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1.
微生物对石油烃类的降解机理   总被引:5,自引:1,他引:4       下载免费PDF全文
文章分析了生物降解需要的条件、环境因素对石油烃微生物降解的影响,石油烃类的有氧降解机理、有氧降解方式,石油烃类的厌氧降解机理、厌氧降解过程中某些无机含氧化合物作受氢体的递氢过程,石油烃类化合物微生物降解难易程度,提出了以后应进一步重视原油的生物降解应用于我国微生物采油的研究。  相似文献   

2.
聚丙烯酰胺降解的研究进展   总被引:9,自引:2,他引:7       下载免费PDF全文
聚丙烯酰胺(PAM)的降解一直是人们研究的重点。文章综述了PAM的主要降解方式,包括化学降解、热降解、机械降解和生物降解,分析了PAM各种降解的可行性及降解产物,并探讨了丙烯酰胺在环境中的降解情况,为以后PAM的扩大应用及其污染治理提供了充分的参考和依据。  相似文献   

3.
为对比勿色杆属菌种(Achromobater sp)SLTHX114株和黄色假单胞菌(Pseudomonas flavescens)SLTHX214株对原油降解特征的差异性,在40℃恒温有氧实验室条件下,使用两株原油降解菌对塔里木油田原油进行了生物降解模拟实验,分析了生物降解气组分、生物降解原油的族组分及生物标志化合物变化特征。实验结果表明,革兰氏阴性SLTHX214株对原油降解能力强于革兰氏阳性SLTHX114株,SLTHX114株对原油中的饱和烃具有明显的降解作用,而SLTHX214株更倾向于降解原油中的芳烃。对土壤石油污染修复和菌种选择具有一定的指示意义。  相似文献   

4.
二噁英是一类剧毒的持久性有机污染物和一级致癌物质。脱氯降解是降低二噁英毒性的有效途径之一。本文首先介绍了二噁英的种类、来源和危害,其次对二噁英的降解方法包括光降解、光-Fenton降解、生物降解、热降解、化学降解脱氯作了简要评述,比较了各种降解方法的优劣。  相似文献   

5.
生物降解是许多有机化合物主要降解途径之一。近年来,难降解的有机化合物的任意排放使得环境污染越来越严重,为了防止由此造成的环境污染问题,对于有机化合物生物降解能力的预测显得至关重要。有机化合物的结构与生物降解定量关系(QSBR)的研究与发展,对于预测有机化合物的生物降解性提供了重要的帮助。本文主要综述了近几年来国内外在这领域的研究进展,对现有的有机化合物的结构与生物降解定量关系模型进行系统的总结、评价,分析了模型研究中存在的具体问题,并提出了进一步改进的几点建议,展望了其在环境保护规划、预警及评估等方面的应用前景。  相似文献   

6.
稠油废水含大量难生物降解的大分子有机物,BOD_5/COD_(Cr)极低。文章简要介绍了稠油废水的有机组成和处理难点,总结了提高稠油废水可生化性的生物处理方法,对比了活性污泥法、生物膜法等生物法的处理效果和优缺点,探讨其降解机理,对提高稠油废水生物法处理效率提出了建议。  相似文献   

7.
稠油废水含大量难生物降解的大分子有机物,BOD5/CODCr极低.文章简要介绍了稠油废水的有机组成和处理难点,总结了提高稠油废水可生化性的生物处理方法,对比了活性污泥法、生物膜法等生物法的处理效果和优缺点,探讨其降解机理,对提高稠油废水生物法处理效率提出了建议.  相似文献   

8.
利用缺氧反硝化处理难降解有机物的探讨   总被引:1,自引:0,他引:1  
本文研究了厌氧、缺氧实验夺件下难降解苯、甲苯、乙苯、二甲苯的同分异构体(BTEX)的生物降解性能。得出了不同底物的厌氧降解变化情况和缺氧降解条件下不同底物适宜的C/N比。通过对实验结果的分析,初步确定了不同底物具有各不相同的C/N比的原因,同时得出了缺氧反硝化与厌氧生物降解过程有可能同时发生的结论。  相似文献   

