Inorganic carbon utilization of tropical calcifying macroalgae and the impacts of intensive mariculture-derived coastal acidification on the physiological performance of the rhodolith Sporolithon sp.

Author:

Narvarte Bienson Ceasar V.,Nelson Wendy A.,Roleda Michael Y.

Funder

Philippine Council for Agriculture, Aquatic and Natural Resources Research and Development

DOST-PCAARRD

Publisher

Elsevier BV

Subject

Health, Toxicology and Mutagenesis,Pollution,Toxicology,General Medicine

Reference81 articles.

1. Summer phytoplankton community structure and distribution in a mariculture-affected coastal environment;Albelda;Philipp Sci Lett,2019

2. Net loss of CaCO3 from a subtropical calcifying community due to seawater acidification: mesocosm-scale experimental evidence;Andersson;Biogeosciences,2009

3. Occurrence and distribution of pharmaceutically active and endocrine disrupting compounds in Singapore’s marine environment: influence of hydrodynamics and physical–chemical properties;Bayen;Environ. Pollut.,2013

4. Ocean Acidification: A National Strategy to Meet the Challenges of a Changing Ocean;Board,2010

5. Calcification in the green alga Halimeda III. The sources of inorganic carbon for photosynthesis and calcification and a model of the mechanism of calcification;Borowitzka;J. Exp. Bot.,1976

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