globalchange  > 气候变化事实与影响
DOI: 10.1016/j.apenergy.2019.01.117
WOS记录号: WOS:000461262300108
论文题名:
High-resolution multi-objective optimization of feedstock landscape design for hybrid first and second generation biorefineries
作者: Nguyen, Trung H.1,2; Granger, Julien3; Pandya, Deval4; Paustian, Keith1,2
通讯作者: Nguyen, Trung H.
刊名: APPLIED ENERGY
ISSN: 0306-2619
EISSN: 1872-9118
出版年: 2019
卷: 238, 页码:1484-1496
语种: 英语
英文关键词: Biofuel supply chain ; Multi-objective optimization ; Feedstock landscape design ; Life cycle assessment ; Ecosystem modeling ; Ecosystem services
WOS关键词: LIFE-CYCLE ASSESSMENT ; WEIGHTED SUM METHOD ; TRADE-OFF ANALYSIS ; ECOSYSTEM SERVICES ; CROP PRODUCTION ; GAS EMISSIONS ; SOCIAL COST ; CORN ; MODEL ; BIOENERGY
WOS学科分类: Energy & Fuels ; Engineering, Chemical
WOS研究方向: Energy & Fuels ; Engineering
英文摘要:

Biofuels have been proposed as a potential solution for climate change mitigation. However, there exist several barriers, such as "food vs fuel" issues and technological constraints, restricting the sustainable commercialization of both first- and second-generation biofuels. Combining arable crops and their residues for hybrid first- and second-generation biofuel production provides opportunities to overcome these barriers. This study presents a high-resolution quantitative tool to support decision-making in feedstock production and sourcing for hybrid biofuel supply chains. We demonstrate this work with a case study on optimizing feedstock landscape design for a hybrid corn grain- and stover-based ethanol production system at Front Range Energy biorefinery, Windsor, Colorado, USA using a coupled simulation modeling and life-cycle assessment approach. The case study considered three competing design objectives including the minimization of feedstock-delivered costs, farm-to-refinery greenhouse gas emissions (GHG), and nitrogen (N) leaching, subject to constraints in land use and biofuel feedstock demand. Social costs of carbon (SC-CO2) and nitrogen leaching (SC-NL) were used as weighting factors for GHG and N leaching in the objective function. Our results showed that marginal decreases of feedstock delivered costs (below $0.31 L-1), N leaching (below 0.44 g N L-1), and GHG emissions (below 125 g CO(2)e L-1) resulted in extreme trade-offs among the design objectives. Changes in feedstock landscape design were most sensitive to the variations of the SC-CO2 between $400 and $800 per Mg CO(2)e, SC-NL between $0 and $50 per kg N leaching, and their ratio between 0 and 350, respectively.


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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/132051
Appears in Collections:气候变化事实与影响

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作者单位: 1.Colorado State Univ, Dept Soil & Crop Sci, 307 Univ Ave,Bldg Plant Sci C127, Ft Collins, CO 80523 USA
2.Colorado State Univ, Nat Resource Ecol Lab, Ft Collins, CO 80523 USA
3.Shell Trading US Co, Midland, TX USA
4.Shell Global Solut US Inc, Houston, TX USA

Recommended Citation:
Nguyen, Trung H.,Granger, Julien,Pandya, Deval,et al. High-resolution multi-objective optimization of feedstock landscape design for hybrid first and second generation biorefineries[J]. APPLIED ENERGY,2019-01-01,238:1484-1496
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