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1.
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   

2.
生物沥浸耦合类Fenton氧化调理城市污泥   总被引:4,自引:3,他引:1  
采用生物沥浸耦合类Fenton氧化工艺对城市污泥进行了调理研究.结果表明,在升华硫和Fe SO4·7H2O投量分别为3g·L-1和8 g·L-1时,污泥p H从6.9降至2.5约需1 d,满足类Fenton氧化的适宜酸性条件.生物沥浸处理后,污泥挥发性固体(VS)减少率为13.4%,污泥比阻从3.1×109s2·g-1降至1.5×109s2·g-1,降低51.6%,但仍属于难脱水污泥.沥浸污泥继续经类Fenton氧化调理,调理的最佳H2O2投量和反应时间分别为3.3 g·L-1和60 min.处理后污泥VS减少率为30.8%,污泥比阻和滤饼含水率分别为1.9×108s2·g-1和76.9%,污泥比阻降低93.9%,污泥脱水性能和稳定性能得到显著提高.此外,该联合工艺对污泥的调理效果优于类Fenton氧化单独调理.  相似文献   

3.
生物淋滤-PAC与PAM联合调理城市污泥   总被引:6,自引:2,他引:4  
采用生物淋滤-聚合氯化铝(PAC)与聚丙烯酰胺(PAM)联合使用工艺对城市污泥进行了调理研究.结果表明,在固定单质硫投量为3 g.L-1的条件下,投加亚铁离子能明显加快污泥生物淋滤速率;FeSO4.7H2O投量为8 g.L-1时,污泥pH降至2约需1.5 d.生物淋滤显著改善了污泥的脱水性能,生物淋滤后使污泥比阻从6.45×1010 s2.g-1降到1.45×1010 s2.g-1,降低了77.52%,但污泥仍属于难脱水污泥.回调淋滤污泥pH至6,投加PAC及PAM对淋滤污泥进行强化调理.结果表明,单独使用PAC与PAM的最佳投量分别为200 mg.L-1和50 mg.L-1;联合使用PAC与PAM时,PAC与PAM的最佳投量分别为100mg.L-1和25 mg.L-1,污泥比阻和滤饼含水率分别为2.02×108 s2.g-1和74.81%,污泥属于易脱水污泥.与单独使用PAC与PAM相比,PAC与PAM联合使用调理污泥费用低、处理效果好.  相似文献   

4.
宋永伟  刘奋武  周立祥 《环境科学》2012,33(8):2786-2792
通过实验室摇瓶试验和实际工程应用试验研究了不同污泥浓度(2%~5%)下,营养剂加入量对生物沥浸促进城市污泥脱水性能的影响,同时分析了pH值和营养剂利用率的变化.结果表明,生物沥浸过程中,不同浓度污泥各处理下pH值均呈直线下降后趋于稳定的趋势;生物沥浸2 d后,各处理中营养剂几乎都被微生物完全利用;2%、3%、4%、5%浓度污泥比阻随着沥浸时间的延长先迅速减小后逐渐回升,且浓度越高回升幅度越大,各浓度污泥选择最佳营养剂浓度分别为3.0、4.5、8.3和12.8 g.L-1,此时污泥最低比阻分别为0.61×1012、1.22×1012、3.09×1012和4.83×1012m.kg-1.通过工程应用试验表明,将5%浓度城市污泥稀释成3%浓度再生物沥浸的方法不仅能够改善生物沥浸污泥脱水性能,表现在比阻从3.29×1012m.kg-1下降到1.10×1012m.kg-1,同时还可以缩短污泥停留时间(从4 d缩短为2.35 d)及降低运行成本.这为生物沥浸工艺处理高浓度污泥运行参数的优化提供了科学依据.  相似文献   

5.
采用有效容积为700 L的推流式生物沥浸反应器对城市污泥进行连续14 d的生物沥浸处理,利用折流方式将反应器从进泥端到排泥端沿程方向依次划分为1~6区.对不同污泥停留时间(SRT)条件下反应器运行时各区的pH.溶解氧(DO)值及污泥的脱水性能(用污泥比阻SRF表征)进行了系统的比较研究.结果表明,当反应器曝气量为1.2 m3.h-1,微生物营养剂加入量为4 g.L-1,SRT为2.5 d时,反应系统在72 h时运行达到稳定,相应反应器各区的pH分别为5.00、3.00、2.90、2.70、2.60与2.40.污泥的比阻值由1区的0.64×1013m.kg-1逐渐降低至6区的0.33×1013m.kg-1.当SRT为2 d时,生物沥浸系统在120 h达到稳定,各区相应的pH分别为5.10、4.10、3.20、2.90、2.70与2.60.相应的DO值分别为0.43、1.47、3.29、4.76、5.75与5.88 mg.L-1.污泥的比阻值由1区的0.56×1013m.kg-1逐渐降低至6区的0.20×1013m.kg-1.当SRT为1.25 d时,运行第48 h,反应器6区pH升高至3.00.污泥沿程流动过程中,微生物菌群对营养剂利用率降低,导致系统失衡.生物沥浸反应器污泥停留时间越长,推流式生物沥浸系统越易达到稳定.停留时间2 d可以作为工程应用时的较优污泥停留时间.生物沥浸后将污泥收集经过增强聚丙烯厢式压滤机脱水至含水率60%以下,此研究将为城市污泥生物沥浸后期工程化运行提供必要的参数支持.  相似文献   

