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1.
城区大气和塑料大棚空气中酞酸酯的分析   总被引:32,自引:0,他引:32  
国伟林  王西奎 《环境化学》1997,16(4):382-386
本文报道了济南市大气飘尘和塑料蔬菜大棚空气中酞酸酯的污染情况,探讨了大气飘尘中酞酸酯随季节变化和昼夜更替的变化情况。  相似文献   

2.
济南市土壤中酞酸酯的分析与分布   总被引:27,自引:0,他引:27  
孟平蕊  王西奎 《环境化学》1996,15(5):427-432
本文对济南市土壤中酞酸酯污染的重点地区进行了比较详细的研究,初步掌握了酞酸酯在土壤中分布状况及分布规律。  相似文献   

3.
酞酸酯 (邻苯二甲酯 )作为增塑剂 ,广泛应用于PVC塑料产品中 .随着使用时间的推移 ,这类物质可以由塑料中迁移出去 (如从塑料食品包装或容器中 ) ,造成对空气、水及土壤的污染 ,并且可以通过不同的途径进入人体 .研究表明 :酞酸酯对环境的危害极大 ,不仅有致癌作用 ,而且会干扰  相似文献   

4.
《环境化学》2003,22(4):413-414
酞酸酯(邻苯二甲酯)作为增塑剂,广泛应用于PVC塑料产品中.随着使用时间的推移,这类物质可以由塑料中迁移出去(如从塑料食品包装或容器中),造成对空气、水及土壤的污染,并且可以通过不同的途径进入人体.研究表明:酞酸酯对环境的危害极大,不仅有致癌作用,而且会干扰人体的内分泌正常功能.因此,在全球范围内对这类物质的提取与分析是目前非常活跃的课题。  相似文献   

5.
不同使用年限蔬菜大棚土壤重金属含量变化   总被引:1,自引:0,他引:1  
调查了 1、5、8、1 1a棚龄蔬菜大棚土壤中重金属元素As、Cd、Co、Cr、Cu、Hg、Fe、Mn、Mo、Ni、Pb和Zn的含量。结果表明 :同一使用年限的蔬菜大棚 0~ 40cm土层内重金属元素含量差异很小 ;与棚外土壤相比 ,除 1a棚龄的土壤外 ,多数土壤重金属含量随大棚使用年限的延长而有所增加 ;研究地区的蔬菜大棚土壤尚未发生重金属污染超标现象 ;大量施肥 (复合肥 )可能是导致蔬菜大棚土壤中重金属含量升高的主要原因  相似文献   

6.
酞酸酯在空气和土壤两相间迁移情况的初步研究   总被引:1,自引:0,他引:1  
朱媛媛  田靖  吴国平  魏复盛 《环境化学》2012,31(10):1535-1541
以东北某钢铁厂及其周边区域为研究对象,利用气相色谱-质谱(GC-MS)方法分析了空气中15种酞酸酯的浓度,并采用基于实测浓度的逸度模型探讨了酞酸酯在空气和土壤两相间的迁移方向和迁移通量.结果表明,研究区域空气中15种酞酸酯总浓度(∑PAEs)在170—487 ng.m-3之间;DMP(邻苯二甲酸二甲酯)、DEP(邻苯二甲酸二乙酯)和DPP(邻苯二甲酸二戊酯)从土壤相向空气相迁移,迁移通量分别为93.5—117.0 g.month-.1km-2,50.2—108.2 g.month-.1km-2和9.4—15.5 g.month-.1km-2;DiBP(邻苯二甲酸二异丁酯)、DBP(邻苯二甲酸二丁酯)、DEHP[邻苯二甲酸双(2-乙基己基)酯]和DINP(邻苯二甲酸二壬酯)从空气相向土壤相迁移,迁移通量分别为530.6—1395.9 g.month-1.km-2,323.8—2408.8 g.month-1.km-2,1302.7—9839.6 g.month-.1km-2和131.4—205.9 g.month-.1km-2.  相似文献   

