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991.
为明晰干旱荒漠区人工绿洲水盐时空分异特征与盐碱化风险空间格局演变过程,以甘肃省景电灌区为研究区,以2002,2010及2018年为研究代表年,基于多级模糊理论从地质气候驱动、水土环境驱动和自然-人类驱动3个驱动过程构建土壤盐碱化风险评估体系,集成云发生器原理、黄金分割率法、组合赋权法以及排队理论构建土壤盐碱化空间风险综...  相似文献   
992.
用活性白土为吸附剂处理含铬电镀废水的初步实验   总被引:2,自引:0,他引:2  
论述了用活性白土为吸附剂,处理含铬电镀废水的最佳吸附条件:吸附剂的用量、吸附时间以及试液pH值对铬去除率的影响。做出了吸附等温线,并且对其吸附机理作了初步的探讨。另外指出了需进一步研究的问题。  相似文献   
993.
不同模型对土壤污染物空间分布预测精度具有重要影响,针对现有方法不能较好模拟土壤污染物较强的空间变异特征以及缺乏对影响污染物空间分布的关键环境因子识别,本研究基于随机森林(RF)模型,通过融合多源环境要素,开展了某冶炼厂周边农田土壤砷含量空间分布预测研究,并与反距离加权(IDW)和逐步线性回归模型(STEPREG)相比较.结果表明,研究区农田土壤砷污染范围较广,污染严重区域主要分布在研究区南部,3种模型模拟的砷污染空间分布虽总体趋势相似,但局部区域差异明显,IDW和STEPREG模型不能很好地反映研究区土壤污染的强空间变异特征,RF模型模拟结果较好的表达局部高污染区域的细部变化.不同环境要素对农田土壤砷含量空间分布影响的重要性不同,研究区环境变量和地形变量是影响土壤砷含量空间分布的关键环境因子.交叉验证结果表明,RF模型相对IDW和STEPREG模型具有最小的均方根误差(RMSE)、平均绝对误差(MAE)、平均误差(ME)和最大的R2,RF模型的RMSE、MAE、ME较IDW模型分别降低了10.8%、5.5%和88.1%,较STEPREG模型分别降低了17.8%、18.4%和94.7%,表明采用RF模型对研究区农田土壤砷含量预测精度最高,取得了最优的预测效果.本研究结果能够为土壤重金属污染空间分布制图提供方法学参考.  相似文献   
994.
天津市滨海新区地震地质灾害评价与分区研究   总被引:1,自引:1,他引:0  
收集了天津市滨海新区大量的工程地质勘察资料,针对滨海新区场地工程地质条件,从地震地质背景、历史震害的影响出发,依照相应规范和地质类比等方法,通过滨海新区活动断层影响、砂土液化、软土震陷的评判,探讨了滨海新区在未来强震作用下可能出现的地震地质灾害类型及空间分布特征。  相似文献   
995.
岳大鹏  董美云 《灾害学》2010,25(1):59-63
随着乡村聚落的发展,陕北多沙粗沙区乡村聚落土壤侵蚀的严重性已经凸显。以碾庄沟流域为例,研究了乡村聚落土壤侵蚀方式,并对侵蚀总量进行了估算。结果显示:从乡村聚落土壤侵蚀的主要方式来看,以新建窑洞的弃土侵蚀最大,窑洞坍塌侵蚀次之,聚落水蚀侵蚀量最小,其中塌窑侵蚀和建窑侵蚀两项合计占到乡村聚落土壤侵蚀总量的94.6%;从乡村聚落的侵蚀总量来看,面积占1.08%的乡村聚落产生的侵蚀量却占到全流域侵蚀总量的6.83%,人居侵蚀模数达6.3万t/(km2.a)或8.18 t/(人.a)。因此,对乡村聚落土壤侵蚀应加以重视,而土壤侵蚀的防治工作应该以新建窑洞的管理和废弃窑洞坍塌的治理为重点。  相似文献   
996.
The electrokinetic removal of chromium and copper from contaminated soils by adding lactic acid in cathode chamber as an enhancing reagent was evaluated. Two sets of duplicate experiments with chromium contaminated kaolinite and with a silty soil sampled from a supeffund site in Califomia of USA and polluted by Cr and Cu, were carried out in a constant current mode. Changes of soil water content and soil pH before and after the electrokinetic experiments, and variations of voltage drop and electroosmosis flow during the treatments were examined. The results indicated that Cr, spiked as Cr(Ⅵ) in the kaolinite, was accumulated mainly in the anode chamber, and some of Cr and metal hydroxides precipitated in the soil sections in contact with the cathode, which significantly increased electrical energy consumption. Treatment of the soil collected from the site showed accumulation of large amounts of Cr and Cu in the anode chamber while none was detected in the cathode one. The results suggested that the two metals either complexed with the injected lactic acid at the cathode or existed as negatively charged complex, and electromigrated toward the anode under a voltage gradient.  相似文献   
997.
