ANALYSIS OF METAL-HUMIC ACID INTERACTION BY PAPER CHROMATOGRAPHY USING HUMIC ACID-IMPREGNATED FILTER PAPER

Soil Science ◽  
1983 ◽  
Vol 136 (6) ◽  
pp. 371-381 ◽  
Author(s):  
T. TAKAMATSU ◽  
R. KUSAKABE ◽  
T. YOSHIDA
1960 ◽  
Vol 38 (10) ◽  
pp. 1137-1147 ◽  
Author(s):  
Arthur E. Pasieka

A solvent redeveloping technique has been devised by which amino acids, peptides, and sugars can be separated from complex mixtures in the presence of high concentrations of salts and proteins. The separations are effected by two to four successive 18-hour solvent developments with drying between each 18-hour period before subsequent staining of the chromatograms. Better separations and resolutions are obtained by such successive 18-hour solvent developments than by one continuous solvent development for an equivalent time. The effect of these redevelopments on the separations and resolutions of biological compounds is illustrated at various stages by photographs of one- and two-dimensional chromatograms. The redevelopment technique requires filter paper sheets up to 4 ft in length for one-dimensional analytical and preparative types of chromatograms.


1951 ◽  
Vol 23 (11) ◽  
pp. 1582-1585 ◽  
Author(s):  
Thomas Gage ◽  
Carl Douglass ◽  
Simon Wender

1966 ◽  
Vol 44 (2) ◽  
pp. 149-153 ◽  
Author(s):  
A. E. Pasieka ◽  
J. E. Logan

The use of a solvent redevelopment technique enables the separation of amino acids from complex biological materials in the presence of high concentrations of salts. By conventional chromatography, 1.17 mg of total amino acids have been separated from the high salt medium M 150. The preparative technique as described here has separated amounts as great as 1.17 g and the patterns are essentially the same as for the analytical types. The separations are effected by four or more successive 15- to 20-hour solvent developments with drying between each solvent stage before the staining of chromatograms or isolation of particular bands. The results of these solvent developments on the preparative scale are illustrated with photographs of actual chromatograms. This technique requires thick filter paper sheets up to 4 ft in length for analytical, and particularly for preparative, chromatograms.


1968 ◽  
Vol 42 (1-2) ◽  
pp. 193-198
Author(s):  
Paul Whur

A new method is described for the in vitro culture of the preparasitic stages of Nippostrongylus brasiliensis. It utilises the plating of faecal suspensions on to paper chromatography strips supported on non-porous Perspex slabs and has been designed primarily to facilitate savings in the time required for routine culture maintenance without lowering the quantity or quality of the larval yield. Comparison with the filter paper/Petri dish method shows an increase in larval yield of 85% and a reduction in time required for culture of 72%. Total inhibition of fungal growth on incubated faeces suspensions was obtained by the addition of “Mycostatin” (Squibb) in a concentration of 62 units per ml. or more.


1951 ◽  
Vol 23 (1) ◽  
pp. 168-174 ◽  
Author(s):  
E. F. McFarren

Nature ◽  
1950 ◽  
Vol 166 (4220) ◽  
pp. 476-477 ◽  
Author(s):  
R. A. LAIDLAW ◽  
S. G. REID

1960 ◽  
Vol 38 (1) ◽  
pp. 1137-1147 ◽  
Author(s):  
Arthur E. Pasieka

A solvent redeveloping technique has been devised by which amino acids, peptides, and sugars can be separated from complex mixtures in the presence of high concentrations of salts and proteins. The separations are effected by two to four successive 18-hour solvent developments with drying between each 18-hour period before subsequent staining of the chromatograms. Better separations and resolutions are obtained by such successive 18-hour solvent developments than by one continuous solvent development for an equivalent time. The effect of these redevelopments on the separations and resolutions of biological compounds is illustrated at various stages by photographs of one- and two-dimensional chromatograms. The redevelopment technique requires filter paper sheets up to 4 ft in length for one-dimensional analytical and preparative types of chromatograms.


Science ◽  
1951 ◽  
Vol 113 (2923) ◽  
pp. 4-6 ◽  
Author(s):  
M. K. Brush ◽  
R. K. Boutwell ◽  
A. D. Barton ◽  
C. Heidelberger

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