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首页> 外文期刊>Fresenius environmental bulletin >EXPERIMENTALANALYSIS OF METHANE PRODUCTION BY MIXED ANAEROBIC FERMENTATION OF FOOD WASTE AND SLUDGE
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EXPERIMENTALANALYSIS OF METHANE PRODUCTION BY MIXED ANAEROBIC FERMENTATION OF FOOD WASTE AND SLUDGE

机译:混合厌氧发酵食品垃圾和污泥的甲烷生产实验分析

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The sludge has low organic matter content,low C/N,and poor biodegradability.The gas production rate and organic matter degradation rate of the sludge are both low. Mixed anaerobic fermentation of high organic content and easily biodegradable food waste and sludge is an effective way to increase the gas production rate of sludge alone. After sludge and food waste are mixed in a certain ratio, the nutrient elements and trace elements of the fermentation sub-strate can be optimized,and the buffering capacity of the system can be improved, thereby increasing the methane production rate, shortening the fermenta-tion cycle, increasing the removal rate of organic matter and the anaerobic fermentation tank volume utilization rate. This study explores the effect of veg-etable oil content on the anaerobic fermentation of sludge and food waste,and the effect of low-temper-ature heat treatment on the anaerobic fermentation of sludge and food waste. The CSTR reactor is used for dehydrated sludge and food waste mixed anaerobic fermentation. The aerobic fermentation experiment studies the operation of mixed anaerobic fermenta-tion of dehydrated sludge and food waste. Experi-mental results show that when the vegetable oil con-tent is 0-30%, the methane production rate increases with the increase of the vegetable oil content. When the vegetable oil content is 30%, the methane pro-duction rate reaches the highest, which is 449 mL/g-VS. When the vegetable oil content is 40%-50%,the anaerobic fermentation process is completely inhib-ited, and mixed fermentation can improve its oil tol-erance. Low-temperature heat treatment can increase the initial methane production rate of anaerobic fer-mentation, and after low-temperature heat treatment of the mixed substrate, the methane production rate and the initial methane production rate of anaerobic fermentation increase with the increase of heat treat-ment time and temperature. In the mixed anaerobic fermentation of dehydrated sludge and food waste, the gas production varies greatly, the start-up period is long, and the gas production rate is low.
机译:污泥有有机质含量低,C / N低,生物降解性差。污泥的气体生产率和有机质降解速率均低。高有机含量的混合厌氧发酵,易生物降解的食物垃圾和污泥是一种增加污泥天然气生产速率的有效方法。污泥和食物废物以一定的比例混合后,可以优化发酵亚串的营养素和痕量元素,并且可以提高系统的缓冲能力,从而增加甲烷的生产率,缩短了发酵液 - 循环,增加有机物质的去除率和厌氧发酵罐的流量利用率。本研究探讨了耐蔬菜含油含量对污泥和食物废物的厌氧发酵的影响,以及低温 - 毒液对污泥和食物垃圾的厌氧发酵的影响。 CSTR反应器用于脱水污泥和食物废物混合厌氧发酵。有氧发酵实验研究混合厌氧污泥和食物垃圾的混合厌氧发酵。实验结果表明,当植物油对帐篷为0-30%时,甲烷生产率随植物油含量的增加而增加。当植物油含量为30%时,甲烷的产量率达到最高,即449毫升/克/ vs。当植物油含量为40%-50%时,厌氧发酵过程完全抑制,混合发酵可以改善其油脂。低温热处理可提高厌氧渗透性的初始甲烷生产率,并在低温热处理混合底物后,甲烷生产率和厌氧发酵初始甲烷的生产率随着热处理的增加而增加 - 温度和温度。在脱水污泥和食物垃圾的混合厌氧发酵中,气体产量大大变化,启动期长,气体生产率低。

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