D
Dillirani Nagarajan
Researcher at National Cheng Kung University
Publications - 64
Citations - 3575
Dillirani Nagarajan is an academic researcher from National Cheng Kung University. The author has contributed to research in topics: Fermentation & Chemistry. The author has an hindex of 21, co-authored 50 publications receiving 1864 citations. Previous affiliations of Dillirani Nagarajan include National Taiwan University.
Papers
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Journal ArticleDOI
Perspectives on the feasibility of using microalgae for industrial wastewater treatment.
Yue Wang,Shih-Hsin Ho,Chieh Lun Cheng,Wanqian Guo,Dillirani Nagarajan,Nanqi Ren,Duu-Jong Lee,Jo Shu Chang,Jo Shu Chang +8 more
TL;DR: This review aims to critically discuss the feasibility of microalgae-based wastewater treatment, including the strategies for strain selection, the effect of wastewater types, photobioreactor design, economic feasibility assessment, and other key issues that influence the treatment performance.
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Heterotrophic cultivation of microalgae for pigment production: A review
Jianjun Hu,Dillirani Nagarajan,Quanguo Zhang,Jo Shu Chang,Duu-Jong Lee,Duu-Jong Lee,Duu-Jong Lee +6 more
TL;DR: The heterotrophic metabolic potential of microalgae and their uses in pigment production are comprehensively described and strategies to enhance pigment production underheterotrophic conditions are critically discussed and the challenges faced in heterotrophe pigment production with possible alternative solutions are presented.
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Sustainable approaches for algae utilisation in bioenergy production
Shir Reen Chia,Hwai Chyuan Ong,Kit Wayne Chew,Pau Loke Show,Siew-Moi Phang,Tau Chuan Ling,Dillirani Nagarajan,Duu-Jong Lee,Jo Shu Chang +8 more
TL;DR: The potential types of algae in contributing carbohydrate and lipids to produce biofuel such as biodiesel, bioethanol and bio-gas are reviewed and economic feasibilities of algae based fuel production are discussed based on Life Cycle Analysis.
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Recent insights into biohydrogen production by microalgae - From biophotolysis to dark fermentation.
TL;DR: The bottlenecks in microalgae-based biohydrogen production are critically reviewed, the enzymes involved and the factors affecting the bioHydrogen production process are discussed, and future research areas in hydrogen production are presented.
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High-efficiency removal of lead from wastewater by biochar derived from anaerobic digestion sludge.
TL;DR: This study demonstrates a successful example of waste refinery by converting anaerobic digestion sludge to feasible heavy metal adsorbents to implement the concept of circular economy.