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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
Emerging approaches in lignocellulosic biomass pretreatment and anaerobic bioprocesses for sustainable biofuels production
Author
Kumar, Ramesh; Kim, Tae Hyun; Basak, Bikram; Patil, Swapnil M.; Kim, Hoo Hugo; Ahn, Yongtae; Yadav, Krishna Kumar; Cabral-Pinto, Marina M. S.; Jeon, Byong-Hun
Corresponding Author Info
Prof. KIM TAE HYUN(재료화학공학과 김태현 교수)
Professor
E-mail
이메일hitaehyun@hanyang.ac.kr
Document Type
Source
JOURNAL OF CLEANER PRODUCTION
Times Cited
21 (2023.03.10)
External Information
http://dx.doi.org/10.1016/j.jclepro.2021.130180
Abstract
- 9월/10월 2022부로, 이 인용 빈도가 높은 논문의 인용 횟수가 분야와 출판 연도에 대해 Engineering 관련 학술 분야에서 상위 1%에 올랐습니다.

<Abstract>
The development of advanced biofuels from waste organic matter, such as lignocellulosic biomass, is critical for global sustainable waste management and to delay climate change by reducing greenhouse gas emissions via partial replacement of fossil fuels. However, the inherent recalcitrance of lignocellulosic biomass due to the presence of inhibitory components, mainly lignin, limits the hydrolysis of its carbohydrate content, representing a key hurdle augmenting biofuel production. Therefore, pretreatment of lignocellulosic biomass is crucial to promote its fragmentation, increase its surface area and solubility, and lower the cellulose crystallinity and lignin content for sustainable biorefinery. Conventional pretreatment processes have several drawbacks, including high operational costs, corrosion of equipment, and generation of toxic effluents and by-products. To offset the negative impacts of these limitations on biofuel production, here, we have discussed and critically compared various eco-friendly approaches for the efficient conversion of biomass to ensure high yields of biofuels as a commercial solution. Moreover, a range of microbes and enzymes have been highlighted that effectively utilize lignocellulosic biomass to obtain energy and convert its complex polymeric structure into a biodegradable one, facilitating its subsequent valorization. Furthermore, the importance of multi-omics approaches was discussed to gain functional insights into the lignocellulolytic microbial communities and their interspecies symbiosis during the hydrolysis of organic biomass. Finally, the limitations of previous studies, challenges, industrial perspectives, and future outlooks for the development of economical, energy-saving, and eco-friendly strategies toward the sustainable valorization of lignocellulosic biomass were summarized.
Web of Science Categories
Science & Technology - Other Topics; Engineering; Environmental Sciences & Ecology
Funding
Language
English
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