Jiang Jianguo, Yang Guodong, Deng Zhou, Huang Yunfeng, Huang Zhonglin, Feng Xiangming, Zhou Shengyong, Zhang Chaoping
Department of Environmental Science and Engineering, Tsinghua University, Beijing 100084, PR China.
Waste Manag. 2007;27(7):893-901. doi: 10.1016/j.wasman.2006.07.008. Epub 2006 Oct 2.
Developing countries have begun to investigate bioreactor landfills for municipal solid waste management. This paper describes the impacts of leachate recirculation and recirculation loadings on waste stabilization, landfill gas (LFG) generation and leachate characteristics. Four simulated anaerobic columns, R1-R4, were each filled with about 30 tons of waste and recirculated weekly with 1.6, 0.8 and 0.2m(3) leachate and 0.1m(3) tap water. The results indicated that the chemical oxygen demand (COD) half-time of leachate from R1 was about 180 days, which was 8-14 weeks shorter than that of R2-R4. A large amount of LFG was first produced in R1, and its generation rate was positively correlated to the COD or volatile fatty acid concentrations of influent leachates after the 30th week. By the 50th week of recirculation, the waste in R1 was more stabilized, with 931.2 kg COD or 175.6 kg total organic carbon released and with the highest landfill gas production. However, this contributed mainly to washout by leachate, which also resulted in the reduction of LFG generation potential and accumulation of ammonia and/or phosphorus in the early stage. Therefore, the regimes of leachate recirculation should be adjusted to the phases of waste stabilization to enhance efficiency of energy recovery. Integrated with the strategy of in situ leachate management, extra pre-treatment or post-treatment methods to remove the nutrients are recommended.
发展中国家已开始研究采用生物反应器填埋场来处理城市固体废物。本文描述了渗滤液回流及回流负荷对废物稳定化、填埋气(LFG)产生和渗滤液特性的影响。四个模拟厌氧柱R1 - R4,每个柱装填约30吨废物,每周分别用1.6、0.8和0.2立方米渗滤液以及0.1立方米自来水进行回流。结果表明,R1渗滤液的化学需氧量(COD)半衰期约为180天,比R2 - R4短8 - 14周。R1首先产生大量的LFG,第30周后其产气速率与进水渗滤液的COD或挥发性脂肪酸浓度呈正相关。到回流第50周时,R1中的废物更稳定,释放出931.2千克COD或175.6千克总有机碳,且填埋气产量最高。然而,这主要是由于渗滤液的冲刷作用,这也导致了LFG产生潜力的降低以及早期氨和/或磷的积累。因此,渗滤液回流制度应根据废物稳定化阶段进行调整,以提高能量回收效率。结合渗滤液原位管理策略,建议采用额外的预处理或后处理方法去除营养物质。