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首页> 外文期刊>EnvironmentAsia >Phosphorus Sorption Capacity of Concrete Waste, Natural Sorbents, Alum Residuals from Water Supply Sludge, and Ceramic Material for Tertiary Treatment in Onsite Systems
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Phosphorus Sorption Capacity of Concrete Waste, Natural Sorbents, Alum Residuals from Water Supply Sludge, and Ceramic Material for Tertiary Treatment in Onsite Systems

机译:混凝土废物,天然吸收剂,供水污泥中的明矾残渣和陶瓷材料在现场系统中的三级吸附能力

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The phosphorus (P) sorption capacity was determined for concrete waste, alum residuals from water treatment sludge, and natural sorbents (shells, clay, kaolin, and mordenite) from various parts of Thailand. The material showing the best P sorption capacity (shells) was selected for preparing a ceramic material to support the growth of nitrifying bacteria. The ceramic material, consisting of shells (50% by weight), alum residuals sludge (40% by weight) and a soil (10% by weight) heat at 750°C for about one hour, was studied for its P sorption capacity. Langmuir and Freundlich sorption isotherms yielded similar relative maximum P sorption capacities for the sorbents. The results from the Langmuir calculations showed the following maximum P sorption capacities: 32.26 g P/Kg shells, 31.25 g P/Kg concrete waste, 7.19 g P/Kg alum residuals sludge, 290 mg P/Kg clay, 80 mg P/Kg kaolin, and 30 mg P/Kg mordenite. The P sorption capacity for the prepared ceramic material at grain size 12 mm was 4.85 g P/kg. This result suggests that the ceramic material could be used for P sorption while providing growth support for nitrifying bacteria, similar to the well documented a popular P sorption material: light expanded clay aggregate (LECA) from Sweden.
机译:确定了泰国各地的混凝土废料,水处理污泥中的明矾残留物以及泰国各地的天然吸附剂(贝壳,粘土,高岭土和丝光沸石)对磷(P)的吸附能力。选择具有最佳P吸附能力的材料(壳)来制备陶瓷材料,以支持硝化细菌的生长。研究了由壳(50%(重量)),明矾残渣(40%(重量))和土壤(10%(重量))在750°C加热约1小时组成的陶瓷材料的P吸附能力。 Langmuir和Freundlich吸附等温线对吸附剂产生了相似的相对最大P吸附能力。 Langmuir计算得出的结果显示出以下最大P吸附能力:32.26 g P / Kg贝壳,31.25 g P / Kg混凝土废料,7.19 g P / Kg铝渣残渣,290 mg P / Kg粘土,80 mg P / Kg高岭土和30毫克P / Kg丝光沸石。制得的陶瓷材料在颗粒尺寸为12mm时的P吸附容量为4.85g P / kg。该结果表明,该陶瓷材料可用于P吸附,同时为硝化细菌提供生长支持,类似于众所周知的流行P吸附材料:瑞典的轻质膨胀粘土骨料(LECA)。

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