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TSP

Chemical composition data for CPM and FPM for a variety of locations are summarized in Table 5. These data illustrate several important points. First, the distributions of the PM q between CPM and FPM vary from about 0.4 to 0.7. Second, the ratio of PM q to TSP varies from 0.58 to 0.79. In general, both this ratio and the ratio of FPM to PM q tend to be higher at mral sites, but Bermuda, because of the large influence of sea salt in the CPM, is an exception. Sulfate (SO ), carbon (as organic carbon, OC, and elemental carbon, EC), and nitrate (NO3 ) compounds generally account for 70—80% of the FPM. In the eastern United States, compounds are the dominant species, although very Httie is emitted directiy into the atmosphere. Thus... [Pg.374]

Tobacco smoke contains a variety of air pollutants. In a survey of 80 homes ia an area where the outdoor TSP varied between 10—30 lg/m, the iadoor TSP was the same, or less, ia homes having ao smokers. la homes having oae smoker, the TSP levels were betweea 30—60 lg/m, while ia homes having two or more smokers, the levels were betweea 60—120 lg/m (64). la other studies, iadoor TSP levels exceeding 1000 lg/m have beea fouad ia homes with aumerous smokers. la additioa to TSP, burning tobacco emits CO, NO formaldehyde [50-00-0] bea2opyreaes, nicotine [54-11-5] pheaols, and some metals such as cadmium [7440-43-9] and arsenic [7440-38-2] (65). [Pg.381]

Triple (Concentrated) Superphosphate. The first important use of phosphoric acid in fertilizer processing was in the production of triple superphosphate (TSP), sometimes called concentrated superphosphate. Basically, the production process for this material is the same as that for normal superphosphate, except that the reactants are phosphate rock and phosphoric acid instead of phosphate rock and sulfuric acid. The phosphoric acid, like sulfuric acid, solubilizes the rock and, in addition, contributes its own content of soluble phosphoms. The result is triple superphosphate of 45—47% P2 s content as compared to 16—20% P2 5 normal superphosphate. Although triple superphosphate has been known almost as long as normal superphosphate, it did not reach commercial importance until the late 1940s, when commercial supply of acid became available. [Pg.226]

Simplicity of production, high analysis, and excellent agronomic quaUty are reasons for the sustained high production and consumption of TSP. A contributing factor is that manufacture of the triple superphosphate has been an outlet for so-called sludge acid, the highly impure phosphoric acid obtained as a by-product of normal acid purification. [Pg.226]

Chemistry and Properties. TSP is essentially impure monocalcium phosphate monohydrate, Ca(H2P0 2 20, made by acidulating phosphate rock with phosphoric acid according to... [Pg.226]

The complete chemistry of TSP production has been studied and reported in great detail (34). As in the production of NSP there are also reactions with impurity minerals. In fact, the increasing amounts of such impurities in U.S. commercial phosphate rocks, especially those from Florida, are now reflected in somewhat lowered amounts of citrate-soluble P2O5 product. The range of constituents in commercial TSP from wet-process acid and phosphate... [Pg.226]

Granular TSP (—6 + 16 mesh (1.19 to 3.35 mm dia)) is preferred for direct appHcation and is used in bulk blend fertilizers. A widely used slurry granulation process, the Dorr-OHver process, is illustrated in Figure 11. The ground rock is mixed with 38—49% P2 5 series of reaction vessels. [Pg.227]

Economics. In contrast to NSP, the high nutrient content of TSP makes shipment of the finished product preferable to shipping of the raw materials. Plants, therefore, are located at or near the rock source. The phosphoric acid used, and the sulfuric acid required for its manufacture, usually are produced at the site of the TSP plant. As in the case of NSP, the cost of raw materials accounts for more than 90% of the total cost. Most of this is the cost of acid. [Pg.227]

Chemical reaction of DAP with TSP is possible if stored. See text. [Pg.238]

El = electron ionization. Cl = chemical ionization TSP = thermospray FAB = fast atom bombardment FD = field desorption,... [Pg.539]

Accurate quantitative data unavailable best reported sources Hsted. Serving corresponds to 5 g (1 tsp). [Pg.383]

Fig. 7. Solubihty of sodium orthophosphates as a function of temperature (17,18). MSP, DSP, and TSP are mono-, di-, and trisodium phosphates,... Fig. 7. Solubihty of sodium orthophosphates as a function of temperature (17,18). MSP, DSP, and TSP are mono-, di-, and trisodium phosphates,...
Crystalline TSP is a dodecahydrate with somewhat variable composition between the limits of (Na PO I2H2O) 0.25NaOH and (Na PO I2H2O) l/TNaOH. It is manufactured by crystallisation below 60°C from a solution with an Na20/P20 mole ratio slightly lower than 3.25. Crystals are isolated by centrifugation and air-dried at ca 40°C to minimise dehydration. [Pg.341]

