Page last updated: 2024-08-21

c.i. 42510 and methanol

c.i. 42510 has been researched along with methanol in 13 studies

Research

Studies (13)

TimeframeStudies, this research(%)All Research%
pre-19904 (30.77)18.7374
1990's3 (23.08)18.2507
2000's4 (30.77)29.6817
2010's2 (15.38)24.3611
2020's0 (0.00)2.80

Authors

AuthorsStudies
Meloan, SN; Puchtler, H1
Welsh, MJ; Wu, W1
Balì, E; Gentile, F; Pignalosa, G1
Goffin, V; Letawe, C; Piérard, GE1
BROCK, N; ERHARDT, A1
BROCK, N; ERHARDT, A; WILMANNS, H1
ARNOLD, H; BROCK, N; GEISLER, G; SIEMS, G1
Fischer, AR; Goss, KU; Werner, P1
Akmil-Başar, C; Eren, D; Kiliçer, T; Onal, Y1
El-Khaiary, MI; Hameed, BH1
Cai, W; Feng, M; Gong, R; Liu, L; Zhao, J1
Khattri, SD; Singh, MK1
Leng, L; Liao, K; Peng, L; Peng, X; Wang, H; Xiao, Z; Yuan, X; Zeng, G1

Other Studies

13 other study(ies) available for c.i. 42510 and methanol

ArticleYear
A methanol resorcin-fuchsin stain for elastic tissues and nuclei.
    Stain technology, 1975, Volume: 50, Issue:6

    Topics: Elastic Tissue; Humans; Methanol; Resorcinols; Rosaniline Dyes; Staining and Labeling

1975
Rapid Coomassie blue staining and destaining of polyacrylamide gels.
    BioTechniques, 1996, Volume: 20, Issue:3

    Topics: Acetates; Acetic Acid; Animals; Coloring Agents; Electrophoresis, Polyacrylamide Gel; Methanol; Mice; Proteins; Rosaniline Dyes; Staining and Labeling

1996
Sensitivity and applications of the nondenaturing staining of proteins on polyvinylidene difluoride membranes with Amido black 10B in water followed by destaining in water.
    Analytical biochemistry, 1997, Feb-15, Volume: 245, Issue:2

    Topics: Amido Black; Azo Compounds; Hydrogen-Ion Concentration; Membranes, Artificial; Methanol; Polyvinyls; Protein Denaturation; Proteins; Rosaniline Dyes; Serum Albumin, Bovine; Staining and Labeling; Thyroglobulin; Water

1997
Effect of organic solvents on normal human stratum corneum: evaluation by the corneoxenometry bioassay.
    Dermatology (Basel, Switzerland), 1997, Volume: 195, Issue:4

    Topics: Alcohols; Biological Assay; Chloroform; Colorimetry; Coloring Agents; Cyanoacrylates; Epidermis; Ethanol; Evaluation Studies as Topic; Hexanes; Humans; Hydrocarbons; Immersion; Linear Models; Methanol; Regression Analysis; Rosaniline Dyes; Solvents; Time Factors; Tolonium Chloride; Water Loss, Insensible

1997
[Pharmacotherapy of oxyuriasis. I. Pharmacologic, toxicologic and chemotherapeutic studies with pararosaniline dyes and their carbinol bases].
    Arzneimittel-Forschung, 1951, Volume: 1, Issue:1

    Topics: Coloring Agents; Methanol; Oxyuriasis; Rosaniline Dyes; Toluidines

1951
[Atrimon therapy of oxyuriasis (carbinol bases of penta- and hexamethyl-pararosaniline)].
    Deutsche medizinische Wochenschrift (1946), 1952, Feb-22, Volume: 77, Issue:8

    Topics: Methanol; Oligosaccharides; Oxyuriasis; Rosaniline Dyes; Rubiaceae; Toluidines

1952
[The system dye salt-carbinol base of crystal violet in vitro and vivo. Pharmacotherapy of oxyuriasis. IV].
    Arzneimittel-Forschung, 1952, Volume: 2, Issue:5

    Topics: Gentian Violet; Humans; In Vitro Techniques; Methanol; Oxyuriasis; Rosaniline Dyes

1952
Photodegradation of malachite green and malachite green carbinol under irradiation with different wavelength ranges.
    Chemosphere, 2011, Volume: 82, Issue:2

    Topics: Aquaculture; Fungicides, Industrial; Light; Methanol; Oxidants, Photochemical; Photolysis; Rosaniline Dyes; Water Pollutants, Chemical

2011
Adsorptions of high concentration malachite green by two activated carbons having different porous structures.
    Journal of hazardous materials, 2005, Dec-09, Volume: 127, Issue:1-3

    Topics: Adsorption; Carbon; Coloring Agents; Dust; Hydrogen-Ion Concentration; Industrial Waste; Particle Size; Pinus; Porosity; Rosaniline Dyes; Wood

2005
Malachite green adsorption by rattan sawdust: isotherm, kinetic and mechanism modeling.
    Journal of hazardous materials, 2008, Nov-30, Volume: 159, Issue:2-3

    Topics: Adsorption; Diffusion; Dust; Hydrogen-Ion Concentration; Industrial Waste; Kinetics; Models, Chemical; Porosity; Rosaniline Dyes; Thermodynamics; Wood

2008
Functionalization of sawdust with monosodium glutamate for enhancing its malachite green removal capacity.
    Bioresource technology, 2009, Volume: 100, Issue:2

    Topics: Paper; Rosaniline Dyes; Sodium Glutamate; Ultrafiltration; Water Pollutants; Water Purification; Wood

2009
Removal of malachite green from dye wastewater using neem sawdust by adsorption.
    Journal of hazardous materials, 2009, Aug-15, Volume: 167, Issue:1-3

    Topics: Adsorption; Hydrogen-Ion Concentration; Industrial Waste; Rosaniline Dyes; Solutions; Temperature; Water Pollutants, Chemical; Water Purification; Wood

2009
Removal of malachite green dye from wastewater by different organic acid-modified natural adsorbent: kinetics, equilibriums, mechanisms, practical application, and disposal of dye-loaded adsorbent.
    Environmental science and pollution research international, 2014, Volume: 21, Issue:19

    Topics: Adsorption; Cinnamomum camphora; Dust; Hydrogen-Ion Concentration; Kinetics; Rosaniline Dyes; Temperature; Thermodynamics; Wastewater; Water Pollutants, Chemical; Water Purification; Wood

2014