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1.
A key step in sludge treatment is sludge dewatering. However, activated sludge is generally very difficult to be dewatered. Sludge dewatering performance is largely affected by the sludge moisture distribution. Sludge disintegration can destroy the sludge structure and cell wall, so as change the sludge floc structure and moisture distribution, thus affecting the dewatering performance of sludge. In this article, the disintegration methods were ultrasound treatment, K2FeO4 oxidation and KMnO4 oxidation. The degree of disintegration (DDCOD), sludge moisture distribution and the final water content of sludge cake after centrifuging were measured. Results showed that three disintegration methods were all effective, and K2FeO4 oxidation was more efficient than KMnO4 oxidation. The content of free water increased obviously with K2FeO4 and KMnO4 oxidations, while it decreased with ultrasound treatment. The changes of free water and interstitial water were in the opposite trend. The content of bounding water decreased with K2FeO4 oxidation, and increased slightly with KMnO4 oxidation, while it increased obviously with ultrasound treatment. The water content of sludge cake after centrifuging decreased with K2FeO4 oxidation, and did not changed with KMnO4 oxidation, but increased obviously with ultrasound treatment. In summary, ultrasound treatment deteriorated the sludge dewaterability, while K2FeO4 and KMnO4 oxidation improved the sludge dewaterability.  相似文献   

2.
A key step in sludge treatment is sludge dewatering. However, activated sludge is generally very difficult to be dewatered. Sludge dewatering performance is largely affected by the sludge moisture distribution. Sludge disintegration can destroy the sludge structure and cell wall, so as change the sludge floc structure and moisture distribution, thus affecting the dewatering performance of sludge. In this article, the disintegration methods were ultrasound treatment, K2 Fe O4oxidation and KMn O4 oxidation. The degree of disintegration(DDCOD), sludge moisture distribution and the final water content of sludge cake after centrifuging were measured. Results showed that three disintegration methods were all effective, and K2 Fe O4oxidation was more efficient than KMn O4 oxidation. The content of free water increased obviously with K2 Fe O4and KMn O4 oxidations, while it decreased with ultrasound treatment. The changes of free water and interstitial water were in the opposite trend. The content of bounding water decreased with K2 Fe O4oxidation, and increased slightly with KMn O4 oxidation, while it increased obviously with ultrasound treatment. The water content of sludge cake after centrifuging decreased with K2 Fe O4oxidation, and did not changed with KMn O4 oxidation, but increased obviously with ultrasound treatment. In summary, ultrasound treatment deteriorated the sludge dewaterability, while K2 Fe O4and KMn O4 oxidation improved the sludge dewaterability.  相似文献   

3.
A novel joint method of bioleaching with Fenton oxidation was applied to condition sewage sludge. The specific resistance to filtration (SRF) and moisture of sludge cake (MSC) were adopted to evaluate the improvement of sludge dewaterability. After 2-day bioleaching, the sludge pH dropped to about 2.5 which satisfied the acidic condition for Fenton oxidation. Meanwhile, the SRF declined from 6.45 × 1010 to 2.07 × 1010 s2/g, and MSC decreased from 91.42% to 87.66%. The bioleached sludge was further conditionedwith Fenton oxidation. From an economical point of view, the optimal dosages of H2O2 and Fe2+ were 0.12 and 0.036 mol/L, respectively, and the optimal reaction time was 60 min. Under optimal conditions, SRF, volatile solids reduction, and MSC were 3.43 × 108 s2/g, 36.93%, and 79.58%, respectively. The stability and settleability of sewage sludge were both improved significantly. Besides, the results indicated that bioleaching-Fenton oxidation was more efficient in dewatering the sewage sludge than traditional Fenton oxidation. The sludge conditioningmechanisms by bioleaching-Fenton oxidationmight mainly include the flocculation effects and the releases of extracellular polymeric substances-bound water and intercellular water.  相似文献   

