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Results for “SULFURIC ACIDS”

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At least 19 recordsLinked to original sources

Effect of pH on sulfite oxidation by Thiobacillus thiooxidans cells with sulfurous acid or sulfur dioxide as a possible substrate.

The oxidation of sulfite by Thiobacillus thiooxidans was studied at various pH values with changing concentrations of potassium sulfite. The optimal pH for sulfite oxidation by cells was a function of sulfite concentrations, rising with increasing substrate concentrations, while that by the cell extracts was unaffected. The sulfite oxidation by cells was inhibited at high sulfite concentrations, particularly at low pH values. The results from kinetic studies show that the fully protonated form of sulfite, sulfurous acid or sulfur dioxide, is the form which penetrates the cells for the oxidation.

Acidithiobacillus thiooxidans↗

[Occupationally induced nitric acid and sulfuric acid burns: an analysis of 2 patients from the aspect of occupational health].

We report two patients who suffered from acid burns while working in chemical factories. Case 1: a 44-year-old man who received burn induced by nitric acid on the face and extremities. Despite his protecting facial mask, he was exposed to nitric acid on his face through a gap between the mask and skin surface. Nitric acid was also sprinkled on his scalp which was not covered by a helmet or a protecting device. In addition, he suffered from acid burn on the right scapular region, the right upper arm, and the lower extremities through the work clothes. Case 2: a 26-year-old man who suffered from sulfuric acid burn on the forearms. Both patients were accidentally exposed to acids while they filled tanks with the acids through a hose. Following the manual of the factories, they washed the exposed skin with water for more than 15 minutes after the exposure. Although they recovered without any serious sequel, there remained partial deep tissue destruction of the skin. We reviewed these two cases from the aspect of industrial medicine, and proposed the following three points for improvement in the workplace to prevent accidental acid burns. 1) re-education or enlightenment activities for the well-experienced workers to avoid negligence to the danger of strong acid. 2) recommendation to take a complete shower to avoid overlooking of unaware acid injury. 3) improvement in the protecting facial mask. In addition, clinicians who examine acid-burn patients should not pass over the presence of deep ulcers lying behind the thick crust on the injured area.

Adult↗

Immunotoxicity of sulfuric acid aerosol: effects on pulmonary macrophage effector and functional activities critical for maintaining host resistance against infectious diseases.

Despite the widespread occurrence of acidic sulfur oxides in the ambient environment and their potential risks to human health, effects associated with pulmonary immune defenses have been poorly studied. The current in vivo study was designed to provide some insight into this relatively unexplored area by investigating the impact of inhaled sulfuric acid on immune defense mechanisms critical for maintaining pulmonary resistance against infectious diseases. Results of this study demonstrate that repeated inhalation of sulfuric acid reduces the uptake and intracellular killing of pathogenic bacteria by exposed pulmonary macrophages, and depresses the activity/production of important biological modifiers critical for maintaining pulmonary immunocompetence. These findings have important implications for human health, and may contribute to a better understanding of the possible mechanism(s) underlying the epidemiological evidence which suggests an association between total sulfates in the ambient air and increased incidence of acute bronchitis and lower respiratory illness in school-age children.

Aerosols↗

Hydrogen-Bond Breaking and Proton Exchange in Collisions of Gaseous Formic Acid with Liquid Sulfuric Acid

Gas-liquid scattering experiments provide direct observations of the fate of hydrogen-bonding molecules striking the surfaces of acidic liquids. Collisions of gaseous formic acid with concentrated sulfuric acid show that impinging monomers (HCOOH and DCOOD) scatter inelastically from the interface or become trapped by surface H2SO4. Most trapped DCOOD molecules undergo proton exchange before desorbing from the acid, indicating that gas-surface accommodation almost always leads to reaction with H2SO4 molecules. This proton transfer is not inhibited by dimerization of the formic acid: The dimers readily undergo intramolecular hydrogen bond cleavage and D-H exchange before desorbing from the acid.

Journal Article↗