Utility practices and perspectives on monitoring and source control of cyanobacterial blooms

Author:

Kibuye Faith A.1ORCID,Almuhtaram Husein2ORCID,Zamyadi Arash3,Gaget Virginie4ORCID,Owen Christine5ORCID,Hofmann Ron2ORCID,Wert Eric C.1ORCID

Affiliation:

1. Southern Nevada Water Authority (SNWA) Las Vegas Nevada USA

2. Department of Civil and Mineral Engineering University of Toronto Toronto Ontario Canada

3. Water Research Australia Adelaide South Australia Australia

4. Water Research Centre, Department of Ecology and Evolutionary Biology, School of Biological Sciences University of Adelaide South Australia Australia

5. Hazen and Sawyer, Water and Reuse Innovations Tampa Florida USA

Funder

Natural Sciences and Engineering Research Council of Canada

Water Research Foundation

Publisher

Wiley

Subject

Waste Management and Disposal,Ocean Engineering,Water Science and Technology,Oceanography

Reference97 articles.

1. Alternative alert system for cyanobacterial bloom, using phycocyanin as a level determinant;Ahn C. Y.;Journal of Microbiology,2007

2. The quantitative real-time PCR applications in the monitoring of marine harmful algal bloom (HAB) species

3. Climate Change Impact on Water Quality: Model Results from Southern Sweden

4. AWWA(2016). Cyanotoxins in US drinking water: Occurrence case studies and state approaches to regulation (pp. 1–56). American Water Works Association.

5. Human intoxication by microcystins during renal dialysis treatment in Caruaru—Brazil

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