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利用甘油作为甘蔗渣(酒糟)厌氧消化的共基质的可行性:多样化操作策略的影响。

Viability of Using Glycerin as a Co-substrate in Anaerobic Digestion of Sugarcane Stillage (Vinasse): Effect of Diversified Operational Strategies.

机构信息

Mauá School of Engineering, Mauá Institute of Technology (EEM/IMT), Praça Mauá 1, São Caetano do Sul, SP, 09580-900, Brazil.

出版信息

Appl Biochem Biotechnol. 2019 Jul;188(3):720-740. doi: 10.1007/s12010-019-02950-1. Epub 2019 Jan 24.

DOI:10.1007/s12010-019-02950-1
PMID:30680702
Abstract

Vinasse, from sugar and ethanol production, stands out as one of the most problematic agroindustry wastes due to its high chemical oxygen demand, large production volume, and recalcitrant compounds. Therefore, the viability of using glycerin as a co-substrate in vinasse anaerobic digestion was tested, to increase process efficiency and biogas productivity. The effect of feeding strategy, influent concentration, cycle length, and temperature were assessed to optimize methane production. Glycerin (1.53% v/v) proved to be a good co-substrate since it increased the overall methane production in co-digestion assays. CH productivity enhanced exponentially as influent concentration increased, but when temperature was increased to 35 °C, biogas production was impaired. The highest methane productivity and yield were achieved using fed-batch mode, at 30 °C and at an organic loading rate of 10.1 kg COD m day: 139.32 mol CH m day, 13.86 mol CH kg COD, and 15.30 mol CH kg COD. Methane was predominantly produced through the hydrogenotrophic route. In order to treat all the vinasse produced by a mid-size sugar and ethanol plant, nine reactors with 7263.4 m each would be needed. The energy generated by burning the biogas in boilers would reach approximately 92,000 MW h per season and could save up to US$ 240,000.00 per month in diesel oil demand.

摘要

酒糟是制糖和乙醇过程中的主要副产物之一,由于其化学需氧量高、产量大、难降解化合物含量高,因此成为最具问题性的农业工业废物之一。因此,测试了将甘油作为共底物用于酒糟厌氧消化的可行性,以提高工艺效率和沼气生产力。评估了进料策略、进水浓度、循环长度和温度对优化甲烷生产的影响。甘油(1.53%v/v)被证明是一种良好的共底物,因为它增加了共消化试验中的总甲烷产量。随着进水浓度的增加,CH 生产率呈指数增长,但当温度升高到 35°C 时,沼气产量受到影响。在 30°C 和有机负荷率为 10.1kg COD m-3 day-1 的条件下,采用分批进料模式时,甲烷的最高生产率和产率最高,分别为 139.32mol CH m-3 day-1、13.86mol CH kg-1 COD 和 15.30mol CH kg-1 COD。甲烷主要通过氢营养型途径产生。为了处理中型糖和乙醇厂产生的所有酒糟,需要 9 个反应器,每个反应器的容量为 7263.4m3。燃烧沼气在锅炉中产生的能源每个季节将达到约 92000MW h,并可每月节省高达 240000.00 美元的柴油需求。

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