酸碱法及酸碱联合低温热处理法对污泥磷释放的影响
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湖南省环保科研项目(HBKT–2021033)


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    摘要:

    采用酸碱(pH为1.0、3.0、5.0、7.0、9.0、11.0)法和酸碱联合低温(5、25、45、65、85 ℃)热处理法处理市政污泥24 h,通过对比处理前后污泥液相中正磷酸盐(PO43––P)的质量浓度变化和固相中总磷(TPs)、无机磷(IPs)、有机磷(OPs)的质量分数变化,研究处理过程中污泥磷的迁移规律;通过对比处理前后污泥液相中溶解性化学需氧量(SCOD)、可溶性蛋白质和可溶性碳水化合物质量浓度的变化,研究酸碱处理及酸碱联合低温热处理对污泥破解的影响,并探究污泥释磷的机理。结果表明:当pH为1.0、11.0,酸碱处理污泥24 h时,释磷率和破解程度均分别达到酸处理和碱处理中的最高;液相中PO43––P的质量浓度由处理前的5.87 mg/L分别提升至217.58、136.87 mg/L;SCOD由处理前的267 mg/L分别提升至4 369、6 548 mg/L;可溶性碳水化合物质量浓度由处理前的119 mg/L分别提升至1 649、2 861 mg/L;可溶性蛋白质质量浓度由处理前的138 mg/L分别提升至1 813、3 064 mg/L;污泥TPs的释放率分别为58.03%和30.05%;非磷灰石无机磷(NAIP)的释放率分别为78.36%和54.79%;pH为1.0的磷灰石无机磷(AP)释放率为95.71%,OPs的质量分数上升了13.11%,而pH为11.0的AP质量分数上升了44.21%,OPs的释放率为15.42%,可见,在酸处理条件下,污泥磷的释放主要来源于NAIP与AP的释放,而在碱处理条件下,污泥磷的释放主要来源于NAIP的释放。当pH为1.0、11.0,联合热处理温度为85 ℃,处理24 h时,污泥液相中PO43––P的质量浓度分别为323.52、220.10 mg/L;SCOD分别为6 400、9 470 mg/L;可溶性碳水化合物质量浓度分别为2 696、5 015 mg/L;可溶性蛋白质质量浓度分别为3 562、4 258 mg/L;污泥总磷的释放率分别为62.67%和51.32%,污泥的释磷量与污泥破解程度均达到最高;NAIP的释放率分别为86.22%和87.94%;pH 1.0联合85 ℃的AP释放率为96.14%,OPs的质量分数上升了13.62%,而pH 11.0 联合85 ℃的AP质量分数上升了77.25%,OPs的释放率为40.87%。当pH为1.0、11.0,联合热处理温度为45 ℃,处理24 h时,污泥液相中PO43––P的质量浓度分别为272.16、184.35 mg/L;SCOD分别为5 960、9 030 mg/L;可溶性碳水化合物质量浓度分别为2 331、4 699 mg/L;可溶性蛋白质质量浓度分别为3 523、4 246 mg/L;污泥总磷的释放率分别为61.12%和41.07%;NAIP的释放率分别为83.21%和69.97%;pH 1.0联合45 ℃的AP释放率为96.14%,OPs的质量分数上升了12.60%,而pH 11.0联合45 ℃的AP质量分数上升了45.92%,OPs的释放率为24.16%。综合考虑能耗、药剂成本以及二次污染问题等因素,认为采用pH 1.0联合45 ℃作为污泥处理参数较合理。

    Abstract:

