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2.2.1. Physical and physicochemical characterization The particle size distribution of the Ch-zeolite was determined using a laser diffraction equipment (CILASk 1064) and standard wet sieving (Mesh Tylerk series). Scanning electron mic... 2.2.1. Physical and physicochemical characterization The particle size distribution of the Ch-zeolite was determined using a laser diffraction equipment (CILASk 1064) and standard wet sieving (Mesh Tylerk series). Scanning electron microscopy (SEM-PHILIPSk XL20) was used for photomicrographs as well as to analyse the Ch-zeolite composition (Energy Dispersion X-ray, EDX). The sample was initially placed in a vacuum chamber for coating with a thin layer (few nanometers) of gold (Au). The specific surface area of the material was measured by the methylene blue technique and by nitrogen gas adsorption methods, with the latter also providing information about particle porosity. In the methylene blue adsorption method, aqueous solutions (50 ml) of methylene blue (100 mg l 1) were agitated using an orbital shaker (Marconik) for an hour at room temperature in the presence of different quantities of the Ch-zeolite (0.05–0.3 g). The suspensions were then allowed to settle for 23 h and the resulting supernatants were centrifuged at 5000 rpm before the analysis of the residual methylene blue concentration. Results obtained correspond to averaged values of three different experiments. The specific surface area was evaluated by the Langmuir model, assuming the formation, at high concentrations, of a dye monolayer and 1.08 nm2 molecule 1, for the cross-sectional area (Van den Hul and Lyklema, 1968). The Ch-zeolite specific surface area was evaluated by the nitrogen gas adsorption method, using automated equipment (Autosorb 1-Quantachrome Instrumentsk), employing multipoint BET isotherm adsorption data fitting. Also from these data, the porosity of the material was evaluated through parameters such as volume of total pores (d < 206 nm), surface area and volume of micropores (d < 2 nm; Micropore Analysis Method). Zeta potential measurements for the natural and ammonia loaded zeolite, as a function of medium pH, were determined using a Zeta Plusk equipment (Brookhaven Instruments). Suspensions (0.01% v/v) of the Ch-zeolite, previously sieved below 37 Am (400 Mesh Tylerk), in a 10 3 mol l 1 solution of KNO3 were used and the medium pH was controlled with the addition of HNO3 (pH< 7) and KOH (pH>7), separately. For the Ch-zeolite saturated with ammonia, suspensions of the material were prepared by the same procedure, except that the sample was loaded with 100 mg NH3–N l 1 of ammonia. 展開(kāi)
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- 2.2.1. Physical and physicochemical characterization The particle size distribution of the Ch-zeolite was determined using a laser diffraction equipment (CILASk 1064) and standard wet sieving (Mesh Tylerk series). Scanning electron mic... 2.2.1. Physical and physicochemical characterization The particle size distribution of the Ch-zeolite was determined using a laser diffraction equipment (CILASk 1064) and standard wet sieving (Mesh Tylerk series). Scanning electron microscopy (SEM-PHILIPSk XL20) was used for photomicrographs as well as to analyse the Ch-zeolite composition (Energy Dispersion X-ray, EDX). The sample was initially placed in a vacuum chamber for coating with a thin layer (few nanometers) of gold (Au). The specific surface area of the material was measured by the methylene blue technique and by nitrogen gas adsorption methods, with the latter also providing information about particle porosity. In the methylene blue adsorption method, aqueous solutions (50 ml) of methylene blue (100 mg l 1) were agitated using an orbital shaker (Marconik) for an hour at room temperature in the presence of