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Particle production in natural seawater by bubble dissolution

Author: Bruce Johnson; William H Sutcliffe; Robert C Cooke
Publisher: Dartmouth, N.S. : Marine Ecology Laboratory, Ocean Science and Surveys, Altantic, Dept. of Fisheries and Oceans, Bedford Institute of Oceanography, 1981.
Series: Canadian technical report of fisheries and aquatic sciences, no. 991.
Edition/Format:   Book   Microform : Microfiche : EnglishView all editions and formats
Summary:
This study entails the design and development of equipment for the production of organic particles by bubble dissolution, the collection of the particles on filters, and the analysis of the aggregated organic substances for carbon and nitrogen. The results suggest that the quantity and character of the particulate matter produced by bubble dissolution are complex functions of the prefilter pore size and of some  Read more...
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Document Type: Book
All Authors / Contributors: Bruce Johnson; William H Sutcliffe; Robert C Cooke
OCLC Number: 25509970
Notes: "This is the 79th Technical Report from the Marine Ecology Laboratory, Dartmouth, N.S."
Reproduction Notes: Microfiche. Ottawa : Public Archives of Canada, 1981. 1 microfiche : negative.
Description: v, 52 pages : illustrations.
Series Title: Canadian technical report of fisheries and aquatic sciences, no. 991.
Responsibility: by Bruce Johnson, William H. Sutcliffe, Robert C. Cooke.

Abstract:

This study entails the design and development of equipment for the production of organic particles by bubble dissolution, the collection of the particles on filters, and the analysis of the aggregated organic substances for carbon and nitrogen. The results suggest that the quantity and character of the particulate matter produced by bubble dissolution are complex functions of the prefilter pore size and of some unknown seasonally dependent variation in the composition of particle forming materials. The significance of bubble dissolution as a mechanism for the production of particulate organic material is examined with regard to the numbers of bubbles that might participate in the process in the marine environment.

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