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Sulphur, atmospheric

Sanets E.Y. and Chuduk Y.N. (2005). Sulphur atmospheric deposition in areas with different anthropogenic loads in Belarus. Atmospheric Research, 77(1-4), 88-99. [Pg.550]

Rusiecki R, Wojtowicz A, Mrowec S, Przybylski K, New thermobalance for studying the kinetics of high temperature reactions in sulphur atmospheres , Solid State Ionics, 1988 21 273-277. [Pg.635]

On the industrial scale it is produced in large quantities for the manufacture of sulphuric acid and the production methods are dealt with later. It was once estimated that more than 4 000 000 tons of sulphur dioxide a year entered the atmosphere of Britain from the burning of coal and oil. [Pg.289]

Silver has little tendency to formally lose more than one electron its chemistry is therefore almost entirely restricted to the + 1 oxidation state. Silver itself is resistant to chemical attack, though aqueous cyanide ion slowly attacks it, as does sulphur or a sulphide (to give black Ag S). hence the tarnishing of silver by the atmosphere or other sulphur-containing materials. It dissolves in concentrated nitric acid to give a solution of silver(I) nitrate. AgNOj. [Pg.427]

Diethyl oxalate. Reflux a mixture of 45 g. of anhydrous oxalic acid (1), 81 g. (102-5 ml.) of absolute ethyl alcohol, 190 ml. of sodium-dried benzene and 30 g. (16-5 ml.) of concentrated sulphuric acid for 24 hours. Work up as for Diethyl Adipate and extract the aqueous laj er with ether distil under atmospheric pressure. The yield of ethyl oxalate, b.p. 182-183°, is 57 g. [Pg.386]

Secondary and tertiary amines are not generally prepared in the laboratory. On the technical scale methylaniline is prepared by heating a mixture of aniline hydrochloride (55 parts) and methyl alcohol (16 parts) at 120° in an autoclave. For dimethylaniline, aniline and methyl alcohol are mixed in the proportion of 80 78, 8 parts of concentrated sulphuric acid are added and the mixture heated in an autoclave at 230-235° and a pressure of 25-30 atmospheres. Ethyl- and diethyl-anihne are prepared similarly. One method of isolating pure methyl- or ethyl-aniline from the commercial product consists in converting it into the Y-nitroso derivative with nitrous acid, followed by reduction of the nitroso compound with tin and hydrochloric acid ... [Pg.562]

The tlrermodynamic activity of nickel in the nickel oxide layer varies from unity in contact with tire metal phase, to 10 in contact with the gaseous atmosphere at 950 K. The sulphur partial pressure as S2(g) is of the order of 10 ° in the gas phase, and about 10 in nickel sulphide in contact with nickel. It therefore appears that the process involves tire uphill pumping of sulphur across this potential gradient. This cannot occur by the counter-migration of oxygen and sulphur since the mobile species in tire oxide is the nickel ion, and the diffusion coefficient aird solubility of sulphur in the oxide are both vety low. [Pg.284]

Table 21.2 Time in hours for material ta be axidised to a depth of 0.1 mm at 0.7 Tm in air (N.B. - data subject to considerable variability due to varying degrees of material purity, prior surface treotment and presence of atmospheric impurities like sulphur)... Table 21.2 Time in hours for material ta be axidised to a depth of 0.1 mm at 0.7 Tm in air (N.B. - data subject to considerable variability due to varying degrees of material purity, prior surface treotment and presence of atmospheric impurities like sulphur)...
Impurities in mineral fillers can have serious effects. Coarse particles (grit) will lead to points of weakness in soft polymers which will therefore fail under stresses below that which might be expected. Traces of copper, manganese and iron can affect the oxidative stability whilst lead may react with sulphur-containing additives or sulphurous fumes in the atmosphere to give a discoloured product. [Pg.127]

The UK Environment Agency deals with over 6000 oil pollution incidents each year. One estimate suggests tliat tlie cheiTtical industry contributes to 50% of all ah pollution witli proportions approximating to sulphur dioxide (36%), carbon dioxide (28%), nitrogen oxides (18%), carbon monoxide (14%) and black smoke (10%). Motor spirit refining is responsible for ca 26% of emissions of volatile organic compounds to the atmosphere. In 1996 there were over 20 000 reports of water pollution incidents with 155 successful prosecutions. [Pg.3]

Sulphur molecules are Sg and it can exist in several forms. Its compounds are more acidic than those of oxygen and it may assume covalency up to six. It forms a series of oxides and oxyacids of diverse chemistry. Combustion yields mainly SO2, a cause of atmospheric pollution from sulphur-bearing fossil fuels. [Pg.31]

Residues (petroleum), heavy coker and light vacuum Residues (petroleum), catalytic reformer fractionator Residues (petroleum), hydrodesulphurized atmospheric tower Residues (petroleum), topping plant, low sulphur Residues (petroleum), heavy coker gas oil and vacuum gas oil Residues (petroleum), thermal cracked... [Pg.95]

Combustion processes are the most important source of air pollutants. Normal products of complete combustion of fossil fuel, e.g. coal, oil or natural gas, are carbon dioxide, water vapour and nitrogen. However, traces of sulphur and incomplete combustion result in emissions of carbon monoxide, sulphur oxides, oxides of nitrogen, unburned hydrocarbons and particulates. These are primary pollutants . Some may take part in reactions in the atmosphere producing secondary pollutants , e.g. photochemical smogs and acid mists. Escaping gas, or vapour, may... [Pg.502]


See other pages where Sulphur, atmospheric is mentioned: [Pg.955]    [Pg.424]    [Pg.964]    [Pg.453]    [Pg.185]    [Pg.988]    [Pg.117]    [Pg.955]    [Pg.424]    [Pg.964]    [Pg.453]    [Pg.185]    [Pg.988]    [Pg.117]    [Pg.73]    [Pg.120]    [Pg.167]    [Pg.238]    [Pg.289]    [Pg.409]    [Pg.180]    [Pg.189]    [Pg.315]    [Pg.482]    [Pg.43]    [Pg.252]    [Pg.337]    [Pg.387]    [Pg.604]    [Pg.631]    [Pg.633]    [Pg.731]    [Pg.735]    [Pg.782]    [Pg.875]    [Pg.937]    [Pg.140]    [Pg.274]    [Pg.284]    [Pg.296]    [Pg.357]    [Pg.484]    [Pg.319]    [Pg.14]   
See also in sourсe #XX -- [ Pg.186 ]




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