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Phosphate Adsorption from Membrane Bioreactor Effluent Using Dowex 21K XLT and Recovery as Struvite and Hydroxyapatite

机译:使用Dowex 21K XLT从膜生物反应器废水中吸附磷酸盐并回收为鸟粪石和羟基磷灰石

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Discharging phosphate through wastewaters into waterways poses a danger to the natural environment due to the serious risks of eutrophication and health of aquatic organisms. However, this phosphate, if economically recovered, can partly overcome the anticipated future scarcity of phosphorus (P) resulting from exhaustion of natural phosphate rock reserves. An experiment was conducted to determine the efficiency of removing phosphate from a membrane bioreactor effluent (pH 7.0–7.5, 20, 35 mg phosphate/L) produced in a water reclamation plant by adsorption onto Dowex 21K XLT ion exchange resin and recover the phosphate as fertilisers. The data satisfactorily fitted to Langmuir adsorption isotherm with a maximum adsorption capacity of 38.6 mg·P/g. The adsorbed phosphate was quantitatively desorbed by leaching the column with 0.1 M NaCl solution. The desorbed phosphate was recovered as struvite when ammonium and magnesium were added at the molar ratio of phosphate, ammonium and magnesium of 1:1:1 at pH 9.5. Phosphate was also recovered from the desorbed solution as hydroxyapatite precipitate by adding calcium hydroxide to the solution at a phosphate to calcium molar ratio of 1:2 at pH 7.0. The P contents of struvite and hydroxyapatite produced were close to those of the respective commercial phosphate fertilisers.
机译:由于水体富营养化和健康的严重风险,通过废水将磷酸盐排放到水道中会对自然环境构成威胁。但是,如果经济地回收了这种磷酸盐,则可以部分克服由于天然磷酸盐岩石储量耗尽而导致的磷(P)的预期未来短缺。进行了一项实验,以确定吸附在Dowex 21K XLT离子交换树脂上的膜生物反应器废水(pH 7.0-7.5、20、35 mg磷酸盐/ L)中的磷酸盐去除效率,该废水通过在Dowex 21K XLT离子交换树脂上吸附来回收。肥料。数据符合Langmuir吸附等温线,最大吸附容量为38.6 mg·P / g。吸附的磷酸盐通过用0.1 M NaCl溶液浸提色谱柱进行定量解吸。当在pH 9.5时,以磷酸盐,铵盐和镁的摩尔比为1:1:1添加铵盐和镁时,解吸的磷酸盐被回收为鸟粪石。通过以pH 7.0的磷酸盐与钙的摩尔比为1:2向溶液中添加氢氧化钙,也可以从羟基磷灰石沉淀物中从磷酸盐溶液中回收磷酸盐。生产的鸟粪石和羟基磷灰石的磷含量接近于各自的商业磷酸盐肥料的磷含量。

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