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Start-up of a multi-stage system for biogas production and solid waste treatment in low-tech countries

机译:低科技国家沼气生产和固体废物处理的多级系统的启动

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Vegetable fruit garden wastes were treated anaerobically using a multistage Dranco system. The digesters were composed of three 50 L vessels kept in mesophilic conditions. They were operating at 14.5-17% TS. By controlling the pH in the system, the start-up for biogas production was shortened to 60 days. The pH correction was a buffering which enhanced methanogenic activity in the digesters. With a loading rate of 4.1 kg VS/m~3reactor.day, the production of biogas was 5 m~3/m~3reactor.day, and 60-70% methane content. This allowed making a multisystem by starting every 3 weeks with new vessels in order to maintain biogas production, to be used in industries or in local communities in low-tech countries. The designed model was started in Kinshasa (Congo) where a project is expected to treat one ton of solid waste on a daily basis, for a production of 100 m~3 biogas. This cost effectiveness of the system is demonstrated and presents the opportunity for biowaste treatment coupled with environmental protection and substantial energy recovery.
机译:使用多级Dranco系统anaerobical and and蔬菜水果园废物。消化器由30升血管组成,保存在融合条件下。它们在14.5-17%的TS运营。通过控制系统中的pH,沼气生产的启动缩短至60天。 pH校正是一种缓冲,可增强消化器中的甲烷化活性。加载率为4.1千克/ m〜3反应器。日,沼气的生产为5米〜3 / m〜3反应器。日,60-70%的甲烷含量。这使得通过新船只从新船只开始每3周开始进行多区,以维持沼气生产,以在工业中或在低科技国家的当地社区中使用。设计的模型在金沙萨(刚果)开始,其中一个项目预计每天将每天治疗一吨固体废物,用于生产100米〜3沼气。对系统的这种成本效益进行了证明,并提出了与环境保护和大量能量回收相结合的生物速处理的机会。

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