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1.
Liming materials have been used to immobilize heavy metals in contaminated soils. However, no studies have evaluated the use of eggshell waste as a source of calcium carbonate (CaCO3) to immobilize both cadmium (Cd) and lead (Pb) in soils. This study was conducted to evaluate the effectiveness of eggshell waste on the immobilization of Cd and Pb and to determine the metal availability following various single extraction techniques. Incubation experiments were conducted by mixing 0–5% powdered eggshell waste and curing the soil (1,246 mg Pb kg?1 soil and 17 mg Cd kg?1 soil) for 30 days. Five extractants, 0.01 M calcium chloride (CaCl2), 1 M CaCl2, 0.1 M hydrochloric acid (HCl), 0.43 M acetic acid (CH3COOH), and 0.05 M ethylendiaminetetraacetic acid (EDTA), were used to determine the extractability of Cd and Pb following treatments with CaCO3 and eggshell waste. Generally, the extractability of Cd and Pb in the soils decreased in response to treatments with CaCO3 and eggshell waste, regardless of extractant. Using CaCl2 extraction, the lowest Cd concentration was achieved upon both CaCO3 and eggshell waste treatments, while the lowest Pb concentration was observed using HCl extraction. The highest amount of immobilized Cd and Pb was extracted by CH3COOH or EDTA in soils treated with CaCO3 and eggshell waste, indicating that remobilization of Cd and Pb may occur under acidic conditions. Based on the findings obtained, eggshell waste can be used as an alternative to CaCO3 for the immobilization of heavy metals in soils.  相似文献   

2.
采用盆栽实验,研究了海泡石、酸改性海泡石以及二者与磷酸盐联合使用对镉铅复合污染稻田土壤的钝化修复效果,并通过培养实验和重金属形态分析探讨了不同钝化剂处理的作用机理。结果表明:添加海泡石可以显著提高污染土壤pH值,而磷酸盐和改性海泡石则对土壤pH值无显著影响。钝化处理能显著降低土壤TCLP提取态Cd、Pb的质量分数,最大降低率分别可达23.3%和47.2%,钝化剂复配处理对土壤TCLP提取态重金属的抑制效果优于单一处理。施用海泡石和磷酸盐,通过提高土壤pH值、物理化学吸附以及生成矿物沉淀等作用,可以促进污染土壤中的Cd、Pb由活性高的交换态向活性低的残渣态转化,从而显著降低Cd、Pb的生物有效性和迁移能力。添加钝化剂可以显著提高水稻各部位的产量,稻谷和稻草的最大增产率分别为34.3%和26.6%;钝化剂复配处理对水稻的增产作用明显优于单一处理。施用钝化剂可以显著降低水稻各部位的Cd、Pb质量分数,最大可使精米的Cd、Pb质量分数分别降低35.8%和40.9%,钝化剂复配处理对水稻吸收Cd、Pb的抑制作用明显优于单一处理,海泡石和磷酸盐复配处理中精米的Cd、Pb质量分数符合国家食品卫生标准要求。综合分析不同钝化处理的增产作用、降低作物Cd、Pb吸收以及土壤Cd、Pb可迁移性的作用可知,海泡石与磷酸盐复配处理对稻田土壤Cd、Pb复合污染的钝化修复效果最佳。  相似文献   

3.
改良剂对红蛋植物修复污染土壤重金属铅和镉效果的影响   总被引:3,自引:0,他引:3  
通过盆栽试验研究了在重度重金属混合污染土壤上,施用不同配比的石灰和泥炭(T1,泥炭0 g·kg^-1土,石灰2 g·kg^-1土;T2,泥炭30 g·kg^-1土,石灰0 g·kg^-1土;T3,泥炭50 g·kg^-1土,石灰0g·kg^-1土;T4,泥炭30 g·kg^-1土,石灰2g·kg^-1土;T5,泥炭50 g·kg^-1土,石灰2g·kg^-1土)对红蛋(Echinodorus osiris)生长及其去除污染土壤铅、镉量的影响,探讨了化学修复和植物提取修复技术相结合修复重金属污染土壤的可能性。研究结果表明,施用石灰显著提高了土壤pH,施用泥炭不显著;施用石灰和泥炭后土壤中交换态铅、镉含量较CK显著降低,红蛋地上部和地下部铅、镉含量较CK有不同程度降低,T4、T5处理降低不显著;T3、T4、T5处理显著地提高了红蛋的铅单株迁移量和年迁移量,年迁移量分别为CK的2.1倍、2.6倍和2.8倍;T1、T2、T3、T4、T5处理显著地提高了红蛋的镉单株迁移量和年迁移量,年迁移量分别为CK的1.8倍、2.9倍、2.9倍、2.8倍和2.9倍,其主要原因在于施用土壤改良剂改善了红蛋的生长,显著增加了地上部生物量。结合经济效益方面因素考虑,以施用泥炭30g·kg^-1土和石灰2g·kg^-1土的处理更适合推广运用。  相似文献   