4.
A novel joint method of bioleaching with Fenton oxidation was applied to condition sewage sludge. The specific resistance to filtration (SRF) and moisture of sludge cake (MSC) were adopted to evaluate the improvement of sludge dewaterability. After 2-day bioleaching, the sludge pH dropped to about 2.5 which satisfied the acidic condition for Fenton oxidation. Meanwhile, the SRF declined from 6.45 × 1010 to 2.07 × 1010 s2/g, and MSC decreased from 91.42% to 87.66%. The bioleached sludge was further conditioned with Fenton oxidation. From an economical point of view, the optimal dosages of H2O2 and Fe2 + were 0.12 and 0.036 mol/L, respectively, and the optimal reaction time was 60 min. Under optimal conditions, SRF, volatile solids reduction, and MSC were 3.43 × 108 s2/g, 36.93%, and 79.58%, respectively. The stability and settleability of sewage sludge were both improved significantly. Besides, the results indicated that bioleaching-Fenton oxidation was more efficient in dewatering the sewage sludge than traditional Fenton oxidation. The sludge conditioning mechanisms by bioleaching-Fenton oxidation might mainly include the flocculation effects and the releases of extracellular polymeric substances–bound water and intercellular water.  相似文献   

5.
芬顿试剂氧化对污泥脱水性能的影响   总被引:3,自引:0,他引:3  
利用芬顿试剂调理污泥,以WC(污泥滤饼含水率)和CST(毛细吸水时间)作为评价污泥脱水性能的指标,通过分析污泥中各层ρ(EPS)(EPS为胞外聚合物)和上清液中小分子有机物质量浓度来阐明污泥脱水性能的变化. 结果表明:芬顿试剂调理可促进EPS氧化分解,TB-EPS(紧密结合的胞外聚合物)破解转化为LB-EPS(松散结合的胞外聚合物)和S-EPS(上清液层胞外聚合物),大幅降低WC和CST. 试验中当pH为4,w(H2O2)和 w(Fe2+)均为40 mg/g时,ρ(EPS)降低了33.04%,WC和CST分别降至63.36%和28.7 s. Pearson相关性分析表明,ρ(TB-EPS)与WC和CST均存在显著的正相关性(P<0.01),是影响污泥脱水性能的重要因素,而ρ(LB-EPS)和ρ(S-EPS)与污泥脱水性能的相关性较低. 液相色谱分析表明,随着芬顿试剂投加量的增大,EPS等有机物分解程度增大,污泥上清液中小分子有机物种类明显增多,其质量浓度显著升高,ρ(甲酸)和ρ(乙酸)分别由原污泥的52.72、15.99 mg/L升至446.05、522.36 mg/L.   相似文献   

6.
研究了高铁酸钾(K_2FeO_4)对处理活性污泥脱水性的效果,重点考察了不同pH和剂量条件下,K_2FeO_4调理对污泥过滤脱水特性和胞外聚合物(EPS)分布和组成的影响,以深入认识K_2FeO_4调理污泥的反应机制.研究表明,K_2FeO_4调理效果随pH值的降低而改善,其不仅有氧化裂解作用导致结合型EPS(BEPS)释放,同时其还原产物三价铁离子兼具混凝功效,能够通过电中和与界面吸附去除部分溶解性EPS(SEPS),同时压缩EPS结构,增强污泥絮体结构.此外,当pH值为3,K_2FeO_4投加量为0.1 g·g~(-1)(以TSS计)时,污泥过滤脱水速率和程度均达到最佳.过量投加K_2FeO_4(0.2 g·g~(-1),以TSS计)后,BEPS大量释放,污泥过滤阻力增加,脱水性能恶化.  相似文献   