6.
通过摇瓶培养试验研究了生物沥浸处理对精对苯二甲酸(PTA)化工污泥脱水性能和重金属去除效果的影响.研究表明,PTA污泥经生物沥浸后脱水效果得到了较好的改善,且营养剂最佳投加量为5g·L-1.经生物沥浸2d后污泥的pH从7.37下降到2.29,比阻从62.64×1012m·kg-1下降到2.36×1012m·kg-1,降低了96.23%.在最佳处理条件下对该化工污泥进行多批次生物沥浸中试试验,并对沥浸后污泥采用厢式压滤机脱水.结果表明,经生物沥浸处理后污泥静置24h,污泥沉降率可从2%提高到33%,厢式压滤脱水后泥饼含水率下降到45.9%,与对照相比,污泥体积减少了91.1%.泥饼中Cu、Cd、Pb、Zn、Co的去除率分别为95.15%、85.20%、42.11%、82.59%和64.42%;滤液中COD和氨态氮去除率分别为42.82%和74.98%.可见,生物沥浸法不仅能够较好地改善化工污泥的脱水性能,还能脱除污泥中的重金属.这对生物沥浸技术在PTA化工污泥上的应用和推广具有重要意义.  相似文献   

7.
探讨城市污泥生物沥浸过程中微生物菌群和胞外聚合物(EPS)变化对污泥脱水性能的影响,对进一步揭示生物沥浸法提高污泥脱水性能机理具有重要意义.本研究通过摇瓶试验探讨了硫杆菌和异养微生物菌群数量的变化及EPS在生物沥浸法提高城市污泥脱水性能中的作用.试验结果表明,在生物沥浸处理的前2 d内,由于硫杆菌A.ferrooxidans LX5和A.thiooxidans TS6的大量生长,导致生物沥浸污泥的pH从初始的4.62显著下降至2.47,进而导致污泥中异养菌数量从初始的2.65×108CFU·mL-1下降至8.20×106CFU·mL-1,污泥中EPS含量从初始的28.18 mg·g-1(以VSS计,下同)显著下降为13.53 mg·g-1.A.ferrooxidans LX5和A.thiooxidans TS6的大量生长、异养微生物细胞的死亡破裂及EPS含量的下降共同促使污泥的结合水含量从初始的37.28%下降至21.10%,最终导致污泥比阻从初始的5.14×1012m·kg-1显著下降至6.92×1011m·kg-1.通过验证试验发现,原始污泥在剥离EPS后其比阻仅为原来的11.23%,其脱水性能与生物沥浸2 d后的污泥在0.05水平上没有显著性差异.因此,污泥中A.ferrooxidans LX5、A.thiooxidans TS6和异养微生物菌群数量的改变及EPS含量的减少是生物沥浸法提高污泥脱水性能的两个重要因素.  相似文献   

8.
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   

9.
研究城市生物沥浸污泥脱水性能与污泥静置沉降时间的关系,对城市污泥生物沥浸工程化应用具有指导性作用.因此,以城市生物沥浸污泥为研究对象,研究了低温条件下(5℃和15℃)污泥静置0~6d过程中,污泥pH值和脱水性能(用比阻γ表征)的变化情况.同时,对实验室污泥比阻与厢式压滤机中试结果进行了相关性分析.结果表明:温度增加将有利于污泥沉降,在实际运行中沥浸污泥可选择静置0.5d再进行压滤脱水.随着静置时间的延长,冬季(5℃)和春季(15℃)城市沥浸污泥pH值和比阻均呈逐渐上升的趋势.静置6d后,pH值分别从3.93和3.87上升到5.10和5.32,比阻γ分别从1.72×1012m·kg-1和1.76×1012m·kg-1上升到3.08×1012m·kg-1和5.82×1012m·kg-1.实验室污泥比阻测定和厢式压滤机中试结果表明,不同静置时间下污泥比阻γ与压滤机压滤脱水V-t/V曲线(V:滤液体积;t:过滤时间)斜率k呈极显著正相关关系,说明用污泥比阻γ能准确地反映出生物沥浸污泥的压滤脱水性能.这对生物沥浸技术在工程上的应用和推广具有重要意义.  相似文献   