different quantities of the Ch-zeolite (0.05–0.3 g). The suspensions were then allowed to settle for 23 h and the resulting supernatants were centrifuged at 5000 rpm before the analysis of the residual methylene blue concentration. Results obtained correspond to averaged values of three different experiments. The specific surface area was evaluated by the Langmuir model, assuming the formation, at high concentrations, of a dye monolayer and 1.08 nm2 molecule 1, for the cross-sectional area (Van den Hul and Lyklema, 1968). The Ch-zeolite specific surface area was evaluated by the nitrogen gas adsorption method, using automated equipment (Autosorb 1-Quantachrome Instrumentsk), employing multipoint BET isotherm adsorption data fitting. Also from these data, the porosity of the material was evaluated through parameters such as volume of total pores (d < 206 nm), surface area and volume of micropores (d < 2 nm; Micropore Analysis Method). Zeta potential measurements for the natural and ammonia loaded zeolite, as a function of medium pH, were determined using a Zeta Plusk equipment (Brookhaven Instruments). Suspensions (0.01% v/v) of the Ch-zeolite, previously sieved below 37 Am (400 Mesh Tylerk), in a 10 3 mol l 1 solution of KNO3 were used and the medium pH was controlled with the addition of HNO3 (pH< 7) and KOH (pH>7), separately. For the Ch-zeolite saturated with ammonia, suspensions of the material were prepared by the same procedure, except that the sample was loaded with 100 mg NH3–N l 1 of ammonia. 展開(kāi)
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- ThequalitysystemofthecompanyisinconformitywithISO9002.Makingcomprehensiveuseofbiotechnology,thecompanyspecializesinmanufacturingandsellingC-4seriesorganicacidsandchiralpr... The quality system of the company is in conformity with ISO 9002 . Making comprehensive use ofbiotechnology, the company specializes in manufacturing and selling C-4series organic acids and chiral products. These products are widely used in many fields such as food, phamaceutical and chemical industries, and are well accepted by the overseas markets. The man products are L-Malic acid , DL-Malic acid, L(+)-Tartaric acid , Fumaric acid, Maleic acid and other organic acids. Annual productivity amounts to 20,000 tones. The company has become an important manufacturer of C-4 series organic acids in the world . All the products of the company have respectively met the different international aadvanced standards such as Food chemicals Codex, U.S. Pharmacopoeia ,British Pharmacopoeia and the products have obtained Star-K Kosher certificate. Above 70% of the Companys products are exported to Japan, Europe, Australias, the United states and middle East , and they are renown and well recognized in the international markets. The company will devote itself to research and development of enzyme technology and organic electrochemistry. It will continuously introduce new food additives, chiral pharmaceutical intermediates, chiral auxiliaries and chiral drugs. Depending on superior quality, good service and high reputation, the company is willing to establish a long-term mutually beneficial business partnership with overseas customers and continue contribute to the happy life of humans. 展開(kāi)
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- LabVIEWisapowerfulandcomplexprogrammingenvironment.LabVIEWisshortforLaboratoryVirtualInstrumentEngineeringWorkbench.Itisapowerfulandflexibleinstrumentationandanalysissoft... LabVIEW is a powerful and complex programming environment. LabVIEW is short for Laboratory Virtual Instrument Engineering Workbench. It is a powerful and flexible instrumentation and analysis software development application created by the folks at National Instruments—a company that creates hardware and software products that leverage computer technology to help engineers and