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Detail of "13587-16-1"

  • MSDS Download
  • CAS Number:
  • 13587-16-1
  • Name:
  • Lithium hydride (LiD)

  • Molecular Structure:
  • Formula:
  • DLi
  • Molecular Weight:
  • 8.96
  • Synonyms:
  • Lithium hydride-D;
  • EINECS:
  • 237-018-5
  • Melting Point:
  • 680 °C
  • Hazard Symbols:
  • FlammableF;CorrosiveC
  • Risk Codes:
  • 11-14-34
  • Safety:
  • 16-26-36/37/39-45-7/9 Details
  • Transport Information:
  • UN 1414

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CAS No.13587-16-1 Lithium hydride (LiD)

lithium deuteride

Supplier:tianjin xintaimei chemical co, ltd. [ China (Mainland)]

Platinum
Supplier
1585Integral
1585

Tel:86- 022-60501183

Address:Tianjin

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CAS No.13587-16-1 Lithium hydride (LiD)

LiD

Supplier:PROMY International Group [ Canada]

332Integral
332

Tel:+1-510-758-1388

Address:130 Travalini Court El Sobrante, Ca 94803

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Reference

Solubility of lithium deuteride in liquid lithium
Solubility of lithium deuteride in liquid lithium. Veleckis, E.; Yonco, R. M.; Maroni, V. A. (Chem. Eng. Div., Argonne Natl. Lab., Argonne, Ill., USA). J. Less-Common Met., 55(1), 85-92 (English) 1977. CODEN: JCOMAH. DOCUMENT TYPE: Journal CA Section: 71 (Nuclear Technology) Section cross-reference(s): 68 The soly. of LiD [13587-16-1] in liq. Li between the eutectic and monotectic temps. was measured using a direct sampling method. Solubilities ranged from 0.0154 at 199.degree. to 3.32 mol.% LiD at 498.degree.. The data were used in the derivation of an expression for the activity coeff. of LiD as a function of temp. and compn. and an equation relating deuteride soly. and temp., thus defining the liquidus curve. Similar equations were also derived for the LiH [7580-67-8] system with Li by using the existing soly. data. Extrapolation of the liquidus curves yielded the eutectic concns. (0.040 mol. % LiH and 0.035 mol. % LiD) and the freezing point depressions (0.23.degree. for Li-LiH and 0.20.degree. for Li-LiD) at the eutectic point. The results are compared with the literature data for H and D. The implications of the relatively high soly. of H isotopes in Li just above the m.p. are discussed with respect to the cold trapping of T in fusion reactor blankets.
Short pulse laser heated plasma experiments
Short pulse laser heated plasma experiments. Soures, J.; Goldman, L. M.; Lubin, M. (Coll. Eng. Appl. 12586-31-1 and 16416-34-5 are also occured in this study. Sci., Univ. Rochester, Rochester, N. Y., USA). Laser Interact. Relat. Plasma Phenom., 3B, 607-28 (English) 1974. CODEN: LIPPAR. DOCUMENT TYPE: Journal CA Section: 71 (Nuclear Technology) Section cross-reference(s): 73 The interaction between time-tailored, high-intensity, laser radiation and spherical light element targets was investigated. Simulataneous measurements of the laser plasma e temp., charged-particle distribution, absorbed energy, n yields and backscattered light intensity and spectra were made. For 100-ps wide laser pulses focused to intensities of 3 .times. 1015 and 2 .times. 1016 W/cm2 on 150-200 .mu.m diam. LiD [13587-16-1] and C36D74 [16416-34-5] targets, plasmas with e temps. .ltoreq.1.2 keV and target generated yields of .ltoreq.1 .times. 104 n are produced. The absorption can be accounted for by inverse bremsstrahlung, and no significant contributions due to parametric instabilities are obsd. No more than 10-1 of the incident laser energy is back reflected into spectral components at .omega.L, (3/2).omega.L, 2.omega.L. .
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