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Efficiency of Iron- and Calcium-Impregnated Biochar in Adsorbing Phosphate From Wastewater in Onsite Wastewater Treatment Systems

机译:在现场废水处理系统中吸收废水中磷酸盐的铁和钙浸渍生物炭的效率

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This study evaluated the potential of biochar impregnated with Fe3 or Ca2 , or mixed with Polonite?, as a filter material for removal of phosphate (PO4-P) from wastewater in onsite wastewater treatment systems (OWTS). Four treatments with biochar were investigated: unimpregnated biochar (UBC), biochar impregnated with iron Fe3 (FBC), biochar impregnated with calcium oxide (CBC), and biochar mixed with Polonite? (PBC). In a batch experiment using phosphate solution at concentrations 0.5, 3.3, 6.5, 13, and 26 mg PO4-P L-1, adsorption of PO4-P in the different treatments was modelled using Langmuir and Freundlich isotherms. Column filters (5 diameter × 55 cm height) packed with UBC, FBC, CBC, and PBC were then furnished with raw wastewater over 148 weeks. During this experiment, adsorption of PO4-P was investigated in response to increasing hydraulic loading rate (HLR; 56, 74, and 112 L m-2 day-1) and increasing phosphate loading rate (PLR; 195, 324, 653, and 1715 mg PO4-P m-2 day-1). Among the materials, FBC had the highest maximum adsorption capacity (Qm) based on Langmuir isotherms (3.21 ± 0.01 mg g-1). FBC and CBC showed robust performance with increasing HLR, while increasing PLR increased the amount of PO4-P retained in all filters. After 148 weeks of operation, removal of PO4-P (averaged over the last 18 weeks of operation) was 13 ± 16 % for UBC, 40 ± 20 % for CBC, 88 ± 12 % for FBC, and 30 ± 18 % for PBC. The PO4-P amount retained in filters over the 148 weeks was 84.75, 221.75, 358.38, and 152.36 g m-2 in UBC, CBC, FBC, and PBC, respectively. The adsorption capacity of the filters after 148 weeks was 1.50, 4.02, 6.41, and 2.75 mg g-1 for UBC, CBC, FBC and PBC, respectively. The adsorption capacity values and breakthrough curves showed that low concentrations (i.e., 2.6 mg L-1) of PO4-P in wastewater would allow the FBC filter to remain active for 58 months and the CBC filter for 15 months, before PO4-P removal declined to 70 %. In conclusion, biochar impregnated with iron and calcium is a promising solution for removal of PO4-P from wastewater in OWTS.
机译:该研究评估了Biochar浸渍的Bioch浸渍用Fe3或Ca2,或与Poloniteα混合,作为用于除去在现场废水处理系统(OWTS)中的废水中除去磷酸盐(PO4-P)的过滤材料。研究了生物炭的四种治疗方法:未浸渍的生物炭(UBC),生物炭用Iron Fe3(FBC)浸渍,Biochar用氧化钙(CBC),Biochar与Polonite混合了(PBC)。在使用磷酸盐溶液以0.5,3.3,6.5,13和26mg PO4-P 1-1的分批实验中,使用Langmuir和Freundlich等温线进行不同处理中的PO4-P的吸附。然后用UBC,FBC,CBC和PBC填充柱过滤器(5直径×55厘米高度),然后在148周内配备原料废水。在该实验期间,响应于增加液压加载速率(HLR; 56,74和112 L M-2天-1)来研究PO4-P的吸附,并增加磷酸盐加载速率(PLR; 195,324,653和1715 mg po4-p m-2天1)。在这些材料中,FBC基于Langmuir等温线(3.21±0.01mg G-1)具有最高的最大吸附能力(QM)。 FBC和CBC随着HLR的增加而显示出稳健的性能,同时增加PLR增加了所有滤波器中保留的PO4-P的量。经过148周的操作后,UBC的除去PO4-P(在过去18周龄的平均)为13±16%,CBC 40±20%,FBC为88±12%,PBC为30±18% 。保留在过滤器上148周PO4-P量为84.75,221.75,358.38,和在UBC,CBC,FBC152.36克M-2,和PBC,分别。 148周后过滤器的吸附容量分别为UBC,CBC,FBC和PBC的1.50,4.02,6.41和2.75mg G-1。吸附容量值和突破性曲线表明废水中的PO4-P的低浓度(即<2.6mg L-1)将使FBC过滤器保持活性58个月和CBC过滤器15个月,在PO4-P之前去除下降至<70%。总之,生物炭浸渍熨斗和钙是一种有希望的溶液,用于从OWTS中从废水中去除PO4-P.

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