7.
The sewage sludge conditioning process is critical to improve the sludge dewaterability prior to mechanical dewatering. Traditionally, sludge is conditioned by physical or chemical approaches, mostly with the addition of inorganic or organic chemicals. Here we report that bioleaching, an efficient and economical microbial method for the removal of sludge-borne heavy metals, also plays a significant role in enhancing sludge dewaterability. The effects of bioleaching and physical or chemical approaches on sludge dewaterability were compared. The conditioning result of bioleaching by Acidithiobacillus thiooxidans and Acidithiobacillus ferrooxidans on sludge dewatering was investigated and compared with the effects of hydrothermal (121℃ for 2 hr), microwave (1050 W for 50 sec), ultrasonic (250 W for 2 min), and chemical conditioning (24% ferric chloride and 68% calcium oxide; dry basis). The results show that the specific resistance to filtration (SRF) or capillary suction time (CST) of sludge is decreased by 93.1% or 74.1%, respectively, after fresh sludge is conditioned by bioleaching, which is similar to chemical conditioning treatment with ferric chloride and calcium oxide but much more effective than other conditioning approaches including hydrothermal, microwave, and ultrasonic conditioning. Furthermore, after sludge dewatering, bioleached sludge filtrate contains the lowest concentrations of chroma (18 times), COD (542 mg/L), total N (TN, 300 mg/L), NH4+-N (208 mg/L), and total P (TP, 2 mg/L) while the hydrothermal process resulted in the highest concentration of chroma (660 times), COD (18,155 mg/L), TN (472 mg/L), NH4+-N (381 mg/L), and TP (191 mg/L) among these selected conditioning methods. Moreover, unlike chemical conditioning, sludge bioleaching does not result in a significant reduction of organic matter, TN, and TP in the resulting dewatered sludge cake. Therefore, considering sludge dewaterability and the chemical properties of sludge filtrate and resulting dewatered sludge cakes, bioleaching has potential as an approach for improving sludge dewaterability and reducing the cost of subsequent reutilization or disposal of dewatered sludge.  相似文献   

8.
电化学处理改善剩余污泥脱水性能   总被引:5,自引:3,他引:2  
以毛细吸水时间(CST)作为衡量污泥脱水性能的指标,采用铱/二氧化钌电极板为阳极、钛/二氧化钌网状极板为阴极,对剩余污泥进行电化学处理,考察了电压、处理时间等因素对剩余污泥脱水性能的影响.结果表明,电压对污泥脱水性能影响较大,当电压为30V、极板间距为4cm、搅拌速率为100r.min-1、处理30min条件下污泥调理...  相似文献   

9.
为了有效提高污泥水解效率、缩短厌氧消化时间,以K2FeO4为氧化剂破解剩余污泥,考察K2FeO4投加量(50~500 g/kg,以干质量计)对污泥破解率的影响,分析水解液各项特征指标并对其可生化性能进行预测,探究该方法作为污泥厌氧预处理的可行性.结果表明:污泥水解效率随着K2FeO4投加量的增加而升高,当搅拌速率为500 r/min、反应时间为2 h、K2FeO4投加量为500 g/kg的条件下,可实现最高的污泥破解率(34.6%).污泥水解液中有机物以多糖、蛋白质为主,并有少量挥发性有机酸;污泥破解过程也伴随着P和NH4+-N的释放,上清液中ρ(TP)最高可达496 mg/L,且以正磷酸盐为主(约310 mg/L),可对其进行回收.采用三维荧光体积积分的方法对污泥水解液的可生化性能进行预测,发现污泥经K2FeO4预处理后,水解液中RB(易降解有机质)和PB(难降解有机质)荧光强度均明显增加,当K2FeO4投加量为50 g/kg时,Fdigestion(生物可降解性指数)达到最大值(4.75),预测此时污泥的可生化性能最佳.以K2FeO4为氧化剂预处理污泥可有效提升污泥水解效率,但若作为厌氧消化预处理,应综合考虑污泥破解率和可生化性能.研究显示,搅拌速率为500 r/min、反应时间为2 h、K2FeO4投加量为50 g/kg预处理条件下污泥的可生化性能最佳.   相似文献   

10.
焦化废水污泥作为典型的危险废物,含有氰类、酚类、稠环芳烃与多环芳烃等有毒成分,严重影响人类健康与生态环境安全,焦化污泥减量化是其处理处置中重要一环.针对焦化废水污泥高有机物、高油含量特点,采用酸化+Fenton试剂进行复合调理改性,改性后污泥毛细吸水时间(Capillary Suction Time,CST)、比阻(Specific Resistance to Filtration,SRF)分别达到51.2 s和0.043×1013 m·kg-1,药剂投加量通过响应表面法(Response Surface Method,RSM)进行优化,在实验室板框脱水实验中得到30%硫酸投加量为37.8 mL·L-1,FeSO4、H2O2和生石灰投加量分别为47.93、34.29和143.21 mg·g-1DS时,脱水后泥饼含水率为55.82%,滤液pH为6.66,达到污泥深度脱水目标.采用酸化+Fenton试剂复合处理可使焦化废水污泥有效减量化,其良好的深度脱水效果能为后续的无害化处置奠定基础,并有效降低处置费用.  相似文献   

