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Facilities INDEX

Iogen (2005). Cellulose Ethanol Demonstration Facility, www.iogen.ca/company/ facilities/index.html. [Pg.251]

Maintain a copy of a master schedule sheet of all nonclinical laboratory studies conducted at the testing facility indexed by test article and containing the test system, nature of study, date study was initiated, current status of each study, identity of the sponsor, and name of the study director. [Pg.61]

Environmental Resources Technology Environmental Teratology Information Center Database Facilities Index System... [Pg.128]

Maintain a copy of a master schedule sheet of all studies conducted at the testing facility indexed by test substance, and containing the test... [Pg.336]

The experiment was carried out by a continuously working Nd YAG-laser fabricated by NEC. The laser has a maximum output of 1200 W and is controlled by handling facility with a linear axle. A stage index fiber optical waveguide with a diameter of d=1000 pm was used for the control of the beam. The focusing optics consist of a focusing lens (f=l 16 mm) and a collimation lens (f=70 mm). [Pg.543]

Comonomer is exhausted at relatively low conversion (20), but a random copolymer is nevertheless obtained. This is because a very facile transacetalisation reaction allows for essentially random redistribution of the comonomer units (18) and also results in a polydispersity index near 2.0 (21). [Pg.58]

These test results are then compared with similar test data obtained from the manufacturer on similar windings carried out during manufacture. If the manufacturer s original test results are available, the results obtained at site can be quickly compared and the condition of the insulation assessed easily and accurately. If the test facility to obtain test results at 1 minute and 10 minutes is not available, the results may also be obtained for 15 seconds and 60 seconds and a graph plotted as shown in Figure 9.5(a) to determine the polarization index. [Pg.225]

Usage of toluene at this facility remained the same for both years, resulting in an index of 1.0. If usage had been reduced by half, the index would have been 0.5. [Pg.52]

Has the capacity to store and manage MSDS and chemical inventory form data Data manipulation including cross indexing lists to identify all facilities using a particular chemical. [Pg.278]

Risk Indices - A risk index is a single-number measure of tlie risk associated with a facility. Some risk indices are qualitative or semi-quantitative, ranking risks in various general categories. Risk indices may also be quantitative averages or bencluiiarks based on otlier risk measures. [Pg.515]

The oxygen index method was used to demonstrate synergy. This method measures ease of ignition, that is the facility with which a material or it s pyrolysis products can be ignited under given conditions of temperature and oxygen concentration. This test is indicative of the intrinsic flamability of a material but... [Pg.344]

Archived electronic data are to be treated no differently to archived paper data. An archivist should be assigned, access should be limited to authorized personnel, data should be archived at the completion of the study, and all material should be indexed to permit expedient retrieval. Depending on the medium used for storage, an area within the facility may be needed with specific environmental controls to maintain the integrity of electronic data. This should be specified in the data storage SOPs. Environmental conditions need to be monitored in the archives where electronic media are stored. [Pg.1054]

The cost of a unit is then obtained from Figure 9-4. To obtain the cost of the plant this figure needs to be multiplied by the number of units, a factor (1.33) to account for utilities and general facilities, and the current or projected value of the Engineering News Record Chemical Cost Index. The accuracy of this method is unknown but should be better than the Lang factor and not as good as Miller s. [Pg.259]

A hazards survey can be as simple as an inventory of hazardous materials in a facility or as complicated as a rigorous procedure such as the Dow Fire and Explosion Index (F EI)2 and the... [Pg.432]

The Dow Index contains most of the data required to complete the evaluation. The data for the chemical species used in this facility are ... [Pg.442]

Figure 10-5 The Dow Fire and Explosion Index applied to the railcar unloading facility of Example 10-1. Figure 10-5 The Dow Fire and Explosion Index applied to the railcar unloading facility of Example 10-1.
Design practices stem from standard fire test procedures in which the temperature history of the test furnace is regarded as an index of the destructive potential of a fire. Thus, the practice of describing the expected effects and damage mechanism is based on temperature histories. This standard design practice is convenient but lacks accuracy in terms of structural performance. The severity of a fire should address the expected intensity of the heat flux that will impact the structure and the duration of heat penetration. A simple analysis of the expect nature of an unwanted fire can be based on the heats of combustion and pyrolysis of the principal contents in the facility. The heat of combustion will identify the destructive nature of the fire, while the heat of pyrolysis will identify the severity of the fire within the compartment itself and will also identify the destructive potential of the fire in adjacent spaces. [Pg.149]

In this context see also Refs. [83a, 83b]. Comninellis and Plattner [287,287a, 288] have developed a simple method for estimating the facility of the electrochemical oxidation of organic species based on a newly defined electrochemical oxidizability index (EOI) and the degree of oxidation using the electrochemical oxygen demand (EOD). Electrochemical oxidizability index for various benzene derivatives obtained at Pt/Ti and Sn02-ABB-anodes are listed in Table 23. [Pg.214]

Comparative risk reduction, in nuclear power facilities, 17 539-542 Comparative tracking index (CTI) technique, 19 587... [Pg.204]

Safety culture, for nuclear power facilities, 17 538 Safety data, developing, 21 844 Safety factors, See also Process safety Safety inspections, OSHA, 21 829 Safety issues/considerations for heated and cryogenic tanks, 24 303 teaching related to, 24 184 Safety issues, emulsion-related, 10 128 Safety measures, improved, 24 184 Safety performance indexes, nuclear power facility, 17 539 Safety regulation(s)... [Pg.816]


See other pages where Facilities INDEX is mentioned: [Pg.199]    [Pg.64]    [Pg.64]    [Pg.199]    [Pg.64]    [Pg.64]    [Pg.2249]    [Pg.18]    [Pg.440]    [Pg.85]    [Pg.99]    [Pg.807]    [Pg.979]    [Pg.235]    [Pg.519]    [Pg.289]    [Pg.153]    [Pg.520]    [Pg.32]    [Pg.36]    [Pg.76]    [Pg.126]    [Pg.79]    [Pg.82]    [Pg.192]    [Pg.174]    [Pg.92]    [Pg.36]    [Pg.135]    [Pg.304]    [Pg.78]   
See also in sourсe #XX -- [ Pg.377 ]

See also in sourсe #XX -- [ Pg.377 ]

See also in sourсe #XX -- [ Pg.145 ]




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