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沼气脱硫中的“硫”是以什么状态存在?

沼气中的硫主要以H2S形式存在,所含有机硫较少。脱除硫化氢的方法很多,一般可分为干法脱硫、湿法脱硫和生物脱硫。

The sulfur in biogas mainly exists in the form of H2S and contains less organic sulfur. There are many methods for removing hydrogen sulfide, which can generally be divided into dry desulfurization, wet desulfurization, and biological desulfurization.
干法脱硫通常用于低含硫气体处理,特别是用于气体精细脱硫。大部分干法脱硫工艺由于需要更换脱硫剂而不能继续操作,还有一些干法如锰矿法、氧化锌法、氧化铁、活性炭等,脱硫剂不能再生或再生次数很少,脱硫饱和后要废弃,这样一方面会造成环境问题,另一方面会增加脱硫成本。
Dry desulfurization is commonly used for low sulfur gas treatment, especially for fine gas desulfurization. Most dry desulfurization processes cannot continue to operate due to the need to replace the desulfurizer. There are also some dry methods such as manganese ore method, zinc oxide method, iron oxide, activated carbon, etc. The desulfurizer cannot be regenerated or the regeneration frequency is very small. After desulfurization saturation, it needs to be discarded. This will cause environmental problems on the one hand and increase desulfurization costs on the other hand.
沼气脱硫
湿法脱硫是利用特定的溶剂与气体逆流接触而脱除其中的H2S,溶剂通过再生后重新进行吸收,根据吸收机理的不同,又分为化学吸收法、物理吸收法、物理化学吸收法以及湿式氧化法。湿式氧化法脱硫效率高,单质硫可回收,流程较简单,大多数脱硫剂可以再生,运行成本低等;同时该法流程复杂、投资大、适用于气体处理量大,H2S含量高的场合。
Wet desulfurization is the process of using a specific solvent to remove H2S through countercurrent contact with gas. The solvent is regenerated and reabsorbed, which can be further divided into chemical absorption, physical absorption, physicochemical absorption, and wet oxidation based on different absorption mechanisms. Wet oxidation method has high desulfurization efficiency, recyclable elemental sulfur, simple process, most desulfurizers can be regenerated, and low operating cost; At the same time, this method has a complex process, high investment, and is suitable for situations with large gas processing capacity and high H2S content.
生物脱硫系统以各种微生物的容纳力为基础,利用微生物的生命活动将有机污染转化为对人体健康和生态环境无害的化合物、生物法常用于污水处理工程中产生的硫化物。生物脱硫技术包括生物过滤法、生物吸附法和生物滴滤法,三种系统均属开放系统,其微生物种群随环境改变而变化。在生物脱硫过程中,氧化态的含硫污染物必须先经生物还原作用生成硫化物或H2S,然后再经生物氧化过程生成单质硫,才能去除。
The biological desulfurization system is based on the capacity of various microorganisms, utilizing their life activities to transform organic pollution into compounds that are harmless to human health and the ecological environment. Sulfides are commonly produced in wastewater treatment projects through biological methods. Biological desulfurization technology includes biological filtration, biological adsorption, and biological drip filtration, all of which belong to open systems, and their microbial populations change with environmental changes. In the process of biological desulfurization, oxidized sulfur-containing pollutants must first undergo biological reduction to generate sulfides or H2S, and then undergo biological oxidation to generate elemental sulfur in order to be removed.
生物净化工艺与上述传统工艺相比具有运行成本低、反应条件温和、能耗少和有效减少环境污染等优点,但脱硫微生物都是需要氧型的,氧气或空气的加入可能会导致沼气中氧含量上升影响沼气的性,因此采用生物脱硫是要时刻监控反应器中的氧含量。
Compared with the traditional processes mentioned above, biological purification processes have advantages such as low operating costs, mild reaction conditions, low energy consumption, and effective reduction of environmental pollution. However, desulfurization microorganisms require oxygen, and the addition of oxygen or air may lead to an increase in oxygen content in biogas, affecting the safety of biogas. Therefore, the use of biological desulfurization requires constant monitoring of the oxygen content in the reactor.

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