نتایج جستجو برای: high molecular weight hydrocarbons

تعداد نتایج: 2830116  

Journal: :Applied and environmental microbiology 1988
M A Heitkamp W Franklin C E Cerniglia

Microbiological analyses of sediments located near a point source for petrogenic chemicals resulted in the isolation of a pyrene-mineralizing bacterium. This isolate was identified as a Mycobacterium sp. on the basis of its cellular and colony morphology, gram-positive and strong acid-fast reactions, diagnostic biochemical tests, 66.6% G + C content of the DNA, and high-molecular-weight mycolic...

1999
Hermann Wehner Eckhard Faber Heinz Hufnagel

Sediments from Holes 994C, 995A, 997A, and 997B have been investigated for “combined” gases (adsorbed gas and that portion of free gas that has not escaped from the pore volume during core recovery and sample collection and storage), solventextractable organic compounds, and microscopically identifiable organic matter. The soluble materials mainly consist of polar compounds. The saturated hydro...

Journal: :Infection and immunity 1982
K Mitsui N Mitsui K Kobashi J Hase

Clostridium tetani excretes hemolysins of two size classes, a high-molecular-weight hemolysin (HMH), which was eluted near void volume of a Sepharose 6B column, and conventional tetanolysin (molecular weight, approximately 50,000). The total hemolysin activity in the culture supernatant increased sharply with growth of bacteria and remained at a high level during autolysis. The content of HMH, ...

Journal: :Molecules 2009
Yildiz Ozsoy Sevgi Gungor Erdal Cevher

Nasal drug delivery may be used for either local or systemic effects. Low molecular weight drugs with are rapidly absorbed through nasal mucosa. The main reasons for this are the high permeability, fairly wide absorption area, porous and thin endothelial basement membrane of the nasal epithelium. Despite the many advantages of the nasal route, limitations such as the high molecular weight (HMW)...

Journal: :Applied microbiology 1974
J R Haines M Alexander

Measurements of biological O(2) demand showed that normal alkanes containing up to 44 carbon atoms were metabolized by microorganisms.

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