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1)  leachate generation
渗滤液产生量
1.
Different prediction models for leachate generation from MSW landfills were compared in this paper,and the empiricism-rational model was recommended as the prediction model for leachate generation at Shenzhen Xiaping landfill.
对垃圾填埋渗滤液产生量预测模型进行了比较,选择经验—合理式模型作为填埋场渗滤液产生量的预测模型。
2)  quantity of leachate
渗滤液产量
3)  leachate production
垃圾渗滤液产生量
1.
In order to investigate into the leachate production variability and the impact of leachate recirculation on sanitary landfill,two simulated landfill reactors were constructed outdoors,which were filled with the same municipal solid waste.
在对垃圾渗滤液产生量预测模型进行综合比较的基础上,基于全年降雨量和渗滤液产生量的实测数据,采用线性回归确定了经验公式法的模型参数,通过模型预测值与现场实测值的对比,分析了预测模型的可靠性与准确性,从而为寒冷地区垃圾填埋场渗滤液产生量的预测、收集和处理系统的设计以及渗滤液回灌技术的推广应用提供科学依据。
4)  domestic landfill leachate
生活垃圾渗滤液
1.
It was introduced that the three-stage anaerobic,physicochemical and biochemical technology was applied to treat domestic landfill leachate.
介绍了生活垃圾渗滤液的三阶段厌氧/物化/生化处理技术。
2.
Urban domestic landfill leachate is a kind of complex organic wastewater with high concentration.
城市生活垃圾渗滤液是一种高浓度、成分复杂的有机废水(液),不但处理难,还往往具有潜在的三致危害(致癌、致畸、致突变),严重危害周围的水环境,因此研究和完善生活垃圾渗滤液的处理技术,是当今水处理领域的一个重要课题。
5)  sanitary landfill leachate
卫生填埋渗滤液
1.
Response Surface Methodology (RSM) was employed to investigate the effect of TOC ratio of high molecular weight organic matter (HMWOM) to low molecular weight organic matter (LMWOM), the LMWOM concentration and hydrogen peroxide to ferrous ion molar ratio on COD removal during the treatment of sanitary landfill leachate with Fenton reagents.
利用响应面法研究了Fenton试剂处理卫生填埋渗滤液过程中诸因素对COD去除率的影响 ,如渗滤液中高分子量有机物 (HMWOM)与低分子量有机物 (LMWOM)的TOC比例、LMWOM浓度以及双氧水和亚铁离子的摩尔比 (H2 O2 /Fe2 + ) 。
6)  landfill leachate
生活垃圾渗滤液
1.
Influence of landfill leachate on anaerobic granular sludge methane-producing activity
生活垃圾渗滤液对厌氧颗粒污泥产甲烷活性的影响研究
2.
Given its toxic and complex nature,landfill leachate needs to be well treated before being discharged into the surrounding enrionment.
城市生活垃圾渗滤液是一种有毒有害的高浓度有机废水,需要进行有效处理以避免对周围环境尤其是土壤和地下水的危害。
补充资料:渗滤液
分子式:
CAS号:

性质:渗滤浸取(percolation leaching)中,借重力自上而下或借压力自下而上流过固体矿石层的浸取剂溶液,即为渗滤液。

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