首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到17条相似文献,搜索用时 734 毫秒
1.
采用微波辐照技术修复氯丹污染土壤。以α-氯丹和γ-氯丹的去除率为评价指标,采用正交实验设计确定土壤中氯丹去除的最佳微波辐照条件。实验结果表明,当微波辐照强度为5.83W/g、微波辐照时间为20min、土壤含水率为15%时,土壤中氯丹的去除效果最好,去除率达到85%以上。微波辐照技术简单高效,易于控制,且无二次污染,具有可行性,可作为修复氯丹污染土壤的新方法。  相似文献   

2.
C/N及氮源形式对潜流式人工湿地脱氮效果的影响   总被引:2,自引:0,他引:2  
研究了C/N及氮源形式对潜流式人工湿地脱氮效果的影响.结果表明,当潜流式人工湿地进水C/N由2.0增大到6.0时,总氮的去除效率由45%提高到70%;而当进水C/N由6.0增大到14.0时,总氮的去除效率仅由70%提高到85%,提高的幅度相对较小.潜流式人工湿地对总氮的去除效率随NH 4 -N/TN的增加而降低,随着NO-3 -N/TN的增加而提高.  相似文献   

3.
以某熔炼厂遗留场地重金属污染土壤作为研究对象,选取柠檬酸(CA)、复合聚天冬氨酸(PASP)、十二烷基苯磺酸钠(SDBS)作为淋洗剂,采用振荡淋洗法研究了不同浓度和配比的单一淋洗剂和复合淋洗剂对污染土壤Pb和Cd的去除效果。实验结果表明:CA、PASP、SDBS单独使用时对Pb和Cd的浸提率均随淋洗剂浓度提高而增大,CA对Pb、PASP对Pb、SDBS对Cd的最高浸提率分别为45.71%、63.69%和39.04%;CA-PASP复合淋洗剂淋洗Pb时有拮抗作用,单独使用PASP淋洗Pb效果更好,CA-PASP复合淋洗剂对Cd的浸提率较低;CASDBS复合淋洗剂效果最佳,对Pb和Cd的最高浸提率分别为55.22%和73.90%。  相似文献   

4.
选取4种从石油污染土壤中分离出的石油降解菌(包括根瘤菌(A)、节细菌(B)、嗜盐菌(C)和芽孢杆菌(D)),对模拟石油污染土壤进行了微生物修复实验。考察了4种菌单独使用时的石油降解率,确定了混合菌的最佳配比和菌群的最优培养条件,并对比了微生物修复前后土壤的各项性质。实验结果表明:4种菌均可提高微生物修复石油污染土壤的修复效果,使用D菌时石油降解率最高;当混合菌的w(A)∶w(B)∶w(C)∶w(D)=12∶2∶21∶65时,在培养条件为混合菌接种量122.0 mL/kg、土壤含水率14%(w)、鸡粪加入量90 g/kg、麦糠加入量150 g/kg和表面活性剂加入量22 mL/kg的情况下,土壤的修复效果最好,40 d后石油降解率达66.95%;经混合菌修复的石油污染土壤,其肥力明显升高,脱氢酶、过氧化酶和脲酶的活性均升高,微生物数量也有明显增加。  相似文献   

5.
选取4种从石油污染土壤中分离出的石油降解菌(包括根瘤菌(A)、节细菌(B)、嗜盐菌(C)和芽孢杆菌(D)),对模拟石油污染土壤进行了微生物修复实验。考察了4种菌单独使用时的石油降解率,确定了混合菌的最佳配比和菌群的最优培养条件,并对比了微生物修复前后土壤的各项性质。实验结果表明:4种菌均可提高微生物修复石油污染土壤的修复效果,使用D菌时石油降解率最高;当混合菌的w(A)∶w(B)∶w(C)∶w(D)=12∶2∶21∶65时,在培养条件为混合菌接种量122.0 mL/kg、土壤含水率14%(w)、鸡粪加入量90 g/kg、麦糠加入量150 g/kg和表面活性剂加入量22 mL/kg的情况下,土壤的修复效果最好,40 d后石油降解率达66.95%;经混合菌修复的石油污染土壤,其肥力明显升高,脱氢酶、过氧化酶和脲酶的活性均升高,微生物数量也有明显增加。  相似文献   

