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41.
42.
Removal of polycyclic aromatic hydrocarbons (PAHs), e.g., naphthalene, acenaphthene, phenanthrene and pyrene, from aqueous solution by raw and modified plant residues was investigated to develop low cost biosorbents for organic pollutant abatement. Bamboo wood, pine wood, pine needles and pine bark were selected as plant residues, and acid hydrolysis was used as an easily modification method. The raw and modified biosorbents were characterized by elemental analysis, Fourier transform infrared spectroscopy and scanning electron microscopy. The sorption isotherms of PAHs to raw biosorbents were apparently linear, and were dominated by a partitioning process. In comparison, the isotherms of the hydrolyzed biosorbents displayed nonlinearity, which was controlled by partitioning and the specific interaction mechanism. The sorpfion kinetic curves of PAHs to the raw and modified plant residues fit well with the pseudo second-order kinetics model. The sorption rates were faster for the raw biosorbents than the corresponding hydrolyzed biosorbents, which was attributed to the latter having more condensed domains (i.e., exposed aromatic core). By the consumption of the amorphous cellulose component under acid hydrolysis, the sorption capability of the hydrolyzed biosorbents was notably enhanced, i.e., 6-18 fold for phenanthrene, 6-8 fold for naphthalene and pyrene and 5-8 fold for acenaphthene. The sorpfion coefficients (Kd) were negatively correlated with the polarity index [(O+N)/C], and positively correlated with the aromaticity of the biosorbents. For a given biosorbent, a positive linear correlation between logKoc and logKow for different PAHs was observed. Interestingly, the linear plots of logKoc-logKow were parallel for different biosorbents. These observations suggest that the raw and modified plant residues have great potential as biosorbents to remove PAHs from wastewater. 相似文献
43.
滴水湖及其水体交换区沉积物和土壤中PAHs的分布及生态风险评价 总被引:4,自引:3,他引:1
采用GC-MS联用技术分析了滴水湖及其水体交换区23个表层沉积物和土壤中16种多环芳烃(PAHs)的含量,探讨其分布特征及来源并对其生态风险进行评价.结果表明,滴水湖沉积物中16种PAHs含量范围是11.49~157.09 ng·g-1,平均含量为66.60 ng·g-1,湖区沉积物中PAHs含量比入湖区低,但比出湖区高.湖区外的沉积物和土壤中PAHs组成主要以中、高分子量PAHs(4环、5~6环)为主,而湖区内表层沉积物中PAHs组成则以低分子量PAHs(2~3环)和高分子量PAHs(5~6环)为主.通过特征化合物分子比值法、主成分分析及多元线性回归模型判源,表明湖区外沉积物和土壤中PAHs来源主要为燃烧源,而湖区内沉积物中PAHs来源为燃烧源和石油类产品泄漏的混合来源.生态风险评价显示,滴水湖及其水体交换区沉积物和土壤中PAHs生态风险较低. 相似文献
44.
利用液液萃取法和气相色谱-质谱方法对佛山境内高明河水环境多环芳烃(PAHs)进行了测定,并对PAHs的分布特征与通量进行了初步研究.结果表明高明河水环境中16种优控PAHs的浓度范围在41.6~375.6 ng/l之间,从上游到下游总体呈递增的趋势,其下游浓度偏高可能与荷城街道较为密集的工业和人口分布有关.高明河水环境PAHs的总含量高于欧美一些低污染水域,但低于国内一些主要河流.高明河PAHs年通量约为333.8 kg. 相似文献
45.
