연구진흥

창의적인 신지식 창출과 산업계와의 협력적 네트워크 구축

HIGHLY CITED PAPERS (HCP)

  • 전임교원이 최근 5년간 출판한 논문 중, 연도별 카테고리별 피인용 상위 1%에 달성된 논문
  • 매월 1회 업데이트
SCIE Article
[Excluded] Microalgae - A promising tool for heavy metal remediation
Author
Kumar, K. Suresh; Shin, Kyung-Hoon
Corresponding Author Info
Prof. Shin, Kyung-Hoon (신경훈 교수, 해양융합공학과)
Professor
E-mail
이메일shinkh@hanyang.ac.kr
Document Type
Source
ECOTOXICOLOGY AND ENVIRONMENTAL SAFETY 2015, 113, 329-352
Times Cited
Excluded
External Information
http://www.sciencedirect.com/science/article/pii/S0147651314005740
Abstract
- 5월/6월 2016부로, 이 논문의 인용 횟수가 분야와 출판 연도에 대해 Environment/Ecology 관련 학술 분야에서 상위 1%에 올랐습니다
- 출판연도: MAR 2015

<Abstract>
Biotechnology of microalgae has gained popularity due to the growing need for novel environmental technologies and the development of innovative mass-production. Inexpensive growth requirements (solar light and CO2), and, the advantage of being utilized simultaneously for multiple technologies (e.g. carbon mitigation, biofuel production, and bioremediation) make microalgae suitable candidates for several ecofriendly technologies. Microalgae have developed an extensive spectrum of mechanisms (extracellular and intracellular) to cope with heavy metal toxicity. Their wide-spread occurrence along with their ability to grow and concentrate heavy metals, ascertains their suitability in practical applications of waste-water bioremediation. Heavy metal uptake by microalgae is affirmed to be superior to the prevalent physicochemical processes employed in the removal of toxic heavy metals. In order to evaluate their potential and to fill in the loopholes, it is essential to carry out a critical assessment of the existing microalgal technologies, and realize the need for development of commercially viable technologies involving strategic multidisciplinary approaches. This review summarizes several areas of heavy metal remediation from a microalgal perspective and provides an overview of various practical avenues of this technology. It particularly details heavy metals and microalgae which have been extensively studied, and provides a schematic representation of the mechanisms of heavy metal remediation in microalgae. (C) 2014 Elsevier Inc. All rights reserved.
Web of Science Categories
Environmental Sciences; Toxicology
Funding
Language
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  • Source
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  • Source
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  • Source
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  • Time Cited
    Excluded
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  • Author(s)
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  • Source
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  • Time Cited
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  • Author(s)
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  • Source
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  • Time Cited
    Excluded
[Excluded]A Dynamic pricing demand response algorithm for smart grid: Reinforcement learning approach
  • Author(s)
    Lu, RZ; Hong, SH; Zhang, XF
  • Source
    APPLIED ENERGY 2018,15, 220-230
  • Time Cited
    Excluded
[Excluded] Overview of the Manufacturing Methods of Solid Dispersion Technology for Improving the Solubility of Poorly Water-Soluble Drugs and Application to Anticancer Drugs
  • Author(s)
    Tran, P; Pyo, YC; Kim, DH; Lee, SE; Kim, JK; Park, JS
  • Source
    PHARMACEUTICS 2019, 11, 132
  • Time Cited
    Excluded
[Excluded] Incentive-based demand response for smart grid with reinforcement learning and deep neural network
  • Author(s)
    Lu, Renzhi; Hong, Hong, Seung Ho;
  • Source
    APPLIED ENERGY 2019, 236, 937-949
  • Time Cited
    Excluded
[Excluded] An Incentive-Based Demand Response (DR) Model Considering Composited DR Resources
  • Author(s)
    Yu, Mengmeng; Hong, Seung Ho; Ding, Yuemin; Ye, Xun
  • Source
    IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS 2019, 66, 1488-1498
  • Time Cited
    Excluded
[Excluded] Combined effect of El Nino-Southern Oscillation and Pacific Decadal Oscillation on the East Asian winter monsoon
  • Author(s)
    Kim, Ji-Won; Yeh, Sang-Wook; Chang, Eun-Chul
  • Source
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  • Time Cited
    Excluded