11.
城市污泥脱水速率与泥饼含水率的表征差异性研究   总被引:2,自引:1,他引:1  
通过试验获得了多种不同来源污泥的脱水表观指标值(比阻和粘度)与脱水性能参数值(脱水速率和滤饼含水率),并对其相关性进行了研究分析.研究结果表明,采用常规的表观指标表征污泥的脱水性能存在差异性,污泥比阻(SRF)可以很好地表征污泥的脱水速率,与其呈良好的负线性关系(调理前:R2=0.914,调理后:R2=0.839),而SRF与滤饼含水率的线性关系不显著,只能进行辅助或定性分析.粘度可以很好地表征污泥滤饼含水率(调理前:R2=0.936,调理后:R2=0.843);但仅在高粘度水平下,粘度与污泥脱水速率才表现出负线性关系,但拟合度较低(R2=0.647),在低粘度污泥体系中,粘度不是影响污泥脱水速率的关键因素.  相似文献   

12.
本研究采用超声-生物沥浸-氧化钙调理联合超高压压滤系统对市政污泥进行深度脱水试验,探讨了其调理过程对污泥脱水效率的影响,并对调理后的脱水污泥的重金属含量及植物毒性进行评估.结果表明,经超声-生物沥浸-氧化钙调理后,比阻(SRF)去除率和结合水去除率分别达到90.12%和72.21%.经预调理联合超高压压滤系统处理后,泥饼含水率降低至49.94%,泥饼中Cr 、Cu、Cd、 Zn、As 和Pb的去除率分别为42.41%、36.50%、30.92%、27.97%、25.94%、22.11%,白菜发芽指数大于80%.通过分析污泥理化性质及滤液有机物含量,阐明该联合技术的作用机理.首先,超声预处理后,污泥结构被破坏,造成污泥粒径d0.5减小、zeta电位上升,污泥中多糖和蛋白质被释放,从而改善脱水性能,促进污泥中重金属释放,植物毒性降低;经超声-生物沥浸调理后,污泥粒径d0.5进一步减小、zeta电位趋近于中性,滤液中酪氨酸/色氨酸类氨基酸类有机物和酪氨酸/色氨酸类蛋白有机物被降解且疏水性的腐殖酸和富里酸类有机物含量升高,污泥脱水性能进一步提高,泥饼重金属含量进一步下降,但植物毒性反而加强;最后添加氧化钙后,污泥颗粒被重新絮凝,形成刚性骨架,增加了污泥的可压缩性能,在高压压滤过程释放出更多有机物,最终实现了污泥深度脱水,重金属总量减少,植物毒性显著降低.此外,经济分析表明该联合工艺具有一定潜在推广应用价值.  相似文献   

13.
During the acidogenic fermentation converting waste activated sludge (WAS) into short-chain fatty acids (SCFA), hydrolysis of complex organic polymers is a limiting step and the transformation of harmful substances (such as antibiotics) during acidogenic fermentation is unknown. In this study, potassium ferrate (K2FeO4) oxidation was used as a pretreatment strategy for WAS acidogenic fermentation to increase the hydrolysis of sludge and destruct the harmful antibiotics. Pretreatment with K2FeO4 can effectively increase the SCFA production during acidogenic fermentation and change the distribution of SCFA components. With the dosage of 0.2 g/g TS, the maximum SCFA yield was 4823 mg COD/L, which is 28.3 times that of the control group; acetic acid accounts for more than 90% of the total SCFA. The higher dosage (0.5 g/g TS) can further increase the proportion of acetic acid, but inhibit the overall performance of SCFA production. Apart from the promotion of hydrolysis and acidogenesis, K2FeO4 pretreatment can also simultaneously oxidizes and degrades part of the antibiotics in the sludge. When the dosage is 0.5 g/g TS, the degradation efficacy of antibiotics is the most significant, and the contents of ofloxacin, azithromycin, and tetracycline in the sludge are reduced by 69%, 42%, and 50%, respectively. In addition, K2FeO4 pretreatment can also promote the release of antibiotics from sludge flocs, which is conducive to the simultaneous degradation of antibiotics in the subsequent biological treatment process.  相似文献   

