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Dewatering sludge originating in water treatment works in reed bed systems

机译:芦苇床系统中水处理厂产生的脱水污泥

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The dewatering process of the liquid water works sludge was examined in a trial with a series of six trial beds, each 20 m~2. These were monitored from April 2008 to June 2010. It is possible to get the vegetation to grow in ferric sludge (~300,000 mg Fe/kg dry solid, pH 7,7). It has not been necessary to use fertilizer. The influence of the loading programs (15-50 kg dry solid/m~2/year) was tested with 1-5 days of loading and 35-55 days of rest. It is possible to drain and treat ferric sludge. Generally the dewatering profile is a peak with a maximum over 0.015-0.025 L/s/m~2. The times for dewatering of 6-12 m~3 are ~15 h and over 90% of the load is dewatered in that period. The dry solid (0.16-0.20%) in the sludge has been concentrated ~200 times. The dewatering phase results in ferric sludge with 30-40% dry solid which cracks up very quickly. The volume reduction is over 99%. The trend shows that the main volume of reject water has a turbidity level below 5 NTU even in the loading periods.
机译:在一个试验中检查了液态水厂污泥的脱水过程,该试验有一系列六个试验床,每个试验床为20 m〜2。从2008年4月至2010年6月对这些植物进行了监测。有可能使植被在铁淤泥中生长(〜300,000 mg Fe / kg干固体,pH 7.7)。不必使用肥料。在1-5天的负载和35-55天的休息时间下测试了加载程序的影响(15-50 kg干固体/ m〜2 /年)。可以排放和处理铁污泥。通常,脱水曲线是一个峰值,最大值超过0.015-0.025 L / s / m〜2。脱水时间为6-12 m〜3〜15 h,在此期间脱水量超过90%。污泥中的干燥固体(0.16-0.20%)已被浓缩〜200倍。脱水阶段会产生含铁固体污泥,干燥固体含量为30%至40%,这会很快裂解。体积减少超过99%。趋势表明,即使在装载期间,主要废水的浊度也低于5 NTU。

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