6.
张素华  汤烨  詹路  谢冰 《化工环保》2021,41(2):202-208
针对土壤的塑料污染问题,提出一种采用热脱附降解技术修复污染土壤的方法。选取4种土壤中常见的残留塑料(聚乙烯(PE)、聚氯乙烯(PVC)、聚对苯二甲酸乙二酯(PET)、聚丙烯(PP))为研究对象,通过控制热解温度和土壤含水率对各污染土壤的修复效果进行探究。实验结果表明:在500 ℃的最佳热解温度下处理60 min,PE、PVC、PET和PP的去除率分别达到92.61%、91.73%、90.74%和93.42%;土壤含水率低于16%时对修复效果的影响不显著。表征结果显示,500 ℃热解后土壤中残留有机成分已得到充分挥发,热解油的主要组分为烷烃。  相似文献   

7.
利用经过筛选和驯化的降氰菌处理氰化物污染土壤,实现氰化物的降解和去除,据此建立降氰菌修复含氰土壤的新方法。结果表明,降氰菌处理效果快速有效,经过3 d生物培养,氰化物降解率达到31.2%;随着培养时间延长,微生物群落代谢能力发生变化,在第3~8 d氰化物降解率增长缓慢,在第8 d达到33.3%。通过降氰菌种资源的筛选和应用,为氰化物污染土壤的修复提供了清洁、经济、有效的技术思路。  相似文献   

8.
羟基自由基抑制剂对臭氧氧化降解苯酚的影响   总被引:1,自引:0,他引:1       下载免费PDF全文
采用臭氧氧化法处理模拟苯酚废水,考察了废水pH以及HCO3-、CO32-、HPO42-、H2PO4-和叔丁醇等·OH抑制剂对苯酚降解效果的影响。实验结果表明:苯酚降解率随废水pH的增大而增大;当废水pH=11时,降解25 min后苯酚降解率达到99.55%,比废水pH=5时提高了50.12百分点;CO32-和H2PO4-对·OH的抑制作用分别强于HCO3-和HPO42-;当叔丁醇质量浓度由0增至50 mg/L时,苯酚降解率由99.55%降至69.19%。  相似文献   

9.
采用电动力修复技术处理Pb、Cd复合污染土壤,考察了柠檬酸和乙二胺四乙酸二钠(EDTA)作为电解液对棕壤(ZR)和红壤(HR)两种我国典型壤质中Pb、Cd去除效果的影响。实验结果表明:在电压梯度为2 V/cm,修复时间为4 d的条件下,ZR的最佳电解液为EDTA,Pb、Cd平均去除率为13.2%和17.8%,HR的最佳电解液为柠檬酸,Pb、Cd的平均去除率为20.0%和33.8%;延长修复时间至10 d能显著提高HR中Pb、Cd的去除率,电解液为柠檬酸时Cd平均去除率达91.1%,电解液为EDTA时Pb平均去除率达63.2%,修复后土壤中Cd和Pb含量均低于建筑用地土壤污染风险筛选值。综合考虑能耗及修复效果,EDTA是高效且经济的修复电解液。  相似文献   

10.
调查了陕北某采油厂油井周边石油污染土壤的基本污染情况,采用铜绿假单胞菌-黑麦草联合修复技术对其进行了现场修复示范工程,取得了较好的现场修复效果。调查显示,该油井周边土壤的含油量最高为9 020 mg/kg。90 d的修复周期结束后,土壤的含油量降至402 mg/kg,去油率高达95.5%,并且不同采样位置的土壤含油量检测结果均低于500 mg/kg,满足《农用污泥污染物控制标准》(GB 4284—2018)中的A级土壤标准。单独使用黑麦草或铜绿假单胞菌进行修复,土壤的去油率分别为29.5%或88.8%,而空白区土壤的去油率仅为21.8%。  相似文献   