scientists take measurements, control processes, and analyze and storem data. National Instruments was founded over twenty-five years ago in Austin, Texas by James Truchard (known as Dr. T), Jeffrey Kodosky, and William Nowlin. At the time, all three men were working on sonar applications for the U.S. Navy at the Applied Research Laboratories at The University of Texas at Austin. Searching for a way to connect test equipment to DEC PDP-11 computers, Dr. T decided to develop an interface bus. He recruited Jeff and Bill to join him in his endeavor, and together they successfully developed LabVIEW and the notion of a “virtual instrument.” In the process they managed to infuse their new company—National Instruments—with an entrepreneurial spirit that still pervades the company today. Engineers and scientists in research, development, production, test, and service industries as diverse as automotive, semiconductor, aerospace, electronics, chemical, telecommunications, and pharmaceutical have used and continue touse LabVIEW to support their work. LabVIEW is a major player in the area of testing and measurements, industrial automation, and data analysis. For example, scientists at NASA’s Jet Propulsion Laboratory used LabVIEW to analyze and display Mars Pathfinder Sojourner rover engineering data, including the position and temperature of the rover, how much power remained in the rover’s battery, and generally to monitor Sojourner’s overall health. LabVIEW provides an extensive library of virtual instruments and functions to help you in your programming. It includes conventional program debugging tools with which you can set breakpoints, single-step through the program, and animate the execution so you can observe the flow of data. 畢業(yè)設(shè)計(jì)急用,望高手幫忙翻譯一下 展開(kāi)
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- A new kind of TiO2 nanotube array/Ni(OH)2 (TiO2/Ni(OH)2) composite electrode with the storage ability of light energy was prepared by the deposition of Ni(OH)2 on the TiO2 nanotube array, which was synthesized by anodizing Ti foils in an HF... A new kind of TiO2 nanotube array/Ni(OH)2 (TiO2/Ni(OH)2) composite electrode with the storage ability of light energy was prepared by the deposition of Ni(OH)2 on the TiO2 nanotube array, which was synthesized by anodizing Ti foils in an HF aqueous solution. SEM and XRD results showed that Ni(OH)2 particles were well distributed on high density, well-ordered and uniform TiO2 nanotube arrays. The photoelectrochemical properties of the TiO2/Ni(OH)2 electrode were investigated in NaHCO3/NaOH buffer solution (pH 10) by means of UV–vis absorption spectra, cyclic voltammogram (CV) and photocurrent measurements. It was found that the TiO2/Ni(OH)2 electrode was highly sensitive to light and exhibited excellent photoelectrochromic properties. Upon UV irradiation, the photogenerated holes by TiO2 nanotube arrays can oxidize Ni(OH)2 to NiOOH, and thus the TiO2/Ni(OH)2 electrode can be photo-charged by light。1. Introduction Among many visible light photocatalysts, TiO2nanostructures have attracted much attention due to high photocatalytic activ-ity, nontoxicity, chemical stability and huge potential applications [1–6]. The TiO2 nanotube array is one of most attention-getting TiO2nanostructures because of large surface area and outstanding charge transport properties. TiO2nanotube arrays can be utilized in dye-sensitized solar cells[7–9], photocatalysis and hydrogen gas sensing [10]. So far, a variety of methods have been attempted to prepare TiO2 nanotube arrays, such as hydrothermal synthe-sis[11], Langmuir–Blodgett technique [12], solution casting [13] and anodization technique[10,14], etc. Among these methods, the anodization technique has many advantages of low cost, low tem-perature and easy to be scaled up to large-area preparation. Recently, anewkindof photo-functional