利用水葫芦生产沼气

W. D. Nugraha, Syafrudin, Lathifah Laksmi Pradita
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引用次数: 1

摘要

目前水葫芦作为一种水草的存在是非常令人不安和有害的,因此各种替代品被用来利用它的存在。其中一种替代品是沼气燃料。水葫芦叶因其纤维素、氮、必需营养素和高发酵含量而可用作沼气燃料。通过这一章,将解释两种用于测试水葫芦叶产气优化的方法,即液体厌氧消化(L-AD)和固体厌氧消化(SS-AD)方法,分别采用总固体(TS)、食物对微生物(F/M)和碳对氮(C/N)参数。采用生物沼气池在常温下分批厌氧操作进行了研究。降解过程在60天内完成。结果表明,采用TS为3.38%的L-AD法比SS-AD法产气量大。采用L-AD法研究了C/N对沼气产率的影响,得出最佳C/N为30。SS-AD法水葫芦叶产气的最佳碳氮比为32.09。
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Biogas Production from Water Hyacinth
The current existence of water hyacinth as a waterweed is very unsettling and detrimental, so various alternatives were made to utilize its existence. One of the alternatives is biogas fuel. Water hyacinth leaves can be used as biogas fuel because of its cellulose, nitrogen, essential nutrients, and high fermentation contents. Through this chapter, two kinds of methods used to test the optimization of biogas production from water hyacinth leaves will be explained, namely, the liquid anaerobic digestion (L-AD) and solid-state anaerobic digestion (SS-AD) methods using total solid (TS), food to microorganism (F/M), and carbon to nitrogen (C/N) parameters. The research was conducted by using biodigester in batch anaerobic operation at room temperature. Degradation process was done in 60 days. The results showed that the use of the L-AD method with TS 3.38% produced more biogas yields than using the SS-AD method. Based on the results of the research on the effect of the C/N ratio on biogas productivity using L-AD method, the optimum C/N ratio was 30. The optimum C/N ratio for biogas production from water hyacinth leaves by the SS-AD method was 32.09.
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