11.
采用KClO氧化吸收烟气中的Hg0,研究了脱汞性能和反应机理。结果表明:提高反应温度会降低脱汞性能,加快KClO热分解,减小Hg0溶解度,抑制氧化还原放热反应;提高Hg0浓度会增大Hg0在气相主体和气液界面的分压差,进而提高Hg0的传质速率,使Hg0去除率提高;继续提高Hg0浓度,反应限速步骤从气膜移向液膜,使Hg0去除率下降;KClO质量分数低于10%时,Hg0和KClO溶液的气液两相传质效率由液相控制;Hg0去除率随吸收液初始pH的升高而降低,吸收液pH随反应时间的延长而升高。  相似文献   

12.
Per‐ and polyfluoroalkyl substances (PFAS) are highly resistant to biotic and abiotic degradation and can withstand very high temperatures before breaking down. The storage of PFAS‐impacted water and sediments in a holding pond or stockpiled investigation or remedial action‐derived waste is occurring on an increasing number of sites. The most common PFAS water treatment options include granular‐activated carbon and resins and the most common soil treatment options have been primarily limited to excavation, offsite incineration, and, in some cases, soil stabilization. An increasing number of states across the United States are establishing part per trillion PFAS guidance levels for drinking water. Removing PFAS from soils removes PFAS source impacts to groundwater. In this study, volatilization of PFAS from soil treated using in situ thermal heating is evaluated as a treatment method to achieve a high degree of PFAS removal from soils. The evaluation of temperatures needed to achieve removal is described. To minimize vapor treatment required for PFAS thermal remediation, a scrubber was incorporated into the treatment train to transfer PFAS to the liquid phase in a concentrated, low‐volume solution. Vapor‐liquid equilibrium behavior and the extent of PFAS volatilization from impacted soil over a range of temperatures were evaluated. Results showed that heating soil to 350°C and 400°C reduces PFAS soil concentrations by 99.91% and 99.998%, respectively. It was also confirmed that sulfonate‐based PFAS generally required higher temperatures for volatilization to occur than carboxylate‐based PFAS.  相似文献   

13.
This research was done to assess the dechlorination and decomposition of polychlorinated biphenyls (PCBs) in real waste transformer oil through a modified domestic microwave oven (MDMW). The influence of microwave power (200–1000 W), reaction time (30–600 s), polyethylene glycol (PEG) (1.5–7.5 g), iron powder (0.3–1.5 g), NaOH (0.3–1.5 g), and H2O (0.4–2 ml) were investigated on the decomposition efficiency of PCBs existing in real waste transformer oil with MDMW. Obtained data indicate that PEG and NaOH have the greatest influence on decomposition of PCBs; while, iron did not influence, and H2O decreased, the decomposition efficiency of PCBs. Experimental data also indicated that with the optimum amount of variables through a central composites design method (PEG = 5.34 g, NaOH = 1.17 g, Fe = 0.6 g, H2O = 0.8 ml and microwave power 800 W), 78 % of PCBs was degraded at a reaction time of about 6 min. In addition, the PCBs decomposition without using water increased up to 100 % in the reactor with the MDMW at 6 min. Accordingly, results showed that MDMW was a very efficient factor for PCBs decomposition from waste transformer oil. Also, using microwave irradiation, availability and inexpensive materials (PEG, NaOH), and iron suggest this method as a fast, effective, and cheap method for PCB decomposition of waste oils.  相似文献   