    Municipal sludge was treated by acid-base(pH 1.0, 3.0, 5.0, 7.0, 9.0, 11.0) method and acid-base combined low-temperature(5, 25, 45, 65, 85 ℃) heat treatment method for 24 h. By comparing the changes of the mass concentrations of orthophosphate(PO43--P) in the sludge liquid phase and the mass fractions of total phosphorus(TPs), inorganic phosphorus(IPs) and organic phosphorus(OPs) in the solid phase before and after treatment, the migration law of phosphorus in the sludge during treatment was studied. By comparing the changes of dissolved chemical oxygen demand(SCOD), soluble protein and soluble carbohydrate mass concentrations in sludge liquid phase before and after treatment, the effects of acid-base treatment and acid-base combined low-temperature heat treatment on sludge cracking were studied, and the mechanism of sludge phosphorus release was explored. The results showed that when the pH were 1.0 and 11.0, the phosphorus release rate and cracking degree of sludge treated by acid and alkali for 24 h were the highest in acid treatment and alkali treatment, respectively. The mass concentrations of PO43--P in the liquid phase were increased from 5.87 mg/L before treatment to 217.58, 136.87 mg/L, respectively; the SCOD were increased from 267 mg/L before treatment to 4 369, 6 548 mg/L, respectively; the mass concentrations of soluble carbohydrate increased from 119 mg/L before treatment to 1 649, 2 861 mg/L, respectively; the mass concentrations of soluble protein increased from 138 mg/L before treatment to 1 813, 3 064 mg/L, respectively; the release rates of sludge TPs were 58.03% and 30.05%, respectively; and the release rates of non-apatite inorganic phosphorus(NAIP) were 78.36% and 54.79%, respectively. The release rate of apatite inorganic phosphorus(AP) with pH 1.0 was 95.71% and the mass fraction of OPs increased by 13.11%; while the mass fraction of AP with pH 11.0 increased by 44.21% and the release rate of OPs was 15.42%. It could be concluded that under the condition of acid treatment, the release of sludge phosphorus mainly came from the release of NAIP and AP, while under the condition of alkali treatment, the release of sludge phosphorus mainly came from the release of NAIP. When the pH were 1.0 and 11.0, and the combined heat treatment temperature was 85 ℃ for 24 h, in the sludge liquid phase, the mass concentrations of PO43--P were 323.52, 220.10 mg/L, respectively; SCOD were 6 400, 9 470 mg/L, respectively; the mass concentrations of soluble carbohydrate were 2 696, 5 015 mg/L, respectively; and the mass concentrations of soluble protein were 3 562, 4 258 mg/L, respectively; the release rates of TPs in sludge were 62.67% and 51.32%, respectively and the phosphorus release and sludge cracking degree reached the highest; and he release rates of NAIP were 86.22% and 87.94%, respectively. The release rate of AP at pH 1.0 combined with 85 ℃ was 96.14%, and the mass fraction of OPs increased by 13.62%; while the mass fraction of AP at pH 11.0 combined with 85 ℃ increased by 77.25%, and the release rate of OPs was 40.87%. When the pH were 1.0 and 11.0, and the combined heat treatment temperature was 45 ℃ for 24 h, in the sludge liquid phase, the mass concentrations of PO43--P were 272.16, 184.35 mg/L, respectively; SCOD were 5 960, 9 030 mg/L, respectively; the mass concentrations of soluble carbohydrate were 2 331, 4 699 mg/L, respectively; the mass concentrations of soluble protein were 3 523, 4 246 mg/L, respectively; the release rates of TPs in sludge were 61.12% and 41.07%, respectively; and the release rate of NAIP were 83.21% and 69.97%, respectively. The release rate of AP at pH 1.0 combined with 45 ℃ was 96.14%, the mass fraction of OPs increased by 12.60%; while the mass fraction of AP at pH 11.0 and 45 ℃ increased by 45.92%, and the release rate of OPs was 24.16%. Considering the factors including energy consumption, chemical cost and secondary pollution, we concluded that the pH 1.0 combined with 45 ℃was optimal for sludge treatment.

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赵文博,颜智勇*,戴欣,李二平,余志元,吴含章,李子雄.酸碱法及酸碱联合低温热处理法对污泥磷释放的影响[J].湖南农业大学学报:自然科学版,2024,50(6):.

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