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首页> 外文期刊>Biosystems Engineering >An Observational Method for the Assessment of Biogas Production from an Anaerobic Waste Stabilisation Pond treating Farm Dairy Wastewater
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An Observational Method for the Assessment of Biogas Production from an Anaerobic Waste Stabilisation Pond treating Farm Dairy Wastewater

机译:评估厌氧稳定池处理农场乳制品废水沼气产量的观察方法

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摘要

A biogas production assessment method based on the visual monitoring of biogas evolution events in an anaerobic waste stabilisation pond was developed and applied to an anaerobic pond treating farm dairy wastewater in New Zealand. Major biogas-induced perturbations at the pond surface were classified as either type 1 or 2 events and other observed biogas activities as small bubble events. Mean counts of types 1 and 2 events varied from 7.3 to 30.0 per hour and 4.3-34.0 per hour, respectively, over the pond surface and the frequency of events decreased as both organic loading and temperature increased. Preliminary estimates of areal gas production rates, obtained using the observational method, ranged from 0.002 to 0.015 m{sup}3 m{sup}(-2) day{sup}(-1) for major eruptions and 0.0004-0.024 m{sup}3m{sup}(-2) day{sup}(-1) for small bubble events, giving a total range of 0.002-0.039 m{sup}3m{sup}(-2) day{sup}(-1). Pond temperatures at 2.75 m depth showed relatively minor fluctuations on a diurnal basis and ranged between 13 and 15℃ from days 1-60, reaching a maximum of 24℃ at day 190. Refinements proposed for future method development include an increased number and range of event categories, the automatic recording of events and the use of an improved cover. Further work is required to assess the general applicability of the method to anaerobic ponds.
机译:开发了一种基于目视监测厌氧性废水稳定池中沼气发生事件的沼气生产评估方法,并将其应用于新西兰处理农场乳制品废水的厌氧池。池塘表面主要由沼气引起的扰动被分类为1类或2类事件,其他观察到的沼气活动被分类为小气泡事件。在池塘表面,第1类和第2类事件的平均计数分别从每小时7.3到30.0和每小时4.3-34.0不等,并且随着有机物负荷和温度的升高,事件发生的频率降低。使用观测方法获得的面气生产率的初步估计范围为:大喷出量为0.002至0.015 m {sup} 3 m {sup}(-2)天{sup}(-1)和0.0004-0.024 m {sup } 3m {sup}(-2)天{sup}(-1)用于小气泡事件,总范围为0.002-0.039 m {sup} 3m {sup}(-2)天{sup}(-1) 。深度为2.75 m的池塘温度表现出相对较小的昼夜波动,从1-60天开始在13到15℃之间变化,在190天达到最高24℃。为将来方法开发建议的改进措施包括增加数量和范围。事件类别,事件的自动记录和改进的封面的使用。需要进一步的工作来评估该方法在厌氧池中的普遍适用性。

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