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71.
72.
当前治理汽车尾气污染的最好方法是采用含有贵金属的三元催化剂同时对NOx、HC、CO进行处理.催化转化器的结构性能直接影响催化效率的高低,准确测定及鉴定催化剂中主要部件的结构性能指标就具有重要意义.该文利用X-射线衍射光谱仪(XRD)、扫描电子显微镜能谱分析技术(SEM-EDS)以及等温液氮吸附-脱附技术对6种使用过的和未使用过的机动车尾气三元催化剂的结构性能进行分析研究.结果表明:可以通过X-射线衍射光谱仪区分各催化剂载体的材质,文中样品经鉴定都为堇青石陶瓷蜂窝载体,不同催化剂的比表面积和孔容存在差异;通过扫描电子显微镜可以观察到催化剂载体表面涂层的微观结构,及一些催化剂载体表面涂层出现的裂纹;通过能谱分析各载体主要元素的大致含量. 相似文献
73.
汽车路况网的概念源于数字城市的概念,通过研究网络、实时数据库和汽车智能,实现安全的交通网络。研究的语言一般应用Lisp语言,数据库为实时数据库。 相似文献
74.
氨是纺织、制药、化肥等领域重要的化工原料,也是一种清洁的能源载体,需求量大。目前氨的工业生产主要为Haber-Bosch法,反应条件严苛,能源消耗大且碳排放较高。电催化氮气还原(NRR)合成氨是一种在常温常压下进行的反应,工作电位低,且电能可通过清洁能源提供,是一种很有潜力的合成氨新工艺。但目前电催化NRR材料的产氨速率和法拉第效率低、工作稳定性不够高、溶液中痕量氨的定量检测困难及检测标准不统一等都为其发展带来了巨大挑战。本文首先介绍了电催化NRR的反应机理和常用研究方法,然后重点梳理了2019年以来NRR催化材料的最新研究进展,最后对该领域研究面临的挑战和机遇进行了展望。 相似文献
75.
采用气相色谱-离子迁移谱(gas chromatography-ion mobility spectrometry,GC-IMS)对洋葱浆馕6 种不同贮藏条件下挥发性物质进行分析,包括低温贮藏、室温贮藏、真空贮藏、脱氧贮藏、保鲜剂贮藏和保鲜剂结合脱氧贮藏。研究表明:在洋葱浆馕中共鉴定出66 种挥发性风味物质,其中包括醇类9 种、酮类4 种、醛类18 种、酯类4 种、呋喃衍生物3 种,酸类1 种和未能识别的化合物27 种。随着贮藏时间的延长,低温贮藏和真空贮藏洋葱浆馕在贮藏期内醛类挥发性有机物基本不变,其他处理组的醛类挥发性有机物在贮藏期内变化呈降低的趋势。结合主成分分析和欧氏距离可以发现低温贮藏和其他贮藏方式的第0天挥发性物质种类和浓度较为接近,主成分分析图中点的位置也相聚在一起,说明低温贮藏馕的挥发性物质变化不明显。该研究建立不同贮藏方式洋葱浆馕挥发性气味指纹图谱,可视化出洋葱浆馕挥发性成分轮廓,为洋葱浆馕贮藏期间风味变化规律提供信息。 相似文献
76.
Monopiles and gravity base foundations (GBF) are two of the most commonly used foundations for offshore wind turbines. As resonance can cause damage and even failure of wind turbines, understanding the difference between the dynamic responses of monopiles and GBFs under free vibration is important. However there is little experimental data regarding their natural frequency, especially from model tests carried out at correct stress levels. This paper presents the results of novel monopile and GBF tests using a centrifuge to directly determine the natural frequency (fn) of the foundation-soil system. The natural frequencies of wind turbine monopiles and GBFs in centrifuge models were measured during harmonic loading using a piezo-actuator, with the results confirming that soil-structure interaction must be considered to obtain the system’s natural frequency as this frequency reduces substantially from fixed-base values. These results will contribute in preventing resonance induced damage in wind-turbines. 相似文献
77.
