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State of the Art in Technologies of the Biogas Production Increasing During Methane Digestion of Sewage Sludge

机译:沼气池沼气消化过程中沼气生产技术的最新发展

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At present many WWTPs are focused on increasing quantity of biogas generated during sewage sludge processing. Various disintegration methods can be used for this purpose - thermal heating, ultrasonic disintegration, chemical treatment. The limiting step in sewage sludge digestion is hydrolysis, increasing the rate of this process allows for shortening solids retention time in digester, increasing soluble COD concentration in the reject water and as a result also biogas production. In technical scale ultrasonic and thermal disintegration are used. The most effective are ultrasounds below 100 Hz. In thermal conditioning various technological parameters are applied (from 60 - 80 °C to even 250°C, retention times from 15 min. to 2 hours). Effectiveness of the processes can be increased by using combined processes, e.g. thermal treatment and chemical stabilization. Chemical methods are at present mainly applied in laboratory scale. They include alkaline and acidic pretreatment or advanced chemical oxidation methods.
机译:目前,许多污水处理厂都致力于增加污水污泥处理过程中产生的沼气量。各种崩解方法可用于此目的-热加热,超声崩解,化学处理。污水污泥消化的限制步骤是水解,增加此过程的速率可以缩短消化池中的固体保留时间,增加废水中的可溶性COD浓度,从而也可以生产沼气。在技​​术规模上,使用超声和热分解。最有效的是低于100 Hz的超声波。在热调节中,应用了各种技术参数(从60-80°C到甚至250°C,保留时间为15分钟到2小时)。可以通过使用组合过程来提高过程的有效性,例如热处理和化学稳定化。化学方法目前主要用于实验室规模。它们包括碱性和酸性预处理或高级化学氧化方法。

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