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首页> 外文期刊>E3S Web of Conferences >Hybrid Upflow-Anaerobic Filter (HU-AF) Integrated technology for bio-methane generation from vinasse with shorter hydraulic retention time
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Hybrid Upflow-Anaerobic Filter (HU-AF) Integrated technology for bio-methane generation from vinasse with shorter hydraulic retention time

机译:杂交上流 - 厌氧过滤器(HU-AF)从VINASSE的生物甲烷生成综合技术,具有较短的液压保留时间

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Research about Hybrid Upflow-Anaerobic Filter (HU-AF) integrated technology for bioenergy generation from vinasse was conducted. Modification of influent flow system, expansion of filter contact area and addition of gas accumulator for biogas collection were used to enhance the degree of vinasse biodegradation biogas generation, and yet to shorten the hydraulic retention time (HRT). Hybrid Upflow-Anaerobic Filter (HU-AF) integrated technology was a double dome reactor with sequential connection, with up-flow inlet distribution inside the reactor. Total volume of HU-AF was 60 m~(3). A mixing and a feeding chamber, with volume 3 m~(3), each were installed before HU-AF reactor. A reservoir chamber with volume of 6 m~(3)was added after HU-AF reactor. OLR was 2.04 kg COD/day. A methanogenic seed sludge derived from anaerobic lagoon. The experiment was carried out initially by seeding, acclimatization and adaptation of microorganisms inside the reactor. A feeding ratio of vinasse: water = 1:4, and initial pH of 6 were adjusted. Result showed that Full-scale HU-AF integrated technology was able to degrade COD with maximum degradation of COD 55.45% at pH 7.1, and shorten the HRT into 32 days. Biogas production was consisted of 57.21 % methane, 13.98% CO_(2)and various gases 28.1% (H_(2)S, VOC, CO and H_(2)O). This experiment showed that HRT was shorter than conventional reactor.
机译:进行了关于杂交上流 - 厌氧过滤器(HU-AF)从VINASSE生物能源生物发电综合技术的研究。流动流动系统的改进,过滤器接触面积的扩展以及用于沼气收集的储气器的增加,以提高Vinasse生物降解沼成的程度,尚未缩短液压保留时间(HRT)。混合溢流 - 厌氧过滤器(HU-AF)集成技术是一个双圆顶反应器,具有顺序连接,在反应器内具有上流入口分布。 HU-AF总量为60米〜(3)。混合和进料室,体积3m〜(3),每个都安装在Hu-AF反应器之前。在HU-AF反应器后加入具有6m〜(3)的容积的储层室。 OLR为2.04千克COD /日。一种衍生自厌氧泻湖的甲状腺种子污泥。通过播种,适应和调整反应器内的微生物进行,初始进行实验。调节vinasse:水= 1:4的饲喂比,并调整初始pH。结果表明,全规模的HU-AF综合技术能够降解COD 55.45%在pH 7.1时的最大降解,并将HRT缩短为32天。沼气生产由57.21%的甲烷组成,13.98%CO_(2)和各种气体28.1%(H_(2)S,VOC,CO和H_(2)O)。该实验表明,HRT比常规反应器短。

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