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321.
Infiltration basins are frequently used for stormwater drainage. Because stormwater is polluted in highly toxic compounds, assessment of pollution retention by infiltration basins is necessary. Indeed, if basins are not effective in trapping pollution, deep soil and groundwater may be contaminated. This study's objective is to investigate soil pollution in infiltration basins: spatial distribution of soil pollution, optimisation of the number of soil samples and a contamination indicator are presented. It is part of a global project on long-term impact of stormwater infiltration on groundwater. Soil sampling was done on a basin in suburban Lyon (France). Samples were collected at different depths and analysed for nutrients, heavy metals, hydrocarbons and grain size. Pollutant concentrations decrease rapidly with depth while pH, mineralisation and grain size increase. Sustainable metal concentrations are reached at a 30-cm depth, even after 14 years of operation; hydrocarbon pollution is deeper. Principal component analysis shows how pollutants affect each level. The topsoil is different from other levels. Three specifically located points are enough to estimate the mass of pollution trapped by the basin with a 26% error. The proposed contamination indicator is calculated using either average level concentrations or maximum level concentrations. In both cases, the topsoil layer appears polluted but evaluation of lower levels is dependent on the choice of input concentrations.  相似文献   
322.
建筑小区雨水径流的土壤渗透净化   总被引:3,自引:0,他引:3  
讨论了建筑小区雨水径流的污染性、土壤渗透对小区径流的净化作用及土壤的渗透能力,提出了建筑小区雨水径流土壤渗透的工程实施方案。  相似文献   
323.
We designed a microcosm experiment to assess the influence of inoculation with Eisenia foetida earthworms and the establishment of an Avena sativa cover crop on biological (enzyme activities and labile carbon fractions) soil quality indicators in a soil treated with a composted organic residue, and to determine the contribution of these treatments to carbon dioxide emissions from the soil to the atmosphere of the microcosm. The microcosms were incubated for 53 days under 28 °C/18 °C day/night temperatures. The addition of earthworms and the planting of A. sativa increased dehydrogenase activity of compost amended soil by about 44% after 23 days of incubation. The metabolic potential, calculated as the ratio dehydrogenase activity/water soluble C, was higher in the compost amended soil planted with A. sativa. The highest total amount of CO2–C evolved occurred in the soil treated with composted residue and earthworms (about 40% of the total amount of CO2 evolved came from earthworm activity). The planting of A. sativa increased the decomposition rate constant of organic matter in the amended soil but decreased the potentially mineralizable C pool. In conclusion, the establishment of an A. sativa cover crop and the addition of E. foetida to a degraded agricultural soil treated with composted residue were effective treatments for improving the biological and biochemical quality and the metabolic potential of the soil.  相似文献   
324.
Mathematical models were developed to investigate the characteristics of gaseous ozone transport under various soil conditions and the feasibility of in situ ozone venting for the remediation of unsaturated soils contaminated with phenanthrene. On the basis of assumptions for the mass transfer and reactions of ozone, three approaches were considered: equilibrium, kinetic, and lump models. Water-saturation-dependent reactions of gaseous ozone with soil organic matter (SOM) and phenanthrene were employed. The models were solved numerically by using the finite-difference method, and the model parameters were determined by using the experimental data of Hsu [The use of gaseous ozone to remediate the organic contaminants in the unsaturated soils, PhD Thesis, Michigan State Univ., East Lansing, MI, 1995]. The transport of gas-phase ozone is significantly retarded by ozone consumption due to reactions with SOM and phenanthrene, in addition to dissolution. An operation time of 156 h was required to completely remove phenanthrene in a 5-m natural soil column. In actual situations, however, the operation time is likely to be longer than the ideal time because of unknown factors including heterogeneity of the porous medium and the distribution of SOM and contaminant. The ozone transport front length was found to be very limited (< 1 m). The sensitivity analysis indicated that SOM is the single most important factor affecting in situ ozonation for the remediation of unsaturated soil contaminated with phenanthrene. Models were found to be insensitive to the reaction mechanisms of phenathrene with either gas-phase ozone or dissolved ozone. More study is required to quantify the effect of OH* formation on the removal of contaminant and on ozone transport in the subsurface.  相似文献   
325.
