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首页> 外文期刊>Renewable & Sustainable Energy Reviews >Importance of policy support and feedstock prices on economic feasibility of bioethanol production from wheat straw in the UK
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Importance of policy support and feedstock prices on economic feasibility of bioethanol production from wheat straw in the UK

机译:政策支持和原料价格对英国小麦秸秆生产生物乙醇的经济可行性的重要性

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The economic feasibility of producing bioethanol from wheat straw in the UK using various state-of-the-art pretreatment technologies (steam explosion with and without acid catalyst, liquid hot water, dilute acid and wet oxidation) is assessed in this study. Under the current-technology base-case modeled using high enzyme loadings demonstrated at the laboratory-scale, wet oxidation pretreatment had the lowest minimum ethanol selling price (MESP) of E0.347/L ($2.032/gal). A contribution analysis showed feedstock price and enzyme cost were the two greatest contributors to the MESP, which led to a prospective case study and sensitivity analysis for assessing the effects of these two factors on the potential for economically competitive wheat straw-to-bioethanol UK supply chains. Prospective case studies modeled with a reduced enzyme loading and cost, demonstrated that although pretreatment scenarios with liquid hot water and steam explosion without acid catalyst were the closest to petrol pump prices, policy support in the form of tax exemptions could significantly enhance competitiveness of bioethanol with conventional fuel. A sensitivity analysis of feedstock prices also demonstrated that access to wheat straw prices of £35/t or lower would allow bioethanol production to be competitive with petrol under the best case scenario.
机译:本研究评估了英国采用各种最先进的预处理技术(使用或不使用酸催化剂的蒸汽爆炸,液体热水,稀酸和湿式氧化法)从麦草生产生物乙醇的经济可行性。在实验室规模下使用高酶负载进行建模的当前技术基础案例下,湿式氧化预处理的最低乙醇最低销售价格(MESP)为E0.347 / L(2.032美元/加仑)。贡献分析表明,原料价格和酶成本是MESP的两个最大贡献因素,这导致了前瞻性案例研究和敏感性分析,以评估这两个因素对英国具有经济竞争力的小麦秸秆转化为生物乙醇的潜力的影响链。以减少的酶负载和成本为模型的前瞻性案例研究表明,尽管在不使用酸催化剂的情况下使用液态热水和蒸汽爆炸进行预处理的方案最接近汽油泵价格,但免税形式的政策支持可以显着提高生物乙醇的竞争力。常规燃料。原料价格的敏感性分析还表明,以低于35英镑/吨的价格获得麦秆价格将使生物乙醇生产在最佳情况下可与汽油竞争。

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