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来自污水污泥灰(SSA)的磷肥。

Phosphate fertilizer from sewage sludge ash (SSA).

作者信息

Franz M

机构信息

Eberhard Recycling AG, Steinackerstrasse 56, CH-8302 Kloten, Switzerland.

出版信息

Waste Manag. 2008;28(10):1809-18. doi: 10.1016/j.wasman.2007.08.011. Epub 2007 Oct 4.

Abstract

Ashes from sewage sludge incineration are rich in phosphorus content, ranging between 4% and 9%. Due to the current methods of disposal used for these ashes, phosphorus, which is a valuable plant nutrient, is removed from biological cycling. This article proposes the possible three-stage processing of SSA, whereby more than 90% of phosphorus can be extracted to make an adequate phosphate fertilizer. SSA from two Swiss sewage sludge incinerators was used for laboratory investigations. In an initial step, SSA was leached with sulfuric acid using a liquid-to-solid ratio of 2. The leaching time and pH required for high phosphorus dissolution were determined. Inevitably, dissolution of heavy metals takes place that would contaminate the fertilizer. Thus in a second step, leach solution has to be purified by having the heavy metals removed. Both ion exchange using chelating resins and sulfide precipitation turned out to be suitable for removing critical Cu, Ni and Cd. Thirdly, phosphates were precipitated as calcium phosphates with lime water. The resulting phosphate sludge was dewatered, dried and ground to get a powdery fertilizer whose efficacy was demonstrated by plant tests in a greenhouse. By measuring the weight of plants after 6 weeks of growth, fertilized in part with conventional phosphate fertilizer, fertilizer made from SSA was proven to be equal in its plant uptake efficiency.

摘要

污水污泥焚烧产生的灰烬富含磷,含量在4%至9%之间。由于目前对这些灰烬的处置方法,作为宝贵植物养分的磷从生物循环中被去除。本文提出了污水污泥灰烬可能的三阶段处理方法,通过该方法可提取超过90%的磷以制成合适的磷肥。来自两座瑞士污水污泥焚烧炉的污水污泥灰烬用于实验室研究。在第一步中,以液固比2用硫酸浸出污水污泥灰烬。确定了高磷溶解所需的浸出时间和pH值。不可避免地,重金属会溶解,从而污染肥料。因此在第二步中,必须通过去除重金属来净化浸出液。事实证明,使用螯合树脂进行离子交换和硫化物沉淀都适合去除关键的铜、镍和镉。第三步,用石灰水将磷酸盐沉淀为磷酸钙。将所得的磷酸污泥脱水、干燥并研磨,得到一种粉末状肥料,其功效在温室中的植物试验中得到了证明。通过测量部分用传统磷肥施肥、生长6周后的植物重量,由污水污泥灰烬制成的肥料在植物吸收效率方面被证明是相当的。

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