4.
采用盆栽与大田实验相结合的方法,研究了增施鸡粪对Cd污染菜地土壤海泡石钝化修复效应及土壤酶活性的影响.结果表明,海泡石钝化修复下,增施鸡粪比单施鸡粪和单一海泡石钝化修复对小白菜生物量具有更好的增产效果.单施鸡粪虽然可以降低小白菜体内Cd含量,但与对照相比不明显;而在海泡石钝化修复下,增施鸡粪可以显著降低小白菜可食部和根部对Cd的吸收积累(P0.05),与对照相比,盆栽试验中各处理降低幅度分别为26.9%—32.1%和7.7%—24.8%;大田条件下则分别降低7.5%和16.4%.随着单施鸡粪量的增加,菜地土壤p H值呈逐渐降低趋势,单一海泡石钝化处理下,菜地土壤p H与对照相比变化不明显,而在海泡石钝化修复下,增施鸡粪后土壤p H降低幅度要小于单施鸡粪处理.不同处理下菜地土壤有效态Cd含量均较对照处理有所降低.其中,海泡石钝化修复下,增施鸡粪效果最显著,盆栽实验和大田试验下最大降幅分别为17.7%和10.3%.海泡石钝化修复下,增施鸡粪可显著提高土壤过氧化氢酶、脲酶和蔗糖酶活性(P0.05),与对照相比,盆栽实验中三种酶的含量分别增加6.4%—38.6%、14.0%—47.6%和2.0%—22.4%;田间实验下,三种酶的含量分别增加36.5%、22.2%和5.5%.Cd污染菜地土壤下,增施适量鸡粪不仅可以起到强化Cd钝化修复效应,而且可以进一步提高土壤酶活性,改善Cd污染土壤环境质量.  相似文献   

5.
石灰氮对镉污染土壤中镉生物有效性的影响   总被引:3,自引:0,他引:3  
以石灰作对比,在大田条件下研究了不同石灰氮用量对镉污染土壤中镉生物有效性的影响。结果表明,一定量石灰或石灰氮处理均能显著提高酸性土壤的pH值,降低污染土壤中有效态镉质量分数及水稻茎叶和糙米中的镉质量分数。与不施改良剂的对照相比,石灰施用量达到1 200 kg.hm-2时土壤pH值显著提高,土壤有效态镉质量分数降低12.6%(P〈0.05),水稻茎叶和糙米中镉质量分数分别降低25.5%(P〈0.05)和28.3%(P〈0.05);石灰氮施用量达到600 kg.hm-2时,土壤pH值显著高于对照,土壤有效态镉质量分数较对照降低10.9%(P〈0.05),水稻茎叶和糙米中镉质量分数分别降低36.8%(P〈0.05)和33.0%(P〈0.05)。等量条件下(600 kg.hm-2)石灰氮对降低土壤镉有效性及水稻累积镉的效果相对优于石灰处理。因此,石灰氮与石灰一样可用于酸性重金属污染土壤的修复与改良,是一种极具潜力的土壤改良剂。  相似文献   

