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41.
水稻不同生育期根际及非根际土壤砷形态迁移转化规律   总被引:10,自引:6,他引:4  
选取湖南某矿区污染稻田土,以盆栽试验的方式,采用美国TCLP(toxicity characteristic leaching procedure)和砷形态分析分级测定法,研究了水稻(Oryza sativa L.)各生育期(分蘖期、拔节期、孕穗期、灌浆期、成熟期)根际和非根际土壤中砷的赋存形态及转化规律.结果表明:1随着水稻生育期的延长,根际及非根际土壤p H值和砷TCLP提取态含量均逐渐上升,且非根际土壤p H值和砷TCLP提取态含量均高于同时期根际土壤.2水稻各生育期根际和非根际土壤中交换态砷(AE-As)含量均低于水稻种植前,并随着水稻生育期的延长逐渐上升.与水稻种植前相比,铝型砷(Al-As)、铁型砷(Fe-As)和钙型砷(Ca-As)含量在水稻种植后逐渐上升,但并不显著.残渣态砷(O-As)和总砷(T-As)含量在水稻种植后逐渐下降,在根际土壤中下降了37.30%和14.69%,在非根际土壤中分别下降了31.38%、8.67%.3在水稻不同生育期,土壤中各形态砷含量均表现为:残渣态铁型砷铝型砷钙型砷交换态砷.在p H值为5.0~5.8的范围内,各砷形态和砷TCLP提取态含量与p H值之间大都呈极显著或显著正相关,但根际土壤中钙型砷与p H值的相关关系较差.  相似文献   
42.
Understanding the effects of oxalic acid (OA) on the immobilization of Pb(II) in contaminated soils by phosphate materials, has considerable benefits for risk assessment and remediation strategies for the soil. A series of phosphate amendments with/without oxalic acid were applied to two anthropogenic contaminated soils. We investigated the immobilization of Pb(II) by KH2PO4, phosphate rock (PR), activated phosphate rock (APR) and synthetic hydroxyapatite (HAP) at different phosphate:Pb (P:Pb) molar ratios (0, 0.6, 2.0 and 4.0) in the presence/absence of 50 mmol oxalic acid/kg soil, respectively. The effects of treatments were evaluated using single extraction with deionized water or CaCl2, Community Bureau of Reference (BCR) sequential extraction and toxicity characteristic leaching procedure (TCLP) methods. Our results showed that the concentration of water extractable, exchangeable and TCLP-Pb all decreased with incubation time. The concentration of water-extractable Pb after 120 days was reduced by 100% when soils were amended with APR, HAP and HAP + OA, and the TCLP-Pb was <5 mg/L for the red soil at P:Pb molar ratio 4.0. Water-soluble Pb could not be detected and the TCLP-Pb was <5 mg/L at all treatments applied to the yellow-brown soil. BCR results indicated that APR was most effective, although a slight enhancement of water-soluble phosphate was detected at the P:Pb molar ratio 4.0 at the beginning of incubation. Oxalic acid activated phosphates, and so mixing insoluble phosphates with oxalic acid may be a useful strategy to improve their effectiveness in reducing Pb bioavailability.  相似文献   
43.
我国城市污泥中重金属的赋存形态与生态风险评价   总被引:1,自引:0,他引:1  
为全面了解中国城市污水处理厂脱水污泥中重金属(HMs)的形态特征和污染状况,本研究以我国40座城市污水处理厂的剩余污泥为研究对象,对污泥中重金属As、Cd、Cr、Cu、Ni、Pb和Zn的总量以及赋存形态进行了测定.采用毒液浸出法(TCLP)、风险评价编码法(RAC)和潜在生态风险指数法评价了其生态风险.结果表明,40个样品中重金属含量的中位值由大到小依次为:Zn > Cu > Cr > Pb > Ni > As > Cd,各元素整体达标率>90%.As的各形态分布较为平均;Cd和Zn以可还原态为主;Cr主要以残渣态的形式存在,其次为可氧化态和可还原态;Cu主要以可氧化态的形式存在;Ni主要以可交换态的形式存在;Pb主要以可还原态和残渣态的形式存在,可交换态的含量最低.TCLP提取态重金属的比例大小顺序为:Ni > As > Zn > Cd > Cu > Cr,所有样品中Pb的TCLP提取态含量均低于检出限;RAC法评价结果显示,7种重金属环境风险大小依次为:Ni > As > Zn > Cd > Cu > Cr > Pb,Ni的生态风险等级为高等,Zn、As和Cd的生态风险等级为中等,Cr和Cu的生态风险等级为低等,Pb无生态风险;潜在生态风险评价结果表明,城市污泥中Cd和Cu的潜在生态风险最高,是我国城市污泥中主要的重金属污染物,但是如果按照国家标准规定的方法进行农用,造成土壤污染的风险总体处于较低水平.  相似文献   
44.
2种组配改良剂对稻田土壤重金属有效性的效果   总被引:20,自引:0,他引:20  
为研究2种组配改良剂LS(碳酸钙+海泡石)和HZ(羟基磷灰石+沸石)对土壤重金属的生物有效性以及水稻吸收累积重金属的影响,在湘南某矿区附近污染稻田中施用了不同添加量(0,2,4,8g/kg)的两种组配改良剂,并进行了水稻种植的田间试验.结果表明,施用2~8g/kg组配改良剂LS和HZ均能使土壤pH值和CEC含量显著增加,有机质含量变化不明显,LS比HZ更能提高土壤pH值和CEC含量.施用2~8g/kg组配改良剂LS能使土壤中Pb、Cd、Cu和Zn的TCLP提取态含量分别降低25.7%~52.2%、12.7%~25.7%、6.4%~17.2%和8.6%~23.4%,施用2~8g/kg HZ使土壤中Pb、Cd、Cu和Zn的TCLP提取态含量分别降低57.6%~80.1%、7.0%~40.9%、2.3%~22.7%和4.5%~33.2%.两种组配改良剂能显著降低土壤中Pb、Cd、Cu和Zn的生物有效性,抑制水稻植株对Pb和Cd的吸收,土壤Pb、Cd和Cu的TCLP提取态含量与水稻根系和糙米中Pb、Cd和Cu的含量之间存在显著或极显著的正相关关系,TCLP提取态含量能较好的表示重金属在土壤中的生物有效性.  相似文献   
45.
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   
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