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1.
利用生物淋滤法处理城市污泥,以生物淋滤过程中pH、ORP(氧化还原电位)变化以及重金属(Zn、Cu、Cd)溶出率为指标,考察淋滤菌接种比例、初始pH、淋滤时间对生物淋滤的影响,并分析了生物淋滤前后,重金属形态变化以及重金属的生物有效性和迁移性。结果表明富集筛选的嗜酸性氧化亚铁硫杆菌(A.f)可有效溶出污泥中的重金属。生物淋滤最佳条件为:初始pH=4.00,淋滤菌接种比例30%,重金属Zn,Cu,Cd在第10天的整体处理效果最优,溶出率分别达到75.30%、50.40%和74.44%。BCR形态分析表明:原污泥中Zn,Cu,Cd主要以弱酸提取态、可还原态和氧化态存在,残渣态较少;生物淋滤之后,3种重金属弱酸提取态、可还原态和氧化态含量有不同程度降低,其中,可还原态含量降低最为显著,残渣态基本无变化,并且淋滤后污泥中重金属氧化态及残渣态所占比例较淋滤前高,污泥稳定性得到提升。生物淋滤可以通过减少污泥中重金属含量和改变重金属形态降低其生物有效性和迁移性。  相似文献   

2.
传统活性污泥法处理城市污水过程中重金属的变化研究   总被引:4,自引:0,他引:4  
研究了污水处理厂传统活性污泥工艺不同处理工段污水和污泥中Cu、 Zn、 Pb、 Cd、 Hg和As含量变化及其在污水中的形态分布特征,进一步了解重金属在不同处理工段的去除情况.整个工艺流程污水中Hg的去除率最大,平均达76.4%,Pb的去除率最小,平均为29.7%.不同处理工段各重金属去除率差异较大,从进水到初沉池出水Zn去除率最大,平均达55.4%,其次为Hg和Cu,平均去除率分别为40.0%与34.2%;由初沉池出水到二沉池出水Cd、Hg和Cu平均去除率达36.1%~38.5%.进水、初沉池出水和二沉池出水中颗粒态Zn占其总量的比例(以质量分数计,下同)均在98.1%以上,颗粒态Hg占其总量的比例由84.1%降低到39.7%,颗粒态As占其总量的比例由11.7%上升至56.5%.初沉池污泥、曝气池活性污泥和脱水消化污泥中Zn含量最高,初沉池污泥中Cd含量最低,曝气池活性污泥和脱水消化污泥中As含量最低.脱水消化污泥中Zn、Cu、Pb和Cd含量高于初沉池污泥和曝气池活性污泥,Hg和As含量低于初沉池污泥而高于曝气池活性污泥.大部分Zn和Pb在初沉池中被除去,大部分Cd在二沉池中被除去,Hg和Cu在初沉池与二沉池中的去除效果相当.  相似文献   

3.
曝气强度对城市污泥重金属生物沥滤过程的影响研究   总被引:1,自引:1,他引:0  
以氧化亚铁作为底物,氧化亚铁硫杆菌(Thiobacillusferrooxidans)为主要沥滤微生物,在底物投配比为10 g/L,温度为25℃,污泥浓度为123g/L的条件下,采用5种不同曝气强度对桂林城市污泥中重金属进行生物沥滤试验。结果表明,生物沥滤的经济曝气强度宜控制在每升污泥0.4L/(min·L),沥滤3 d后,污泥中超标元素Cu、Zn和Cd的去除率分别达到62.53%、67.80%和54.63%,沥滤处理后污泥中残余重金属含量符合污泥农用的国家标准。  相似文献   

