4.7 Article

Exergy analysis of a whole-crop safflower biorefinery: A step towards reducing agricultural wastes in a sustainable manner

期刊

JOURNAL OF ENVIRONMENTAL MANAGEMENT
卷 279, 期 -, 页码 -

出版社

ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
DOI: 10.1016/j.jenvman.2020.111822

关键词

Biodiesel; Bioethanol; Exergy analysis; Whole-crop safflower biorefinery; Sustainability assessment; Waste minimization

资金

  1. Isfahan University of Technology
  2. University of Tehran
  3. Universiti Malaysia Terengganu
  4. Biofuel Research Team (BRTeam)
  5. Henan Agricultural University
  6. Universiti Malaysia Terengganu [UMT/RMIC/2-2/25 Jld 5 (64), Vot 55191]

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This study conducted a detailed exergy analysis of a whole-crop safflower biorefinery, identifying the wastewater treatment unit as the major exergy sink and potential bottleneck for further performance improvements. The analysis determined the exergy rates associated with various bioproducts and found an overall exergetic efficiency of 72.7%, demonstrating the adequacy of the developed biorefinery from a thermodynamic perspective.
The huge amount of agro-wastes generated due to expanding agricultural activities can potentially cause serious environmental and human health problems. Using the biorefinery concept, all parts of agricultural plants can be converted into multiple value-added bioproducts while reducing waste generation. This approach can be viewed as an effective strategy in developing and realizing a circular bioeconomy by accomplishing the dual goals of waste mitigation and energy recovery. However, the sustainability issue of biorefineries should still be thoroughly scrutinized using comprehensive resource accounting methods such as exergy-based approaches. In light of that, this study aims to conduct a detailed exergy analysis of whole-crop safflower biorefinery consisting of six units, i.e., straw handling, biomass pretreatment, bioethanol production, wastewater treatment, oil extraction, and biodiesel production. The analysis is carried out to find the major exergy sink in the developed biorefinery and discover the bottlenecks for further performance improvements. Overall, the wastewater treatment unit exhibits to be the major exergy sink, amounting to over 70% of the total thermodynamic irreversibility of the process. The biomass pretreatment and bioethanol production units account for 12.4 and 10.3% of the total thermodynamic inefficiencies of the process, respectively. The exergy rates associated with bioethanol, biodiesel, lignin, biogas, liquid digestate, seed cake, sodium sulfate, and glycerol are determined to be 5918.5, 16516.8, 10778.9, 1741.4, 6271.5, 15755.8, 3.4, and 823.5 kW, respectively. The overall exergetic efficiency of the system stands at 72.7%, demonstrating the adequacy of the developed biorefinery from the thermodynamic perspective.

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