systemwith theenergy storage ability has been developed by coupling TiO2 photosen-sitive electrode with energy storage materials. In Takahashi and Tatsuma’swork[15],aTiO2/Ni(OH)2bilayer thinfilmwas suggested for the oxidative energy storage. In this case, a redox-activep-type semiconductor Ni(OH)2is coupled withn-type TiO2photocatalyst to formap–njunction,WhenTiO2is illuminatedby light, holesgen-erated at the junction are separated from excited electrons, trans-ported into the bulk of Ni(OH)2and oxidized Ni(OH)2to NiOOH. Therefore, the oxidative energy storage system was constructed 展開(kāi)
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- Followthesysteminstallationinstructionscarefullyandinthespecifiedorder.ThesoftwaremustbeinstalledonthecomputerbeforeconnectingtheUSBcable.2.1FacilitiesRequirementsFacilit... Follow the system installation instructions carefully and in the specified order. The software must be installed on the computer before connecting the USB cable. 2.1 Facilities Requirements Facilities requirements for the alpha-SE system are listed in Table 2-1 and the system dimensions are given in Fig. 2-1. As shown in Fig. 2-2, the alpha-SE tool requires a clear work area of 20 by 18 inches (500 by 460 mm), excluding the operator computer. 2.2 Unpacking the Hardware Opening the Shipping Container Move the alpha-SE shipping container to the area where the tool will be installed. Open the container and remove the top and side pieces of packing foam. Carefully remove all smaller components from the shipping container, verifying that you received all components, as shown in Fig. 2-3. Finally, remove the alpha-SE ellipsometer and position it on your clear 20” by 18” (510 by 460 mm) workspace. Caution: The alpha-SE ellipsometer without sample chuck weighs approximately 37 lbs. (16 kg.). Please find an assistant to lift the alpha-SE unit out of the shipping carton and on to clear work surface. 展開(kāi)
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- Withmorethan6millionnewmeasurementchannelssoldlastyear,NationalInstrumentsisaworldwideleaderinvirtualinstrumentation.Engineershaveusedvirtualinstrumentationformorethan25y... With more than 6 million new measurement channels sold last year, National Instruments is a worldwide leader in virtual instrumentation. Engineers have used virtual instrumentation for more than 25 years to bring the power of flexible software and PC technology to test, control, and design applications making accurate analog and digital measurements from DC to 2.7 GHz. This document provides an excellent introduction to virtual instrumentation as well as additional resources for continued research. What is virtual instrumentation? With virtual instrumentation, software based on user requirements defines general-purpose measurement and control hardware functionality. Virtual instrumentation combines mainstream commercial technologies, such as the PC, with flexible software and a wide variety of measurement and control hardware, so engineers and scientists can create user-defined systems that meet their exact application needs. With virtual instrumentation, engineers and scientists reduce development time, design higher quality products, and lower their design costs. 展開(kāi)
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- 粒度檢測(cè)方法與優(yōu)缺點(diǎn)比較 粉末粒度分布的測(cè)量方法經(jīng)過(guò)百余年的發(fā)展,據(jù)統(tǒng)計(jì)至少已經(jīng)發(fā)展了上百種,但隨著科技的發(fā)展,有些方法被逐步淘汰,有些方法得到了改進(jìn)和發(fā)展(如激光散射法、動(dòng)態(tài)光散射等), 并在生產(chǎn)、科研中得到了廣泛的應(yīng)用,現(xiàn)在普遍使用的測(cè)量... 粒度檢測(cè)方法與優(yōu)缺點(diǎn)比較 粉末粒度分布的測(cè)量方法經(jīng)過(guò)百余年的發(fā)展,據(jù)統(tǒng)計(jì)至少已經(jīng)發(fā)展了上百種,但隨著科技的發(fā)展,有些方法被逐步淘汰,有些方法得到了改進(jìn)和發(fā)展(如激光散射法、動(dòng)態(tài)光散射等), 并在生產(chǎn)、科研中得到了廣泛的應(yīng)用,現(xiàn)在普遍使用的測(cè)量方法有篩分法、顯微圖像法、光透沉降法、激光散射(衍射)法等幾種,下面簡(jiǎn)單介紹幾種常用的粒度測(cè)量方法。 ▲ 篩分法 是一種具有很長(zhǎng)歷史的粒度測(cè)定方法,篩分法粒度測(cè)量是利用一組篩孔大小不同的標(biāo)準(zhǔn)篩將粉末進(jìn)行篩分,然后對(duì)每個(gè)篩上樣品分別進(jìn)行稱重,進(jìn)而得到以質(zhì)量為量綱的粒度分布數(shù)據(jù),并可由分布結(jié)果計(jì)算出如Dv50等其它參數(shù)。篩分滶要特點(diǎn)是測(cè)量成本低廉,操作簡(jiǎn)單,但存在著如重復(fù)性差,測(cè)量時(shí)間較長(zhǎng),不能對(duì)5um以下的顆粒進(jìn)行測(cè)量等缺點(diǎn)。 ▲顯微圖像分析法 利用光學(xué)或電子顯微鏡及計(jì)算機(jī)圖像識(shí)別技術(shù)對(duì)顆粒粒度及粒度分布,顆粒形貌進(jìn)行測(cè)量,分析的方法。這種方法不僅能夠測(cè)量粒度分布而且能夠直接觀察到顆粒的形狀,是目前唯yi的一種可目視的直觀測(cè)試方法,這種特點(diǎn)也是其它粒度測(cè)量?jī)x器所不具備。這種方法的優(yōu)點(diǎn)是直觀、簡(jiǎn)便、費(fèi)用低,缺點(diǎn)是由于取樣量很少,為使測(cè)量結(jié)果代表性,必須增加待測(cè)顆粒的個(gè)數(shù)(一般認(rèn)為測(cè)量顆粒的個(gè)數(shù)應(yīng)在1000個(gè)以上),這就相應(yīng)嗇了測(cè)量時(shí)間,及測(cè)試人員的工作強(qiáng)度,但由于能夠?qū)︻w粒形貌(如長(zhǎng)徑比等)進(jìn)行測(cè)量,目前也有廣泛應(yīng)用。 ▲光透沉降法 沉降法粒度測(cè)試的理論基礎(chǔ)是斯托克司定律和比爾定律。前者給出顆粒沉降速度與粒徑的關(guān)系,后者闡明光透過(guò)率與粒徑重量的關(guān)系。可簡(jiǎn)單的描述為:在沉降液中,有若干相同比重的顆粒,如果同一時(shí)刻,從同一位置開(kāi)始下降,則不同直徑的顆粒到達(dá)測(cè)量區(qū)的時(shí)間是不同的,根據(jù)顆粒到達(dá)測(cè)量區(qū)的時(shí)間,及光強(qiáng)的強(qiáng)弱,就可以計(jì)算出顆粒的粒徑,及相應(yīng)粒徑的顆粒在顆粒群中占有的比例。采用此種原理的測(cè)量?jī)x器有比較長(zhǎng)的使用歷史,但隨著科技的發(fā)展和測(cè)量手段的進(jìn)步,此方法的缺點(diǎn)也日益突出,如測(cè)量時(shí)間長(zhǎng),重復(fù)性誤差大等。 ▲ 激光散射法 顆粒測(cè)量?jī)x器是以富朗和菲衍射(Fraunhofer diffraction)和米氏散射(Mie scattering)為理論基礎(chǔ)。此理論可以簡(jiǎn)單理解為沿直線傳播的平行激光束,在傳播過(guò)程中遇到顆粒的遮擋后,傳播方向發(fā)生了改變(即發(fā)生了衍射和散射現(xiàn)象),并且大顆粒使激光改變的角度小,小顆粒改變大。(實(shí)際上是由于顆粒的遮擋在無(wú)限遠(yuǎn)處形成了一個(gè)愛(ài)里斑,愛(ài)里斑87%的能量集中在ZX亮環(huán),且顆粒直徑越大,ZX環(huán)越小,顆粒直徑越小ZX亮環(huán)越大)。如果能在不同角度上接收光能, 對(duì)于相應(yīng)的的角度,其光能是對(duì)應(yīng)直徑的顆粒集合發(fā)生衍射(散射)造成的,相應(yīng)其他角度上光能的強(qiáng)弱也就反應(yīng)了對(duì)應(yīng)直徑顆粒在整個(gè)顆粒集合中占有的比例。 ▲ 采用激光粒度測(cè)量?jī)x器相對(duì)于光透沉降粒度測(cè)量?jī)x器具有很多優(yōu)點(diǎn): 1. 原理先進(jìn),并且由于測(cè)試過(guò)程中沒(méi)有需要預(yù)先設(shè)定的參數(shù)(如樣品比重、介質(zhì)黏度、環(huán)境溫度等),及在測(cè)量過(guò)程中隨時(shí)改變的條件, 因此測(cè)量結(jié)果準(zhǔn)確、可靠。 2. 測(cè)量速度快,測(cè)試時(shí)間與樣品粒度分布無(wú)關(guān),典型測(cè)試過(guò)程一般小于一分鐘; 3. 每次測(cè)試,多次對(duì)樣品進(jìn)行掃描,測(cè)試結(jié)果重復(fù)性好; 4. 進(jìn)樣方式種類多,可適用于各種類樣品。 展開(kāi)
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- Carbonnanomaterialsarenovelmanufacturedmaterials,havingwidespreadpotentialapplications.Adsorptionofhydrophobicorganiccompounds(HOCs)bycarbonnanomaterialsmayenhancetheirto... Carbon nanomaterials are novel manufactured materials, having widespread potential applications. Adsorption of hydrophobic organic compounds (HOCs) by carbon nanomaterials may enhance their toxicity and affect the fate, transformation, and transport of HOCs in the environment. In this research, adsorption of naphthalene, phenanthrene, and pyrene onto six carbon nanomaterials, including fullerenes, single-walled carbon nanotubes , and multiwalled carbon nanotubes was investigated, which is the first systematic study on polycyclic aromatic hydrocarbons (PAHs) sorption by various carbon nanomaterials. All adsorption isotherms were nonlinear and were fitted well by the Polanyi-Manes model (PMM). Through both isotherm modeling and constructing “characteristic curve”, Polanyi theory was useful to describe the adsorption process of PAHs by the carbon nanomaterials. The three fitted parameters (Q0, a, and b) of PMM depended on both PAH properties and the nature of carbon nanomaterials. For different PAHs, adsorption seems to relate with their molecular size, i.e., the larger the molecular size, the lower the adsorbed volume capacity (Q0), but higher a and b values. For different carbon nanomaterials, adsorption seems to relate with their surface area, micropore volume, and the volume ratios of mesopore to micropore. Quantitative relationships between these sorbent properties and the estimated parameters of PMM were obtained. These relationships may represent a first fundamental step toward establishing empirical equations for quantitative prediction of PAH adsorption by carbon nanomaterials and possibly other forms of carbonaceous (geo-) sorbents, and for evaluating their environmental impact. In addition, high adsorption capacity of PAHs by carbon nanotubes may add to their high environmental risks once released to the environment, and result in potential alteration of PAHs fate and bioavailability in the environment. 展開(kāi)