6.
硅和磷配合施入对镉污染土壤的修复改良   总被引:4,自引:0,他引:4  
徐应星  李军 《生态环境》2010,19(2):340-343
为了研究两种改良剂配合施入对重金属污染土壤的改良效果,以棕壤为供试土壤,以玉米(OryzasativaL.)作为供试作物,采用二元二次正交回归组合设计方法,通过室外盆栽试验,研究了硅和磷配合施入对镉污染土壤中玉米生物量以及玉米茎叶中镉吸收量的影响。结果表明:硅、磷施入都能增加镉污染条件下玉米的生物量,其中磷的增产作用大于硅;硅、磷施入都能降低镉污染条件下玉米茎叶中的镉含量,硅降低玉米茎叶中镉含量的效应大于磷;硅、磷配合施入降低玉米茎叶中镉含量的效果大于上述两种改良剂单独施入。在本实验条件范围内,当硅为6.60g·kg-1,磷施入量范围在2.29~2.39g·kg-1时,玉米茎叶中镉含量为最低。因此可以由硅磷配合施入改良重金属污染的土壤。  相似文献   

7.
陈苏  孙丽娜  晁雷  周启星  孙铁珩 《生态环境》2010,19(7):1659-1662
近年来,污染土壤修复技术发展很快,而污染土壤修复标准的建立则相对迟缓。为了推进我国该领域的工作,对铅胁迫下土壤酶活性(如过氧化氢酶,磷酸酶,脲酶)随时间的变化进行了研究,以确定棕壤土中铅的土壤修复基准。结果表明:土壤中的铅能够刺激土壤中过氧化氢酶活性的增加,但随着土壤铅浓度的增加,这种刺激作用逐渐减小。土壤过氧化氢酶活性不宜作为铅污染土壤的生物标记物。土壤磷酸酶活性没有一致的变化规律,土壤磷酸酶活性不能作为铅污染土壤的生物标记物。在整个实验时间范围内,土壤脲酶活性与土壤中铅的浓度具有明显的剂量-效应关系(P〈0.01),土壤脲酶活性可以作为铅污染土壤生物标记物。以土壤脲酶抑制率降低25%为依据,确定棕壤中铅的土壤修复基准为94mg·kg-1,以土壤脲酶抑制率降低45%为依据,确定棕壤中铅的土壤修复基准为178mg·kg-1。  相似文献   

8.
Phosphates can cost-effectively decrease the mobility of Pb in contaminated soils. However, Pb always coexists with other metals in soil, their competitive reactions with phosphates have not been tested. In this study, the abilities of KH2PO4, K2HPO4, and K3PO4 to stabilize Pb, Zn, and Cd in soils contaminated with a single metal or a ternary metal for different phosphorus/metal molar ratios were investigated. Results indicated that the stabilization efficiency of KH2PO4, K2HPO4, and K3PO4 for Pb, Zn, and Cd in single metal contaminated soil (P/M ratio 0.6) was 96.00%–98.74%, 33.76%–47.81%, and 9.50%–55.79%, respectively. Competitive stabilization occurred in the ternary system, Pb exhibited a strong competition, the stabilization efficiency of Zn and Cd reduced by 23.50%–31.64%, and 7.10%–39.26%, respectively. Pyromorphite and amorphous lead phosphate formed with excess KH2PO4 or K2HPO4 addition, while K3PO4 resulted in the formation of a hydroxypyromorphite precipitate. Amorphous Zn and Cd phosphates and hydroxides were the primary products. The immobilization rate of Zn and Cd depends on pH, and increased significantly in response to the excess phosphate application. This approach provides insight into phosphate-induced differences in stabilization efficiency in soils contaminated with multiple metals, which is of theoretical and engineering significance.
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9.
Geochemical analyses using a sequential extraction method and lead adsorption studies were carried out in order to characterize the distribution and adsorption of lead on each genetic horizon of a Luvisol profile developed on a pelagic clayey aleurolite. Clay illuviation is the most important pedogenic process in the profile studied. Its clay mineralogy is characterized by chlorite/vermiculite species with increasing chlorite component downward. The amount of carbonate minerals strongly increases in the lower part of the profile resulting in an abrupt rise in soil pH within a small distance. The Pb content of the soil profile exceeds the natural geochemical background only in the Ao horizon, and its amount decreases with depth in the profile without correcting for differences in bulk density, suggesting the binding of Pb to soil organic matter. According to the sequential extraction analysis the organic matter and carbonate content of the soil have the most significant effect on lead distribution. This effect varies in the different soil horizons. Lead adsorption experiments were carried out on whole soil samples, soil clay fractions, as well as on their carbonate and organic matter free variant. The different soil horizons adsorb lead to different extents depending on their organic matter, clay mineral and carbonate content; and the mineralogical features of soil clays significantly affect their lead adsorption capacity. The clay fraction adsorbs 25 more lead than the whole soil, while in the calcareous subsoil a significant proportion of lead is precipitated due to the alkaline conditions. 10 and 5 of adsorbed Pb can be leached with distilled water in the organic matter and clay mineral dominated soil horizons, respectively. These results suggest that soil organic matter plays a decisive role in the adsorption of Pb, but the fixation by clay minerals is stronger.*This study was presented at the 20th European SEGH conference in Debrecen, Hungary, 2002.  相似文献   

