Combined effect of initial biomass density and nitrogen concentration on growth and astaxanthin production of Haematococcus pluvialis (Chlorophyta) in outdoor cultivation
Algae. 2013;28(2):193-202.     DOI: https://doi.org/10.4490/algae.2013.28.2.193
Citations to this article as recorded by Crossref logo
Urea-N influences biomass yield, neutral lipids accumulation, and unsaturated fatty acid production in photoautotrophically grown microalga Chlorella sp
Reem Mohammed Alharbi
Biocatalysis and Agricultural Biotechnology.2024; 56: 103056.     CrossRef
Improved Production of Astaxanthin from Haematococcus pluvialis Using a Hybrid Open–Closed Cultivation System
Yunji An, Taesoo Kim, Huijeong Byeon, Vijay Rayamajhi, Jihyun Lee, SangMok Jung, HyunWoung Shin
Applied Sciences.2024; 14(3): 1104.     CrossRef
Haematococcus pluvialis cultivation and astaxanthin production using different nitrogen sources with pulse feeding strategy
Laenne Barbara Silva de Moraes, Géssica Cavalcanti Pereira Mota, Elizabeth Pereira dos Santos, Clarissa Vilela Figueiredo da Silva Campos, Bruna Adriele Bernardino da Silva, Alfredo Olivera Gálvez, Ranilson de Souza Bezerra
Biomass Conversion and Biorefinery.2023;[Epub]     CrossRef
Biomass production and astaxanthin accumulation of Haematococcus pluvialis in large-scale outdoor culture based on year-round survey: Influencing factors and physiological response
Zhuoran Teng, Lingling Zheng, Zihan Yang, Lurong Li, Qi Zhang, Lin Li, Wei Chen, Gaohong Wang, Lirong Song
Algal Research.2023; 71: 103070.     CrossRef
Glycine differentially improved the growth and biochemical composition of Synechocystis sp. PAK13 and Chlorella variabilis DT025
Wael A. Fathy, Hamada AbdElgawad, Ehab A. Essawy, Eman Tawfik, Mohamed S. Abdelhameed, Ola Hammouda, Shereen Magdy Korany, Khaled N. M. Elsayed
Frontiers in Bioengineering and Biotechnology.2023;[Epub]     CrossRef
Screening and optimization of starch from marine microalgae isolated from Penang sea water Malaysia
Rozi Nuraika Ramli, Uthumporn Utra, Sufia Hena, Chee Keong Lee
Biocatalysis and Agricultural Biotechnology.2023; 51: 102758.     CrossRef
Influence of light absorption rate on the astaxanthin production by the microalga Haematococcus pluvialis during nitrogen starvation
Khadija Samhat, Antoinette Kazbar, Hosni Takache, Ali Ismail, Jeremy Pruvost
Bioresources and Bioprocessing.2023;[Epub]     CrossRef
From green to orange: The change in biochemical composition of phototrophic-mixotrophic Chromochloris zofingiensis in pilot-scale photobioreactors
Eleanor E. Wood, Michael E. Ross, Sébastien Jubeau, Valéria Montalescot, Karen MacKechnie, Ryan E. Marchington, Matthew P. Davey, Sharon McNeill, Callum Hamilton, Michele S. Stanley
Algal Research.2023; 75: 103238.     CrossRef
Recovery of value-added products by mining microalgae
Ranbin Liu, Siqi Li, Yingfan Tu, Xiaodi Hao, Fuguo Qiu
Journal of Environmental Management.2022; 307: 114512.     CrossRef
Enhancing astaxanthin production in Haematococcus pluvialis QLD by a pH steady NaHCO3-CO2-C/NH4Cl-N culture system
Ruijuan Ma, Xinyi Tao, Elvis T. Chua, Shih-Hsin Ho, Xinguo Shi, Lemian Liu, Youping Xie, Jianfeng Chen
Algal Research.2022; 64: 102697.     CrossRef
Impact of cultivation parameters on astaxanthin accumulation in the green alga Haematococcus lacustris RRGK isolated from Himachal Pradesh, India
Ramamoorthy Karuppan, Anand Javee, Sreekala Kannikulathel Gopidas, Arulmurugan Pathmanapan, Karuppasamy Kattusamy, Vijayanand Narayanan, Sivasangari Ramya Subramanian, Nagaraj Subramani
Energy Nexus.2022; 6: 100083.     CrossRef
Promoting the Growth of Haematococcus lacustris under High Light Intensity through the Combination of Light/Dark Cycle and Light Color
Lu Liu, Kezhen Ying, Kebi Wu, Si Tang, Jin Zhou, Zhonghua Cai
Journal of Marine Science and Engineering.2022; 10(7): 839.     CrossRef
