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291.
白腐真菌修复多环芳烃污染土壤及其降解机理的研究进展   总被引:3,自引:0,他引:3  
介绍了白腐真菌对多环芳烃(PAHs)的代谢途径、降解机理,阐述了白腐真菌修复PAHs污染土壤的影响因素和生态效应,并提出了提高白腐真菌修复效率的措施.白腐真菌主要通过分泌木质素降解酶系(木质家过氧化物酶、锰过氧化物酶和漆酶)来降解PAHs,这些胞外酶可通过开环作用把PAHs代谢成为水溶性较强的醌类中间产物,再由其他微生物降解这些中间产物直至矿化.在白腐真菌的培养过程中.通过对环境因素及营养条件(如温度、pH值、C/N比、微量元素和转速)的优化可提高胞外酶产量.在修复PAHs污染土壤过程中,生物竞争、营养条件和环境因素等均会影响白腐真菌的修复效果.同时,归纳总结了改善白腐真菌修复效果的一些措施,如真菌-细菌联合修复、添加适当的培养基质、添加表面活性剂、直接施用酶制剂和改善营养条件等.  相似文献   
292.
Material recovery processes are presented as the optimum option for recycling plastic wastes as a means of recovering hydrocarbon resources. There exist a large variety of automated material recovery processes for recycling of such wastes but each with significant limitations. Of these, the separation based on differences in densities is advocated as the optimum process either for producing recycled products or preparing wastes for subsequent recovery processing.Density separation processes based on cyclone type density media separation (DMS) is presented as an important, potential method for increasing plastics recycling process capacities. It is demonstrated to have the capacity to separate a significantly larger range of particle sizes than those presently processed industrially. The mathematical relationship for the prediction of quality of typical LARCODEMS type density media separations by particle size and density as expressed by the Ecart Probable is presented.A proposed device configuration is presented for density media separation to optimize the recovery and purity of both density fractions produced. It is also suggested that to be economically viable, a large scale of operation is required for industrial plastics recycling operations recovering and producing a number of different plastics with a purity to be used as a substitute for virgin material.  相似文献   
293.
Polycyclic aromatic hydrocarbons (PAHs) are a large group of chemicals. They represent an important concern due to their widespread distribution in the environment, their resistance to biodegradation, their potential to bioaccumulate and their harmful effects. Several pilot treatments have been implemented to prevent economic consequences and deterioration of soil and water quality. As a promising option, fungal enzymes are regarded as a powerful choice for degradation of PAHs. Phanerochaete chrysosporium, Pleurotus ostreatus and Bjerkandera adusta are most commonly used for the degradation of such compounds due to their production of ligninolytic enzymes such as lignin peroxidase, manganese peroxidase and laccase. The rate of biodegradation depends on many culture conditions, such as temperature, oxygen, accessibility of nutrients and agitated or shallow culture. Moreover, the addition of biosurfactants can strongly modify the enzyme activity. The removal of PAHs is dependent on the ionization potential. The study of the kinetics is not completely comprehended, and it becomes morem hallenging when fungi are applied for bioremediation. Degradation studies in soil are much more complicated than liquid cultures because of the heterogeneity of soil, thus, many factors should be considered when studying soil bioremediation, such as desorption and bioavailability of PAHs. Different degradation pathways can be suggested. The peroxidases are heme-containing enzymes having common catalytic cycles. One molecule of hydrogen peroxide oxidizes the resting enzyme withdrawing two electrons. Subsequently, the peroxidase is reduced back in two steps of one electron oxidation. Laccases are copper-containing oxidases. They reduce molecular oxygen to water and oxidize phenolic compounds.  相似文献   
294.
Meretrix casta were experimentally exposed to water soluble fractions of refined and crude oil and their rate of accumulation of the petroleum hydrocarbons including total and individual aromatics viz., naphthalene, methylnaphthalene and dimethylnaphthalene, was studied. Subsequent transfer to clean waters in the laboratory and field resulted in depuration of the accumulated hydrocarbons from tissues. in general, the rate of discharge was found to be dependent on the concentration that the animals had been earlier exposed to and also the alkylation of aromatic hydrocarbons. Occasional increases were observed in the hydrocarbon values of clams which were placed in the field, compared to their laboratory counterparts, suggesting an intermittent source of petroleum hydrocarbon input into the environment. the influence on the rate of uptake, release and retention of hydrocarbons in the clams is discussed.  相似文献   
295.
Trends in the accumulation of metals by different plant species have been analyzed in a forest phytocenosis of the southern taiga zone of the Middle Urals, which is polluted by emissions from a copper-smelting plant. The rate of metal accumulation in the course of annual and net phytomass production and metal outflow with surface waters beyond the biogeocenosis boundaries have been estimated.Translated from Ekologiya, No. 1, 2005, pp. 26–31.Original Russian Text Copyright © 2005 by Fedorova, Odintseva.  相似文献   
296.
我国几种典型树种非甲烷烃类的排放特征   总被引:18,自引:3,他引:18  
赵美萍  邵敏 《环境化学》1996,15(1):69-75
采用封闭式采样法和带有预浓缩及程序升温装置的熔融毛细管柱气相色谱仪,对我国的松、柏、杨、槐等几种典型树种排放非甲烷烃类(NMHC)的组成和排放速率进行了定性和定量测定,初步确定了不同树种和的特征物种和排放规律,结果表明,针叶树种和阔叶树种排放的NMHC组成差别很大,各树种的排放规律除了与自身的结构和生理活动等在内在因素有关外,还在不同程度上受到外界因素(主要是温度和光强)的影响,一般温度越高,光强  相似文献   
297.