The bio-briquette technique which mixes coal, biomass and sulfur fixation agent and bio-briquettes under 3-5 t/cm^2 line pressure has aroused people‘s attention in view of controlling the air pollution and the acid rain. In this paper, the physicochemical properties of bio-briquette and its ash were investigated. And the acid soil was improved by the bio-briquette combustion ash, which contained nutritive substances such as P, N, K and had the acid-neutralizing capacity(ANC). The pH, EC, effective nutrient elements(Ca, Mg, K, P and N), heavy metal elements(AI, Cu, Cd, Cr, Zn and Mn) and acid-neutralizing capacity change of ash-added soils within the range of 0-10%, were also studied. Specially, when 5% bio-briquette combustion ash was added to the tested soil, the content of the effective elements such as Ca, Mg and K rose by 100 times, ? times and twice, respectively. The total nitrogen also increased by about twice. The results showed the oxyanions such as that of AI, Cu, Cd, Cr, Zn and Mn were not potentially dangerous, because they were about the same as the averages of them in Chinese soil. It is shown that the ANC became stronger, though the ANC hardly increases in the ash-added soil. On the basis of the evaluation indices, it is concluded that the best mixture ratio is to add 2.5%--8% of the bio-briquette combustion ash to the tested soil.  相似文献   
998.
Controlled experiment of Leymus chinensis seedlings grown in the environmental growth chambers at 3 soil moisture levels and 3 temperature levels was conducted in order to improve the understanding how leaf photosynthetic parameters will respond to climatic change. The results indicated that soil drought and high temperature decreased the photochemical efficiency of photosystem ( Fw/Fm ), the overall photochemical quantum yield of PSIl(yield), the coefficient of photochemical fluorescence quenching(qp), but increased the coefficient of non-photochemical fluorescence quenching( q, ). Severe soil drought would decrease Fv/Fm and yield by 3.12% and 37.04% under 26% condition, respectively, and 6.60% and 73.33% under 32% condition, respectively,suggesting that higher temperature may enhance the negative effects of soil drought. All the soil drought treatments resulted in the decline in leaf nitrogen content. There was no significant effect of temperature on leaf nitrogen level,but higher temperature significantly reduced the root nitrogen content and the ratio of root nitrogen to leaf nitrogen,indicating the different strategies of adaptation to soil drought and temperature. It was also implied that higher temperature would enhance the effect of soil drought on leaf photosynthetic capacity, decrease the adaptability of Leymus chinensis to drought.  相似文献   
999.
IntroductionCadmium(Cd)isanon essentialtracemetalthathasadverseeffectsonplants,animalsandhumans.EnvironmentalcontaminationwithCdduetoanthropogenicactivities,suchasmining,industry,agricultureandwastedisposalhasbeenincreasingsincethebeginningofthe 2 0thcentury (Alloway,1995) .ResearchoncontrollingCdpollutionassociatedwithassessingandmanagingacuteinjurytohumanhealththroughoccupationalexposureanddisposalofCdfromindustrialpointsourcestolocalpopulationsthroughseveralpathwayshasmadeconsiderableadva…  相似文献   
1000.
Heterogeneous photocatalytic degradation of γ-HCH on soil surfaces was carried out to evaluate the photocatalytic effectiveness of α-Fe2O3 and TiO2 toward degrading γ-HCH on soil surfaces. After being spiked with γ-HCH, soil samples were loaded with α-Fe2O3 or TiO2 and exposed to UV-light irradiation. Different catalyst loads(0%, 2%, 5%, 7%, and 10% (wt). α-Fe2O3; 0%, 0.5%, 1%, 2% wt. TiO2) were tested for up to 7 d irradiation. The effects of soil thickness, acidity, and humic substances were also investigated. The obtained results indicated that the γ-HCH photodegradation follows the pseudo-first-order kinetics. The addition of α-Fe2O3 or TiO2 accelerates the photodegradation of γ-HCH, while the photodegradation rate decreases when the content of α-Fe2O3 exceeds 7%(wt.). The degradation rate increases with the soil pH value. Humic substances inhibit the photocatalytic degradation of γ-HCH. Pentachlorocyclohexene, tetrachlorocyclohexene, and trichlorobenzene are detected as photodegradation intermediates, which are gradually degraded with the photodegradation evolution.  相似文献   
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