4.
采用生物淋滤法处理电子垃圾焚烧迹地重金属严重污染的土壤。所用氧化亚铁硫杆菌是从矿坑废水中通过一系列培养、分离和纯化得到。实验结果表明,生物淋滤法可以有效地去除土壤中重金属Cu、Ph和Zn,去除率的大小顺序为Zn〉Cu〉Pb;采用五步连续提取法分析处理前后土壤中重金属的存在形态,结果表明,通过氧化亚铁硫杆菌处理受重金属污染的土壤,可以促使易移动的重金属结合态的溶解(可交换态、碳酸盐结合态和Fe—Mn氧化物结合态),并使难移动的重金属结合态向易移动的重金属结合态转变。  相似文献   

5.
不同污泥浓度对生物沥滤过程的影响   总被引:2,自引:1,他引:1  
以硫酸亚铁盐作为底物,氧化亚铁硫杆菌(Thiobacillus ferrooxidans)为主要沥滤微生物,在底物投配比为10 g/L,温度为25℃,曝气量为1 L/min的条件下,对5种不同浓度的桂林城市污泥中重金属进行生物沥滤试验。结果表明,生物沥滤的污泥浓度宜控制在25.6 g/L,沥滤3 d后,污泥中超标元素Cu、Zn和Cd的去除率分别达到58.17%、75.90%和93.64%,沥滤处理后污泥中残余重金属含量符合污泥农用的国家标准。  相似文献   

6.
采用生物淋滤法处理电子垃圾焚烧迹地重金属严重污染的土壤。所用氧化亚铁硫杆菌是从矿坑废水中通过一系列培养、分离和纯化得到。实验结果表明,生物淋滤法可以有效地去除土壤中重金属Cu、Pb和Zn,去除率的大小顺序为Zn>Cu>Pb;采用五步连续提取法分析处理前后土壤中重金属的存在形态,结果表明,通过氧化亚铁硫杆菌处理受重金属污染的土壤,可以促使易移动的重金属结合态的溶解(可交换态、碳酸盐结合态和Fe-Mn氧化物结合态),并使难移动的重金属结合态向易移动的重金属结合态转变。  相似文献   

7.
丝状菌对生物淋滤去除底泥中重金属的促进作用   总被引:1,自引:1,他引:0  
利用氧化亚铁硫杆菌(Acidithiobacillus ferrooxidans,A.f)对采自株洲霞湾港底泥中的Cu、Cd、Pb和Zn 4种重金属进行生物淋滤实验,在实验中加入丝状菌考察其对重金属去除效果的影响。结果表明,丝状菌可以有效抑制低分子量有机酸对A.f的毒害作用,促进各种重金属的去除。当加入10%(体积比)的丝状菌后,生物淋滤过程中系统pH值在5 d内降低到2以下,Fe2+在4 d内完全氧化。经过10 d的处理,Cu、Cd、Pb和Zn 4种重金属的最高去除率分别达到76.3%、92.5%、52.6%和88.5%,与不加入丝状菌的处理相比,达到最大去除率所需的时间缩短1~2 d,4种重金属中,丝状菌的加入对Pb的去除促进作用最为明显,其去除率增加1倍左右。因此,在生物淋滤处理重金属-有机物复合污染底泥工艺中接入丝状菌对处理效果有很好的促进作用。  相似文献   

8.
以硫酸亚铁盐为底物,培养以氧化亚铁硫杆菌为主要菌种的土著沥滤微生物,采用批式方法对湘江长沙段底泥进行微生物沥浸实验。实验结果表明,底物投加量与底泥固体浓度比(Sd/Sc)为1.5时已能满足底泥的微生物沥浸要求,进一步研究发现底泥固体浓度为13%、底物投加量为19.5 g/L、沥浸时间为6 d时,底泥中超标重金属Cd、Zn和Cu的去除率可分别达到83.1%、75.3%和61.2%;沥浸后底泥中大部分重金属以残渣态存在,且含量低于农用污泥中污染物控制标准,其中硫化物有机结合态Cu浸出较Zn、Cd需更低的pH,且Cu以间接机理浸出为主;以Fe2+为底物的沥浸体系中,黄铁矾的重吸附或共沉淀是沥浸实验后期重金属浸出率下降的原因之一。  相似文献   

