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FeCl2

From an electrochemical viewpoint, stable pit growtli is maintained as long as tire local environment witliin tire pit keeps tire pit under active conditions. Thus, tire effective potential at tire pit base must be less anodic tlian tire passivation potential (U ) of tire metal in tire pit electrolyte. This may require tire presence of voltage-drop (IR-drop) elements. In tliis respect the most important factor appears to be tire fonnation of a salt film at tire pit base. (The salt film fonns because tire solubility limit of e.g. FeCl2 is exceeded in tire vicinity of tire dissolving surface in tlie highly Cl -concentrated electrolyte.)... [Pg.2727]

What is the concentration of Fe + in an electrochemical cell similar to that shown in Example 11.1 if the concentration of HCl in the left-hand cell is 1.0 M, the concentration of FeCl2 in the right-hand cell is 0.0151 M and the measured potential is -1-0.546 V ... [Pg.469]

Fep2 was first prepared by the action of gaseous hydrogen fluoride over FeCl2 ia an iron boat (2). The reaction of anhydrous FeCl2, FeCl2 4H20, or FeSO and anhydrous HF in plastic reaction vessels such as vessels of polyethylene, polypropylene, or Teflon results in quantitative yields of very... [Pg.202]

C weak, low yields without side reactions BCl, BBr, BI, SnCl, TiCl, TiBr, ReCl, FeCl2, and PtCl ... [Pg.564]

Sa.lts Salting out metal chlorides from aqueous solutions by the common ion effect upon addition of HCl is utilized in many practical apphcations. Typical data for ferrous chloride [13478-10-9] FeCl2, potassium chloride [7447-40-7] KCl, and NaCl are shown in Table 9. The properties of the FeCl2-HCL-H2 0 system are important to the steel-pickling industry (see Metal SURFACE TREATMENTS Steel). Other metal chlorides that are salted out by the addition of hydrogen chloride to aqueous solutions include those of magnesium, strontium, and barium. [Pg.442]

C and melts at 173°C. It is iasoluble ia water but dissolves ia alcohols, ether, and benzene. Ferrocene can be prepared by numerous methods, including the reaction of cyclopentadienyl anion, with anhydrous FeCl2. Its extensive reaction chemistry is notable for the aromaticity of the... [Pg.441]

Ai lepiesents an aiyl group. Diaiyl products are obtained after long reaction times. Other Friedel-Crafts catalysts, eg, ZnCl2, FeCl2, FIF, and BF, can also be used. In most cases, stoichiometric amounts of the catalyst ate requited. Flowever, strong complexation of the phosphine by the catalyst necessitates separation by vacuum distillation, hydrolysis, or addition of reagents such as POCl to form more stable aluminum chloride complexes. Whereas yields up to 70—80% are possible for some aryl derivatives, yields of aliphatic derivatives are generally much less (19). [Pg.361]

In this representation the FeCl2 which takes part in the first step of the reaction is not a tme catalyst, but is continuously formed from HQ. and iron. This is a highly exothermic process with a heat of reaction of 546 kj /mol (130 kcal/mol) for the combined charging and reaction steps (50). Despite the complexity of the Bnchamp process, yields of 90—98% are often obtained. One of the major advantages of the Bnchamp process over catalytic hydrogenation is that it can be mn at atmospheric pressure. This eliminates the need for expensive high pressure equipment and makes it practical for use in small batch operations. The Bnchamp process can also be used in the laboratory for the synthesis of amines when catalytic hydrogenation caimot be used (51). [Pg.262]

Miscellaneous. 1,1,1-Trichloroethane reacts with olefins, CH2=CRR, in the presence of P(0)[(NCH2)]3 and FeCl2 at 130°C, to give compounds of the type CH2CCl2CH2CRR Cl (61). Fluorination of 1,1,1-trichloroethane with anhydrous hydrogen fluoride at 144°C gives both... [Pg.10]

It has recently been reported that a molecule, claimed to contain a high concentration of conjugated alkyne units, can be prepared by electrochemical reduction of polytetrafluoroethylene (PTFE) [32,33]. The reduction is carried out using magnesium and stainless steel as anode and cathode respectively. The electrolyte solution contains THE (.30 cm ), LiCI (0.8 g) and FeCl2 (0.48 g). A 10 X 10 nm PTFE film, covered with solvent, is reduced to carbyne (10 V for 10 h)... [Pg.150]

Occasionally precipitation of solid salt (FeCl2.iH20)... [Pg.182]


See other pages where FeCl2 is mentioned: [Pg.222]    [Pg.223]    [Pg.342]    [Pg.329]    [Pg.331]    [Pg.394]    [Pg.396]    [Pg.1128]    [Pg.1129]    [Pg.218]    [Pg.435]    [Pg.436]    [Pg.436]    [Pg.436]    [Pg.366]    [Pg.262]    [Pg.46]    [Pg.47]    [Pg.385]    [Pg.384]    [Pg.58]    [Pg.365]    [Pg.425]    [Pg.97]    [Pg.221]    [Pg.573]    [Pg.580]    [Pg.184]    [Pg.189]    [Pg.295]    [Pg.799]    [Pg.814]    [Pg.939]    [Pg.1279]    [Pg.38]    [Pg.254]    [Pg.269]    [Pg.269]    [Pg.286]    [Pg.298]   
See also in sourсe #XX -- [ Pg.2 , Pg.116 ]




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FeCl2 FERROUS CHLORIDE

FeCl2 Iron chloride

FeCl2 cathode

FeCl2-HCl

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