9.
偶氮染料是总量最大、种类最多的合成染料,其降解处理通常采用厌氧-好氧技术。厌氧过程可实现偶氮染料的还原,好氧过程则完成还原产物芳香胺的去除。厌氧过程受偶氮染料结构和浓度、底物的种类和浓度、其他电子受体、氧化还原介体、温度和DO等环境因素以及水力停留时间的影响。好氧条件下芳香胺的降解过程受其自身的结构、浓度、外加碳源以及降解体系等影响,且自氧化过程影响了芳香胺的生物降解。在实际废水处理中应创造良好的条件提高偶氮染料的厌氧一好氧生物降解效率。  相似文献   

10.
产品外观颜色的评价一直是高分子材料及制品质量检验中的一个重要项目.目前,关于颜色测试的方法主要有1976年国际照明协会(CIE)推荐的CIE LAB色差公式法和纺织品色牢度试验评定变色用灰色样卡法,两种方法在纺织印染、涂料、高分子材料加工、化工等行业中均得到了广泛的应用,本文详细分析了两种方法的原理、应用和特点.  相似文献   

11.
聚乳酸(HA)是具有良好生物相容性和生物可降解性的高分子材料,正受到人们越来越多的关注,近年来被广泛应用。综述了PLA的两种合成方法——乳酸直接缩聚和丙交酯的开环聚合法,论述了PLA在药物控制释放、骨科固定、手术缝合线及日常生活等领域中的应用,展望了HA的合成、开发现状及应用前景。  相似文献   

12.
ABSTRACT: Toxic organic compounds, such as DBCP, EDB, and c TCP, that are associated with pineapple cultivation in Hawaii have been discovered in drinking water wells on Oahu. In order to reach and contaminate the Pearl Harbor aquifer, pesticides must be transported quickly downward away from the soil surface prior to complete volatilization, degradation, or adsorption of residuals. This paper assesses the role of pesticide application timing relative to subsequent rainfall-induced recharge events in determining the amount and extent of chemical leaching from the soil. A water balance model for a pineapple crop is developed to estimate the time series of recharge from two fields for which soil contamination profiles are available. In general, the amounts of DBCP, EDB, and TCP found in the soil profiles of the two fields are consistent with expectations of leaching based on an analysis of the recharge time series. The results indicate that recharge during and immediately following the application of pesticides is important in determining whether groundwater contamination will result.  相似文献   

13.
This study focused on using scale inhibitors for calcium sulfate that are not only highly effective, but also comply with present restrictive environmental control legislations. In this respect, some biodegradable compounds-based biopolymers, such as carboxymethyl starch (CMS), carboxymethyl cellulose (CMC), and chitosan (Ch), were evaluated at temperatures 90–95 and 130°C. The results obtained were compared with the performance of polyaspartic acid (PAA), which is well known in this application, as well as other chelating synthetic polymers (polyacrylamide and amphoteric polyacrylamide). The role of the degree of substitution (DS) of carboxymethylated biopolymer and the charge density of polyacrylamide (AmPAM-30 and AmPAM-50) on inhibition performance of scale were also examined. The synergistic effect of PAA with investigated inhibitors was studied for economic and environmental purposes. The results revealed that both the degree of substitution of carboxymethylated biopolymers and charge density of polyacrylamide have a profound effect on improving the performance of the investigated scale inhibitors. The efficiency values were correlated to the thermal degradation behavior (TGA) of biopolymers. PAA had the highest synergistic effect of all investigated inhibitors, where the inhibition efficiency was found to range from 98% to 100%, at a temperature of 130°C, with low doses of both PAA (2 ppm) together with biopolymers. This efficiency is observed using 20–40 ppm of PAA. The synergistic effect of PAA (2 ppm) also showed enhancement of the performance of low doses of polyacrylamides (5 ppm) in maintaining soluble Ca2+ in solutions, increasing the efficiency from ∼57% to ∼100%, as well as its ecotoxicological property.  相似文献   