14.
唐伟枫  刘敏  陈滢  汤伟 《化工环保》2017,36(5):509-513
以相对产甲烷活性(RA)和COD去除率为指标,考察不同浓度甲苯二胺对厌氧污泥微生物活性的影响。实验结果表明:甲苯二胺质量浓度为0~150 mg/L时,RA接近100%甚至高于100%,COD去除率为91%~93%,与对照组无差别,对厌氧微生物几乎没有抑制作用;当甲苯二胺质量浓度为200~400 mg/L时,RA为75%~95%,COD去除率与对照组相比下降了2~6个百分点,属于轻度抑制;当甲苯二胺质量浓度高于400 mg/L时,RA在70%以下,COD去除率降至85%以下,属于中度抑制;且随着甲苯二胺质量浓度增大,RA减小、COD去除率减小,抑制作用增强。因此,为了防止甲苯二胺对厌氧污泥微生物活性的抑制,甲苯二胺质量浓度应控制在0~150 mg/L。  相似文献   

15.
微生物燃料电池对苯酚的降解及其产电性能   总被引:1,自引:0,他引:1       下载免费PDF全文
构建了单室空气阴极微生物燃料电池(MFC),研究了苯酚含量对以苯酚和葡萄糖为底物的MFC产电性能及苯酚去除率的影响。实验结果表明:当CODB(苯酚贡献的COD)为0时,MFC的运行周期为36 h,最大输出电压为560 m V,最大功率密度为489 m W/m2;CODB为1 000 mg/L时,MFC的运行周期为54 h,最大输出电压为436 m V,最大功率密度为98 m W/m2;当CODB为200 mg/L时,MFC的COD去除率、苯酚去除率和库伦效率(CE)均达到最大,分别为89.7%、99.9%和7.2%,同时,MFC的阳极生物膜产生的氧化峰电流最高,表明在葡萄糖-苯酚双底物对微生物的协同作用下,MFC的阳极生物膜氧化性最强;随着CODB的增大,COD去除率、苯酚去除率和CE均逐渐减小,说明苯酚的抑制作用导致微生物活性降低。  相似文献   

16.
Volatilization and Biodegradation of VOCs in Membrane Bioreactors (MBR)   总被引:1,自引:0,他引:1  
Volatilization and biodegradation are major competitive volatile organic compound (VOC) removal mechanisms in biological wastewater treatment process, which depend on compound specific properties and system design/operational parameters. In this study, a mathematical model was used to determine major removal pathways at various organic loading rates (OLR), solids residence time (SRT) and dissolved oxygen (DO) concentrations in a biological process for vinyl acetate. Model results showed that biological treatment process should be designed with long SRT, high OLR and low DO concentrations to maximize biodegradation and minimize volatilization of VOCs. Unless a VOC is toxic to microorganisms under the given conditions, low VOC emission rates are an inherent advantage of MBRs, which operate at higher OLR and longer SRT compared to conventional activated sludge process. A lab scale membrane bioreactor (MBR) was operated at varying OLR to investigate the relative volatilization and biodegradation rates for acetaldehyde, butyraldehyde and vinyl acetate. Synthetic wastewater containing three VOCs was introduced to the MBR. The DO concentration and SRT was maintained at 2.0 mg L− 1 and 100 days, respectively. The overall VOC removal rate was more than 99.7% for three VOCs at all the OLR. For vinyl acetate, the biodegradation rate increased from 93.87 to 99.40% and the volatilization removal rate decreased from 6.09 to 0.59% as OLR was increased from 1.1 to 2.0 kg COD m− 3 d− 1. It was confirmed that a MBR can be a promising solution to reduce VOC emissions from wastewater.  相似文献   

17.
用絮凝#x02014;微波辐射#x02014;Fenton试剂氧化法深度处理焦化废水,研究了微波辐射时间、微波功率、FeSO4加入量、H2O2加入量和废水pH对废水处理效果的影响。实验结果表明:在聚合氯化铝加入量为350mg/L、聚丙烯酰胺加入量为12mg/L、废水pH=5、FeSO4加入量为250mg/L、H2O2总加入量为1400mg/L、H2O2分3次投加、微波功率为400W、微波辐射时间为60min的条件下,处理后出水的浊度、色度和COD去除率分别为98.59%,97.62%,86.21%。处理后出水澄清透明,COD为50.34mg/L,满足GB50050#x02014;2007《工业循环冷却水处理设计规范》的要求。  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号