厌氧消化来自水果和蔬菜的食物垃圾,以提高稳定性和有效性

Nuttapong Saetang, Sawitree Tipnee
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引用次数: 1

摘要

厌氧消化是一种可以用来处理食物残渣的过程,它是一种既有效又高效的方法。作为这一过程的副产品产生的沼气有潜力被用作生物能源的可再生来源。厌氧消化是管理和处理食物垃圾和回收资源的一个很有前途的选择。为确定产甲烷效率,进行了间歇式生化甲烷罐试验。本文综述了添加剂在厌氧消化中的系统稳定性和效率。可以在不同温度(27±2°C, 35±2°C和45±2°C)下生产沼气。沼气强化取决于温度。试验进行45 d消化期。35±2℃发酵罐总沼气产量最高,为13093.55 ml,甲烷含量最高,为63.71%。该研究旨在确定未来应用中增加家庭水平的最佳温度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Anaerobic digestion of food waste from fruits and vegetables to improve stability and effectiveness
Anaerobic digestion is a process that may be used to handle food scraps, and it is a method that is both effective and efficient. The biogas that is generated as a byproduct of this process has the potential to be utilized as a renewable source of bioenergy. Anaerobic digestion is a promising option to manage and treat food wastes and recover resources. To determine the efficiency of methane production, batch biochemical methane pot testing was performed. This paper reviews the system stability and efficiency of additives in anaerobic digestion. It is possible to produce biogas at different temperatures (27±2°C, 35±2°C, and 45±2°C). Biogas enhancement is dependent on temperature. The experiments were conducted for a 45-day digestion period.  The 35±2°C fermenter produced the highest total biogas yield of 13093.55 ml and the highest methane content of 63.71%. The study was designed to determine the optimal temperature for increasing household levels in future applications.
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