14.
为探讨缺氧酸化联合零价铁(ZVI)-过氧化氢(H_2O_2)调理对污泥脱水性能的影响,本文通过单因素试验,以污泥比阻(SRF)作为参考指标,系统考察了调理条件对污泥脱水性能的影响.同时,在试验的最佳调理条件下,分析了污泥各层胞外聚合物(EPS)有机物质量浓度及荧光光谱强度以阐明该联合作用机理.结果表明,当初始pH为2,ZVI投加量为280 mg·g~(-1)(以干污泥量(DS)计,下同),缺氧时间为4 h,H_2O_2投加量为30 mg·g~(-1)(以DS计,下同),类芬顿反应时间为10 min时,SRF降低了90.39%,处理效果较单独类芬顿处理提升了1倍.机理探究试验表明,在缺氧条件下,酸化处理可加速污泥的水解,溶解得到更多的二价铁离子,促使EPS结构发生改变;ZVI-H_2O_2调理可有效地氧化部分EPS,使得紧密结合胞外聚合物(TB-EPS)破解转化至松散结合胞外聚合物(LB-EPS)和上清液胞外聚合物(SB-EPS).EPS分析结果表明,蛋白质的减少能有效提高污泥脱水性能,腐殖酸和富里酸类有机物的产生能提高污泥疏水性能.此外,ZVI的再次利用效率高,重复利用仍能使SRF降低率达到82.04%.因此,缺氧酸化联合ZVI-H_2O_2处理能实现污泥的水解、氧化和絮凝过程,达到改善污泥脱水性能的目的.  相似文献   

15.
Fenton氧化联合氧化钙调理对污泥脱水的机理研究   总被引:3,自引:0,他引:3  
探讨了使用Fenton氧化联合氧化钙全过程(第一阶段:使用硫酸调节污泥p H值;第二阶段:投加Fe2+;第三阶段:投加H2O2;第四阶段:投加氧化钙)对污泥脱水效果及物理化学性质的影响.结果表明,酸化处理可以改变絮体的大小,降低Zeta电位,分散絮体,同时去除部分胞外聚合物(EPS),进而改善了污泥脱水性能.此外,在Fenton氧化的过程中,污泥颗粒、Zeta电位、EPS和比阻(SRF)均呈现逐渐减少的趋势,同时生成氢氧化铁胶体会覆盖在污泥颗粒表面,形成保护性的硬壳,进而使污泥的脱水性能大幅提高.当加入氧化钙时,形成稳定的刚性的结构使污泥颗粒重新聚合,促使生成多孔的脱水通道.中试结果阐明,Fenton氧化过程是实现污泥的深度脱水的关键,并表明各个阶段污泥脱水过程中产生的滤液水质状况.总的来说,本研究提供了在高压下实现污泥深度脱水的新思路,包括:絮体酸溶分散与重聚-保护性氧化-骨架构建.由此看来,Fenton氧化联合氧化钙是一种相对温和且有效的污泥调理方法.  相似文献   

16.
提高市政污泥脱水性能是当前污泥预处理中的热点和难点.本文以毛细吸水时间(CST)作为衡量污泥预处理中脱水性能的指标,选用钛/二氧化铅网状极板为阴、阳电极,研究了电解电压、极板间距、电解质种类及电解质投加量等因素对电化学预处理市政污泥的影响.结果表明,电压对污泥脱水性能影响较大,在电压为20 V、极板间距为2 cm、电解质为0.6 g Na Cl的条件下,电化学处理市政污泥20 min效果最佳,污泥的CST下降率在90%以上.进一步探究表明,电解过程中污泥菌胶团结构首先被破坏,释放大量结合水,且菌胶团内的蛋白质和多聚糖释放到上清液中,二者浓度先升高;随后二者部分氧化分解,浓度降低,从而有效提高市政污泥脱水性能.  相似文献   