10.
研究了Fenton氧化技术在改善污泥脱水性能方面的效果,以污泥比阻和毛细吸水时间来表征污泥的脱水性能,探讨了体系的pH和反应时间对污泥脱水性能的影响以及Fenton氧化对污泥溶解性物质(SCOD+多聚糖+蛋白质)含量的影响研究表明,Fenton氧化能够明显改善污泥的脱水性能。在体系的pH=3时,反应1h后,Fenton氧化处理后污泥的CST从处理前的130.9s减少到19.7s,降幅85%;污泥SRF从处理前的3.58×108 s2/g降低到1.05×107 s2/g,降幅97%。同体系处理污泥SCOD、上清液中多聚糖和蛋白质的含量分别增加了3.7倍、2.6倍和1.5倍。  相似文献   

11.
Sewage sludge from a biological wastewater treatment plant was converted into sewage sludge based activated carbon(SBAC) with Zn Cl2 as activation agent, which was used as a support for ferric oxides to form a catalyst(Fe Ox/SBAC) by a simple impregnation method.The new material was then used to improve the performance of Fenton oxidation of real biologically pretreated coal gasification wastewater(CGW). The results indicated that the prepared Fe Ox/SBAC significantly enhanced the pollutant removal performance in the Fenton process, so that the treated wastewater was more biodegradable and less toxic. The best performance was obtained over a wide p H range from 2 to 7, temperature 30°C, 15 mg/L of H2O2 and 1 g/L of catalyst, and the treated effluent concentrations of COD, total phenols,BOD5 and TOC all met the discharge limits in China. Meanwhile, on the basis of significant inhibition by a radical scavenger in the heterogeneous Fenton process as well as the evolution of FT-IR spectra of pollutant-saturated Fe Ox/BAC with and without H2O2, it was deduced that the catalytic activity was responsible for generating hydroxyl radicals, and a possible reaction pathway and interface mechanism were proposed. Moreover, Fe Ox/SBAC showed superior stability over five successive oxidation runs. Thus, heterogeneous Fenton oxidation of biologically pretreated CGW by Fe Ox/SBAC, with the advantages of being economical, efficient and sustainable, holds promise for engineering application.  相似文献   

12.
为研究以硫酸亚铁铵(FAS)+硫粉(S0)为底物的生物沥浸过程中,污泥的脱水性能及其与胞外聚合物(EPS)中蛋白质(PN)、多糖(PS)的关系,设计了新鲜污泥、新鲜污泥+10%接种物、新鲜污泥+10%接种物+(0,2,4,6 g/L)FAS+(0,2,4,6 g/L)S0的3个实验组进行10 d沥浸实验。结果表明:投加量为4g/L FAS+2 g/L S0,沥浸时间为6 d时污泥脱水性能最佳,污泥比阻(SRF)和黏度较原始污泥分别下降了83.11%和65.74%。EPS中溶解态PN、PS和结合态PN、PS的含量都随沥浸实验的进行而改变,其中溶解态PS与黏度、SRF呈显著负相关(R分别为-0.813、-0.813,P<0.05),说明溶解态PS的含量是影响污泥脱水性能的主要因素。进一步分析得出,溶解态PS总量随沥浸时间延长而升高,其中疏水性PS的占比随之增加,污泥脱水性相应改善。  相似文献   

13.
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   

14.
刘奋武  周立祥  周俊  姜峰  王电站 《环境科学》2011,32(7):2023-2029
为了考察生物沥浸法对城市污泥脱水性能的影响.利用一个兼有序批式与连续式运行模式、工作体积为700 L的生物沥浸反应器对城市污泥进行了连续3批生物沥浸中试研究,并采用厢式压滤机对处理后污泥进行脱水处理.结果表明,曝气量为1.2 m^3/h,含嗜酸性硫杆菌的酸化污泥与待处理的原始污泥体积比为1∶15时,在90 h内完成首批...  相似文献   

15.
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   

16.
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   

17.
The potentially hazardous iron-containing sludge from the Fenton process requires proper treatment and disposal, which often results in high treatment cost. In this study, a novel method for the reuse of Fenton sludge as an iron source for the synthesis of nickel ferrite particles(NiFe_2O_4) is proposed. Through a co-precipitation method followed by sintering at 800°C, magnetic NiFe_2O_4 particles were successfully synthesized, which was confirmed by powder X-ray diffraction(XRD), scanning electronic microscopy(SEM), energy dispersive spectroscopy(EDS), Fourier transform infrared spectroscopy(FT-IR) and Raman spectroscopy. The synthesized NiFe_2O_4 could be used as an efficient catalyst in the heterogeneous Fenton process. In phenol degradation with H_2O_2 or NiFe_2O_4 alone, the phenol removal efficiencies within the reaction time of 330 min were as low as 5.9% ± 0.1% and 13.5% ±0.4%, respectively. However, in the presence of both NiFe_2O_4 and H_2O_2, phenol removal efficiency as high as 95% ± 3.4% could be achieved, indicating the excellent catalytic performance of NiFe_2O_4 in the heterogeneous Fenton process. Notably, a rapid electron exchange between_Ni II and_Fe III ions in the NiFe_2O_4 structure could be beneficial for the Fenton reaction. In addition, the magnetic catalyst was relatively stable, highly active and recoverable, and has potential applications in the Fenton process for organic pollutant removal.  相似文献   