9.
以氧化亚铁硫杆菌(Acidithiobacillus ferrooxidans)为淋滤菌,对城市污泥进行生物淋滤,考察淋滤过程中污泥重金属(Cu、Zn、Ni、Cr)的去除及其形态变化规律,并根据淋滤前后重金属形态分布探讨重金属的淋滤去除机制。结果表明,生物淋滤可有效去除城市污泥中的Cu、Zn和Ni,对Cr几乎没有去除。生物淋滤后,Cu、Zn、Ni、Cr 4种重金属的去除率分别为55.97%、47.66%、26.10%、2.10%。pH是影响Zn和Ni去除的主要因素,而Cu在低pH和高氧化还原电位(ORP)条件下更易去除。BCR形态分析表明,生物淋滤之后污泥中Cu、Zn和Ni的4种形态含量均发生了不同程度的改变,其生物有效性和迁移性得到有效控制。通过重金属形态变化规律间接得出,Cu的生物淋滤过程以直接机制为主,Zn和Ni的生物淋滤过程是直接机制和间接机制共同作用的结果。  相似文献   

10.
从山西某煤矿的酸性矿井水中分离得到菌株ATF-1,对其形态、生理生化特性、16SrDNA基因序列、生长特性及其对城市污泥的摇瓶沥滤效果进行了研究。结果表明:(1)该菌为革兰氏阴性菌,短杆状,经16SrDNA鉴定为嗜酸氧化亚铁硫杆菌(Acidthiobacillus ferrooxidans)。菌株ATF-1培养的最佳条件为初始pH 2.0、温度30℃、接种量10%(体积分数)、Fe2+投加量9.00g/L。(2)以菌株ATF-1作为沥滤菌处理城市污泥,经过15d的生物沥滤,污泥中Zn、Pb、Ni、Cu、Cd和Cr去除率的最大值分别为93.56%、46.54%、85.48%、97.68%、90.64%和45.15%,处理后污泥中的重金属含量符合《农用污泥中污染物控制标准》(GB4284—84)中规定的在酸性土壤上的最高容许含量。  相似文献   

11.
Abstract

Microbial metal leaching from sewage sludge (2-9% w/v) was carried out with the iron-oxidizing bacterium Thiobacillus ferrooxidans. Measurements of pH, oxidation-reduction potential, and concentration of Fe2+ indicated that T. ferrooxidans was effective in removing metals from an incubation bath containing less than 5% sludge solids concentration. Specifically, Cu leaching was completely suppressed at a high solids concentration of 9% (w/v). Results indicated that the deactivation of T. ferrooxidans at a high sludge content was mainly due to the presence of inhibiting materials such as organic matter. A mixed culture of sulfur-oxidizing bacteria was obtained by enrichment from anaerobically digested sewage sludge to enhance the efficiency of the microbial leaching process. These bacteria were much more effective in metal leaching than was iron-oxidizing T. ferrooxidans. At 9% (w/v) solids concentration, the leaching efficiencies of Zn and Cu were 78% (2.66 g/kg dry sludge) and 59% (1.36 g/kg dry sludge), respectively. Therefore, when removing heavy metals from the anaerobically digested sewage sludge, the indigenous sulfur-oxidizing bacteria isolated in the current study were more efficient than T. ferrooxidans, especially at high sludge solids concentrations.  相似文献   

12.
污水污泥中重金属污染物的溶出过程研究   总被引:3,自引:0,他引:3  
污水污泥中污染物尤其是重金属的水体浸出作为重要的二次污染途径备受关注。为了探讨污水污泥中重金属的溶出规律,对上海7个污水处理厂的污水污泥进行了重金属总量分析,并采用水平振荡法对上述污水污泥中重金属进行了溶出动力学研究。结果表明,污水污泥中Cu、Cr和Zn的含量均较高,之后依次是Pb、As、Cd和Hg;污水污泥中重金属溶出动力学过程分为快速反应和慢速反应两个过程,可以用Elovich方程进行模拟;污水污泥中各重金属的溶出负荷差异较大,Cu、Cr和Zn的溶出负荷较大,其他较小,但各重金属相对于污水污泥中重金属总量的溶出百分比差异不大,基本处于10%以下。  相似文献   