17.
采用次氯酸钠(NaClO)与亚铁(Fe(II))结合处理污泥以提高污泥破解和脱水效能,考察了NaClO和Fe(II)投加量的影响,并通过定量和定性分析污泥中胞外聚合物质(EPS)的迁移转化,确定NaClO和Fe(II)对污泥脱水和破解的机制.试验结果表明,NaClO和Fe(II)投加量(以干泥固体计)分别为44 mg·g-1和66 mg·g-1时,污泥毛细吸吮时间(CST)从原泥的112 s下降到66.3 s.同时,NaClO/Fe(II)处理污泥能够使上清液中化学需氧量(COD)显著升高,并使污泥中紧密束缚型EPS(TB-EPS)和松散束缚型EPS(LB-EPS)转化成溶解性EPS(S-EPS),导致S-EPS的溶解性有机碳(DOC)含量升高,而LB-EPS和TB-EPS的DOC含量降低.此外,NaClO/Fe(II)还能使污泥中有机物质矿化,使3种EPS中蛋白质类和腐殖酸类物质减少.NaClO和Fe(II)能够改善污泥脱水性能,强化污泥破解效果,利于污泥后续的处理处置.  相似文献   

18.
污泥脱水是污泥资源化利用的前提,采用高铁酸钾(K2FeO4)和污泥生物炭(脱水污泥在500℃热解制得污泥生物炭,记为BC500)作为调理剂对污泥进行预处理。污泥经3.00 g/L K2FeO4和9.00 g/L BC500调理脱水后,泥饼含水率降低至42.33%,较未经调理脱水后泥饼含水率(78.80%)减少36.47百分点。通过低场核磁共振技术(low field nuclear magnetic resonance, LF-NMR)检测脱水泥饼中残留水分的存在形式,并对水分种类进行划分。在K2FeO4氧化作用下,水分子与有机物的结合能被削弱,泥饼中残余结合水(0.23~10.72 ms)占比为99.68%~99.81%,毛细管水(70.00~700.00 ms)占比为0.19%~0.32%,原污泥泥饼中强结合水转化为弱结合水、毛细管水、自由水,弱结合水转化为毛细管水或自由水,毛细管水则转化为自由水,而自由水在机械脱水过程中几乎可以完全脱除。根据成像结果...  相似文献   

19.
通过在剩余污泥中投加FeSO_4及S~0的生物基质进行生物调理的方法改善污泥脱水性质.在确定两者的投加质量比为7∶3(FeSO_4的质量以Fe~(2+)计)的条件下,分别投加质量为污泥干重的10%、15%、20%、25%、30%的混合基质,结果表明当基质投加量为污泥干重的20%时,污泥的脱水性能最佳.其中,毛细吸水时间(CST)较对照组降低了38.71%,粘度下降了81.91%,泥饼含固率为对照组的135.19%.同时,污泥中的胞外聚合物(EPS)总量有了显著的下降,污泥絮体中的有机质从与污泥细胞更紧密结合的紧密型EPS(TB-EPS)中释放到较外层的疏松型EPS(LB-EPS)中,且Zeta电位接近中性,从而使得污泥脱水性能得到改善.  相似文献   

20.
壳聚糖絮凝剂在活性污泥调理中的应用   总被引:14,自引:1,他引:14  
研究了自制的壳聚糖絮凝剂在活性污泥调理中的应用,通过污泥比阻、上清液剩余浊度、泥饼含水率及沉降性能等的测定,重点分析了活性污泥脱水的pH范围、絮凝剂投量和壳聚糖分子量及其脱乙酰度对调理效果的影响,并与絮凝剂聚丙烯酰胺(PAM)和聚合氯化铝(PAC)作了比较,在此基础上还进行了双絮凝剂两段法处理污泥的初步探索。研究发现,壳聚糖作为活性污泥调理剂,投量(干污泥质量百分比)在0.8%~1.2%,pH值在5~8时即有较好的调理效果,与PAM效果基本相当,接近于8%~16%的PAC;壳聚糖相对分子量在30×10~4左右,脱乙酰度在70%左右时有较好的调理效果;双絮凝剂两段法处理污泥,在同等用量时效果好于单絮凝剂一段法。  相似文献   

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