7.
气相色谱-质谱联用内标法测定土壤中11种酞酸酯   总被引:1,自引:0,他引:1  
建立了土壤中11种酞酸酯(PAEs)的气相色谱-质谱联用(GC-MS)内标分析方法,通过优化色谱柱升温程序和载气流量后,11种酞酸酯在18 min内得到良好的分离.同时以连续7次进样后计算PAEs峰面积响应值和峰面积变异系数为衡量指标,并逐个优化GC-MS的进样口温度、GC与MS的接口温度、进样方式和进样体积等GC-MS仪器操作参数,确定了GC-MS分析PAEs的最优条件为进样口温度250℃,接口温度280℃,载气流速1.2 mL.min-1,进样体积1.0μL,非脉冲进样方式.该分析条件下PAEs各组分的检出限(S/N=3)为0.37—1.97μg.L-1.该分析方法用于土壤样品中酞酸酯含量分析,并用苯甲酸苄酯(BenzylBenzoate)作为内标物,用内标法对11种肽酸酯进行定量,方法检出限0.01—0.07 mg.kg-1,土壤加标回收率基本在93.0%—115.0%范围内,结果可行.  相似文献   

8.
不同使用年限蔬菜大棚土壤重金属含量变化   总被引:26,自引:0,他引:26  
调查了1、5.8、11a棚龄蔬菜大棚土壤中重金属元素As、Cd、Co.Cr、Cu、Hg、Fe、Mn、Mo、Ni、Pb和Zn的含量。结果表明:同一使用年限的蔬菜大棚0-40cm土层内重金属元素含量差异很小;与棚外土壤相比,除la棚龄的土壤外,多数土壤重金属含量随大棚使用年限的延长而有所增加;研究地区的蔬菜大棚土壤尚未发生重金属污染超标现象;大量施肥(复合肥)可能是导致蔬菜大棚土壤中重金属含量升高的主要原因。  相似文献   

9.
土壤中酞酸酯的分析方法研究   总被引:8,自引:2,他引:8  
汤国才  蔡玉祺 《环境化学》1993,12(4):263-267
经过系统研究,建立了以正已烷/丙酮(V/V:2/1)为溶剂,对土壤进行超声萃取,然后以浓H_2SO_4进行纯化的分析土壤中酞酸酯的方法。本方法具有省时、省溶剂、空白低及纯化效果好的特点,具有很强的实用性。  相似文献   

10.
城市生活垃圾中酞酸酯的微生物降解   总被引:3,自引:0,他引:3  
从酞酸酯生产厂排污沟中分离到4株酞酸酯降解菌,分属镰孢属(Fusarium sp.)、醇母属(Saccharomyces sp.)、不动杆菌属(Acinetobacter sp.)、黄单孢菌属(Xanthomonas sp.)。在酞酸酯剂量为50、25μg/mL水平的纯培养条件下,4株单菌对酞酸酯的降解率达到72%-77%,混合菌的降解率还可提高近10%。在垃圾堆肥中酞酸酯剂量为197μg/g的水平下,将降解菌回接堆肥后,不动杆菌属和混合菌对酞酸酯的降解率最高,分别达到72%和69%。  相似文献   

11.
污泥与城市垃圾混合堆肥技术   总被引:3,自引:0,他引:3  
本文介绍了城市污水处理厂污泥与城市生活垃圾混合堆肥技术,对温度、C/N、含水率、通风量等因素对堆肥的影响和物料平衡、无害化以及堆肥肥效等作了阐述.  相似文献   

12.
以北京市为例,估算不同电价及运输距离下填埋、焚烧及堆肥等方式的城市污泥处理处置成本,在此基础上讨论各种处理处置方案的前景,展望北京市污泥处理处置出路。污泥填埋在一定时期内还将是主要处理处置方式,但所占比例将逐渐下降;堆肥是经济上较为可行的处理处置方式,适合大力推广;随着经济实力与技术水平提高,焚烧法可以适用于个别特殊地点。同时,分析了政府补贴对污泥处理处置效益的影响。  相似文献   

13.
TCS and TCC can be biodegraded during sewage sludge composting. Ventilation significantly accelerated the biodegradation of TCS and TCC in sludge. Composting can reduce the environmental risk of TCS and TCC in sewage sludge. Triclosan (TCS) and triclocarban (TCC) are widely used in home and personal care products as antimicrobial agents. After these products are used, TCS and TCC enter the terrestrial environment and pose a great risk to humans and animals. In this research, the biodegradation of TCS and TCC was investigated during sewage sludge composting with ventilation rates of 108, 92, and 79 m3/min. TCS and TCC were mainly biodegraded in the mesophilic and thermophilic phases, and the biodegradation rates improved with an increase in ventilation. After sewage sludge was composted for 16 days with forced ventilation (108 m3/min), the concentration of TCS decreased from 497.4 to 214.5 μg/kg, and the concentration of TCC decreased from 823.2 to 172.7 μg/kg. The biodegradation rates of TCS and TCC were 65.2% and 83.1%, respectively. However, after the sewage sludge was stacked for 16 days, the biodegradation rates of TCS and TCC were only 17.0% and 18.2%, respectively. The environmental risks of TCS and TCC in the sewage sludge piles significantly decreased after composting. In the sludge pile with a ventilation rate of 108 m3/min, the RQ values of TCS and TCC decreased from 8.29 and 20.58 to 3.58 and 4.32 after composting for 16 days, respectively. There is still a high risk if the sludge compost is directly used as a culture substrate. Nevertheless, the environmental risk could be decreased distinctly if a reasonable quantity of sludge compost is applied to land to ensure an RQ of<1 for TCS and TCC.  相似文献   

