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11.
生活垃圾填埋场封场后种植植物中重金属迁移研究   总被引:3,自引:1,他引:3  
在上海老港生活垃圾填埋场填埋单元封场的覆盖土中掺混了矿化垃圾种植植物,分析Cd、Pb、Cu、Zn 4种重金属在土壤和植物中的迁移变化,研究表明:(1)覆盖土土质从一般耕作土变成肥沃土壤;覆盖土和种植混合土重金属Cd、Pb、Cu、Zn中Cd、Pb含量相近,但种植土的Cu含量略大于覆盖原土,Zn含量远大于覆盖原土;(2)植物能富集土壤和垃圾中的重金属,木本植物的根部富集重金属的能力强于草本植物,但重金属在草本植物根、茎、叶中的迁移速度大于木本植物;(3)植物根、茎、叶的Cu、Zn含量均远大于未受污染土壤种植植物相应部位的Cu、Zn含量,种植的植物不能供家养动物食用,以免通过食物链作用危及人体安全.  相似文献   
12.
Large-scale incinerators are applied widely as a result of the heavy burden of municipal solid waste(MSW) generated, while strong opposition is arising from the public living nearby. A large-scale working incineration plant of 1500 ton/day was chosen for evaluation using life cycle assessment. It was found that the corresponding human toxicity impacts via soil(HTs), human toxicity impacts via water(HTw) and human toxicity impacts via air(HTa)categories are 0.213, 2.171, and 0.012 personal equivalents(PE), and global warming(GW100)and nutrient enrichment(NE) impacts are 0.002 and 0.001 PE per ton of waste burned for this plant. Heavy metals in flue gas, such as Hg and Pb, are the two dominant contributors to the toxicity impact categories, and energy recovery could reduce the GW100 and NE greatly. The corresponding HTs, HTw and HTa decrease to 0.087, 0.911 and 0.008 PE, and GW100 turns into savings of- 0.007 PE due to the increase of the heating value from 3935 to5811 k J/kg, if a trommel screener of 40 mm mesh size is used to pre-separate MSW. MSW sorting and the reduction of water content by physical pressure might be two promising pre-treatment methods to improve the combustion performance, and the application of stricter standards for leachate discharge and the flue gas purification process are two critical factors for improvement of the environmental profile identified in this work.  相似文献   
13.
As one of the largest human activities, World Expo is an important source of anthropogenic Greenhouse Gas emission (GHG), and the GHG emission and other environmental impacts of the Expo Shanghai 2010, where around 59,397 tons of waste was generated during 184 Expo running days, were assessed by life cycle assessment (LCA). Two scenarios, i.e., the actual and expected figures of the waste sector, were assessed and compared, and 124.01 kg CO2-equivalent (CO2-eq.), 4.43 kg SO2-eq., 4.88 kg NO3--eq., and 3509 m3 water per ton tourist waste were found to be released in terms of global warming (GW), acidification (AC), nutrient enrichment (NE) and spoiled groundwater resources (SGWR), respectively. The total GHG emission was around 3499 ton CO2-eq. from the waste sector in Expo Park, among which 86.47% was generated during the waste landfilling at the rate of 107.24 kg CO2-eq., and CH4, CO and other hydrocarbons (HC) were the main contributors. If the waste sorting process had been implemented according to the plan scenario, around 497 ton CO2-eq. savings could have been attained. Unlike municipal solid waste, with more organic matter content, an incineration plant is more suitable for tourist waste disposal due to its high heating value, from the GHG reduction perspective.  相似文献   
14.
Treatment of sewage using an aged-refuse-based bioreactor   总被引:8,自引:0,他引:8  
The refuse in landfills becomes stabilized or aged after years of placement, and the resultant partly or fully stabilized refuse thus obtained is referred to as "aged refuse" in this work. The aged refuse contains a wide spectrum and large quantity of microorganisms, which have been proved to have a strong decomposition capability for both biodegradable and refractory organic matter present in some wastewaters. In this study, the aged refuse excavated from a 10-year old closed landfill compartment at Shanghai Refuse Landfill was used as the substrate in a bioreactor for the biofiltration of sewage taken from the sewage pipeline systems in Shanghai downtown areas. Typically, 120kg of screened aged refuse with a diameter less than 15mm was used as biofiltration material in a round shaped bioreactor with an inner diameter of 80cm and a height of 150cm. Influent sewage with initial COD, BOD, and NH(3)-N concentrations of 400-500, 240-300, and 45-50mg/L, respectively, was introduced into the bioreactor. The corresponding concentrations in the effluent were reduced to below 80-100, 10-20, and 10-15mg/L, respectively, at a hydraulic load of 1000-1200L/m(3) refuse/day, and the treatment efficiencies decreased with increased hydraulic load. The treatment mechanism was also studied. It was found that the pollutant removal efficiencies dramatically decreased when the aged refuse in the bioreactor was preliminarily disinfected using NaClO solutions, indicating that the pollutants in the sewage were biologically removed. The treatment process developed in this work is cost-effective.  相似文献   
15.
