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Storage properties

Coley, T.R. (1989), Diesel fuel additives influencing flow and storage properties . In Gasoline and diesel fuel additives (Owen, K. Ed.). John Wiley. [Pg.454]

When 20% of the phosphoms was polyphosphate, the compounds ia the product were ia the ratio of 3.5 mole MAP per mole of the pyrophosphate. The principal use of the material was ia the production of suspension fertilizers. In this appHcation the polyphosphate content imparted improved storage properties to the suspensions. The granular soHd APP, however, also had excellent storage properties and was a good material for use ia bulk blends and for direct appHcation. [Pg.231]

The primary thmst of GMP is that it is not enough merely to make chemicals to meet USP or other apphcable specifications. The chemicals must be made under clean and sanitary conditions, procedures and processes must be vahdated and documented, and processing and packaging must be carried out under conditions that preclude mixup and mislabeling. Records must be kept of complaints, and the manufacturer must know enough about the storage properties of the products to specify storage conditions and, if necessary, expiration dates on the label. [Pg.447]

The commercial use of 2,4-D has decreased substantially and (ca 1993) it has general use for home lawns to control broadleaved weeds it also is used on a limited basis to control broadleaved weeds in commercial moncotyledonous crops, eg, sugarcane. 2,4-D is used on citms when the fmit is 1/3 to 1 inch in diameter to increase fmit size and to limit fmit drop on trees more than six years old. It should not be appHed to trees that are in fliU flush. A further use includes treatment of harvested lemons at 500 mg/L to improve storage properties and to delay yeUowing (23). It is used in certain parts of the world to increase latex flow in old mbber tree plantations. [Pg.424]

Exothermic Decompositions These decompositions are nearly always irreversible. Sohds with such behavior include oxygen-containing salts and such nitrogen compounds as azides and metal styphnates. When several gaseous products are formed, reversal would require an unlikely complex of reactions. Commercial interest in such materials is more in their storage properties than as a source of desirable products, although ammonium nitrate is an important explosive. A few typical exampes will be cited to indicate the ranges of reaction conditions. They are taken from the review by Brown et al. ( Reactions in the Solid State, in Bamford and Tipper, Comprehensive Chemical Kinetics, vol. 22, Elsevier, 1980). [Pg.2122]

In a transient or an AC circuit we term the sum of resistance, inductance, and capacitance as impedance. Using complex notation, the energy storage properties of inductance and capacitance are represented as purely imaginary quantities, while the resistance is represented as a (+) real quantity. Capacitance is represented as the negative imaginary axis, and current through a pure capacitance is said to lead... [Pg.284]

Toupin M., Brousse T., Belanger D. Influence of microtexture on the charge storage properties of chemically synthesized manganese dioxide, Chem Mater 2002 14 3946-52. [Pg.43]

The pure dry product is air-stable. Impure samples have poor storage properties and sometimes decompose. [Pg.22]

Vehicle Parameter Expected Performance Hydrogen Storage Property... [Pg.329]

Zuttel, A., S. Rentsch, P. Fisher, P. Wenger, P. Sudan, Ph. Mauron, and Ch. Emmenegger, Hydrogen storage properties of LiBH4, /. Alloys Compd., 356, 515, 2003. [Pg.405]

Baum, L., M. Meyer, and L. Mendoza-Zelis, Hydrogen storage properties of the Mg/Fe system, Physica B, 389,189-192,2007. [Pg.406]

Bunluesin, T., Gorte, R.J., and Graham, G.W. 1998. Studies of the water-gas-shift reaction on ceria-supported Pt, Pd, and Rh Implications for oxygen-storage properties. Appl. Catal. B Environ. 15 107-14. [Pg.391]

Hydrogen-storage alloys, 13 626, 627 Hydrogen storage properties, of rare earths, 14 652 Hydrogen streams, 13 461 Hydrogen sulfide, 23 568, 569, 629-638. See also H2S... [Pg.454]

Kuan-Xin, H., et ah, Electrodeposition of nickel and cobalt mixed oxide/carbon nanotube thin films and their charge storage properties. Journal of The Electrochemical Society, 2006. 153(8) p. A1568-A1574. [Pg.168]

The lithium-storage properties of these Si SiOx/C nanocomposite electrodes were investigated in different electrolyte systems and compared to pure Si nanoparticles. From all the analyzed systems, the Si SiOx-C nanocomposite in conjunction with the solvent vinylene carbonate (VC) to form the solid-electrolyte interface showed the best lithium storage performance in terms of a highly reversible lithium-storage capacity (1100 mAh g-1), excellent cycling performance, and high rate capability (Fig. 7.9). [Pg.211]

Table 1.3 Hydrogen storage properties of intermetaUic compounds (from [12])... Table 1.3 Hydrogen storage properties of intermetaUic compounds (from [12])...
Table 1.4 Hydrogen storage properties of selected high-capacity hydrides [13-22]... Table 1.4 Hydrogen storage properties of selected high-capacity hydrides [13-22]...

See other pages where Storage properties is mentioned: [Pg.221]    [Pg.236]    [Pg.239]    [Pg.239]    [Pg.241]    [Pg.366]    [Pg.213]    [Pg.600]    [Pg.203]    [Pg.953]    [Pg.140]    [Pg.207]    [Pg.257]    [Pg.54]    [Pg.97]    [Pg.331]    [Pg.422]    [Pg.402]    [Pg.403]    [Pg.100]    [Pg.787]    [Pg.261]    [Pg.420]    [Pg.45]    [Pg.91]    [Pg.90]    [Pg.140]    [Pg.151]    [Pg.13]    [Pg.20]    [Pg.21]   
See also in sourсe #XX -- [ Pg.329 ]

See also in sourсe #XX -- [ Pg.135 ]

See also in sourсe #XX -- [ Pg.135 ]




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Carbon nanofibers , hydrogen storage properties

Charge Storage Configurations in Solids and their Anisotropic Properties

Charge storage properties

Composite properties storage modulus

Dynamic mechanical properties storage moduli

Energy storage, electrochemical properties

Hydrogen storage properties

Hydrogen storage properties specific surface area

Link between Energy Storage and System Property

Mechanical properties storage

Mechanical properties storage history

Optical properties data storage

Oxygen storage properties

Physical Properties of the Bromine Storage Phase

Properties Related to Storage and Distribution of Petroleum Products

Storage capacity controlling propertie

Storage rheological properties after

Thermal properties of hydrogen storage materials

Thermodynamic properties of hydrogen storage materials

Transition hydrogen storage properties

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