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SN | Document title | TC | TL | Article |
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1 | Biodiesel from Microalgae Beats Bioethanol | 1507 | 14 | Chisti [57] |
2 | Biodiesel Production from Heterotrophic Microalgal of Oil | 1044 | 22 | Miao and Wu [58] |
3 | Comparison of Several Methods for Effective Lipid Extraction from Microalgae | 906 | 8 | Lee et al. [59] |
4 | Dual Role of Microalgae: Phycoremediation of Domestic Wastewater and Biomass Production for Sustainable Biofuels Production | 709 | 5 | Rawat et al. [60] |
5 | Commercialization Potential of Microalgae for Biofuels Production | 643 | 1 | Singh and Gu [61] |
6 | Microalgae Biofuels: A Critical Review of Issues, Problems, and the Way Forward | 635 | 8 | Lam and Lee [68] |
7 | Effect of Light Intensity and Nitrogen Starvation on CO2 Fixation and Lipid/Carbohydrate Production of an Indigenous Microalga Scenedesmus obliquus CNW-N | 518 | 3 | Ho et al. [65] |
8 | Biodiesel Production—Current State of the Art and Challenges | 507 | 7 | Vasudevan and Briggs [67] |
9 | Use of Algae as Biofuel Sources | 488 | 6 | Demirbas [70] |
10 | Renewable Fuels from Algae: An Answer to Debatable Land Based Fuels | 452 | 13 | Singh et al. [62] |
11 | Review on Biofuel Oil and Gas Production Processes from Microalgae | 439 | 2 | Amin [66] |
12 | Life-Cycle Assessment of Microalgae Culture Coupled to Biogas Production | 389 | 7 | Collet et al. [71] |
13 | Cyanobacteria and microalgae: A Positive Prospect for Biofuels | 376 | 4 | Parmar et al. [72] |
14 | Life Cycle Analysis of Algae Biodiesel | 367 | 6 | Sander and Murthy [73] |
15 | Macroalgae and Microalgae as a Potential Source for Commercial Applications along with Biofuels Production: A Biorefinery Approach | 357 | 6 | Suganya et al. [34] |
16 | A Review on Harvesting, Oil Extraction and Biofuels Production Technologies from Microalgae | 357 | 10 | Pragya et al. [63] |
17 | Biofuels from Algae for Sustainable Development | 337 | 3 | Pragya et al. [63] |
18 | Development of Suitable Photobioreactors for CO2 Sequestration Addressing Global Warming using Green Algae and Cyanobacteria | 331 | 2 | Kumar et al. [74] |
19 | A Critical Review of Biochemical Conversion, Sustainability and Life Cycle Assessment of Algal Biofuels | 304 | 7 | Singh and Olsen [75] |
20 | Algae Biofuels: Versatility for the Future of Bioenergy | 287 | 6 | Jones and Mayfield [76] |
21 | Development of Suitable Photobioreactor for Algae production-A Review | 283 | 1 | Singh and Sharma [77] |
22 | Optimization of Direct Conversion of Wet Algae to Biodiesel under Supercritical Methanol Conditions | 282 | 7 | Patil et al. [23] |
23 | Second Generation Biofuels: Economics and Policies | 275 | 1 | Carriquiry et al. [78] |
24 | Status and Barriers of Advanced Biofuel Technologies: A Review | 272 | 1 | Cheng and Timilsina [79] |
25 | Biodiesel Production from Algae Oil High in Free Fatty Acids by Two-Step Catalytic Conversion | 267 | 4 | Chen et al. [80] |
26 | Nitrogen Stress Triggered Biochemical and Morphological Changes in the Microalgae Scenedesmus sp. CCNM 1077 | 263 | 0 | Pancha et al. [22] |
27 | Recent Advances in Liquid Biofuel Production from Algal Feedstocks | 254 | 7 | Daroch et al. [81] |
28 | Producing Docosahexaenoic Acid (DHA)-Rich Algae from Biodiesel-Derived Crude Glycerol: Effects of Impurities on DHA Production and Algal Biomass Composition | 254 | 2 | Pyle et al. [82] |
29 | Production of Biodiesel from Algae Oils | 250 | 0 | Demirbaş [20] |
30 | Transesterification of Nannochloropsis oculata Microalga’s Lipid to Biodiesel on Al2O3 Supported CaO and MgO Catalysts | 249 | 9 | Umdu et al. [64] |
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