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111.
机动车行驶过程道路扬尘影响因素试验研究 总被引:7,自引:0,他引:7
机动车行驶过程道路扬尘是城区颗粒物污染的主要因素,其贡献率可达30%-50%。城市路面积尘是机动车行驶过程道路扬尘的主要尘源。路面尘受机动车车轮积压作用、机车行驶过程诱导气流、热射流等综合尘化作用的影响,再次扬向空中并扩散,造成空气中颗粒污染物TSP、PM10浓度增高。实验模拟单车行驶,研究道路粉尘负荷、车速、排放源距离对总悬浮颗粒物(TSP)、可吸入颗粒物(PM10)浓度的影响,结果显示:TSP、PM10浓度与机动车行驶速度呈显著正相关;同一车速下与路面粉尘负荷呈对数变化规律;与排放源距离呈负相关。 相似文献
112.
分析归纳了一些国家和地区个体风险和社会风险,首次提出以人群自然死亡率为基础,确定个体风险制定的基础,把化工企业个体风险分为三类,分别为单个或少量暴露人员场所、居住类高密度场所和特别敏感的目标对应的个体风险,与国家安全生产监督管理总局规定危险化学品重大危险源产生的个体风险基本吻合.采用ALARP原则,合理确定社会风险并划分为不可接受区、尽可能降低区和风险可容许区.风险标准值的制定为企业风险管理和风险决策提供更加有意义的参考,也为化工企业开展定量风险评估提供技术支撑. 相似文献
113.
物种多样性对植物生长与土壤镉污染修复的影响 总被引:4,自引:1,他引:4
土壤重金属污染是当今最为突出的环境问题之一,其中,重金属镉(Cd)已成为我国受污染土壤中最主要的无机污染物之一.植物修复法是去除土壤重金属的重要方法,研究表明,植物物种多样性的增加能促进生态系统功能.那么在Cd污染土壤中,植物物种多样性对植物生长和Cd污染修复会有怎样的影响,其内在机理是怎样的并不清楚.基于此,本研究选择6种本地常见草本植物(荆芥、鸡眼草、短叶水蜈蚣、牛筋草、鸭跖草和细风轮菜),通过室内控制实验研究不同植物物种多样性(1-,2-,3-,6-物种)对植物生长与土壤Cd污染修复的影响.结果表明:植物物种多样性的增加显著促进植物地下生物量和总生物量的积累,并对植物根系形态(根总长、根总表面积、根尖总数与根平均直径)和叶绿素荧光参数(PSII最大光能转化效率F_v/F_m和PSII潜在活性F_v/F_0)有显著的促进作用;植物物种多样性的增加能显著提高植物地上、地下及总Cd含量(积累量)和富集系数;植物物种多样性的增加对植物生长、根系形态指标及Cd的富集具有显著的净效应,且以互补效应为主.本研究选取的是对环境条件要求不高、生长周期短的本地草本植物,可为利用本地常见短世代周期植物进行土壤重金属污染修复提供理论依据. 相似文献
114.
115.
Guoying Wang Yves Iradukund Gaofeng Shi Pascaline Sang Xiuli Niu Zhijun Wu 《环境科学学报(英文版)》2021,33(1):324-335
The hydroxyl radical (?OH) has a crucial function in the oxidation and removal of many atmospheric compounds that are harmful to health. Nevertheless, high reactivity, low atmospheric abundance, determination of hydroxyl, and hydroperoxyl radical's quantity is very difficult. In the atmosphere and troposphere, hydroperoxyl radicals (HO2) are closely demanded in the chemical oxidation of the troposphere. But advances in technology have allowed researchers to improve the determination methods on the research of free radicals through some spectroscopic techniques. So far, several methods such as laser-induced fluorescence (LIF), high-performance liquid chromatography (HPLC), and chemical ionization mass spectroscopy have been identified and mostly used in determining the quantity of hydroxyl and hydroperoxyl radicals. In this systematic review, we have advised the use of scavenger as an advance for further researchers to circumvent some of these problems caused by free radicals. The primary goal of this review is to deepen our understanding of the functions of the most critical free radical (?OH, HO2) and also understand the currently used methods to quantify them in the atmosphere and troposphere. 相似文献
116.