河南某市驾校地表灰尘多环芳烃组成、来源与健康风险 总被引:5,自引:4,他引:1
采集河南省某市29所驾校的地表灰尘样品,应用气相色谱-质谱联用仪(GC-MS)测定样品中16种优控PAHs含量,用终生致癌风险增量模型(ILCR)评价灰尘PAHs不同暴露情景下(情景1、2、3分别为驾校工作5 a、10 a和20 a)的健康风险,用比值法、成分谱法和主成分因子载荷法揭示PAHs来源.结果表明,驾校灰尘ΣPAHs含量在198.21~3 400.89μg·kg-1之间,平均908.72μg·kg-1.单体PAHs含量较高的是萘、菲、蒽、荧蒽,含量最低的是二苯并[a,h]蒽,低环PAHs占ΣPAHs的55.79%,高环占44.21%.3种情景下的平均健康风险为情景3(3.71×10-7)情景2(1.85×10-7)情景1(9.27×10-8),只有一个驾校(J11)在情景3存在潜在健康风险,其他情景下均无风险.皮肤接触灰尘是最主要的PAHs暴露途径,其占总风险的64.21%;其次是误食途径,占总风险的33.04%;吸入途径可忽略不计.驾校灰尘PAHs主要来源为化石燃料不完全燃烧源和混合源,农田区驾校灰尘PAHs的柴油/天然气动力车排放源、燃煤源和汽油车排放源贡献率分别为56.44%、26.55%和17.01%,工业区驾校混合源、汽油车和炼焦/燃煤排放源贡献率分别为76.26%、22.85%和0.89%,混合区驾校燃煤源、天然气/柴油动力车排放源和汽油车排放源的贡献率分别为45.57%、45.41%和9.02%.灰尘PAHs含量及健康风险与其周边环境、前期土地利用状况密切相关. 相似文献
46.
从水文地质条件、地貌环境和地球化学环境等3个方面,综述了岩溶环境对多环芳烃(PAHs)迁移转化的影响。针对研究现状及存在的不足,提出了未来可能的研究趋势,包括不同气候条件下发育的岩溶系统的对比研究、不同气候条件和不同岩溶系统快速流和慢速流对PAHs迁移的贡献、碳酸盐岩与PAHs相互作用的机理,以及有机质对PAHs迁移行为的影响。 相似文献
47.
In this study, the relationship between inhalable particulate (PM10), fine particulate (PM2.5), coarse particles (PM2.5 – 10) and meteorological parameters such as temperature, relative humidity, solar radiation, wind speed were statistically analyzed and modelled for urban area of Kolkata during winter months of 2003–2004. Ambient air quality was monitored with a sampling frequency of twenty-four hours at three monitoring sites located near traffic intersections and in an industrial area. The monitoring sites were located 3–5 m above ground near highly trafficked and congested areas. The 24 h average PM10 and PM2.5 samples were collected using Thermo-Andersen high volume samplers and exposed filter papers were extracted and analysed for benzene soluble organic fraction. The ratios between PM2.5 and PM10 were found to be in the range of 0.6 to 0.92 and the highest ratio was found in the most polluted urban site. Statistical analysis has shown a strong positive correlation between PM10 and PM2.5 and inverse correlation was observed between particulate matter (PM10 and PM2.5) and wind speed. Statistical analysis of air quality data shows that PM10 and PM2.5 are showing poor correlation with temperature, relative humidity and solar radiation. Regression equations for PM10 and PM2.5 and meteorological parameters were developed. The organic fraction of particulate matter soluble in benzene is an indication of poly aromatic hydrocarbon (PAH) concentration present in particulate matter. The relationship between the benzene soluble organic fraction (BSOF) of inhalable particulate (PM10) and fine particulate (PM2.5) were analysed for urban area of Kolkata. Significant positive correlation was observed between benzene soluble organic fraction of PM10 (BSM10) and benzene soluble organic fraction of PM2.5 (BSM2.5). Regression equations for BSM10 and BSM2.5 were developed. 相似文献
48.
49.
蒽降解菌与铜绿假单胞菌融合子的特性研究 总被引:4,自引:1,他引:3
将蒽降解菌An815和绿色荧光蛋白标记铜绿假单胞菌(Pseudomonas aeruginosa/EGFP)P原生质体融合,得到了既能高效降解蒽,又能产生生物表面活性剂的融合子F。研究了它的形态特征、生理生化特性、产表面活性剂的能力、对蒽的降解性能及生长繁殖情况。结果表明,融合子菌落和菌体形态,产脓青素,荧光色素的特性类似于铜绿假单胞菌亲本,但其大多生理生化特性酷似An815亲本而不同于铜绿假单胞菌亲本;融合子有较好产表面活性剂的能力,72 h内将表面张力由70.2 mN/m降至36.5mN/m;在蒽的反应体系中,32h内融合子和亲本An815对蒽的降解转化率分别为86.7%,59.4%,融合子对蒽的降解速率比An815提高了27.3%;在蒽的反应体系中融合子和亲本生长曲线相似。 相似文献
50.