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881.
深圳市公路建设对生态环境的影响、治理及对策 总被引:7,自引:0,他引:7
公路建设曾经给深圳的生态环境造成了较为严重的危害 ,主要有 :严重的水土流失及其派生影响 ,对一些具有观赏价值的自然景观产生破坏 ,影响了部分区域动植物生存环境等。主要对这些环境影响及已进行的治理及其成效进行综述 ,对治理工作的不足及未来对策也进行了探讨。 相似文献
882.
金华生态建筑是自身良性循环的绿色建筑物,有3个特点,即屋顶覆土种植或养殖或设太阳能装置,地下设有以净化生活污水为主要目的沼气净化池,墙体垂直绿化,这三者缺不一可,但可单项利用,它有节土,节水,节能和经济,环境,社会产益协调统一这两大优点。 相似文献
883.
天津市空气污染预报方法 总被引:6,自引:2,他引:4
文章论述了空气污染预报几种理论和方法,特别详细介绍了天津市空气质量预报方法及其应用效果。 相似文献
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Phorate (O,O-diethyl S-ethylthiomethyl phosphorodithioate) dissolved in aqueous solution was almost completely decomposed by ozonation to form various species within 10 minutes of reaction time for the experimental conditions examined in this research. The generation rate of sulfate was found to be fairly independent of solution pH value. However, the formation of phosphate and carbonate was more favorable for alkaline solutions where hydroxyl free radical is the primary oxidative species. The reaction rates increased with initial gaseous ozone concentrations, indicating the reaction was mass transfer-controlled within the experimental range of this research. Combining the analytical results by various instruments, including gas chromatograph equipped with an electron ionization detector (GC-EID), high performance liquid chromatography (HPLC), ion chromatography (IC), and total organic carbon (TOC), the temporal sequence of phorate ozonation was proposed in this study. The oxidation of sulfur atoms on the phosphorus-sulfur double bond or carbon-sulfur-carbon bond by ozonation was found to occur at first to form sulfate and various intermediates. 相似文献
886.
廊坊市的地震基本烈度为 8度 ,同时受中远场和近场地震影响。具有背景地震烈度较高而高烈度地震发震概率较小的特点。本文研究了根据廊坊市地震动加速度参数特点进行的框架结构隔震建筑设计方法与实例 相似文献
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Lijin Lin Jun Shi Qihua Liu Ming’an Liao Luoyin Mei 《Environmental monitoring and assessment》2014,186(7):4051-4056
In a preliminary study, we found that the cadmium (Cd) concentrations in shoots of the winter farmland weeds Cardamine hirsuta Linn. and Gnaphalium affine D. Don exceeded the critical value of a Cd-hyperaccumulator (100 mg kg?1), indicating that these two farmland weeds might be Cd-hyperaccumulators. In this study, we grew these species in soil containing various concentrations of Cd to further evaluate their Cd accumulation characteristics. The biomasses of C. hirsuta and G. affine decreased with increasing Cd concentrations in the soil, while the root/shoot ratio and the Cd concentrations in shoot tissues increased. The Cd concentrations in shoots of C. hirsuta and G. affine reached 121.96 and 143.91 mg kg?1, respectively, at the soil Cd concentration of 50 mg kg?1. Both of these concentrations exceeded the critical value of a Cd-hyperaccumulator (100 mg kg?1). The shoot bioconcentration factors of C. hirsuta and G. affine were greater than 1. The translocation factor of C. hirsuta was less than 1 and that of G. affine was greater than 1. These findings indicated that C. hirsuta is a Cd-accumulator and G. affine is Cd-hyperaccumulator. Both plants are distributed widely in the field, and they could be used to remediate Cd-contaminated farmland soil in winter. 相似文献
890.
Biosurfactant-producing strains in enhancing solubilization and biodegradation of petroleum hydrocarbons in groundwater 总被引:2,自引:0,他引:2
Hong Liu Hang Wang Xuehua Chen Na Liu Suriguge Bao 《Environmental monitoring and assessment》2014,186(7):4581-4589
Three biosurfactant-producing strains designated as BS-1, BS-3, and BS-4 were screened out from crude oil-contaminated soil using a combination of surface tension measurement and oil spreading method. Thin layer chromatography and infrared analysis indicated that the biosurfactants produced by the three strains were lipopeptide, glycolipid, and phospholipid. The enhancement of solubilization and biodegradation of petroleum hydrocarbons in groundwater employing biosurfactant-producing strains was investigated. The three strain mixtures led to more solubilization of petroleum hydrocarbons in groundwater, and the solubilization rate was 10.5 mg l?1. The combination of biosurfactant-producing strains and petroleum-degrading strains exhibited a higher biodegradation efficiency of 85.4 % than the petroleum-degrading strains (71.2 %). Biodegradation was enhanced the greatest with biosurfactant-producing strains and petroleum-degrading strains in a ratio of 1:1. Fluorescence microscopy images illustrate that the oil dispersed into smaller droplets and emulsified in the presence of biosurfactant-producing strains, which attached to the oil. Thus, the biodegradation of petroleum hydrocarbons in groundwater was enhanced. 相似文献