Chlorine demand and inactivation of fungal propagules. 1983

W D Rosenzweig, and H A Minnigh, and W O Pipes

Conidia of filamentous fungi, vegetative yeast cells, and coliform bacteria were tested to determine their chlorine demand and their sensitivity to chlorine inactivation. Levels of chlorine demand for the various conidia, yeast, and coliforms were, respectively, 3.6 x 10(-9) to 3.2 x 10(-8), 1.2 x 10(-9) to 8.0 x 10(-9), and 2.5 x 10(-11) to 6.3 x 10(-10) mg of chlorine per propagule. Preliminary evidence suggests that the chlorine demand per propagule increases as the number of propagules per milliliter decreases. In general, conidia showed greatest resistance to chlorine inactiviation, followed by the yeast and coliforms. Inactivation by chlorine was influenced by pH, with inactivation (chlorine activity) falling in the order pH 5 > 7 > 8.

UI MeSH Term Description Entries
D010407 Penicillium A mitosporic Trichocomaceae fungal genus that develops fruiting organs resembling a broom. When identified, teleomorphs include EUPENICILLIUM and TALAROMYCES. Several species (but especially PENICILLIUM CHRYSOGENUM) are sources of the antibiotic penicillin. Penicilliums
D002713 Chlorine An element with atomic symbol Cl, atomic number 17, and atomic weight 35, and member of the halogen family. Chlorine Gas,Chlorine-35,Cl2 Gas,Chlorine 35,Gas, Chlorine,Gas, Cl2
D002963 Cladosporium A mitosporic Loculoascomycetes fungal genus including some economically important plant parasites. Teleomorphs include Mycosphaerella and Venturia. Cladosporiums
D003454 Cryptococcus A mitosporic Tremellales fungal genus whose species usually have a capsule and do not form pseudomycellium. Teleomorphs include Filobasidiella and Fidobasidium. Torula
D004755 Enterobacteriaceae A family of gram-negative, facultatively anaerobic, rod-shaped bacteria that do not form endospores. Its organisms are distributed worldwide with some being saprophytes and others being plant and animal parasites. Many species are of considerable economic importance due to their pathogenic effects on agriculture and livestock. Coliform Bacilli,Enterobacteria,Ewingella,Leclercia,Paracolobactrum,Sodalis
D005658 Fungi A kingdom of eukaryotic, heterotrophic organisms that live parasitically as saprobes, including MUSHROOMS; YEASTS; smuts, molds, etc. They reproduce either sexually or asexually, and have life cycles that range from simple to complex. Filamentous fungi, commonly known as molds, refer to those that grow as multicellular colonies. Fungi, Filamentous,Molds,Filamentous Fungi,Filamentous Fungus,Fungus,Fungus, Filamentous,Mold
D006863 Hydrogen-Ion Concentration The normality of a solution with respect to HYDROGEN ions; H+. It is related to acidity measurements in most cases by pH pH,Concentration, Hydrogen-Ion,Concentrations, Hydrogen-Ion,Hydrogen Ion Concentration,Hydrogen-Ion Concentrations
D001230 Aspergillus A genus of mitosporic fungi containing about 100 species and eleven different teleomorphs in the family Trichocomaceae.
D012248 Rhodotorula A red yeast-like mitosporic fungal genus generally regarded as nonpathogenic. It is cultured from numerous sources in human patients. Rhodotorulas
D015003 Yeasts A general term for single-celled rounded fungi that reproduce by budding. Brewers' and bakers' yeasts are SACCHAROMYCES CEREVISIAE; therapeutic dried yeast is YEAST, DRIED. Yeast

Related Publications

W D Rosenzweig, and H A Minnigh, and W O Pipes
September 2005, Journal of food protection,
W D Rosenzweig, and H A Minnigh, and W O Pipes
April 1997, International journal of food microbiology,
W D Rosenzweig, and H A Minnigh, and W O Pipes
January 2004, Journal of applied microbiology,
W D Rosenzweig, and H A Minnigh, and W O Pipes
April 1948, Water & sewage works,
W D Rosenzweig, and H A Minnigh, and W O Pipes
January 2005, Mycologia,
W D Rosenzweig, and H A Minnigh, and W O Pipes
November 2016, Huan jing ke xue= Huanjing kexue,
W D Rosenzweig, and H A Minnigh, and W O Pipes
July 2004, Mycorrhiza,
W D Rosenzweig, and H A Minnigh, and W O Pipes
August 2022, Water research,
W D Rosenzweig, and H A Minnigh, and W O Pipes
January 2011, Microbial ecology,
W D Rosenzweig, and H A Minnigh, and W O Pipes
December 2023, Environmental science & technology,
Copied contents to your clipboard!