Current research and perspectives on microalgae-derived biodiesel

被引:13
作者
Singh, Kartik [1 ]
Kaloni, Deeksha [1 ]
Gaur, Sakshi [1 ]
Kushwaha, Shipra [1 ]
Mathur, Garima [1 ]
机构
[1] Jaypee Inst Informat Technol, Dept Biotechnol, A-10,Sec 62, Noida 201307, Uttar Pradesh, India
来源
BIOFUELS-UK | 2020年 / 11卷 / 01期
关键词
Microalgae; biodiesel; biofuels; biorefinery; oil extraction; IN-SITU TRANSESTERIFICATION; RESPONSE-SURFACE METHODOLOGY; CARBON-DIOXIDE CAPTURE; EXTERNAL-LOOP AIRLIFT; PHOTOSYNTHETIC EFFICIENCY; LIGHT-INTENSITY; METHANOL TRANSESTERIFICATION; PHAEODACTYLUM-TRICORNUTUM; HETEROGENEOUS CATALYSTS; BIOCHEMICAL-COMPOSITION;
D O I
10.1080/17597269.2017.1278932
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Biofuels have gained much attention in the recent years. Microalgae hold tremendous potential for production of biofuels as a suitable alternative to conventional fossil fuels. However, in order to ensure sustainability of the biofuel production from microalgae, many issues needs to be considered. Large-scale production of such biofuels is often limited by high cost of production, various environmental concerns including water footprint, and low yield. The algal biorefinery strategy, which can integrate several different conversion technologies to produce biofuels, holds potential for reducing the overall production cost. This paper is a review on various aspects associated with algal cultivation, lipid extraction and biodiesel production. Different factors reported to affect the process of algal cultivation and advancements in transesterification process and product recovery are summarized here. A brief on biorefinery approach is also discussed.
引用
收藏
页码:1 / 18
页数:18
相关论文
共 50 条
[21]   Physicochemical, microstructure and antioxidant properties of microalgae-derived fucoxanthin rich microcapsules [J].
Foo, Su Chern ;
Khong, Nicholas M. H. ;
Yusoff, Fatimah Md .
ALGAL RESEARCH-BIOMASS BIOFUELS AND BIOPRODUCTS, 2020, 51
[22]   Microalgae-derived nanoporous biochar for ammonia removal in sustainable wastewater treatment [J].
Zhang, Xixia ;
Kastyl, Jaroslav ;
Casas-Luna, Mariano ;
Havlicek, Lubomir ;
Vondra, Marek ;
Brummer, Vladimir ;
Sukacova, Katerina ;
Masa, Vitezslav ;
Teng, Sin Yong ;
Neugebauer, Petr .
JOURNAL OF ENVIRONMENTAL CHEMICAL ENGINEERING, 2022, 10 (06)
[23]   Adsorption of organic contaminants of emerging concern using microalgae-derived hydrochars [J].
Kozyatnyk, Ivan ;
Benavente, Veronica ;
Weidemann, Eva ;
Jansson, Stina .
SCIENTIFIC REPORTS, 2025, 15 (01)
[24]   Prospects of biodiesel production from microalgae in India [J].
Khan, Shakeel A. ;
Rashmi ;
Hussain, Mir Z. ;
Prasad, S. ;
Banerjee, U. C. .
RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2009, 13 (09) :2361-2372
[25]   Current Status and Prospects of Biodiesel Production from Microalgae [J].
Wu, Xiaodan ;
Ruan, Rongsheng ;
Du, Zhenyi ;
Liu, Yuhuan .
ENERGIES, 2012, 5 (08) :2667-2682
[26]   Microalgae-derived tocopherols: Biotechnological advances in production and its therapeutic potentials [J].
Udaypal ;
Goswami, Rahul Kumar ;
Mehariya, Sanjeet ;
Verma, Pradeep .
SUSTAINABLE CHEMISTRY AND PHARMACY, 2024, 42
[27]   Biodiesel production from microalgae [J].
Veillette, M. ;
Giroir-Fendler, A. ;
Faucheux, N. ;
Heitz, M. .
MANAGEMENT OF NATURAL RESOURCES, SUSTAINABLE DEVELOPMENT AND ECOLOGICAL HAZARDS III, 2012, 148 :465-473
[28]   A critical look at the microalgae biodiesel [J].
Petkov, Georgi ;
Ivanova, Albena ;
Iliev, Ivan ;
Vaseva, Irina .
EUROPEAN JOURNAL OF LIPID SCIENCE AND TECHNOLOGY, 2012, 114 (02) :103-111
[29]   PRODUCTION OF BIODIESEL FROM MICROALGAE [J].
Danilovic, Bojana R. ;
Avramovic, Jelena M. ;
Ciric, Jovan T. ;
Savic, Dragisa S. ;
Veljkovic, Vlada B. .
HEMIJSKA INDUSTRIJA, 2014, 68 (02) :213-232
[30]   Development and validation of a screening procedure of microalgae for biodiesel production: Application to the genus of marine microalgae Nannochloropsis [J].
Taleb, A. ;
Pruvost, J. ;
Legrand, J. ;
Marec, H. ;
Le-Gouic, B. ;
Mirabella, B. ;
Legeret, B. ;
Bouvet, S. ;
Peltier, G. ;
Li-Beisson, Y. ;
Taha, S. ;
Takache, H. .
BIORESOURCE TECHNOLOGY, 2015, 177 :224-232