14.
Reports of enhanced atrazine degradation and reduced residual weed control have increased in recent years, sparking interest in identifying factors contributing to enhanced atrazine degradation. The objectives of this study were to (i) assess the spatial distribution of enhanced atrazine degradation in 45 commercial farm fields in northeastern Colorado (Kit Carson, Larimer, Logan, Morgan, Phillips, and Yuma counties) where selected cultural management practices and soil bio-chemo-physical properties were quantified; (ii) utilize Classification and Regression Tree (CART) Analysis to identify cultural management practices and (or) soil bio-chemophysical attributes that are associated with enhanced atrazine degradation; and (iii) translate our CART Analysis into a model that predicts relative atrazine degradation rate (rapid, moderate, or slow) as a function of known management practices and (or) soil properties. Enhanced atrazine degradation was widespread within a 300-km radius across northeastern Colorado, with approximately 44% of the fields demonstrating rapid atrazine degradation activity (laboratory-based dissipation time halflife [DT50] < 3 d). The most rapid degradation rates occurred in fields that received the most frequent atrazine applications. Classification and Regression Tree Analysis resulted in a prediction model that correctly classified soils with rapid atrazine DT50 80% of the time and soils with slow degradation (DT50 > 8 d) 62.5% of the time. Significant factors were recent atrazine use history, soil pH, and organic matter content. The presence/absence of atzC polymerase chain reaction (PCR) product was not a significant predictor variable for atrazine DT50. In conclusion, enhanced atrazine degradation is widespread in northeastern Colorado. If producers know their atrazine use history, soil pH, and OM content, they should be able to identify fields exhibiting enhanced atrazine degradation using our CART Model.  相似文献   

15.
Better management practices can counter deterioration of ground water quality. From 1991 through 1996 the influence of improved irrigation practices on ground water pesticide contamination was assessed at the Nebraska Management Systems Evaluation Area. Three 13.4-ha corn (Zea mays L.) fields were studied: a conventional furrow-irrigated field, a surge-irrigated field and a center pivot-irrigated field, and a center pivot-irrigated alfalfa (Medicago sativa L.) field. The corn fields received one identical banded application of Bicep (atrazine [6-chloro-N-ethyl-N'-(1-methylethyl)-1,3,5-triazine-2,4,-diamine] + metolachlor [2-chloro-N-(2-ethyl-6-methylphenyl)-N-(2-methoxy-1-methylethyl) acetamidel) annually; the alfalfa field was untreated. Ground water samples were collected three times annually from 16 depths of 31 multilevel samplers. Six years of sample data indicated that a greater than 50% reduction in irrigation water on the corn management fields lowered average atrazine concentrations in the upper 1.5 m of the aquifer downgradient of the corn fields from approximately 5.5 to <0.5 microg L(-1). Increases in deethylatrazine (DEA; 2-chloro-4-amino-6-isopropylamino-s-triazine) to atrazine molar ratios indicated that reducing water applications enhanced microbial degradation of atrazine in soil zones. The occurrence of peak herbicide loading in ground water was unpredictable but usually was associated with heavy precipitation within days of herbicide application. Focused recharge of storm runoff that ponded in the surge-irrigated field drainage ditch, in the upgradient road ditch, and at the downgradient end of the conventionally irrigated field was a major mechanism for vertical transport. Sprinkler irrigation technology limited areas for focused recharge and promoted significantly more soil microbial degradation of atrazine than furrow irrigation techniques and, thereby, improved ground water quality.  相似文献   

