IP Library › Granted Patent US 11,286,455
Granted Patent B2
US 11,286,455 · App. 16/824,302 · Granted Mar 29, 2022

Method and device for plankton separation

Inventor: Nancy Leland (North Andover, MA)
C12M47/02C12N1/02C12N1/10C12N1/12C12N1/20C12N13/00
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Quick Facts
Patent No.
US 11,286,455
App. No.
16/824,302
Granted
Mar 29, 2022
Kind
B2
Abstract

Methods, devices and kits for the physical separation of plankton into its component parts utilizing phototactic behavior are described. The methods utilize positive phototactic behavior and negative contrast orientation of the zooplankton for maximal in situ separation of phytoplankton and zooplankton for use in further studies and evaluation of separation efficiency. The devices provide effective conditions for use in the separation of plankton into component parts.

Claims (17)

1. A method for concentrating Cyanobacteria comprising:

collecting a concentrated Cyanobacteria sample from a body of water through the use of a mesh plankton net, wherein the collecting is performed by pulling the plankton net through the body of water, which causes the sample to reduce in volume to fill into a cod end of the plankton net;

placing the sample in a dark and cool environment, and keeping the sample in the environment for a holding period of about 2 hours; and

allowing the sample to separate for about an additional 20-30 minute separation period following the holding period within a plankton separating device having a darkened region and a transparent collection region extending below the darkened region, allowing the Cyanobacteria to achieve positive buoyancy and to separate from zooplankton.

2. The method of claim 1 , wherein the mesh plankton net is a 50 um mesh plankton net.

3. The method of claim 1 , comprising placing the sample in the plankton separating device after the sample is collected, the plankton separating device comprising:

a darkened chamber having an outer perimeter surrounding a central axis and a first inner width;

a darkened transitional area extending from the darkened chamber along the central axis having a second inner width that is smaller than the first inner width; and

a transparent collection container extending from the darkened transitional area along the central axis for allowing entrance of light therein, the transparent collection container of sufficient length to reinforce migration of plankton for separation, and extending beyond a point that makes about a 48° angle to the central axis while extending to the nearest location of maximum outer perimeter dimension of the darkened chamber, and extending away beyond the point that makes about a 20°±2° angle to the central axis while extending to the nearest location of the maximum outer perimeter dimension of the darkened chamber, the transparent collection container for collecting zooplankton within the plankton separating device so that samples of separated zooplankton and/or phytoplankton can be collected.

4. The method of claim 1 further comprising allowing the Cyanobacteria sample to undergo a process of respiration while in the dark and cool environment for said about 2 hours, thereby allowing the consumption of carbohydrates within the Cyanobacteria, decreasing the weight of carbohydrate ballast within the Cyanobacteria and increasing the relative buoyancy of the Cyanobacteria causing the Cyanobacteria to float.

5. A method for concentrating Cyanobacteria comprising:

collecting a concentrated Cyanobacteria sample from a body of water through the use of a mesh plankton net, wherein the collecting is performed by pulling the plankton net through the body of water, which causes the sample to reduce in volume to fill into a cod end of the plankton net;

placing the sample in a dark and cool environment, and keeping the sample in the environment for a minimum holding period of about 2 hours; and

providing conditions for the sample to separate for about an additional 20-30 minute separation period following the holding period, wherein the conditions allow for removal of zooplankton from the Cyanobacteria sample and allow the Cyanobacteria to achieve positive buoyancy, the conditions comprising placing the sample in a plankton separating device after the sample is collected, the plankton separating device comprising:

a darkened chamber having an outer perimeter surrounding a central axis and a first inner width;

a darkened transitional area extending from the darkened chamber along the central axis having a second inner width that is smaller than the first inner width; and

a transparent collection container extending from the darkened transitional area along the central axis for allowing entrance of light therein, the transparent collection container of sufficient length to reinforce migration of plankton for separation, and extending beyond a point that makes about a 48° angle to the central axis while extending to the nearest location of maximum outer perimeter dimension of the darkened chamber, and extending away beyond the point that makes about a 20°±2° angle to the central axis while extending to the nearest location of the maximum outer perimeter dimension of the darkened chamber, the transparent collection container for collecting zooplankton within the plankton separating device so that samples of separated zooplankton and/or phytoplankton can be collected.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 23, 2023
From: LELAND, NANCY
To: NANCY LELAND TRUST
Reel/Frame 062448/0906 →
Continuity (7)
Division 16232376 · Dec 26, 2018
Division 15152359 · May 11, 2016
Continuation In Part 14615110 · Feb 5, 2015
Provisional Application 62249633 · Nov 2, 2015
Provisional Application 62174027 · Jun 11, 2015
Provisional Application 61936698 · Feb 6, 2014
Related Publication 20200216793A1 · Jul 9, 2020