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Fluidized pellet bed (FPB) has been successfully applied in water and wastewater treatment. However, the removal mechanism ofcontaminants especially the soluble ones, is still unclear. This study aimed to evaluate the e ectiveness of FPB reactor for removingsoluble contaminants from synthetic wastewater. By only coagulation through jar test operation with addition of polyaluminium chloride(PACl) as primary coagulant and polyacryamide (PAM) as coagulant-aid, the removals of soluble chemical oxygen demand (COD),total phosphorus (TP), and NH4+-N were found to be only 2.2%–7.5%, 5.7%–25.5%, and 9.9%–18.5%, respectively. However, by FPBoperation under the same dosage of coagulants, these values increased to 82.7%, 37.2%, and 50%, indicating that the formation ofpellets in the FPB e ectively enhanced the removal of soluble contaminants. By careful comparison of the settleablility and filterabilityof the pollutants after coagulation, the originally soluble contaminants could be divided into three groups, namely: (1) coagulated-andsettleable,(2) coagulated-but-nonsettleable, and (3) uncoagulable. It was found that not only the first two groups but also a large part ofthe third group could be e ectively removed by FPB operation. However, the mechanism for the removal of the uncoagulable pollutantsby FPB operation still needs further investigation. 相似文献
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Alkaline and ultrasonic sludge disintegration can both be used as pretreatments of waste activated sludge (WAS) for improving the subsequent anaerobic or aerobic digestion. The pretreatment has been carried out using different combination of these two methods in this study. The effect was evaluated based on the quantity of soluble chemical oxygen demand (SCOD) in the pretreated sludge as well as the degradation of organic matter in the following aerobic digestion. For WAS samples with combined pretreatment, the released COD was in high level than those with ultrasonic or alkaline treatment. When combined with the same ultrasonic treatment, NaOH treatment resulted in more solubilization of WAS than Ca(OH)2. For combined NaOH and ultrasonic treatments with different sequences, the released COD were in the order: simultaneous treatment > ultrasonic treatment following NaOH treatment > NaOH treatment following ultrasonic treatment. For simultaneous treatment, low NaOH dosage (100 g/kg dry solid), short duration (30 min) of NaOH treatment, and low ultrasonic specific energy (7 500 kJ/kg dry solid) were beneficial for sludge disintegration. Using combined NaOH and ultrasonic pretreatment with the optimium parameters, the degradation efficiency of organic matter was increased from 38.0% to 50.7%, which is much higher than with ultrasonic (42.5%) or with NaOH pretreatment (43.5%) in the subsequent aerobic digestion at the same retention time. 相似文献
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基于微波辐射研究城市污水污泥脱水特性 总被引:3,自引:1,他引:2
选用沈阳市仙女河污水处理厂和北部污水处理厂污水污泥作为微波脱水试验物料,分析物料性质、辐射强度、辐射时间以及添加剂投入量等对污泥脱水率和有机质损失率的影响. 结果表明:污泥中水分含量高的脱水效果最好,经过微波处理后的污泥有机质含量仍较高;辐射时间是最主要的影响因素,在540 W下辐射2~5 min即可达到良好效果;在合适的辐射时间下540~900 W都能达到良好的脱水效果,但在900 W时有机质的损失率较大,达到65.64%;添加剂投入量对污泥脱水基本不起作用,但可改变污泥微波干燥后的性状. 同时,运用灰色关联分析得到决定微波试验运行系统的主次因素,最后建立了影响因素对污泥脱水率和有机质损失率的经验公式. 相似文献
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ⅠⅡ-ASBR中厌氧颗粒污泥的微生物组成及特性 总被引:1,自引:0,他引:1
在35℃下以奶粉人工合成废水为底物连续运行了两段厌氧反应器(ⅠⅡ-ASBR),且于ⅠⅡ两柱中形成了两种不同的厌氧颗粒污泥,为了解厌氧颗粒污泥的微生态结构及生物学特性,对ⅠⅡ两柱中厌氧颗粒污泥的形态及微生物组成进行扫描电镜观察,并测定了其不同基质中的比产甲烷活性、辅酶F420和胞外多聚物的含量。结果表明:ⅠⅡ-ASBR反应器ⅠⅡ两柱中厌氧颗粒污泥形态及微生物组成差异明显,Ⅰ柱的厌氧颗粒污泥大而密实,Ⅱ柱的较小,呈多孔的网状结构,Ⅰ柱中厌氧颗粒污泥以甲烷八叠球菌、球菌及短杆菌为主,丝状菌较少,Ⅱ柱则以丝状菌、短杆菌为主,球菌较少;Ⅰ柱颗粒污泥利用葡萄糖、甲酸、丙酸的产甲烷活性较高,利用乙酸的活性相对较低,Ⅱ柱颗粒污泥利用葡萄糖、乙酸的产甲烷活性较高,而利用甲酸、丙酸的产甲烷活性较低;辅酶F420的含量Ⅱ柱比Ⅰ柱明显要高,而胞外多聚物含量Ⅰ柱比Ⅱ柱的高。 相似文献
66.
钛酸铋光催化降解水中酸性大红的研究 总被引:1,自引:0,他引:1
采用异丙醇助水热法制备了钛酸铋光催化剂,UV-vis漫反射测试表明其光吸收带较TiO2发生了红移,通过多点BET法计算出其比表面积为14.16m2/g,平均孔径为21.05nm。以酸性大红为模拟污染物,在三相内循环流化床光催化反应器中进行光催化反应,研究了废水的pH值以及钛酸铋投加量对酸性大红脱色率的影响。结果表明:废水的pH=3.0,催化剂投加量为0.1g/L是最佳反应条件;当流量为10L/h时,连续运行3h后,酸性大红染料的去除率可达92.0%;当处理水量增大时,经过两级处理,酸性大红染料的总去除率仍可达到94.4%。 相似文献
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