Biodiesel from Oilseeds in the Canadian Prairies and Supply-Chain Models for Exploring Production Cost Scenarios: A Review

ISRN Agronomy Pub Date : 2012-05-20 DOI:10.5402/2012/980621
N. Newlands, L. Townley-Smith
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引用次数: 2

Abstract

Canada recently implemented a federal mandate of 2% of renewable content in diesel fuel and heating oil. Federal-level biofuel strategy is currently more geared to bioethanol, as nonfood oils continue to be more cost-competitive and canola seeded area is forecast to increase 10% as a new record due to strong prices and high expected yields. Increasing focus is therefore being placed on alternative oilseeds as nonfood crops for biodiesel and their ability to adapt to the semiarid conditions of the Canadian Prairies and provide benefits in nutrient and water-use efficiency when introduced into the crop rotation. Systems engineering and supply-chain modeling and optimization will have an increasingly important role in decision making for designating supply units, the linkage of processes and chains, and biorefinery system design. However, current models require further enhancement to address current challenging questions: (1) changing spatial considerations (e.g., land use and suitability for feedstocks), (2) changing temporal dynamics of supply and risk of climate extreme impacts on transportation networks (road, rail, pipeline), price volatility, changes in policy targets and subsidy regimes, process technological change, and multigenerational biorefinery systems engineering advancements. Greater integration internationally in model development and testing would improve sensitivity and reliability in their system-level predictions and forecasts.
加拿大大草原油籽生物柴油的生产成本及供应链模型研究综述
加拿大最近实施了一项联邦法令,要求柴油和取暖油中的可再生能源含量必须达到2%。联邦一级的生物燃料战略目前更倾向于生物乙醇,因为非食用油继续更具成本竞争力,而且由于价格强劲和预期产量高,预计菜籽油的播种面积将增加10%,创历史新高。因此,越来越多的重点放在替代油籽作为生物柴油的非粮食作物,以及它们适应加拿大大草原半干旱条件的能力,并在作物轮作中提供养分和水利用效率方面的好处。系统工程和供应链建模和优化将在指定供应单位、过程和链的联系以及生物炼制系统设计的决策制定中发挥越来越重要的作用。然而,当前的模型需要进一步改进,以解决当前具有挑战性的问题:(1)不断变化的空间考虑因素(如土地利用和原料适用性);(2)不断变化的供应时间动态和气候对交通网络(公路、铁路、管道)的极端影响风险;价格波动;政策目标和补贴制度的变化;工艺技术变革;以及多代生物炼制系统工程的进步。在模型开发和测试方面更大的国际集成将提高它们的系统级预测和预报的敏感性和可靠性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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