SCR) has ever been proposed for replacing commercial urea selective catalytic reduction of NOx (urea-SCR), while only the single-stage sorption cycle is hitherto adopted for sorption-SCR. Herein, various multi-stage ammonia production cycles is built to solve the problem of relative high starting temperature with ammonia transfer (AT) unit and help detect the remaining ammonia in ammonia storage and delivery system (ASDS) with ammonia warning (AW) unit. Except for the single-stage ammonia production cycle with MnCl2, other sorption-SCR strategies all present overwhelming advantages over urea-SCR considering the much higher NOx conversion driven by the heat source lower than 100°C and better matching characteristics with low-temperature catalysts. Furthermore, the required mass of sorbent for each type of sorption-SCR is less than half of the mass of AdBlue for urea-SCR. Therefore, the multifunctional multi-stage sorption-SCR can realize compact and renewable ammonia storage and delivery with low thermal energy consumption and high NOx conversion, which brings a bright potential for efficient commercial de-NOx technology. 相似文献