14.
In China, over 1.43×107 tons of dewatered sewage sludge, with 80% water content, were generated from wastewater treatment plants in 2007. About 60% of the COD removed during the wastewater treatment process becomes concentrated as sludge. Traditional disposal methods used by municipal solid waste treatment facilities, such as landfills, composting, or incineration, are unsuitable for sludge disposal because of its high water content. Disposal of sludge has therefore become a major focus of current environmental protection policies. The present status of sludge treatment and disposal methodology is introduced in this paper. Decreasing the energy consumption of sludge dewatering from 80% to 50% has been a key issue for safe and economic sludge disposal. In an analysis of sludge water distribution, thermal drying and hydrothermal conditioning processes are compared. Although thermal drying could result in an almost dry sludge, the energy consumption needed for this process is extremely high. In comparison, hydrothermal technology could achieve dewatered sewage sludge with a 50%–60% water content, which is suitable for composting, incineration, or landfill. The energy consumption of hydrothermal technology is lower than that required for thermal drying.  相似文献   

15.
• ARGs were detected in livestock manure, sludge, food waste and fermentation dregs. • The succession of microbial community is an important factor affecting ARGs. • Horizontal transfer mechanism of ARGs during composting should be further studied. Antibiotic resistance genes (ARGs) have been diffusely detected in several kinds of organic solid waste, such as livestock manure, sludge, antibiotic fermentation residues, and food waste, thus attracting great attention. Aerobic composting, which is an effective, harmless treatment method for organic solid waste to promote recycling, has been identified to also aid in ARG reduction. However, the effect of composting in removing ARGs from organic solid waste has recently become controversial. Thus, this article summarizes and reviews the research on ARGs in relation to composting in the past 5 years. ARGs in organic solid waste could spread in different environmental media, including soil and the atmosphere, which could widen environmental risks. However, the conventional composting technology had limited effect on ARGs removal from organic solid waste. Improved composting processes, such as hyperthermophilic temperature composting, could effectively remove ARGs, and the HGT of ARGs and the microbial communities are identified as vital influencing factors. Currently, during the composting process, ARGs were mainly affected by three response pathways, (I) “Microenvironment-ARGs”; (II) “Microenvironment-microorganisms-ARGs”; (III) “Microorganisms-horizontal gene transfer-ARGs”, respectively. Response pathway II had been studied the most which was believed that microbial community was an important factor affecting ARGs. In response pathway III, mainly believed that MGEs played an important role and paid less attention to eARGs. Further research on the role and impact of eARGs in ARGs may be considered in the future. It aims to provide support for further research on environmental risk control of ARGs in organic solid waste.  相似文献   

16.
堆肥处理对污泥腐殖物质组成和光谱学特征的影响   总被引:9,自引:0,他引:9  
采用凝胶(Sephadex G-75)色谱、荧光光谱和红外光谱法研究了污泥堆肥的HA和FA在堆制前后的组成与结构特征变化.凝胶色谱分析表明,污泥经过63d堆腐后,HA中大分子组分含量明显提高;而FA则由不同分子量物质组成,其中小分子量物质占主要部分,在堆腐以后,FA中大分子物质含量下降30%,小分子量物质含量则相对增加.同时,荧光光谱、红外光谱的结果表明:随着污泥堆肥的进行,HA中有机物不饱和结构的多聚化或联合程度增大,芳香结构物质含量增加;但经过堆制的FA具有更多的结构简单的低分子量物质和更低的芳构化水平.  相似文献   