Nan Lin Marie-Anne Rosemberg Wei Li Emily Meza-Wilson Christopher Godwin Stuart Batterman 《Indoor air》2021,31(1):26-39
Hotel housekeepers represent a large, low-income, predominantly minority, and high-risk workforce. Little is known about their exposure to chemicals, including volatile organic compounds (VOCs). This study evaluates VOC exposures of housekeepers, sources and factors affecting VOC levels, and provides preliminary estimates of VOC-related health risks. We utilized indoor and personal sampling at two hotels, assessed ventilation, and characterized the VOC composition of cleaning agents. Personal sampling of hotel staff showed a total target VOC concentration of 57 ± 36 µg/m3 (mean ± SD), about twice that of indoor samples. VOCs of greatest health significance included chloroform and formaldehyde. Several workers had exposure to alkanes that could cause non-cancer effects. VOC levels were negatively correlated with estimated air change rates. The composition and concentrations of the tested products and air samples helped identify possible emission sources, which included building sources (for formaldehyde), disinfection by-products in the laundry room, and cleaning products. VOC levels and the derived health risks in this study were at the lower range found in the US buildings. The excess lifetime cancer risk (average of 4.1 × 10−5) still indicates a need to lower exposure by reducing or removing toxic constituents, especially formaldehyde, or by increasing ventilation rates. 相似文献
78.
In this work,we developed a simple strategy to synthesize a carbon material with high nitrogen and rich carbon defects.Our approach polymerized diaminopyridine(DAP) and ammonium persulfate(APS).Following a range of different temperature pyrolysis approaches,the resulting rough surface was shown to exhibit edge defects due to N-doping on graphite carbon.A series of catalysts were evaluated using a variety of characterization techniques and tested for catalytic performance.The catalytic performance of the N-doped carbon material enhanced alongside an increment in carbon defects.The NC-800 catalyst exhibited outstanding catalytic activity and stability in acetylene hydrochlorination(C_2 H_2 GHSV=30 h~(-1),at 220℃,the acetylene conversion rate was 98%),with its stability reaching up to 450 h.Due to NC-800 having a nitrogen content of up to 13.46%,it had the largest specific surface area and a high defect amount,as well as strong C_2 H_2 and HCl adsorption.NC-800 has excellent catalytic activity and stability to reflect its unlimited potential as a carbon material. 相似文献
79.
Actuators: Functionally Antagonistic Hybrid Electrode with Hollow Tubular Graphene Mesh and Nitrogen‐Doped Crumpled Graphene for High‐Performance Ionic Soft Actuators (Adv. Funct. Mater. 5/2018) 下载免费PDF全文
80.
Influence of using as catalysis, Ni-Schiff Base complex which we previously synthesized [1] used to support with amberzyme oxirane resin (A.O.R.) polymer for increasing the catalytic activity in NaBH4 hydrolysis reaction, to hydrogen generation was studied. The prepared catalyst was characterized by using SEM, XRD, BET, FT-IR analyze technique. Polymer supported Ni-Schiff Base complex catalyzed NaBH4 hydrolysis reaction was investigated depending on concentration of NaBH4, concentration of NaOH, temperature, percentage of Ni complex in total polymer supported Ni-Schiff Base complex and amount of catalyst factors. The maximum hydrogen production rate from hydrolysis of sodium borohydride with nickel-based complex catalyst compared to the pure nickel catalyst is increased from 772 mL H2·g?1 cat.·min?1 to 2240 mL H2 g?1 cat.·min?1 [1], and with supported amberzyme oxirane resin polymer this nickel based complex catalyst was increased to 13000 mL H2·g?1 cat.·min?1 at 30 °C. The activation energy of complex catalyzed NaBH4 hydrolysis reaction was found as 25.377 kJ/mol. This work also includes kinetic information for the hydrolysis of NaBH4. 相似文献