Ni Y  Liang X  Chen J  Zhang Q  Ma L  Wu W  Kettrup A 《Chemosphere》2004,56(11):1137-1142
The effect of methanol of low concentration on adsorption and leaching of atrazine and tebuconazole was studied in this paper. The adsorption coefficients and the retardation factors (Rm) of pesticides on EUROSOIL 3# log-linearly decreased as volumetric fraction of methanol (fc) was increased in the binary solvent mixtures of methanol and water. These data are consistent with solvophobic theory formerly outlined for describing the adsorption and transport of hydrophobic organic chemicals from mixed solvents. Nevertheless, the adsorption of these pesticides in soil–water system slightly increased when the soil was pre-washed with methanol in comparison with that pre-washed with water (pure water system). Furthermore, their adsorption coefficients were still higher in binary solvent systems with methanol of very low concentrations, i.e. fc<0.03 for atrazine and fc<0.01 for tebuconazole, than those in pure water system. The adsorption coefficients (logKw) of atrazine and tebuconazole predicted by solvophobic theory were 0.5792 and 1.6525, respectively, and their experimental logKw were 0.3701 and 1.6275 in pure water system. Obviously, the predicted logKw of the two pesticides was higher than the experimental log Kw in pure water system. The predicted Kw and the retardation factor (Rw) in pure water system by solvophobic theory are thus possibly inaccurate.  相似文献   
326.
稻米Cd超标问题已成为社会各界广泛关注的热点问题之一,探索降低Cd向地上部转运并缓解水稻Cd胁迫的新方法,对保障食品安全具有重要意义.本研究拟通过在水稻幼苗叶面喷施2,3-二巯基丁二酸(DMSA)评估利用该重金属螯合剂降低Cd向水稻地上部转运并缓解Cd胁迫的可行性.以我国南方水稻主栽品种之一中早35幼苗为研究材料,采用水培法研究了叶面喷施不同浓度DMSA对Cd在水稻幼苗体内吸收转运的影响,同时考察了对水稻幼苗丙二醛(MDA)、谷胱甘肽(GSH)含量以及对抗氧化酶过氧化氢酶(CAT)、超氧化物歧化酶(SOD)活性的影响.结果表明,叶面喷施DMSA 0.2、 0.4和1.0 mmol·L~(-1) 4次后,水稻幼苗地上部Cd含量随着DMSA喷施浓度增加呈显著降低趋势, 3种处理浓度与对照相比分别降低22.1%、 39.7%和43.5%,但是对水稻幼苗根部Cd含量无显著影响;对地上部及根中K、Ca、Mg、Fe、Zn和Mn这6种矿质元素含量无显著影响;喷施4次DMSA后显著降低了幼苗地上部MDA和GSH含量,同时使CAT和SOD活性显著增加,有效缓解了Cd对水稻幼苗造成的胁迫效应.DMSA能抑制Cd从水稻根部向地上部转运,同时不影响对人体必需矿质营养元素的吸收和转运,具备成为水稻降Cd叶面调理剂的潜力.  相似文献   
327.