13.
调理剂对堆肥产品重金属生物有效性的影响   总被引:1,自引:0,他引:1  
城市污泥中重金属含量及其生物有效性是限制污泥农用的主要因素,因此,研究污泥堆肥化处理过程中重金属生物有效性,对污泥的农用具有重要意义。实验以城市污泥为原料,以菌菇渣和秸秆为调理剂,设置4个处理:A(污泥∶菌菇渣∶秸秆=1∶0.4∶0.025)、B(污泥∶菌菇渣∶秸秆=1∶0.3∶0.025)、C(污泥∶秸秆=1∶0.12)和D(污泥∶秸秆=1∶0.09),进行好氧堆肥实验,采用BCR顺序提取法测定各种形态的重金属,研究堆肥前后重金属形态的变化规律。结果表明,城市污泥中Cu、Ni、Pb和Cr主要以可氧化态及残渣态存在,生物有效性较低,而Zn和Cd主要以酸溶态和可还原态存在,生物有效性较高;堆肥过程显著降低了Cu、Zn、Ni和Pb的生物有效性,并改变了Cu、Zn、Ni、Pb、Cr和Cd的形态分布,使污泥中的Cu、Zn、Ni、Pb和Cd向着更稳定的可氧化态或残渣态转变;污泥经过堆肥处理后,Cu、Zn和Ni 3种重金属生物有效性关系为:ABCD,与其他处理相比,处理A残渣态的Pb和Cr增加比例较多,综合来看,处理A对重金属生物有效性的降低最为明显,重金属钝化效果最佳。  相似文献   

14.
Xiang L  Chan LC  Wong JW 《Chemosphere》2000,41(1-2):283-287
The removal of heavy metals (Cr, Cu, Zn, Ni and Pb) from anaerobically digested sludge from the Yuen Long wastewater treatment plant, Hong Kong, has been studied in a batch system using isolated indigenous iron-oxidizing bacteria. The inoculation of indigenous iron-oxidizing bacteria and the addition of FeSO4 accelerated the solubilization of Cr, Cu, Zn, Ni and Pb from the sludge. pH of the sludge decreased with an increase in Fe2+ concentrations and reached a low pH of 2-2.5 for treatments receiving both bacterial inoculation and FeSO4. After 16 days of bioleaching, the following heavy metal removal efficiencies were obtained: Cr 55.3%, Cu 91.5%, Zn 83.3%, Ni 54.4%, and Pb 16.2%. In contrast, only 2.6% of Cr, 42.9% of Cu, 72.1% of Zn, 22.8% of Ni and 0.56% of Pb were extracted from the control without the bacterial inoculation and addition of FeSO4. The residual heavy metal content in the leached sludge was acceptable for unrestricted use for agriculture. The experimental results confirmed the effectiveness of using the isolated iron-oxidizing bacteria for the removal of heavy metals from sewage sludge.  相似文献   