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- 以下的技術(shù)指標(biāo)用語(yǔ)都是關(guān)于PVC顆粒的,請(qǐng)知道的幫忙準(zhǔn)確地翻譯~~~謝謝VICATPOINTHARDNESSTENSILESTRENGTHYIELDPOINTELONGATIONATBREAKFLEXURALMODULUSIMPACTSTRENGTHINFLAMMABILITYA... 以下的技術(shù)指標(biāo)用語(yǔ)都是關(guān)于PVC顆粒的,請(qǐng)知道的幫忙準(zhǔn)確地翻譯~~~謝謝 VICAT POINT HARDNESS TENSILE STRENGTH YIELD POINT ELONGATION AT BREAK FLEXURAL MODULUS IMPACT STRENGTH INFLAMMABILITY AV.A.P. IMPURITY PARTICLE NUMBER VOLATILES(INCL WATER) BULK DENSITY SIEVE RATIO “FISH EYE”NUMBER UNIT/400c㎡ RESIDUAL VCM PPM 展開(kāi)
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- 公司接到一個(gè)壓力容器圖紙是英文版的想知道其中的一些意思,原文如下:一TECHNICALDATA:1.MAXIMUMALLOWABLEPRESSURE7.0BAR2.WORKINGPRESSURE5.5+/-1.0BAR3.TESTPRESSURE10.0BAR4.MAXI... 公司接到一個(gè)壓力容器圖紙 是英文版的 想知道其中的一些意思,原文如下: 一 TECHNICAL DATA: 1.MAXIMUM ALLOWABLE PRESSURE 7.0BAR 2.WORKING PRESSURE 5.5+/-1.0BAR 3.TEST PRESSURE 10.0BAR 4.MAXIMUM ALLOWABLE TEMPERATURE 70℃ 5.MINIMUM ALLOWABLE TEMPERATURE 0℃ 6.FLUID PREFILL(ISO VG46-HLP) 7.CORROSION ALLOWABLE 2mm 8.VOLUME 38.00L 二 TECHNICAL ACCEPTANCE: 1.CHINA DECLARATION OF CONFORMITY 2.CONFORITY ASSESSMENT PROCEDURE REPORTS 3.BILL OF MATERIALS 4.INSPECTION DOCUMENTS AND CERTIFICATES FOR USED MATERIALS 5.WELDING MAP 6.LIST OF WELDERS AND THEIR QUALIFICATION CERTIFICATES 7.NDE EXAMINATION REPORTS 8.VT AND MEASUREMENT REPORTS 9.PAINT: EXTERNAL:BLUE RAL 5015 SEMI-GLOSS FINISH INTERNAL:USE SUNCORITE 528 BY HENKEL METAL CHEMICALS TO TREAT INTERNAL SURFACE OF TANK 10.PAINT REPORT 11.TECHNICAL DOCUMENTATION AND OPERAING MANUAL 三 NOTES: 1.ALL DIMENSIONS ARE IN MILLIMETER UNLESS OTHERWISE NOTED. 2.GASKET CONTACK SURFACE OF ALL FLANGES SHALL BE FINISHED WITH 125-250 AARH. 3.INTERNAL WELD SURFACE OF INSTRUMENT NOZZLE TO BE FULLY FLUSHED. 4.PAINT INSIADE AND OUT PER OILGEAR STANDAR SOP-U-002. 5.TATAL WEIGHT OF UNIT ASSEMBLY IS 32,900LB[14,900kg]. 6.DIMENSIONS IN MM. 展開(kāi)
- 請(qǐng)高手高手高高手幫忙翻譯下面的設(shè)備名稱
- 請(qǐng)幫忙翻譯下:謝謝!斑點(diǎn)酶解系統(tǒng)自動(dòng)斑點(diǎn)切取系統(tǒng)蛋白純化系統(tǒng)基因芯片掃描系統(tǒng)二維電泳梯度膠制備系統(tǒng)全自動(dòng)電泳儀多通道懸液芯片系統(tǒng)體內(nèi)可見(jiàn)光成像系統(tǒng)如果您翻譯的十分準(zhǔn)確,我... 請(qǐng)幫忙翻譯下:謝謝! 斑點(diǎn)酶解系統(tǒng) 自動(dòng)斑點(diǎn)切取系統(tǒng) 蛋白純化系統(tǒng) 基因芯片掃描系統(tǒng) 二維電泳梯度膠制備系統(tǒng) 全自動(dòng)電泳儀 多通道懸液芯片系統(tǒng) 體內(nèi)可見(jiàn)光成像系統(tǒng) 如果您翻譯的十分準(zhǔn)確,我將再加Z高分(好像是100分)。 我要英文,謝謝! 展開(kāi)
- 高分請(qǐng)高手幫忙翻譯英文文獻(xiàn)資料(4)
- Whenliquidisheateditevaporates.Theevaporationprocessisdependentonpressure,temperatureandcompositionoftheliquidandgas.Gascanalsocondense.Inadditionthereisaconvectiveheattr... When liquid is heated it evaporates. The evaporation process is dependent on pressure, temperature and composition of the liquid and gas. Gas can also condense. In addition there is a convective heat transfer between the liquid and gas zone that must be considered. The surfaces in the gas zone also radiates from the shell to the liquid. During the blowdown process mass is usually evacuated from the gas zone, but also liquid might be released. The rate of release is dependent on density and pressure as well as the release area. As pressure and temperature change, the properties of all materials change. This has to be considered in a prediction of a blowdown process. The main purpose of a blowdown process is as earlier stated to maintain integrity of the equipment. The strength properties of the shell are the key factor on that matter. The strength is dependent on the inside pressure as well as the support forces. If the exposing forces produce stress that exceeds the ultimate tensile stress (UTS) in some regions, the integrity of the equipment is no longer maintained. In the design phase of a process