18.
Microwave (MW) hybrid processes are able to disrupt the flocculent structure of complex waste activated sludge, and help promote the recovery of phosphorus as struvite. In this study, to optimize struvite yield, (1) the characteristics of matter released in MW-hybrid treatments were compared, including MW, MW-acid, MW-alkali, MW-H2O2, and MW-H2O2-alkali. The results showed that selective release of carbon, nitrogen, phosphorus, Ca2 +, and Mg2 + achieved by sludge pretreatment using MW-hybrid processes. MW-H2O2 is the recommended sludge pretreatment process for phosphorus recovery in the form of struvite. The ratio of Mg2 +:NH4+-N:PO43 −-P was 1.2:2.9:1 in the supernatant. (2) To clarify the effects of organic matter on struvite recovery, the composition and molecular weight distribution of organic matters were analyzed. Low molecular weight COD was found to facilitate the removal rate of NH4+-N and PO43-P via crystallization, and the amorphous struvite crystals (< 1 kDa) from the filtered solutions had high purity. Therefore, the present study reveals the necessity of taking into consideration the interference effect of high molecular weight organic matters during struvite crystallization from sewage sludge.  相似文献   

19.
为探讨生物淋滤过程中污泥的脱水性能及其与胞外聚合物(EPS)中蛋白质(PN)、多糖(PS)的关系,以硫粉(S0)作为底物,设计了不同S0投量(0,2,4,6,8g/L)+10%接种物的实验组进行10d淋滤实验.结果表明:溶解态PN、PS含量和污泥比阻(SRF)在淋滤0~2d降低,之后呈上升趋势,结合态PN、PS含量在淋滤0~8d呈下降趋势,之后略微上升,且S0投加量越大,上述变化趋势越明显.统计结果发现,SRF与溶解态PN、PS有显著的正相关性(R=0.861、0.875,P<0.01).说明不同S0投加量导致溶解态PN、PS含量变化从而影响了污泥脱水性能,其中溶解态PS的变化对污泥脱水性能作用更大.S0投量为8g/L、淋滤时间为2d时,污泥脱水效果最佳,S0投量为2g/L、淋滤时间6d效果次之,SRF分别比原污泥降低58%和54%,又由于后者重金属去除率高于前者,推荐S0 2g/L,温度30℃,淋滤时间6d,pH值降至2.66为最适工艺条件.  相似文献   

20.
生物淋滤联合类Fenton反应去除污染土壤中重金属的效果   总被引:3,自引:1,他引:2  
周普雄  严勰  余震  王跃强  朱艺  周顺桂 《环境科学》2016,37(9):3575-3581
针对我国南方地区广泛存在的土壤重金属污染问题,以广东韶关铅锌矿周边污染农田土壤为研究对象,探讨利用生物淋滤方法与生物淋滤联合类Fenton反应对土壤Cu、Zn、Cd和Pb的去除效果,并采用序列化学提取(SEC)方法,分析不同处理对土壤中4种重金属形态分布的影响.结果表明,经12 d生物淋滤Cu、Zn、Cd和Pb的去除率分别达到66.5%、55.1%、72.8%和35.6%,其中无机结合态重金属去除效果最好,固相中剩余重金属主要以稳定的残渣态形式存在.2 d生物淋滤联合类Fenton反应在优化的H_2O_2浓度(5 g·L-1)下,对上述4种重金属的去除率分别为55.6%、50.6%、60.7%和30.5%,低于12 d生物淋滤处理,但显著高于H_2SO_4酸化、2 d生物淋滤、化学Fenton反应等对照处理.生物淋滤联合类Fenton反应可以实现原土壤中残渣态、有机结合态和无机结合态等较稳定态重金属的有效去除,使处理后土壤中4种重金属Cu、Zn、Cd和Pb的含量分别低于50、200、0.3和250 mg·kg~(-1)的标准限值.该方法兼具生物淋滤高去除效率和Fenton反应快速处理等优势,对于修复重金属Cu、Zn、Cd和Pb等复合污染的土壤具应用前景.  相似文献   

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