Gustafsson Jon Petter, Renman Agnieszka, Renman Gunno, Poll Katarina
Department of Land and Water Resources Engineering, KTH (Royal Institute of Technology), Brinellvägen 28, SE-100 44 Stockholm, Sweden.
Water Res. 2008 Jan;42(1-2):189-97. doi: 10.1016/j.watres.2007.06.058. Epub 2007 Jun 28.
The mineral-based sorbents Filtra P, Polonite, natural wollastonite and water-cooled blast furnace slag (WCBFS) were studied in terms of their PO(4) removal performance. Results from a long-term column experiment showed that both Filtra P and Polonite removed >95% of PO(4) from the applied synthetic solution, and that the used filter materials had accumulated several (1.9-19) g kg(-1)P. Phosphorus was removed also by natural wollastonite and WCBFS, but these materials were less efficient. Batch experiments on the used materials showed that the solubility PO(4) was considerably larger than the one expected for crystalline Ca phosphates such as hydroxyapatite, and results from investigations with attenuated total reflectance-Fourier transform infrared spectroscopy (ATR-FTIR) on the Filtra P material showed that the formed P phase was not crystalline. These evidence suggest that a soluble amorphous tricalcium phosphate (ATCP) was formed in the mineral-based sorbents; the apparent solubility constant on dissolution was estimated to log K(s)=-27.94 (+/-0.31) at 21 degrees C. However, since only up to 18% of the accumulated PO(4) was readily dissolved in the experiments, it cannot be excluded that part of the phosphorus had crystallized to slightly less soluble phases. In conclusion, Filtra P and Polonite are two promising mineral-based sorbents for phosphorus removal, and at least part of the accumulated phosphorus is present in a soluble form, readily available to plants.
对基于矿物的吸附剂Filtra P、Polonite、天然硅灰石和水冷高炉矿渣(WCBFS)的磷酸根去除性能进行了研究。长期柱实验结果表明,Filtra P和Polonite均可从施加的合成溶液中去除>95%的磷酸根,且使用过的滤料积累了若干(1.9 - 19)g kg⁻¹的磷。天然硅灰石和WCBFS也能去除磷,但这些材料效率较低。对使用过的材料进行的批次实验表明,磷酸根的溶解度远大于诸如羟基磷灰石等结晶磷酸钙预期的溶解度,对Filtra P材料进行衰减全反射 - 傅里叶变换红外光谱(ATR - FTIR)研究的结果表明,形成的磷相并非结晶态。这些证据表明在基于矿物的吸附剂中形成了可溶性无定形磷酸三钙(ATCP);在21℃下,溶解时的表观溶解度常数估计为log K(s)= - 27.94(±0.31)。然而,由于在实验中积累的磷酸根只有高达18%易于溶解,所以不能排除部分磷已结晶为溶解度稍低的相。总之,Filtra P和Polonite是两种很有前景的用于除磷的基于矿物的吸附剂,且积累的磷至少部分以可溶形式存在,植物易于吸收利用。