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Enhanced biomethane potential from wheat straw by low temperature alkaline calcium hydroxide pre-treatment

机译:低温碱性氢氧化钙预处理提高了麦秸的生物甲烷潜力

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A factorially designed experiment to examine the effectiveness of Ca(OH)(2) pre-treatment, enzyme addition and particle size, on the mesophilic (35 degrees C) anaerobic digestion of wheat straw was conducted. Experiments used a 48 h pre-treatment with Ca(OH)(2) 7.4% (w/w), addition of Accellerase (R) - 1500, with four particle sizes of wheat straw (1.25, 2, 3 and 10 mm) and three digestion time periods (5, 15 and 30 days). By combining particle size reduction and Ca(OH)(2) pre-treatment, the average methane potential was increased by 315% (from 48 NmL-CH4 g-VS-1 to 202 NmL-CH4 g-VS-1) after 5 days of anaerobic digestion compared to the control. Enzyme addition or Ca(OH)(2) pre-treatment with 3, 2 and 1.25 mm particle sizes had 30-day batch yields of between 301 and 335 NmL-CH4 g-VS-1. Alkali pre-treatment of 3 mm straw was shown to have the most potential as a cost effective pre-treatment and achieved 290 NmL-CH4 g-VS-1, after only 15 days of digestion. (C) 2015 Elsevier Ltd. All rights reserved.
机译:进行了析因设计的实验,以检查Ca(OH)(2)预处理,酶的添加和粒径对麦秸的中温(35摄氏度)厌氧消化的有效性。实验使用48%的Ca(OH)(2)7.4%(w / w)预处理,添加Accellerase(R)-1500,小麦秸秆的四种粒径(1.25、2、3和10 mm)和三个消化时间段(5、15和30天)。通过将粒度减小和Ca(OH)(2)预处理相结合,在5秒钟后,平均甲烷电势提高了315%(从48 NmL-CH4 g-VS-1增至202 NmL-CH4 g-VS-1)厌氧消化天数与对照相比。用3、2和1.25毫米粒径的酶添加或Ca(OH)(2)预处理的30天批产量在301和335 NmL-CH4 g-VS-1之间。经证明,仅进行15天的消化,对3毫米稻草进行碱预处理最具成本效益,并且具有290 NmL-CH4 g-VS-1的潜力。 (C)2015 Elsevier Ltd.保留所有权利。

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