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Autoclave Autoclaving

Hydrogenation at High Pressures. These are carried out almost exclusively in autoclaves. Autoclaves are much like the apparatus previously shown, but with much more steel to withstand the high pressures and temperatures they receive. Most of them have built-in heating elements and temperature indicators. Yes, they are very expensive, I have seen some homemade units that functioned quite effectively but I do not recommend that you try to build one. If you do try to build one, know what extremities the unit will be subject to and get professional advice and assistance for construction. Because medium and no pressure hydrogenations are so effective, I will not elaborate on high pressure systems any further. [Pg.37]

Charged to a one liter Hastelloy-C autoclave (Autoclave Engineer), provided with a magnet-drive stirrer, a mixture of methanol (5.4 mole), methylacetate (3.5mole), methyliodide (350 mmole), nickel iodide (40 mmole), lithium iodide ( 380 mmole) and tetraphenyl tin (130 mmole). [Pg.75]

Unloading autoclave Room no. Wall, floor, autoclave surface, control panel, movable table, corner Wall, wall near autoclave, doorknob, above autoclave door, floor beneath autoclave, autoclave surface, control panel, each tool, table, chairs, belts of moving benches or chairs, waste containers, corners (especially unused) 1 CFU 3 CFUs... [Pg.777]

Experiments were carried out in a 0.3 litre stirred autoclave (Autoclave Engineers type Magne-Drive) operating in a batch mode andequipped with a system for sampling of liquid during the course of the reaction... [Pg.121]

Reactor type Tubular or autoclave Autoclave CSTR Loop or CSTR Fluidized or stirred bed... [Pg.165]

Equipment. A commercial 300 ml magnedrive autoclave (Autoclave Engineers) reactor was used for all reaction studies and has been previously described (3-6). Varian gas chromatographs (Model 920 and 1800) were used for analysis of gas samples and products from the hydrotreating reactions. [Pg.199]

Autoclave Cells. The NMR probe is constmcted inside a high pressure autoclave. Autoclave cells are principally used for volume of activation studies. Toroid cells have been used for studies of organometallic reactions. ... [Pg.6187]

The experiments were performed in a pressurized autoclave (Autoclave Engineers, 1 dm ) equipped with a turbine impeller and a bubbling unit. The pressure, the tenqrerature and the agitation velocity were controlled and registered during the experiment by a data acquisition program. [Pg.309]

Stout and More (16) used natural soil cores amended with NOs but no carrier in 2.5 mL water (see pp. 303) and a helium sweep gas to collect gases emitted from the soil core surface. Cores were freshly collected, adjusted to desired moisture tension, and amended with denitrifying cultures or sterilized by Co irradiation or autoclaving. Autoclaved soil produced some — N20 but no — N2, whereas irradiated soil produced both gases. Addition of a denitrifying pseudomonad markedly increased the — N2 produced by soil sterilized by both methods but generally reduced the amount of — N20 produced by the sterilized soil. The mechanism responsible for the — N20... [Pg.306]

Analyte Units No. of samples Concentration (mean SD) Before After Autoclaving Autoclaving ... [Pg.339]

Autoclave. Autoclave sterilization consists of exposing the parts to steam in a pressurized vessel. Temperatures of 121 °C to 132°C at pressures up to 2 atmospheres are reached with saturated moisture. Under these conditions, some polymer materials hydrolyze and revert to monomers with loss of adhesive strength. Materials most susceptible to reversion include some polyurethanes, acrylics, and silicones. Epoxies are most resistant. [Pg.314]

YMB liquid growth medium For 1 liter, dissolve 2 g mannitol, 0.4 g yeast extract, 0.2 g MgS04 7H2O, and 0.1 g NaCl, and autoclave. Autoclave a 6.55% K2HPO4 3H2O, pH 6.8, solution separately add 10 ml per liter before use. [Pg.120]

Autoclave Autoclave Vortex Mixer Digestion Bomb... [Pg.210]


See other pages where Autoclave Autoclaving is mentioned: [Pg.25]    [Pg.930]    [Pg.339]    [Pg.72]    [Pg.17]    [Pg.157]    [Pg.166]    [Pg.65]    [Pg.1997]    [Pg.1998]    [Pg.353]    [Pg.62]    [Pg.63]    [Pg.425]    [Pg.1985]    [Pg.1986]    [Pg.296]    [Pg.48]   
See also in sourсe #XX -- [ Pg.63 , Pg.152 ]




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Aerated concretes, autoclaved

Agitated mini-autoclaves

Antigen Retrieval on Thin Resin Sections Using Autoclaving

Applications to Autoclave Curing

Autoclavation

Autoclavation

Autoclave (Steam Sterilizer)

Autoclave (pressure cooker)

Autoclave (stirred tank

Autoclave Buildup

Autoclave Free-volume

Autoclave INDEX

Autoclave Molding of Graphite Epoxy Composites

Autoclave Processing (AP)