17.
蚯蚓堆肥相关研究多集中在生活污泥方面,对工业污泥的探索较少。该研究以马鞍山某钢铁污水处理站污泥为例,添加不同比例稻壳炭(2%、4%、8%),设置污泥单独堆肥、稻壳炭与污泥堆肥以及蚯蚓-稻壳炭联合污泥堆肥试验,探索蚯蚓与稻壳炭联合堆肥对工业污泥中重金属形态和生物有效性的影响。研究表明,(1)相比污泥单独堆肥,稻壳炭联合污泥堆肥能增加污泥pH、EC、TP和降低TOC、TN,而蚯蚓联合稻壳炭堆肥污泥可增加TN,并进一步增加污泥EC、TP,显著降低污泥的pH、TOC。(2)稻壳炭堆肥中重金属Zn、Cu、Pb、Cd含量因浓缩效应而上升;而蚯蚓联合稻壳炭堆肥,重金属含量显著下降,添加4%稻壳炭时,重金属Zn、Cu、Pb、Cd质量分数达到最小值,分别为856.64、137.10、158.92、15.48mg·kg-1。(3)重金属形态分析表明,随着稻壳炭比例增加,稻壳炭堆肥中重金属Zn、Cu、Pb、Cd的交换态和碳酸盐结合态转化为残渣态及铁锰氧化态的比例增大,添加8%稻壳炭时DTPA提取的有效态重金属质量分数最低,分别为705.72、47.95、50.43、4.47 mg·kg-1;蚯蚓-稻壳炭联合堆肥会使得污泥中重金属交换态、碳酸盐结合态、铁锰结合态和有机结合态均向残渣态转化,添加4%稻壳炭与蚯蚓的协同转化能力最大,Zn、Cu、Pb、Cd有效态重金属质量分数分别为629.84、38.63、36.76、1.63mg·kg-1,说明稻壳炭添加入蚯蚓堆肥可进一步降低工业污泥中重金属有效性,使重金属钝化。本研究可为稻壳炭联合蚯蚓堆肥处理工业污泥提供参考和科学依据。  相似文献   

18.
哈尔滨市粪便无害化处理厂工艺设计   总被引:3,自引:0,他引:3  
介绍了哈尔滨太平区粪便无害化处理厂的基本工艺流程和相关设备和构筑物。该厂将粪便进行机械脱水,脱水粪渣添加麦壳或玉米秸经两次好氧堆肥处理,添加无机肥料生产有机复合肥;粪水厌氧消化生产液体肥料的工艺对粪便进行资源化利用,产生臭气通过除臭装置吸收。该工程改善了当地的污染状况并创造了经济效益。  相似文献   

19.
新型调理剂CTB-2污泥堆肥的氧气时空变化特征研究   总被引:1,自引:0,他引:1  
采用新型CTB-2调理剂与城市污泥进行堆肥,研究了堆肥过程中氧气、温度的时空变化特征。结果表明,m(CTB-2调理剂):m(污泥)=1:2能够有效降低污泥容重,改善堆体结构;堆体能够快速升温至高温期并持续7d以上,最终完成无害化;采用该比例的调理剂能够保证堆体的通风供氧,使堆体各层通风后的氧气体积分数都恢复至19%以上,最低氧气体积分数维持在数17%以上;堆肥过程中堆体的氧气体积分数、耗氧速率和温度都具有明显的层次效应,堆体耗氧速率呈先升高后降低的趋势,堆体通风后的氧气和最低氧气体积分数均随着堆肥的进行而增加。  相似文献   

20.

The huge amounts of sewage sludge produced by municipal wastewater treatment plants induce major environmental and economical issues, calling for advanced disposal methods. Traditional methods for sewage sludge disposal increase greenhouse gas emissions and pollution. Moreover, biochar created from sewage sludge often cannot be used directly in soil applications due to elevated levels of heavy metals and other toxic compounds, which alter soil biota and earthworms. This has limited the application of sewage sludge-derived biochar as a fertilizer. Here, we review biomass and sewage sludge co-pyrolysis with a focus on the stabilization of heavy metals and toxicity reduction of the sludge-derived biochar. We observed that co-pyrolyzing sewage sludge with biomass materials reduced heavy metal concentrations and decreased the environmental risk of sludge-derived biochar by up to 93%. Biochar produced from sewage sludge and biomass co-pyrolysis could enhance the reproduction stimulation of soil biota by 20‒98%. Heavy metals immobilization and transformation are controlled by the co-feed material mixing ratio, pyrolysis temperature, and pyrolysis atmosphere.

  相似文献   

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