plant, these aspects are crucial and must be included as a dimensional factor. For that reason prediction of the blowdown process is essential. Lately some new standards has been introduced to the industry on this matter [3] and [4]. VessFire [1] and [2] is a multi physics system designed for calculation of this kind of problems. It has been applied for some time in the oil and process industry on many projects. The system satisfies the requirements for predictions outlined in [3] and [4]. It includes all aspects described above including integrity of the shell. As part of the verification process some experiments where performed. Some of the experiments are presented here. EXPERIMENTAL STUDY The purpose of the experiments was to investigate the evaporation process and the heat transfer to the liquid and vapour. In a complex system it is important to reduce unknown parameters as far as possible. Exposure from a flame is difficult to control. Flux measurements are point values and not necessarily representative for the average exposure. In order to control the heat exposure it was decided to apply an electric heating system. The system and the verification of the system is described in [5], [6] and [8]. The furnace was built inside a supporting tube. Figure 2 shows a general arrangement of the experimental outfit. A 0.05 mm stainless steel foil formed as a tube, 300 mm in diameter, generated the heat. The power supply was based on a 3-phase alternating current system giving 48 Volt output as maximum. The top exposure had a limit of 300 kW. The foil had a surface of about 1 m2, giving a heat flux up to 300 kW/m2. The power input could be continuously regulated from zero to maximum load. Each experiment was started from zero and brought up to the required load within a few seconds. After that the surface temperature of the heating foil was kept constant during the exposure period. Experiments with both dry objects as well as water filled object were performed. In this paper only water filled experiments are presented Figure 2 General arrangements drawing of the experimental furnace including the specimen and its support Figure 3 Illustration of the heating unit. The black part is copper conductors for the foil. The grey part is the heating foil exposing the specimen. The foil is equipped with thermo-elements all marked H, except H5 which is the temperature in a copper ring and H6 which is the temperature between the insulation and the supporting tube. 展開(kāi)
- 做質(zhì)譜的高手幫忙翻譯一下
- 下面是做氣相質(zhì)譜給出的參數(shù),用的機(jī)子是:珀金埃爾默(perkinElmer)Clarus500GC/MS。拜托各位幫忙翻譯一下,謝謝Inst()ACQUISITIONPARAMETERSOven:Initialtemp35°Cfor2min,ramp10°... 下面是做氣相質(zhì)譜給出的參數(shù), 用的機(jī)子是:珀金埃爾默(perkin Elmer)Clarus 500 GC/MS。 拜托各位幫忙翻譯一下,謝謝 Inst() ACQUISITION PARAMETERS Oven: Initial temp 35°C for 2 min, ramp 10°C/min to 150°C, hold 2.50 min, InjAauto=150°C, Volume=0 μL, Split=35:1, Carrier Gas=He, Solvent Delay=0.10 min, Transfer Temp=280°C, Source Temp=260°C, Scan: 5 to 300Da, Column 30.0m x 250μm 展開(kāi)
- 高手幫忙翻譯!!+100
- 虛擬儀器是一種新的測(cè)試與測(cè)控技術(shù),近年來(lái)得到了迅速發(fā)展,基于虛擬儀器的機(jī)器視覺(jué)系統(tǒng)就是其領(lǐng)域的一個(gè)重要分支。本文圍繞基于虛擬儀器的機(jī)器視覺(jué)有關(guān)理論和其在玻璃瓶口缺陷檢測(cè)中... 虛擬儀器是一種新的測(cè)試與測(cè)控技術(shù),近年來(lái)得到了迅速發(fā)展,基于虛擬儀器的機(jī)器視覺(jué)系統(tǒng)就是其領(lǐng)域的一個(gè)重要分支。本文圍繞基于虛擬儀器的機(jī)器視覺(jué)有關(guān)理論和其在玻璃瓶口缺陷檢測(cè)中的具體應(yīng)用進(jìn)行了研究。 針對(duì)玻璃瓶這一對(duì)象檢測(cè)的高精度、高準(zhǔn)確度、實(shí)時(shí)性的特點(diǎn),本文提出了一種基于LabVIEW的數(shù)字圖像處理檢測(cè)方案,并在設(shè)計(jì)過(guò)程中解決了一系列關(guān)鍵問(wèn)題:利用硬件和軟件的編程實(shí)現(xiàn)了對(duì)玻璃瓶口的缺陷監(jiān)測(cè);使用閾值進(jìn)行圖像的二值化處理,并進(jìn)行開(kāi)啟、閉合以增強(qiáng)圖像質(zhì)量;使用Vision Builder AI對(duì)有故障的圖像進(jìn)行故障特征識(shí)別; 通過(guò)理論研究與實(shí)驗(yàn),證明了本文所提出的玻璃瓶口缺陷監(jiān)測(cè)方法是有效和可行的,為其機(jī)器視覺(jué)檢測(cè)的進(jìn)一步研究和開(kāi)發(fā)奠定了很好的基礎(chǔ) 請(qǐng)用專業(yè)術(shù)語(yǔ),不要用在線翻譯。謝謝····好可以多加分 展開(kāi)
- 急求翻譯 請(qǐng)幫忙翻譯一下這篇英文資料,急用!!!!