Spectrometric Analysis. Remarkable developments ia mass spectrometry (ms) and nuclear magnetic resonance methods (nmr), eg, secondary ion mass spectrometry (sims), plasma desorption (pd), thermospray (tsp), two or three dimensional nmr, high resolution nmr of soHds, give useful stmcture analysis information (131). Because nmr analysis of or N-labeled amino acids enables determiaation of amino acids without isolation from organic samples, and without destroyiag the sample, amino acid metaboHsm can be dynamically analy2ed (132). Proteia metaboHsm and biosynthesis of many important metaboUtes have been studied by this method. Preparative methods for labeled compounds have been reviewed (133). [Pg.285]

Sodium Hypochlorite—Trisodium Phosphate Complex. Commercial crystalline trisodium phosphate (TSP) is a complex of the type (Na PO -xH20) NaY where n = 4 to 7, a = 11 or 12, and Y is a monovalent anion (see Phosphoric acids and phosphates). Chlorinated trisodium... [Pg.472]

Manufacture. Chlorinated TSP is made batchwise by addition of a 15% NaOCl solution containing some NaOH to a hot (75—80°C) concentrated Hquor consisting of di- and trisodium phosphates, in a mole ratio of about 1 10, in a suitable reactor, eg, a pan mixer (222). The mixture is allowed to cool slowly under constant agitation until crystallization occurs (62°C). When crystallization is complete, cooling is continued to about 45°C and the slightly moist crystals are air dried. Overdrying can result in decreased stabiHty. [Pg.472]

Economic Aspects. Sodium hypochlorite—trisodium phosphate complex was commercialized in 1930. Chlorinated TSP is manufactured by Stauffer (a subsidiary of Rhc ne-Poulenc, Inc.). The consumption, steadily decreasing since 1980, dropped sharply in 1985 because of reduced use in dishwasher detergents. The estimated demand in 1987 was 37,360 t (220). In 1988 it sold for 0.32/lb ( 0.70/kg) for tmddoad quantities of 660 kg (300-lb) dmms. [Pg.472]

Particulate removal from the coal gas is effected either through a series of dry-sofld and wet-sofld removal steps or through the use of dry soflds filters, so that the gas fed to the combustion turbine is essentially free of suspended particulates. The emissions of total suspended particulates (TSP) from a CGCC plant are about one-third those from a comparable pulverized coal plant equipped with a fabric filter and EGD unit. [Pg.275]

When a liquid or solid substance is emitted to the air as particulate matter, its properties and effects may be changed. As a substance is broken up into smaller and smaller particles, more of its surface area is exposed to the air. Under these circumstances, the substance, whatever its chemical composition, tends to combine physically or chemically with other particles or gases in the atmosphere. The resulting combinations are frequently unpredictable. Very small aerosol particles (from 0.001 to 0.1 Im) can act as condensation nuclei to facilitate the condensation of water vapor, thus promoting the formation of fog and ground mist. Particles less than 2 or 3 [Lm in size (about half by weight of the particles suspended in urban air) can penetrate the mucous membrane and attract and convey harmful chemicals such as sulfur dioxide. In order to address the special concerns related to the effects of very fine, iuhalable particulates, EPA replaced its ambient air standards for total suspended particulates (TSP) with standards for particlute matter less than 10 [Lm in size (PM, ). [Pg.2173]


See other pages where TSP is mentioned: [Pg.262]    [Pg.264]    [Pg.195]    [Pg.195]    [Pg.229]    [Pg.1004]    [Pg.1028]    [Pg.373]    [Pg.374]    [Pg.374]    [Pg.411]    [Pg.222]    [Pg.226]    [Pg.226]    [Pg.227]    [Pg.238]    [Pg.238]    [Pg.539]    [Pg.380]    [Pg.331]    [Pg.331]    [Pg.332]    [Pg.341]    [Pg.341]    [Pg.149]    [Pg.81]    [Pg.137]    [Pg.443]    [Pg.443]    [Pg.443]    [Pg.443]    [Pg.2157]   
See also in sourсe #XX -- [ Pg.131 ]

See also in sourсe #XX -- [ Pg.575 ]




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HPLC-TSP

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