长江流域水库密集,蕴藏着巨大的渔业资源,由于人口增加,耕地减少,保护土地成为国策,今后靠用耕地开挖池塘养鱼来增加水产品产量已不可能;我国传统的四大海洋经济鱼类,因过度捕捞,已不成渔汛,湖泊不断减少,江河环境受到不同程序的污染,使湖泊,灌河渔业产量下降。相反,随着岁月流长,人类进步,经济繁荣,人工湖-即水库将会不断增加。  相似文献   
16.
Environmental Science and Pollution Research - More than 70% of catastrophic landslides were previously unknown and brought tremendous losses to human life and property in urban regions; therefore,...  相似文献   
17.
以玉米秸秆为原料,分别在300、500和700℃的条件下热解制备生物炭(CS300、CS500、CS700),对其理化性质(pH、比表面积、灰分含量、元素组成)和电化学性质(电子供给能力(EDC)、电子接受能力(EAC)、导电率(EC))进行了表征,并将3种生物炭和导电型石墨分别加入消化反应器进行污泥中温厌氧消化批次实验。结果表明:CS300具有最高的EDC(0.598 mmol·g~(-1)),CS700具有最高的EAC(0.740 mmol·g~(-1)),石墨的导电性最强(2.0×10~4 S·m~(-1));4种碳材料对污泥厌氧消化产甲烷均有促进作用,CS300、石墨、CS500和CS700实验组的甲烷累积总产量比对照组分别提高了42.4%、38.9%、28.9%和11.2%。微生物群落结构分析结果表明:甲烷生成的主要代谢途径是CO_2还原代谢途径;3种生物炭材料均提高了Methanosarcina等氢营养型产甲烷古菌的相对丰度,CS300的富集能力最强,石墨的影响作用则不显著。冗余分析结果表明:4种碳材料的电化学性质对厌氧细菌群落组成变化的贡献度为52.7%,对厌氧古菌群落组成变化的贡献度为64.4%;具有氧化还原活性的生物炭通过反复供给、接受电子大幅增加体系中微生物可用电子数量来提高互养微生物种间电子传递效率;而导电性能优秀的石墨则主要通过促进微生物的直接电子传递来提高甲烷产率。研究为解析具有电化学活性的碳材料对厌氧微生物菌群代谢特征和电子传递的影响规律提供了一定的理论支撑,对提高污泥厌氧消化效率、实现能源高效回收具有重要理论价值和现实意义。  相似文献   
18.
Excel 2000在环境监测数据统计中的应用   总被引:1,自引:0,他引:1  
介绍了Excel 2000在环境监测报表中进行数据统计、输出表格和图形的方法。  相似文献   
19.
Fenton法制备污泥基活性炭及其性能表征   总被引:1,自引:0,他引:1  
污泥基活性炭孔隙率低下是污泥资源化利用的主要制约因素,而Fenton法预处理污泥,可有效改善活性炭性质。通过考察H2O2投加量、H2O2/Fe2+、活化pH以及炭化条件等参数,确定了最佳污泥基活性炭制备条件:H2O2投加量为5%(质量分数),H2O2/Fe2+为5∶1(质量比),活化pH为3,活化时间为2.0h,污泥含固率为1.0%(质量分数),炭化温度为600℃,炭化时间为2.0h,炭化升温速率为10℃/min。此时,得到的污泥基活性炭吸附碘值为340mg/g,比表面积为353.563m2/g,孔容积为0.238cm3/g,微孔容积为0.095cm3/g。该活性炭对阳离子和阴离子染料(亚甲基蓝和甲基橙)具有良好的吸附性能,结果表明,对亚甲基蓝和甲基橙的吸附更符合Langmuir方程,且其饱和吸附量分别为71.53、57.73mg/g。对吸附动力学的拟合结果表明,该吸附更符合二级动力学方程。  相似文献   
20.
海滨填埋场是沿海地区垃圾处理的一个重要选择,但其渗滤液泄漏引发的地下环境污染具有一定的独特性。以渗滤液中长时间保持高浓度的氨氮作为指标,通过构建砂箱实验,探讨咸水条件下氨氮在地下环境中的迁移转化过程。结果表明,在地下水环境中,渗滤液氨氮较易沿水流水平方向扩散,扩散速度随空间推移不断降低,从开始的4 cm/d降低到出水处的3.2 cm/d;其衰减率沿饱和区、过渡区、调整区依次增高;同时其衰减率随时间的增加不断降低,在实验的第15、25、35、45和55天,分别为100%、98.7%、95.6%、91.8%和83.5%。  相似文献   
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