- Wells-BrookfieldCone/PlateRapidDeterminationOfAbsoluteViscosityIntroductionTheWells-BrookfieldCone/PlateViscometergivesresearchersasophisticatedinstrumentforroutinelydete... Wells-Brookfield Cone/Plate Rapid Determination Of Absolute Viscosity Introduction The Wells-Brookfield Cone/Plate Viscometer gives researchers a sophisticated instrument for routinely determining absolute viscosity of fluids in small sample volumes. Its cone and plate geometry provides the precision necessary for development of complete rheological data. Principle of Operation The Wells-Brookfield Cone/Plate Viscometer is a precise torque meter which is driven at discrete rotational speeds. The torque measuring system, which consists of a calibrated beryllium-copper spring connecting the drive mechanism to a rotating cone, senses the resistance to rotation caused by the presence of sample fluid between the cone and a stationary flat plate. The resistance to the rotation of the cone produces a torque that is proportional to the shear stress in the fluid. The amount of torque is indicated either on a dial or digital display, depending on model. This reading is easily converted to absolute centipoise units (mPa.s) from pre-calculated range charts. Alternatively, viscosity can be calculated from the known geometric constants of the cone, the rate of rotation, and the stress related torque. See Range Tables The correct relative position of cone and plate is obtained by following a simple mechanical procedure without the need for external gauges or supplementary instrumentation. The stationary plate forms the bottom of a sample cup which can be removed, filled with .5 ml to 2.0 ml of sample fluid (depending on cone in use), and remounted without disturbing the calibration. The sample cup is jacketed and has tube fittings for connection to a constant temperature circulating bath. The system is accurate to within ?.0% of the working range. Reproducibility is to within ?.2%. Working temperature range is from 0oC to 100oC. 展開(kāi)
- 幫忙翻譯一下,謝謝
- IFRS13willhelpincreasetransparencywhenentitiesusemodelstomeasurefairvalue,particularlywhenusersneedmoreinformationaboutmeasurementuncertainty,suchaswhenthemarketforanasse... IFRS 13 will help increase transparency when entities use models to measure fair value, particularly when users need more information about measurement uncertainty, such as when the market for an asset or a liability has become less active. IFRS 13 requires entities to disclose information about the valuation techniques and inputs used to measure fair value, as well as information about the uncertainty inherent in fair value measurements (which was of particular concern during the global fi nancial crisis). Some of those disclosures, including the fair value hierarchy, were already introduced in March 2009 through an amendment to IFRS 7 Financial Instruments: Disclosures. Those disclosures have been relocated to IFRS 13. The requirements in IFRS 13 also incorporate the guidance in a FASB Staff Position (FSP) issued in April 2009. 展開(kāi)
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- 便攜式COD測(cè)定儀技術(shù)參數(shù)檢測(cè)項(xiàng)目:COD;...便攜式COD測(cè)定儀技術(shù)參數(shù)檢測(cè)項(xiàng)目:COD;檢測(cè)量程:10-15000mg/L(分段);檢測(cè)方法:水質(zhì)化學(xué)需氧量快速檢測(cè)法參考標(biāo)準(zhǔn):HJ/T399-2007; 比色方式:預(yù)制比色試管16mm;比色皿50mm(含)以下;操作系統(tǒng):安卓智能操作系統(tǒng);屏幕顯示:8英寸高清觸摸屏,1024*768分辨率;示值誤差:≤±5%;重復(fù)性:<0.5%;穩(wěn)定性:<0.5%;分辨率:0.001;光學(xué)穩(wěn)定性:≤±0.001Abs/20分鐘(10萬(wàn)小時(shí)壽命);自動(dòng)校準(zhǔn):儀器具有自動(dòng)校準(zhǔn)功能;打印方式:微型熱敏打印機(jī);操作視頻:≥4個(gè)項(xiàng)目的操作步驟演示視頻;
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