10.
A pot experiment was conducted to evaluate the effectiveness of sepiolite-induced immobilisation remediation of Cd contaminated soil. The results demonstrated that adding sepiolite significantly increased the soil pH and resulted in 35.1–66.0%, 30.3–48.9%, and 31.6–51.6% reduction in toxicity characteristic leaching procedure of Cd (TCLP-Cd), respectively, for the Cd levels of 1.25, 2.5, and 5?mg/kg compared with the no-sepiolite controls. These decreases in TCLP-Cd were associated with reductions in plant phyotoxicity and Cd absorption, and sepiolite-treated soils resulted in increases of 3.2–38.0%, 34.2–52.3%, and 8.4–51.5% in shoot biomass, respectively, and in decreases of 26.7–39.6%, 17.3–28.5%, and 6.1–21.8% in shoot Cd contents, respectively, under soil Cd concentration of 1.25, 2.5 and 5?mg/kg compared to the unamended soils. The greater microbial biomass and catalase and urease activities after applying sepiolite implied a certain degree of recovery in metabolic function recovery during soil remediation. These results demonstrated that the application of sepiolite not only was effective at reducing Cd bioavailability and the rate of Cd accumulation in plants, but also improved soil environmental quality.  相似文献   

11.
Addition of plant residue into soils improves soil physiochemical properties and its fertility. Rapeseed residue is an emerging N source to paddy soils via rice-rape double-cropping practice. The objective of this study was to evaluate the effects of rapeseed residue and eggshell waste on chemical changes and enzyme activity in the rice paddy soil. The powdered eggshells at 0, 1, 3, and 5% were applied once to 7.0 kg paddy repacked soils in each pot treated with the rapeseed residue or the conventional N, P, and K fertilisers. Eight rice seedlings (Oriza sativa L. cv. Ilmibyeo) (40 days after sowing) were transplanted to the treated each pot. The contents of total C (TC) and N (TN), and organic matter (OM) were significantly increased in soils treated with the rapeseed residue compared to the N, P, and K fertilisers. With the addition of eggshell containing ~92% CaCO3, a considerable increase of soil pH was observed in soils treated with the rapeseed residue and the N, P, and K fertilisers, compared to the untreated soil. Activities of β-glucosidase, urease, and arylsulfatase enzymes were higher in soils treated with the rapeseed residue than soils treated with the N, P, and K fertilisers. The eggshell additions at 1, 3, and 5% into soils treated with the rapeseed residue increased enzyme activity mainly resulting from N mineralisation, whereas no change in enzyme activity was observed in the soils treated with the NPK fertiliser. The combined use of the rapeseed residue and the eggshells can be beneficial to improve soil environment.  相似文献   

12.
近些年来,有关施加电场以去除土壤中污染物的报道较多,但是关于电动力学对土壤肥力的影响方面的报道很少。文章研究了电动力学(1V·cm-1)对土壤肥力的影响。修复前后测量的指标有土壤有机质(SOM)、pH、电导率(EC)、氧化还原电位(ORP)、有效氮、速效磷、速效钾。镉质量分数约为100mg·kg-1的模拟污染土壤经电动力学处理60h后,镉的平均去除效率为71%。土壤中的有效氮、速效磷和速效钾分别平均增加38.49%、47.55%和26.81%,同时TOC也增加了7.96%。总之,电动力学修复后,土壤的肥力有了明显的提升。研究结果表明,电动力学在有效去除土壤中镉的同时还能提升土壤的肥力,是一种可行的土壤修复技术。  相似文献   

