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A Simple and Energy Efficient Approach to Cleaning Biogas

机译:一种简单高效的沼气清洁方法

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One of the leading challenges to the beneficial reuse of natural biogas has always been the contaminants it carries along with it- hydrogen sulfide, carbon dioxide, and siloxanes. Newer air quality regulations and more efficient combustion processes have required that the gas produced from anaerobic digestion be cleaned before it is used in downstream equipment. Traditionally, this has been accomplished using activated carbon or iron oxide in Iron Sponge scrubbers; which rely on adsorption or reaction of the sulfide with iron oxide impregnated wood chips. The biggest difference in our wastewater industry, compared to others that deal with cleaning biogas, is our steady supply and access to water, typically pressurized from the plant water systems. This pressurized water is being used as part of a new and simple technology for cleaning biogas. Using the water, a vacuum is generated using a Venturi that draws the raw biogas into the system, eliminating the need for pressurized gas typically required in conventional water scrubbers. The carbon dioxide and hydrogen sulfide preferentially dissolve into the water leaving behind the methane in the biogas. The gas/water mixture is then separated in a gas separator, and the cleaned gas is collected at the top in the gas separating valve. The biogas scrubber technology' was piloted at Milwaukee Metropolitan Sewerage District's (MMSD) South Shore Water Reclamation Facility (SS WRF) located in Oak Creek, Wisconsin. A pilot unit was set up in the Digester gallery of SS WRF. A small stream of raw biogas, produced in Digester 10, was fed to the pilot unit, and the treated gas leaving the unit was returned to the plant's biogas pipeline. Grab samples of biogas going in and out of the pilot unit were collected and tested for methane and carbon dioxide, total sulphur compounds, and siloxanes. The results showed close to 100% removal of hydrogen sulfide, about 30% increase in methane accompanied by about an 80% decrease in carbon dioxide, and around 65% removal of siloxanes as an added benefit.
机译:天然气沼气再利用的主要挑战之一一直是它与之一起携带的污染物-硫化氢,二氧化碳和硅氧烷。最新的空气质量法规和更有效的燃烧过程要求将厌氧消化产生的气体净化后再用于下游设备。传统上,这是通过在海绵铁洗涤塔中使用活性炭或氧化铁来完成的。取决于硫化物与氧化铁浸渍的木片的吸附或反应。与其他涉及清洁沼气的废水行业相比,我们的废水行业最大的不同是我们稳定的供水和取水,通常是从工厂供水系统中获得的压力。这种加压水被用作清洁沼气的一种新的简单技术的一部分。使用水,使用文丘里管产生真空,将原始沼气吸入系统中,从而消除了常规水洗器中通常需要的加压气体。二氧化碳和硫化氢优先溶解在水中,在沼气中留下甲烷。然后,将气体/水混合物在气体分离器中分离,并将净化后的气体收集在气体分离阀的顶部。沼气洗涤器技术在位于威斯康星州橡树溪的密尔沃基都市污水处理区(MMSD)的南岸水回收设施(SS WRF)进行了试验。在SS WRF的Digester画廊中设立了一个试验单位。消化器10中产生的一小股原始沼气被送入中试单元,离开该单元的处理后的气体被返回到工厂的沼气管道。收集进出中试装置的沼气的抓取样品,并测试甲烷和二氧化碳,总硫化合物和硅氧烷的含量。结果表明,硫化氢的去除率接近100%,甲烷的去除率提高了约30%,二氧化碳的去除率降低了约80%,硅氧烷的去除率提高了约65%。

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