为获得高效催化活性的光催化材料,实现偶氮类染料的高效降解,试验以巯基乙酸钠作为硫源和高岭土改性剂合成了巯基高岭土/CeO2-CdS催化剂,并以降解结晶紫为模板反应,优化确定了巯基高岭土/CeO2-CdS催化剂的制备条件.采用XRD(X射线衍射)、SEM(扫描电子显微镜)、TEM(透射电子显微镜)、FTIR(傅里叶红外光谱)和UV-Vis(紫外-可见光漫反射光谱)对催化剂进行了表征.结果表明:①催化剂是由巯基高岭土、立方相结构的CdS和萤石结构的CeO2组成;②CdS和CeO2的负载破坏了巯基高岭土的层状结构;③最优催化剂和巯基高岭土/CeO2的可见光的响应范围分别为550和450 nm;④当CeO2:CdS(摩尔比,下同)为4:6,巯基高岭土:CeO2-CdS(质量比,下同)为1:3时,催化剂具有最优的光催化活性;⑤在50 mL结晶紫浓度为10 mg/L的溶液中,添加0.1 g最优催化剂后,采用350 W氙灯对其光照150 min时,结晶紫的降解率为95.1%;⑥最优催化剂具有良好的重复使用性能,重复使用5次时,对结晶紫的降解率为90.4%.研究显示,结晶紫降解的最终产物为CO2和H2O,催化剂对结晶紫的降解机理是以羟基自由基氧化为主和超氧基氧化为辅的共存氧化机理.   相似文献   
328.
选择我国不同地域6条铁路,现场调查铁路取土、弃土(渣)场的使用及恢复情况,从取弃土场的占地面积及类型、取土量、弃土量等方面分析了其利用现状,并对植被恢复效果和难易程度进行了讨论。调查表明:北方平原区、荒漠区铁路的取土量较多,南部丘陵区的弃土(渣)场及弃渣量较多。从恢复效率和程度看,南部地区植被恢复相对容易且在1年内可以恢复到较好程度,但植被恢复不到位,较易发生水土流失等次生灾害;东北、华北地区植被恢复2年左右可以恢复至良好程度;西北地区植被恢复需求较小;对于部分高原地区,海拔越低、降雨越多,恢复越好,但部分地区降雨量是生态恢复的首要制约因子,保水措施是这类地区生态恢复的重点。  相似文献   
329.
在离体条件下,研究了外生菌根真菌红绒盖牛肝菌(Xerocomus chrysenteron)菌丝对 Cu(Ⅱ)和 Cd(Ⅱ)生物吸附的影响因子,考察了X. chrysenteron菌丝对 Cu(Ⅱ)和 Cd(Ⅱ)的吸附能力、去除率和平衡吸附量在不同初始质量浓度和不同温度下所受影响,并采用Freundlich和Langmuir线性化吸附等温线模型拟合X. chrysenteron菌丝的生物吸附热力学特性. 结果表明:当菌丝的质量浓度为10g/L, 30 ℃时,X. chrysenteron非活性菌丝对 Cu(Ⅱ)和 Cd(Ⅱ)的最佳吸附量分别为47.11和11.72mg/g(以菌丝干质量计);X. chrysenteron非活性菌丝对 Cu(Ⅱ)和 Cd(Ⅱ)的吸附能力、去除率、平衡吸附量均优于活性菌丝;X. chrysenteron菌丝对 Cu(Ⅱ)和 Cd(Ⅱ)的吸附能力随其初始质量浓度的增加而增大,去除率随其初始质量浓度的增大而分别呈指数下降和线性下降;30 ℃时X. chrysenteron菌丝对 Cu(Ⅱ)和 Cd(Ⅱ)的吸附能力、去除率、平衡吸附量均比 25 ℃时大.  相似文献   
330.
GC/MS测定土壤中的酞酸酯   总被引:3,自引:0,他引:3  
本文针对土壤中酞酸酯类化合物,采用快速压力溶剂萃取仪(ASE)提取,弗罗里柱净化,气相色谱-质谱联用仪(GC/MS)对酞酸酯类有机物进行定性、定量分析。实验过程中采用浓硫酸对实验器皿进行清洗,有效地防止环境中酞酸酯类有机物对样品的污染。结果表明:平均加标回收率在87%~106%之间,相对标准偏差在2.5%~6.5%之间,检出限在0.51μg/kg~1.6μg/kg之间。  相似文献   
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