16.
SOFEA (SOil Fumigant Exposure Assessment system; Dow AgroSciences, Indianapolis, IN) is a new stochastic numerical modeling tool for evaluating and managing human inhalation exposure potential associated with the use of soil fumigants. SOFEA calculates fumigant concentrations in air arising from volatility losses from treated fields for large agricultural regions using multiple transient source terms (treated fields), geographical information systems (GIS) information, agronomic specific variables, user-specified buffer zones, and field reentry intervals. A modified version of the USEPA Industrial Source Complex Short Term model (ISCST3) is used for air dispersion calculations. Weather information, field size, application date, application rate, application type, soil incorporation depth, pesticide degradation rates in air, tarp presence, field retreatment, and other sensitive parameters are varied stochastically using Monte Carlo techniques to mimic region and crop specific agronomic practices. Regional land cover, elevation, and population information can be used to refine source placement (treated fields), dispersion calculations, and risk assessments. This paper describes the technical algorithms of SOFEA and offers comparisons of simulation predictions for the soil fumigant 1,3-dichloropropene (1,3-D) to actual regional air monitoring measurements from Kern, California. Comparison of simulation results to daily air monitoring observations is remarkable over the entire concentration distribution (average percent deviation of 44% and model efficiency of 0.98), especially considering numerous inputs such as meteorological conditions for SOFEA were unavailable and approximated by neighboring regions. Both current and anticipated and/or forecasted fumigant scenarios can be simulated using SOFEA to provide risk managers and product stewards the necessary information to make sound regulatory decisions regarding the use of soil fumigants in agriculture.  相似文献   

17.
Major benefit uncertainties prevent monetary quantification of some environmental amenities. Replacing mineral lubricants with biodegradable substitutes is shown to be a case in point. However, it is possible to rank the social benefits of substituting mineral lubricants with regard to different applications and environments. As the private costs and benefits of substitution are mainly constant, only a policy that prioritizes full substitution in the applications with the greatest benefits can be efficient. It is shown that regulations requiring substitution in certain fields are likely to fulfil this criterion, while subsidies for production, processing, market introduction and research usually fail to meet the efficiency criterion.  相似文献   

18.
改性天然高分子絮凝剂的研究与应用现状展望   总被引:4,自引:0,他引:4  
改性天然高分子絮凝剂因具有原料来源广泛、价值低廉、无毒、易于生物降解、无二次污染等优点,受到了国内外众多研究工作者的重视和开发应用。本文扼要的介绍了国内近年来的改性天然高分子絮凝剂方面的研究和应用情况,对其前景进行了展望,并就我国今后在此方面的研究工作提出了一些建议。  相似文献   

19.
Clay minerals modified with organic ions, also known as organoclays, have found applications in a wide range of organic pollution control fields because of their excellent sorption capacity towards organic pollutants. Regeneration of the spent organoclays after the sorption of organic pollutants is of great importance during their application in pollution control. In this review, the reported methods for the regeneration of the spent organoclays are summarized, including biological degradation, photo-assisted oxidation, chemical extraction/desorption, supercritical extraction, thermal desorption, et al. The characteristics and applications of these methods are briefly described. It shows that most of these methods have been developed for regenerating spent organoclays from wastewater treatment. The biological regeneration method, as an in situ, low cost and easy-operating method, is applicable for regenerating spent organoclays not only from wastewater treatment, but also from soil and groundwater remediation.  相似文献   

20.
用于处理含油泥砂的菌种性能实验研究   总被引:1,自引:0,他引:1  
对从孤东油田原油污染的土壤中筛选出三株可以降解原油的细菌进行的实验结果表明,所筛选的细菌能够很好地利用油泥砂中的原油作为碳源而进行生长代谢,从而达到降解原油的目的。同时,细菌还可利用油泥砂中的原油在生长代谢过程中产生生物降解表面活性剂,将原油从泥砂表面剥离下来,并使其乳化、溶解在溶液中。在油泥砂处理初期加入化学表面活性剂,可以促进细菌的生长,缩短处理时间,对最终处理效果没有根本影响。  相似文献   

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