Modelos matemáticos y parámetros cinéticos relacionados con la producción de astaxantina en Haematococcus pluvialis
Tatiana Torres, Judith Elena Camacho Kurmen
Revista Mutis.2022;[Epub]     CrossRef
Bioenergy, Biofuels, Lipids and Pigments—Research Trends in the Use of Microalgae Grown in Photobioreactors
Daniel Borowiak, Małgorzata Krzywonos
Energies.2022; 15(15): 5357.     CrossRef
Evaluation of the phototrophic growth of Haematococcus pluvialis under outdoor lighting conditions inside a bubble column reactor at a laboratory scale
Rodrigo Jorge Leonardi, Manuel Vicente Ibañez, Matías Nicolás Morelli, Josué Miguel Heinrich
Algal Research.2022; 66: 102800.     CrossRef
Simultaneous promotion of photosynthesis and astaxanthin accumulation during two stages of Haematococcus pluvialis with ammonium ferric citrate
Yanxia Zhu, Ze Zhang, Xiaodan Xu, Jun Cheng, Shutong Chen, Jianglei Tian, Weijuan Yang, Mark Crocker
Science of The Total Environment.2021; 750: 141689.     CrossRef
Plasma-Activated Water as Nitrogen Source for Algal Growth: A Microcosm Study
Seema Sukhani, N. Punith, Atharva Ekatpure, Gautami Salunke, M. Manjari, Rao Harsha, H. N. Chanakya, Rao Lakshminarayana
IEEE Transactions on Plasma Science.2021; 49(2): 551.     CrossRef
Effects of light intensity on the production of phycoerythrin and polyunsaturated fatty acid by microalga Rhodomonas salina
Jiahui Xie, Si Chen, Zhiyou Wen
Algal Research.2021; 58: 102397.     CrossRef
Microalgae as Sources of High-Quality Protein for Human Food and Protein Supplements
Yanwen Wang, Sean Tibbetts, Patrick McGinn
Foods.2021; 10(12): 3002.     CrossRef
Astaxanthin accumulation difference between non-motile cells and akinetes of Haematococcus pluvialis was affected by pyruvate metabolism
Lei Fang, Jingkui Zhang, Zhongnan Fei, Minxi Wan
Bioresources and Bioprocessing.2020;[Epub]     CrossRef
Stimulation of biomass and astaxanthin accumulation in Haematococcus pluvialis using low-temperature plasma (LTP)
Zhu Chen, Lamei Li, Hong Zhang, Qing Huang
Bioresource Technology Reports.2020; 9: 100385.     CrossRef
Nitrogen repletion favors cellular metabolism and improves eicosapentaenoic acid production in the marine microalga Isochrysis sp. CASA CC 101
Jeyakumar B, Asha D, Varalakshmi P, Kathiresan S
Algal Research.2020; 47: 101877.     CrossRef
The Influence of Dissolved Organic Carbon on the Microbial Community Associated with Tetraselmis striata for Bio-Diesel Production
Sae-Hee Kim, Jin Ho Kim, Seung Ho Baek, Joo-Hwan Kim, Penelope A. Ajani, Bum Soo Park, Myung-Soo Han
Applied Sciences.2020; 10(10): 3601.     CrossRef
Propagation of Inoculum for Haematococcus pluvialis Microalgae Scale-Up Photobioreactor Cultivation System
Daniel Borowiak, Katarzyna Pstrowska, Maciej Wiśniewski, Michał Grzebyk
Applied Sciences.2020; 10(18): 6283.     CrossRef
Single-Stage Astaxanthin Production Enhances the Nonmevalonate Pathway and Photosynthetic Central Metabolism in Synechococcus sp. PCC 7002
Tomohisa Hasunuma, Ayako Takaki, Mami Matsuda, Yuichi Kato, Christopher J. Vavricka, Akihiko Kondo
ACS Synthetic Biology.2019; 8(12): 2701.     CrossRef
Simple method for preserving large quantity of high viability red biomass of Haematococcus in the medium term (3~6 months)
Junfeng Wang, Weiwei Tang, Lin Chen, Wen Liu, Xin Gao, Tianzhong Liu
Journal of Applied Phycology.2019; 31(3): 1607.     CrossRef
Deesterification of astaxanthin and intermediate esters from Haematococcus pluvialis subjected to stress
Janeth I. Galarza, Bertha O. Arredondo Vega, Jimmy Villón, Vitalia Henríquez
Biotechnology Reports.2019; 23: e00351.     CrossRef
Cooling coil led to the collapse of N-replete Haematococcus pluvialis cultures by releasing lethal levels of Cu2+
Junfeng Wang, Wen Liu, Tianzhong Liu, Qiang Hu
Algal Research.2019; 44: 101699.     CrossRef