15.
几种模拟处理方式污泥淋出液重金属与养分特征   总被引:2,自引:0,他引:2  
为了减少城市污泥重金属对农田的污染,更好地实现污泥农业资源化利用,通过盆栽实验研究不同处理(对照、黑网、附Fe黑网、附Fe黑网+K2SO4及附Fe黑网+玉米)对城市污泥淋出液重金属和养分含量等的影响。结果表明,黑网可降低污泥淋出液的Zn﹑Cd总量,且没有减少污泥淋出液中氮、磷和钾的总量。Fe(OH)3可使淋出液中Zn总量降低,但同时也显著减少了淋出液中的磷总量。K2SO4可降低淋出液中的Cu总量,且促进Fe结合磷的释放。玉米的种植可使污泥的总重降低,同时玉米籽粒和茎叶重金属含量达到饲料标准。综合来看,任何处理每次淋出液的Cu、Zn、Pb、Cd浓度均符合农田灌溉水标准,淋出液氮、磷、钾量占原污泥中氮、磷、钾总量的比例(0.98%~9.88%)远远大于重金属元素(Cu,Zn,Pb,Cd)占原污泥对应重金属总量的比例(0.04%~0.41%),污泥淋出液作为农田灌溉水进行肥水利用将是污泥农业资源化利用的适合途径,同时黑网+玉米处理可能是较理想的污泥综合处理利用方式。  相似文献   

16.
为了得到嗜酸硫细菌沥滤污泥中重金属的最佳工艺参数,对沥滤过程进行3因素4水平的正交实验研究。3种影响因素的水平设置分别为:污泥浓度35、25、15和5 g/L,单质硫投加量15、10、5和1 g/L,接种量15、10、5和3 g/L。对沥滤过程污泥中7种重金属(As、Cd、Cr、Cu、Ni、Pb和Zn)的去除率进行极差分析,提出了因素影响程度依次为单质硫投加量污泥浓度接种量,且最佳工艺条件为:污泥浓度25 g/L,单质硫投加量10 g/L,接种量为5%。采用超声波-离心方法,分步提取污泥胞外聚合物(EPS)的2种形态:松散结合态(LB)和紧密结合态(TB)。分析其中的重金属浓度,提出沥滤后重金属在污泥EPS的赋存以LB为主。  相似文献   

17.
《Chemosphere》2013,90(11):1354-1359
Pyrolytic conversion of sewage sludge into biochar could be a sustainable management option for Mediterranean agricultural soils. The aim of this work is to evaluate the effects of biochar from sewage sludge pyrolysis on soil properties; heavy metals solubility and bioavailability in a Mediterranean agricultural soil and compared with those of raw sewage sludge. Biochar (B) was prepared by pyrolysis of selected sewage sludge (SL) at 500 °C. The pyrolysis process decreased the plant-available of Cu, Ni, Zn and Pb, the mobile forms of Cu, Ni, Zn, Cd and Pb and also the risk of leaching of Cu, Ni, Zn and Cd. A selected Mediterranean soil was amended with SL and B at two different rates in mass: 4% and 8%. The incubation experiment (200 d) was conducted in order to study carbon mineralization and trace metal solubility and bioavailability of these treatments. Both types of amendments increased soil respiration with respect to the control soil. The increase was lower in the case of B than when SL was directly added. Metals mobility was studied in soil after the incubation and it can be established that the risk of leaching of Cu, Ni and Zn were lower in the soil treated with biochar that in sewage sludge treatment. Biochar amended samples also reduced plant availability of Ni, Zn, Cd and Pb when compared to sewage sludge amended samples.  相似文献   

18.
Su DC  Wong JW  Jagadeesan H 《Chemosphere》2004,56(10):957-965
Rhizospheric distribution of nutrients and heavy metals in sludge amended soil was investigated using the rhizobag technique to give an indication of the release of metals from wastewater sludge. DTPA-extractable Zn, Cd, Ni and Mn, and available P, K and NH4+-N in the rhizosphere were markedly depleted when soil was amended with sludge. There was no conspicuous depletion or accumulation of DTPA-extractable Cu in the rhizosphere when the soil was amended with sewage sludge but DTPA-extractable Fe accumulated in the rhizosphere when the soil was amended with increasing amounts of sludge. The pH value in the rhizosphere increased with distance from the roots when soil was amended with larger amounts of sludge. The exchangeable fraction of Cu in the rhizosphere was depleted whether or not the soil was treated with sludge. Carbonate, oxide, organic and residual fractions of Cu and Zn were depleted in the rhizosphere at a distance of 0-2 mm from the roots when soil was amended with 50% sludge. Application of sewage sludge had a positive effect on alfalfa growth. With an increase in sludge amounts, the concentrations of Fe, Cu and Zn in alfalfa shoots did not change. Soil amendments with less than 25% sludge did not increase the availability or mobility of heavy metals. The depletion in rhizospheric DTPA-extractable Zn, Cd and Ni indicates that with the sole exception of Cu, release of metals from sludge amended soil was very limited.  相似文献   