117.
Ting Guo Zhipeng Bai Can Wu Tan Zhu 《Frontiers of Environmental Science & Engineering in China》2008,2(2):224-229
TiO2 supported on active carbon fiber (TiO2/ACF), an absorbable photocatalyst, is a new kind of material applied in air purification. In this paper, the influence of
environmental temperature (T) and relative humidity (RH) on the gas-solid adsorption of toluene and the photocatalytic oxidation
(PCO) efficiency of adsorbed toluene on TiO2/ACF were studied, and then, the purification capability of TiO2/ACF was estimated. PCO results showed that although the PCO efficiency increased under high RH and T levels, the amount of
adsorption of toluene decreased. Moreover, quantitative analysis results of intermediates indicated that more environmental
risk emerged when PCO of toluene was carried out at higher environmental T and RH levels because more toxic intermediates
would be accumulated on the TiO2/ACF. So, it is significant to control the environmental T and RH conditions in the application of the PCO technique. T =
25°C and RH530% is the optimal condition for purifying toluene in our experimental system.
__________
Translated from Urban Environment & Urban Ecology, 2007, 20(5): 10–13 [译自: 城市环境与城市生态] 相似文献
118.
In this study, greatly enhanced Mn(II) adsorption was achieved by as-synthesized diethylenetriaminepentaacetate acid intercalated Mg/Al layered double hydroxides(LDHsDTPA). The adsorption capacity of LDHs-DTPA was 83.5 mg/g, which is much higher than that of LDHs-EDTA(44.4 mg/g), LDHs-Oxalate(21.6 mg/g) and LDHs(28.8 mg/g). The adsorption data of aqueous Mn(II) using LDHs-DTPA could be well described by the pseudosecond order kinetics and Langmuir isotherm model. Thermodynamics study results also showed that the adsorption process of Mn(II) by LDHs-DTPA was exothermic as indicated by the negative ΔH value. Furthermore, based on the structural, morphological and thermostable features, as well as FT-IR and XPS characterizations of LDHs-DTPA and the pristine LDHs, the adsorption mechanism of Mn(II) was proposed. The carboxyl groups of DTPA were proposed to be the main binding sites for Mn(II), and the hydroxyl groups of LDHs also played a minor role in the adsorption process. Among the three common regeneration reagents, 0.1 mol/L Na_2CO_3 was the best for reusing LDHs-DTPA in Mn(II)adsorption. Besides, the Mn(II) adsorption performance could be hindered in the presence of typical inorganic ions, especially cations. Further specific modifications of LDHs-DTPA are suggested to get more selective adsorption of Mn(II) in practical applications. 相似文献
119.
120.
The optimal condition for a one-step process removing organic compounds from coking wastewater by simultaneously synthesized organobentonite as a pretreatment was investigated. Results showed that sorption of organic compounds by organobentonite was positively correlated to the cation surfactant exchange on the bentonite and the octanol-water partition coefficient (Kow) of the solutes. With 0.75 g/L bentonite and 180 mg/L (60% of bentonite cation exchange capacity) cetyltrimethylammonium bromide, the removal efficiencies of the 16 polycyclic aromatic hydrocarbon (PAHs) specified by the US Environmental Protection Agency in coking wastewater except naphthalene were more than 90%, and that of benzo(a)pyrene was 99.5%. At the same time, the removal efficiencies of CODCr, NH3-N, volatile phenols, colour and turbidity were 28.6%, 13.2%, 8.9%, 55% and 84.3%, respectively, and the ratio of BOD5/CODCr increased from 0.31 to 0.41. These results indicated that the one-step process had high removal efficiency for toxic and refractory hydrophobic organic compounds, and could improve the biodegradability of the coking wastewater. Therefore it could be a promising technology for the pretreatment of toxic and refractory organic wastewater. 相似文献