IC厌氧反应器处理蔬菜垃圾的试验研究
2014-10-21陈婕田兴兰风岗尹文娟马三剑
陈婕 田兴 兰风岗 尹文娟 马三剑
摘要 [目的] 探索处理蔬菜垃圾的厌氧发酵新方法。[方法] 通过IC厌氧反应器处理白菜叶子榨汁废水,测定进出水COD、pH等指标以及反应器的产沼气效率。[結果] IC反应器稳定运行后,COD去除率达到85%左右,负荷可以达到15.9 kg COD/(m3·d),其中每kg COD可以产生约0.5 m3的沼气。[结论] IC厌氧反应器处理蔬菜垃圾产生了能源,有效解决了蔬菜垃圾的处理,同时简化了处理设施。
关键词 蔬菜垃圾;IC反应器;沼气
中图分类号 S181.3;X703.1 文献标识码 A 文章编号 0517-6611(2014)33-11829-03
Experimental Study on Vegetable Waste Treated by IC Anaerobic Reactor
CHEN Jie1, TIAN Xing1, LAN Feng-gang2 et al
(1. Department of Environmental Science and Engineering, Suzhou University of Science and Technology, Suzhou, Jiangsu 215011; 2. Suzhou Kete Environmental Limited Company, Suzhou, Jiangsu 215011)
Abstract [Objective] The research aimed to study the new method of anaerobic reaction for the treatment of vegetable waste.[Method] Taken Chinese cabbage leaves as materials, the anaerobic reaction was undergone with IC anaerobic reactor. During the reaction, parameters such as pH and COD of inlet and outlet, as well as the methane production efficiency were determined.[Result] The results showed that, after the stable operation of IC reactor, COD removal efficiency could reach 85%, organic loads could reach 15.9 kg COD/(m3·d), and per kg COD could produce approximately 0.5 m3 methane.[Conclusion] This study proved that the treatment of vegetable waste with IC anaerobic reactor not only could produce energy, but also could simplify treatment facilities.
Key words Vegetables garbage; IC reactor; Methane
作者简介 陈婕(1989- ),女,江苏苏州人,硕士研究生,研究方向:水污染控制工程。
收稿日期 2014-10-20
目前,我国的城市垃圾大量增加,其中约有50%的城市垃圾为蔬菜垃圾。蔬菜垃圾含水率较高,约为75%到85%[1]。若采用填埋的处置方式,可能导致渗滤液的增加,给填埋场的后续处理增加压力。若采用焚烧的方式,由于含水率高,技术不可行,而在蔬菜垃圾中添加大量辅助燃料[2],经济上均不合理。
因此,目前对于蔬菜垃圾的处理,常见的处理工艺包括好氧堆肥、自然堆沤和厌氧消化等。好氧堆肥主要是利用蔬菜垃圾中N、P、K等营养元素,用作农田的肥料。接种微生物自然堆沤处理主要为通过添加微生物菌剂,加快蔬菜垃圾的分解,最后产品也是用于农田[3]。好氧堆肥和自然堆沤法都是将蔬菜垃圾变为肥料,但是在密集型的城市里,这些方法并不实用[4]。
而利用蔬菜垃圾进行厌氧硝化产沼气是较为合理的。蔬菜垃圾中含水率高,固体含量低,使得厌氧处理蔬菜垃圾便于操作。……