Isolation and characterization of bacterial strains capable of growing on malathion and fenitrothion and the use of date syrup as an additional substrate
Rym Salah-Tazdaït, Djaber Tazdaït, Rouchdi Berrahma, Nadia Abdi, Hocine Grib, Nabil Mameri
International Journal of Environmental Studies.2018; 75(3): 466.     CrossRef
Effect of nutrients on the growth and physiological features of newly isolated Haematococcus pluvialis TMU1
Bahareh Nahidian, Faezeh Ghanati, Maryam Shahbazi, Neda Soltani
Bioresource Technology.2018; 255: 229.     CrossRef
Intraspecific trait variation affecting astaxanthin productivity in two Haematococcus (Chlorophyceae) species
Céline C. Allewaert, Pieter Vanormelingen, Ilse Daveloose, Tine Verstraete, Wim Vyverman
Algal Research.2017; 21: 191.     CrossRef
Some Promising Microalgal Species for Commercial Applications: A review
Saleh Mobin, Firoz Alam
Energy Procedia.2017; 110: 510.     CrossRef
Enhanced production of astaxanthin by Chromochloris zofingiensis in a microplate-based culture system under high light irradiation
Jun-hui Chen, Lu Liu, Dong Wei
Bioresource Technology.2017; 245: 518.     CrossRef
Optimization of Arthrospira platensis (Spirulina) Growth: From Laboratory Scale to Pilot Scale
Florian Delrue, Emilie Alaux, Lagia Moudjaoui, Clément Gaignard, Gatien Fleury, Amaury Perilhou, Pierre Richaud, Martin Petitjean, Jean-François Sassi
Fermentation.2017; 3(4): 59.     CrossRef
Astaxanthin-Producing Green Microalga Haematococcus pluvialis: From Single Cell to High Value Commercial Products
Md. Mahfuzur R. Shah, Yuanmei Liang, Jay J. Cheng, Maurycy Daroch
Frontiers in Plant Science.2016;[Epub]     CrossRef
A techno-economic assessment of an algal-based biorefinery
Gwenny Thomassen, Urko Egiguren Vila, Miet Van Dael, Bert Lemmens, Steven Van Passel
Clean Technologies and Environmental Policy.2016; 18(6): 1849.     CrossRef
Dynamic modelling of Haematococcus pluvialis photoinduction for astaxanthin production in both attached and suspended photobioreactors
Dongda Zhang, Minxi Wan, Ehecatl A. del Rio-Chanona, Jianke Huang, Weiliang Wang, Yuanguang Li, Vassilios S. Vassiliadis
Algal Research.2016; 13: 69.     CrossRef
Effect of moderate static electric field on the growth and metabolism of Chlorella vulgaris
Hassan Nezammahalleh, Faezeh Ghanati, Thomas A. Adams, Mohsen Nosrati, Seyed Abbas Shojaosadati
Bioresource Technology.2016; 218: 700.     CrossRef
Effects of nitrogen sources on cell growth and biochemical composition of marine chlorophyte Tetraselmis sp. for lipid production
Garam Kim, Ghulam Mujtaba, Kisay Lee
ALGAE.2016; 31(3): 257.     CrossRef
Carotenoids from microalgae: A review of recent developments
Mengyue Gong, Amarjeet Bassi
Biotechnology Advances.2016; 34(8): 1396.     CrossRef
Sequential Heterotrophy–Dilution–Photoinduction Cultivation of Haematococcus pluvialis for efficient production of astaxanthin
Minxi Wan, Zhen Zhang, Jun Wang, Jianke Huang, Jianhua Fan, Anquan Yu, Weiliang Wang, Yuanguang Li
Bioresource Technology.2015; 198: 557.     CrossRef
The water footprint of biofilm cultivation of Haematococcus pluvialis is greatly decreased by using sealed narrow chambers combined with slow aeration rate
Shuchao Yin, Junfeng Wang, Lin Chen, Tianzhong Liu
Biotechnology Letters.2015; 37(9): 1819.     CrossRef
The effect of temperature on cell growth and astaxanthin accumulation of Haematococcus pluvialis during a light–dark cyclic cultivation
Minxi Wan, Jingkui Zhang, Dongmei Hou, Jianhua Fan, Yuanguang Li, Jianke Huang, Jun Wang
Bioresource Technology.2014; 167: 276.     CrossRef
Attached cultivation of Haematococcus pluvialis for astaxanthin production
Wenduo Zhang, Junfeng Wang, Jialin Wang, Tianzhong Liu
Bioresource Technology.2014; 158: 329.     CrossRef
Biorefinery of microalgae – opportunities and constraints for different production scenarios
Ioanna Hariskos, Clemens Posten
Biotechnology Journal.2014; 9(6): 739.     CrossRef