19.
Pyrolytic conversion of sewage sludge into biochar could be a sustainable management option for Mediterranean agricultural soils. The aim of this work is to evaluate the effects of biochar from sewage sludge pyrolysis on soil properties; heavy metals solubility and bioavailability in a Mediterranean agricultural soil and compared with those of raw sewage sludge. Biochar (B) was prepared by pyrolysis of selected sewage sludge (SL) at 500 °C. The pyrolysis process decreased the plant-available of Cu, Ni, Zn and Pb, the mobile forms of Cu, Ni, Zn, Cd and Pb and also the risk of leaching of Cu, Ni, Zn and Cd. A selected Mediterranean soil was amended with SL and B at two different rates in mass: 4% and 8%. The incubation experiment (200 d) was conducted in order to study carbon mineralization and trace metal solubility and bioavailability of these treatments. Both types of amendments increased soil respiration with respect to the control soil. The increase was lower in the case of B than when SL was directly added. Metals mobility was studied in soil after the incubation and it can be established that the risk of leaching of Cu, Ni and Zn were lower in the soil treated with biochar that in sewage sludge treatment. Biochar amended samples also reduced plant availability of Ni, Zn, Cd and Pb when compared to sewage sludge amended samples.  相似文献   

20.
Singh RP  Agrawal M 《Chemosphere》2007,67(11):2229-2240
Use of sewage sludge, a biological residue produced from sewage treatment processes in agriculture is an alternative disposal technique of waste. To study the usefulness of sewage sludge amendment for palak (Beta vulgaris var. Allgreen H-1), a leafy vegetable and consequent heavy metal contamination, a pot experiment was conducted by mixing sewage sludge at 20% and 40% (w/w) amendment ratios to the agricultural soil. Soil pH decreased whereas electrical conductance, organic carbon, total N, available P and exchangeable Na, K and Ca increased in soil amended with sewage sludge in comparison to unamended soil. Sewage sludge amendment led to significant increase in Pb, Cr, Cd, Cu, Zn and Ni concentrations of soil. Cd concentration in soil was found above the Indian permissible limit in soil at both the amendment ratios.

The increased concentration of heavy metals in soil due to sewage sludge amendment led to increases in heavy metal uptake and shoot and root concentrations of Ni, Cd, Cu, Cr, Pb and Zn in plants as compared to those grown on unamended soil. Accumulation was more in roots than shoots for most of the heavy metals. Concentrations of Cd, Ni and Zn were more than the permissible limits of Indian standard in the edible portion of palak grown on different sewage sludge amendments ratios. Sewage sludge amendment in soil decreased root length, leaf area and root biomass of palak at both the amendment ratios, whereas shoot biomass and yield decreased significantly at 40% sludge amendment. Rate of photosynthesis, stomatal conductance and chlorophyll content decreased whereas lipid peroxidation, peroxidase activity and protein and proline contents, increased in plants grown in sewage sludge-amended soil as compared to those grown in unamended soil.

The study clearly shows that increase in heavy metal concentration in foliage of plants grown in sewage sludge-amended soil caused unfavorable changes in physiological and biochemical characteristics of plants leading to reductions in morphological characteristics, biomass accumulation and yield. The study concludes that sewage sludge amendment in soil for growing palak may not be a good option due to risk of contamination of Cd, Ni and Zn and also due to lowering of yield at higher mixing ratio.  相似文献   


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