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沼氣提純技術關鍵參數與經濟對比!

  沼氣凈化的主要目的是去除二氧化碳,得到高純度的甲烷。沼氣凈化技術主要來源于天然氣、合成氨轉化氣脫碳技術。由于沼氣的用量遠遠小于天然氣或合成氨轉化氣,因此在選擇脫碳技術時應注重小型化和節能。目前,沼氣凈化技術大致可分為:吸附、吸附、膜分離、低溫凈化。

  The main purpose of biogas purification is to remove carbon dioxide and get high purity methane. Biogas purification technology mainly comes from decarbonization technology of natural gas and synthetic ammonia conversion gas. Since the consumption of biogas is far less than that of natural gas or ammonia conversion gas, we should pay attention to miniaturization and energy saving when choosing decarbonization technology. At present, biogas purification technology can be roughly divided into adsorption, adsorption, membrane separation and low-temperature purification.
  廣泛應用的沼氣凈化技術主要有:變壓吸附、水洗、有機溶劑物理吸附、有機溶劑化學吸附、高壓膜分離、低溫凈化等。下表為六種沼氣凈化技術的關鍵參數。
  The widely used biogas purification technologies include pressure swing adsorption, water washing, organic solvent physical adsorption, organic solvent chemical adsorption, high-pressure membrane separation, low-temperature purification, etc. The following table shows the key parameters of six biogas purification technologies.
  在瑞典,壓力清洗是常用的;在德國,psa更為普遍。在荷蘭,壓力清洗、變壓吸附和膜分離都得到了廣泛的應用。下表是五種沼氣凈化技術的經濟比較。
  In Sweden, pressure cleaning is the most common; in Germany, PSA is more common. In the Netherlands, pressure cleaning, PSA and membrane separation have been widely used. The following table shows the economic comparison of five biogas purification technologies.
  注:電力消耗成本(12 ~ 18歐元美分/千瓦時),熱耗成本(3 ~ 5歐分/千瓦時),水的成本是5歐元/ m?(包括污水處理費用)。沒有考慮進一步的處理費用(如分離硅氧烷或氨)。所有值都基于滿負荷運行。
  Note: the cost of electricity consumption (12-18 euro cents / kWh), heat consumption (3-5 euro cents / kWh), and water is 5 euro / M 3 (including the cost of sewage treatment). No further treatment costs (such as separation of siloxane or ammonia) were considered. All values are based on full load operation.
  沼氣凈化成本與原料氣甲烷含量和成品甲烷含量有關。未經處理的沼氣,甲烷含量高,凈化成本低。這主要是由于能源產量的增加,總成本與更高的能源水平相關。可以通過提高效率(降低單位產出的能耗)和使用高熱值的原沼氣來降低實際能耗來降低成本。
  The cost of biogas purification is related to the methane content of feed gas and finished product. Untreated biogas has high methane content and low purification cost. This is mainly due to the increase in energy production, with total costs associated with higher energy levels. The cost can be reduced by improving efficiency (reducing energy consumption per unit output) and using high calorific value biogas to reduce the actual energy consumption.
  沼氣凈化站的經濟性還與其他因素有關,如可操作性和額定負荷。沼氣凈化站的額定運行負荷不僅取決于凈化站本身的高穩定性,還取決于原沼氣流及后續裝置(如充電站、加氣站)的可靠性。
  The economy of biogas purification station is also related to other factors, such as operability and rated load. The rated operation load of the biogas purification station not only depends on the high stability of the purification station itself, but also depends on the reliability of the original biogas flow and subsequent devices (such as charging station and gas filling station).
沼氣脫硫
  短停機時間,設備運行良好,在額定負載和充足的原料氣條件下設備能正常連續運行,是沼氣凈化站高效可用的標準。快速響應時間至關重要,因此技術供應商提供良好的網絡服務至關重要。此外,還可以使用遠程監控,操作被中斷時,技術人員可以直接找到故障,根據故障類型立即采取必要的補救措施,避免時間延遲,不需要長途旅行的服務技術人員到現場解決問題。
  Short shutdown time, good operation of the equipment, normal and continuous operation of the equipment under rated load and sufficient feed gas conditions, is the standard of high efficiency and availability of biogas purification station. Fast response time is very important, so it is very important for technology providers to provide good network services. In addition, remote monitoring can also be used. When the operation is interrupted, the technical personnel can find the fault directly. According to the fault type, necessary remedial measures can be taken immediately to avoid time delay. The service technical personnel who do not need long-distance travel can go to the site to solve the problem.
  這些co2 /甲烷分離方法已經在其他行業使用了幾十年,是的沼氣凈化方法。近年來發展趨勢是減少能源消耗,提高回收率,降低甲烷的排放,主要有以下措施:減少成品氣體壓力降低功耗,降低解吸過程的溫度水平(胺),二氧化碳/甲烷發展高選擇性,促進生物甲烷液化技術和綜合處理技術(如膜和低溫分離)。
  These CO2 / methane separation methods have been used in other industries for decades and are the most advanced methane purification methods. In recent years, the development trend is to reduce the energy consumption, improve the recovery rate and reduce the emission of methane, mainly including the following measures: reduce the pressure of finished gas, reduce the power consumption, reduce the temperature level (amine) of desorption process, develop high selectivity of carbon dioxide / methane, and promote the liquefaction technology and comprehensive treatment technology of biomethane (such as membrane and low-temperature separation).

相關產品 我們的存在,是為了更好的服務于沼氣等可燃氣體凈化及利用行業