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Production of high calorific biogas from organic wastewater and enhancement of anaerobic digestion

机译:从有机废水中生产高热量沼和增强厌氧消化

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Anaerobic digestion is a widely applied technology to produce biogas from organic wastewater. The biogas calorific value depends on the methane-content. For biogas flows >100 m~3/h, the two-step process is usually used for production of high calorific biogas from organic wastewater: the first step, anaerobic digestion; the second step, biogas purification. However, for biogas flows <100 m~3/h, biogas purification is not economical, and one-step process according to the big gap between methane and non-methane-gas in solubility at higher pressure or lower temperature, should be condidered. New anaerobic digestion processes, such as micro-aerobic process, electrolysis enhancing methane production process, process of internal circulation anaerobic digester (ICAD) with sewage source heat pump, may all enhance biogas producton or lower biogas production cost. In addition, suitable environmental conditions, such as organic loading rate (OLR), solid retention time (SRT), hydraulic retention time (HRT) and surface area, are all beneficial to enhance methane fermentation. Furthermore, new operation modes and optimal dose of trace metals might be selected.
机译:Anaerobic Digestion是一种广泛应用的技术,用于生产来自有机废水的沼气。沼气热值取决于甲烷含量。对于沼气流量> 100米〜3 / h,两步工艺通常用于生产来自有机废水的高热量沼气:第一步,无厌氧消化;第二步,沼气纯化。然而,对于沼气流量<100m〜3 / h,沼气纯化不是经济的,并且应巩固根据甲烷和溶解度在较高压力或更低温度下的甲烷和非甲烷 - 气体之间的一步法。新的厌氧消化方法,如微氧化工艺,电解增强甲烷生产过程,内循环过程厌氧蒸煮器(ICAD),污水源热泵,可能全部增强沼气产量或较低的沼气生产成本。此外,合适的环境条件,例如有机加载速率(OLR),固体保留时间(SRT),液压保留时间(HRT)和表面积,都是有益的,可以增强甲烷发酵。此外,可以选择新的操作模式和最佳剂量的痕量金属。

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