13.
土壤性质对水稻土中外源镉与铅生物有效性的影响   总被引:4,自引:0,他引:4  
为定量了解土壤理化性质对进入土壤中的外源镉和铅生物有效性的影响,采集了性质相差较大的16个水稻土,通过添加Cd(或Pb)培养和老化处理(Cd的加入量为0、0.2、0.5、1、2和5 mg·kg-1;Pb加入量为0、20、50、100、200和500 mg·kg-1,培养时间为1年),研究了不同土壤中Cd(或Pb)负荷与土壤中水溶态和交换态Cd(或Pb)的关系.结果表明,随着Cd(或Pb)污染水平的提高,土壤中水溶态和交换态Cd(或Pb)均显著增加,但不同土壤中水溶态和交换态Cd(或Pb)随土壤Cd(或Pb)积累的增加幅度有很大的差异.相关分析表明,水稻土中水溶性Cd(或Pb)主要与土壤Cd(或Pb)污染水平和pH值有关;而交换态Cd(或Pb)主要与土壤Cd(或Pb)污染水平、pH值、CEC及质地等有关.数据显示,pH值较高、质地较黏的土壤可大大减缓因污染引起的CA和Pb生物有效性的提高.  相似文献   

14.
改性天然磷灰石促进Pb/Zn复合污染土壤的稳定化修复   总被引:1,自引:0,他引:1  
采用草酸和柠檬酸分别与天然磷灰石共培养以对其改性,并将改性磷灰石用于Pb/Zn复合污染土壤的稳定化修复,借助XRD、FTIR等仪器方法表征改性磷灰石的物相组成及其P结合形态的转变,采用TCLP方法评价改性天然磷灰石对土壤重金属的修复效果.研究表明,草酸改性磷灰石诱导了草酸钙生成,并且32.4%的P由稳定形态转化为水溶态,而柠檬酸改性未能使磷灰石主要成分发生显著变化,仅有0.28%的P转化为水溶态P.与天然磷灰石相比,改性磷灰石提高了对Pb和Zn的稳定性.草酸改性磷灰石可同时有效地稳定土壤中的Pb和Zn,稳定化效率分别为68%—100%和64%—73%,其固定机制主要是形成难溶的磷酸盐沉淀;柠檬酸改性磷灰石对Pb和Zn的稳定化效率分别为20%和62%—69%,对Pb和Zn的稳定性主要是通过吸附作用.总之,草酸改性磷灰石对Pb和Zn的稳定化优于柠檬酸改性磷灰石,是一种高效经济的土壤重金属稳定化修复材料.  相似文献   

15.
Cadmium (Cd) and lead (Pb) in water and soil could be adsorbed by biochar produced from corn straw. Biochar pyrolyzed under 400°C for 2 h could reach the ideal removal efficiencies (99.24%and 98.62% for Cd and Pb, respectively) from water with the biochar dosage of 20 g·L–1 and initial concentration of 20 mg·L–1. The pH value of 4–7 was the optimal range for adsorption reaction. The adsorption mechanism was discussed on the basis of a range of characterizations, including X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), Fourier transform infrared spectroscopy (FTIR) and Raman analysis; it was concluded as surface complexation with active sorption sites (-OH, -COO-), coordination with π electrons (C = C, C = O) and precipitation with inorganic anions (OH-, CO3 2–, SO4 2–) for both Cd and Pb. The sorption isotherms fit Langmuir model better than Freundlich model, and the saturated sorption capacities for Cd and Pb were 38.91 mg·g-1 and 28.99 mg·g–1, respectively. When mixed with soil, biochar could effectively increase alkalinity and reduce bioavailability of heavy metals. Thus, biochar derived from corn straw would be a green material for both removal of heavy metals and amelioration of soil.
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16.
The rapid increase in population together with unplanned disposal of effluents from various industries has resulted in accumulation of various heavy metals like As, Cr, Cu, Hg, Ni, Pb and Zn in soil ecosystem which ultimately causes DNA damage in living systems. Considering this, the present study was designed to evaluate the content of various heavy metals (Cu, Cr, Co, Hg, Mn, Ni, Zn) and genotoxicity/mutagenicity of soil samples collected from the outskirts of two industries viz. zinc coating industry (SI) and copper sulphate manufacturing industry (SII) employing Allium root anaphase aberration assay (A/RAAA) and Ames assay. The physicochemical parameters like bulk density, water holding capacity, moisture content, pH, nitrates, phosphates and potassium were also estimated. It was observed that SI sample contained Ni (6.86 mg g-1), Zn (6.53 mg g-1), Co (5.05 mg g-1) and Cr (4.49 mg g-1), while SII contained Cu (32.86 mg g-1), Ni (9.66 mg g-1), Co (6.85 mg g-1) and Zn (5.41 mg g-1). In A/RAA assay, the percentage of cells with anaphase aberrations ranged from 3.63 to 10.67 and 0.38 to 4.83% for samples SI and SII, respectively. In Ames test, sample SII was found to be lethal to Salmonella tester strains at all concentrations used, while sample SI was found to be mutagenic in TA100 strains of Salmonella typhimurium. Sample SII was found to be strongly acidic with pH 3.46. The present study focuses on the increasing heavy metal pollution in Amritsar city due to industrial discharges over lands and also infers that both bioassays Ames and A/RAAA can serve as first alert indication of pollution.  相似文献   