马骁轩  冉勇  孙可  龚剑  邹梦遥 《生态环境》2007,16(2):378-383
为确定珠江三角洲水体悬浮颗粒物中多环芳烃和有机氯农药的含量和来源,对珠江上游的两条重要支流西江、北江水体中的悬浮颗粒物分期进行了两次采样分析,测定了水体中悬浮颗粒物的含量,分析了其中多环芳烃、有机氯农药的含量。其中,北江水体中悬浮颗粒物中的PAHs的总量分别为928.8、1259.7ng·g-1干质量,西江水体中悬浮颗粒物的PAHs总量分别为660.1、1130.7ng·g-1干质量,其来源主要为石化燃料的燃烧与排放。北江水体悬浮颗粒物中的有机氯农药总量为41.9、135.3ng·g-1干质量,西江为78.54、108.7ng·g-1干质量,由沿岸农田排放入水体。并发现,西江北江沿岸的农田,仍旧在使用DDT、硫丹等农药。  相似文献   
298.
城市污泥与稻草堆肥中多环芳烃的研究   总被引:4,自引:0,他引:4  
将污泥与稻草进行翻堆、菌种 翻堆、连续通气和间歇通气 4种不同方式的堆肥 ,应用GC/MS对堆肥中的多环芳烃类化合物 (PAHs)进行分析 ,探讨堆肥产物中PAHs的含量分布模式以及不同堆肥方式对PAHs的降解效果 . 4种污泥堆肥中ΣPAHs在2 0 83—2 8 4 35mg·kg- 1之间 ,依次是菌种 翻堆 ( 2 8 4 35mg·kg- 1>翻堆 ( 7 30 3mg·kg- 1) >连续通气 ( 4 80 8mg·kg- 1) >间隙通气 ( 2 0 83mg·kg- 1) ,绝大部分化合物的含量都低于 0 2 0mg·kg- 1.堆肥前后ΣPAHs降解率在 6 5 5 %— 93 2 0 %之间 (平均为6 5 0 0 % ) ,绝大部分化合物的降解率都在 90 %以上 .通气堆肥尤其是间歇通气堆肥对污泥中PAHs的降解效果最好 .  相似文献   
299.
GOAL, SCOPE AND BACKGROUND: The goal of this study was to understand the interaction between plants and microorganisms during petroleum-hydrocarbon bioremediation in Pacific Islands coastal soils. Total bacteria and hydrocarbon-degrading microorganisms population dyanamics were examined in the rhizospheres of tropical trees and shrubs, which were evaluated for their phytoremediation potential in a greenhouse experiment. The respective and combined effects of plant roots and diesel contaminant on the microbial populations were determined in relation to diesel fuel depletion. An increase in the grading populations size of the hydrocarbon-degrading populations of microbes, elicited by rhizodeposition, is generally regarded as conducive to an enhanced degradation of petroleum hydrocarbon pollutants in vegetated soil. METHODS: The soil was a coastal sandy loam (pH 7.8) which was artificially contaminated with 10 g of No. 2 diesel fuel/kg soil or left uncontaminated. The pots were irrigated with fertilizer and 1% NaCl. The enumerations were carried out in the contaminated and uncontaminated rhizospheres of three trees, kiawe (Prosopis pallida), milo (Thespesia populnea), and kou (Cordia subcordata) and three shrubs, beach naupaka (Scaevola sericea), false sandalwood (Myoporum sandwicense), and oleander (Nerium oleander). Unplanted control soils were included in the experiment. Total bacteria and phenanthrene-degrading bacteria were enumerated on plates. Diesel- and pristane-degrading microorganisms were enumerated by the most-probable-number technique in tissue-culture plates. RESULTS AND DISCUSSION: All four types of microorganisms responded to the rhizosphere of the 6 plants in uncontaminated soil and to the diesel contaminant in unplanted soil. In contaminated rhizospheres, no effect of the plant on the hydrocarbon-degrader numbers was visible. Total bacteria responded more to the plant roots than to the contaminant. The phenanthrene-degrading bacteria and pristane-degrading microorganisms were more influenced by the contaminant than by the plants. The diesel-degrading microorganisms were equally stimulated by the plants and the contaminant. The numbers of hydrocarbon degraders were similar in the contaminated rhizospheres of the three effective plants (kiawe, kou, and milo) and in those of the three ineffective shrubs. CONCLUSION: The results suggest the quality of the rhizodeposition is plant-dependent and governs the type of diesel-degrader populations that will be enhanced by a given plant. RECOMMENDATIONS AND OUTLOOK: In the proposed phytoremediation-benefit model plant roots maintain high levels of hydrocaron degraders in uncontaminated soil. When the root enters a contaminated zone of soil, those hydrocarbon degraders that prefer the contaminant would switch to the contaminant as a carbon source, effectively removing the hydrocarbons. If the root exudates and the contaminant are equally attractive to the hydrocarbon degraders, the contaminant degradaton would be less effective.  相似文献   
300.
本文介绍了近年来选择性催化还原NO反应的研究进展状况,并对目前研究中存在的问题及今后研究的方向提出一些看法。  相似文献   
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