Autoclave Processing Description

Autoclave Vulcanisation

Autoclave bonding

Autoclave chamber

Autoclave cleaning

Autoclave cleaning tests

Autoclave containment facility

Autoclave cure

Autoclave cure cycle

Autoclave curing, VARTM

Autoclave development

Autoclave dimensional control

Autoclave experiments, methods

Autoclave flow compaction

Autoclave forming

Autoclave future trends

Autoclave gradients

Autoclave gypsum

Autoclave heat setting

Autoclave history

Autoclave indicators

Autoclave laboratory clothing

Autoclave leaching

Autoclave method

Autoclave model

Autoclave molding

Autoclave molding operation

Autoclave molds

Autoclave moulding

Autoclave moulding (prepreg)

Autoclave nitrogen atmosphere

Autoclave performance qualification

Autoclave performances, comparison

Autoclave press clave

Autoclave press claves

Autoclave process

Autoclave process development

Autoclave process tooling

Autoclave processing for composites

Autoclave production

Autoclave products

Autoclave qualification

Autoclave reaction

Autoclave reactors

Autoclave rooms

Autoclave safety requirements

Autoclave schematic

Autoclave set

Autoclave steaming

Autoclave sterilization

Autoclave stirring

Autoclave stresses

Autoclave synthesis

Autoclave technique

Autoclave technology

Autoclave temperature development

Autoclave testing

Autoclave tests

Autoclave tests described

Autoclave thermal expansion

Autoclave thermal strains

Autoclave to VARTM

Autoclave tool removal process

Autoclave tooling

Autoclave treatment

Autoclave typical cycle

Autoclave typical system

Autoclave use of hydrogenation bomb

Autoclave venting

Autoclave vulcanization

Autoclave waste decontamination

Autoclave work, batch

Autoclave, equipment sterilization

Autoclave, internally heated

Autoclave, internally heated measurements

Autoclave, shaking

Autoclave, slurried hydrogenation

Autoclave-induced reaction

Autoclaved

Autoclaved calcium silicate hydrates

Autoclaved lime

Autoclaved materials

Autoclaved materials very high strength

Autoclaves

Autoclaves

Autoclaves AIRTC

Autoclaves and Sterilizers

Autoclaves and autoclaving

Autoclaves curing

Autoclaves double ended

Autoclaves high vacuum

Autoclaves pressures

Autoclaves problems

Autoclaves processing

Autoclaves, agitated

Autoclaves, hydrothermal synthesis

Autoclaves, validation

Autoclaving

Autoclaving

Autoclaving and Sterile Preparation

Autoclaving epitope retrieval with

Autoclaving method

Autoclaving moist

Autoclaving temperatures

Autoclaving validation

Autoclaving, instruments

Basic chemistry of autoclave processes

Batch autoclave reactor, catalytic

Boiling under pressure (Kiering in autoclaves)

Bulk polymerization autoclave

CATALYTIC HYDROGENATION AUTOCLAVES

Cell-autoclave reactor

Cement autoclaved

Cement paste autoclaved

Commercial Parr autoclave

Composite materials autoclave process

Concrete autoclave aerated

Contact time autoclaves

Continuous autoclave reactor

Corrosion from autoclaves

Curing autoclave moldings

Drying autoclave

Effluent autoclave

Equipment (Autoclaves, etc

Equipment autoclave

Glass autoclaving

Heating methods autoclave

Hydrogenation autoclaves

Hydrogenation bomb, use of, as autoclave

Infrared autoclave

Injectable products autoclaving

LDPE Autoclave Reactor

LDPE autoclave process

Lamination, autoclave

Lamination, autoclave Orientation process

Liquid crystals high-pressure autoclave

Metallurgy autoclaving

Micro-autoclave

Out of autoclave processes

Out-of-autoclave curing process

Out-of-autoclave curing process (Cont processes

Out-of-autoclave curing process in polymer matrix composites

Parr autoclave

Polyethylene autoclave

Polymer matrix composites autoclave processing

Polymerization reactor autoclave-type

Polyolefin autoclave reactor

Pressure equipment autoclave bonding

Processing autoclave molding

Pyrrhotite from autoclaves

Reactor 1 Agitated Mini-autoclaves

Reinforced-plastic autoclave molding

Resin sections autoclaving

Rotating autoclave

Safety autoclaves

Saturated steam autoclaves

Saturated steam autoclaves construction

Saturated steam autoclaves process

Sealed autoclave

Silica autoclave curing

Spinning-falling basket autoclaves

Steam autoclave

Sterile autoclaved) broth

Sterilisation processes autoclaving

Superheated water spray autoclaves

The Autoclave Process

Thermal insulation materials, autoclaved

Toroid cavity autoclave

Washer/autoclaves

Waste autoclaving

Water-autoclave

Water-autoclave extraction

Water-autoclave extracts

Water-autoclave procedure

Wet autoclave method

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