17.
A stabilization/solidification treatment scheme was devised to stabilize Pb and Cu contaminated soil from a firing range using renewable waste resources as additives, namely waste oyster shells (WOS) and fly ash (FA). The WOS, serving as the primary stabilizing agent, was pre-treated at a high temperature to activate quicklime from calcite. Class C FA was used as a secondary additive along with the calcined oyster shells (COS). The effectiveness of the treatment was evaluated by means of the toxicity characteristic leaching procedure (TCLP) and the 0.1 M HCl extraction tests following a curing period of 28 days. The combined treatment with 10 wt% COS and 5 wt% FA cause a significant reduction in Pb (>98 %) and Cu (>96 %) leachability which was indicated by the results from both extraction tests (TCLP and 0.1 M HCl). Scanning electron microscopy–energy dispersive X-ray spectroscopy (SEM–EDX) analyses are used to investigate the mechanism responsible for Pb and Cu stabilization. SEM–EDX results indicate that effective Pb and Cu immobilization using the combined COS–FA treatment is most probably associated with ettringite and pozzolanic reaction products. The treatment results suggest that the combined COS–FA treatment is a cost effective method for the stabilization of firing range soil.  相似文献   

18.
以钙基蒙脱石原材料为空白对照,通过细胞活性实验和小鼠急性毒性实验对制备的土壤重金属钝化剂蒙脱石-OR-SH复合材料进行环境风险评价,结果显示,在受试样品浸出物浓度为8 mg/100 m L及以下时,蒙脱石-OR-SH及饱和吸附Cd的蒙脱石-OR-SH对K562细胞、人脐带间充质干细胞和人肝细胞的活性无显著性影响;小鼠毒性实验结果显示,其毒性分级1级,实际无毒性作用.蒙脱石-OR-SH修复Cd污染土壤的长效性盆栽研究显示,第一季的钝化效果显著,虽然之后效果依次递减,但在连续种植了四季盆栽后,蒙脱石-ORSH对土壤中的Cd仍保持显著的钝化效果.  相似文献   

19.
20.
利用溶剂分散法成功地将功能基团—SH嫁接到蒙脱石上,得到蒙脱石-OR-SH复合体材料,该复合体材料对Cd的饱和吸附容量可达37.82 mg·g-1(0.1 mol·L-1KNO3体系)和69.13 mg·g-1(不考虑离子浓度影响).通过小白菜盆栽和大田试验探讨了该复合体材料对Cd污染土壤的钝化效果.结果表明,在Cd污染土壤上施加蒙脱石-OR-SH复合体材料后,土壤中可交换态Cd形态占比分别低了64.51%(原土)和80.37%(3 mg·kg-1Cd含量的成化土),铁锰氧化结合态Cd形态占比分别提升了176.66%(原土)和418.31%(3 mg·kg-1Cd含量的成化土),降低了毒性元素Cd在土壤中的活性和可移动性,有效地固定了土壤中的Cd,小白菜中镉含量比对照分别降低了57.14%(原土)和60.64%(3 mg·kg-1Cd含量的成化土),同时能促进小白菜的生长.  相似文献   

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