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11.
研究了超声波(ultrasonic)和紫外线(ultraviolet)-Fenton反应联用处理干旱区老化石油污染土壤。土壤TPH含量为30 470 mg/kg,pH值为3,H2O2与Fe比例为50∶1时,H2O2浓度为0.37%、0.74%、1.11%和1.85%在超声波处理6 h土壤TPH去除量分别为4 495、11 983、15 470和19 800 mg/kg;TPH去除量随H2O2/Fe2+增大而增大,H2O2/Fe2+为100∶1时,TPH去除量为12 699 mg/kg。溶液pH值接近中性,H2O2浓度为0.74%,H2O2/Fe2+为50∶1,超声波与UV共同作用2 h和4 h,TPH去除量分别达到14 824和21 821 mg/kg;UV单独作用2 h、4 h对土壤TPH去除量为9 253和12 845 mg/kg。超声波-Fenton反应对1,2-二甲苯降解效果最好,其次为C17-C28的直链及支链烷烃,最低为烃类衍生物。  相似文献   
12.
利用海藻酸钙为载体包埋固定化硫酸盐还原菌(SRB)混合菌群,研究了固定化微生物吸附重金属镍离子的动力学特性.结果表明:固定化混合SRB菌群对Ni2 具有良好的吸附性能,最大吸附容量qm高达931.9mg(Ni2 )/g(SRB)颗粒,是一种颇具应用前景的生物吸附剂.固定化SRB吸附Ni2 的动力学过程可以用准二次动力学方程描述,整个吸附过程可以明显地分为两个阶段,即物理化学吸附阶段和生物沉淀阶段.扩散动力学研究表明,固定化颗粒的内扩散并非是唯一控制吸附速率的机制,整个吸附过程涉及到多种吸附机制.图4表3参14  相似文献   
13.
Pan X  Zhang D  Quan L 《Chemosphere》2006,65(10):1772-1777
Momoge wetland is an internationally important wetland not only because it is a habitat for many rare bird species but also because it is an internationally important stopover for some rare global migratory bird species. However the petroleum exploitation in wetland has brought about many environmental problems. One of the most severe problems is crude oil pollution, which has caused the dying-off Carex tato and imposes great threat on survival of rare birds. This work studied the factors that caused the dying off of Carex tato. The results showed that death of Carex tato was the result narcosis toxicity of alcohols, intermediate biodegradation products of crude oil, on the root tissue, and the fragmentization of cuticle of leaves by light components of crude oil volatized from soil surface. However, the mechanism involved was much more complex and three interactive factors including crude oil pollution of soil, long-term drought and poor permeability of soil were responsible for the dying-off of Carex tato grassland. The distribution of crude oil in soil profile was characterized with high concentrations at top silty layer and the layer below root zone and low or no crude oil at root zone layer. This distribution was relative to root system characteristics and rhizospheric biodegradation. In root zone, substantive oxygen could be transported to root zone through dense root system and well developed aerenchyma. The crude oil in root zone was easily biodegraded by aerobic rhizosphere microbes. However, some toxic intermediate products, such as some alcohols, was sealed in root zone due to poor permeability of the top soil layer and the deeper soil layer and they had lethal effects on root tissue. Above ground, low molecular components of crude oil in top soil layer was easily volatized into atmosphere during long-term drought. Some of the volatized components were adsorbed onto leaves. SEM analysis showed that these components destroyed the leaves by fragmentization of cuticle of leave. This study also shows that although wetland has natural attenuation of pollutants, natural attenuation of pollutants by natural wetland should not be overemphasized. This attenuation function may lose under some conditions such as long-term drought and poor soil texture.  相似文献   
14.
包括量子点在内的人工纳米颗粒是近年来突出的环境污染物,为确定其在生物膜中的扩散过程和特征,应用TIRF(全内反射荧光)、FRAP(荧光漂白后恢复)等技术,研究了CdTe/CdS/ZnS核壳式量子的微米级的团聚体在细菌Comamonas testoteroni生物膜表面的吸附动力学、生物膜内部的扩散及其在生物膜中的溶解和毒性.结果表明:通过TIRF技术观察到生物膜可快速吸附>1 μm的CdTe/CdS/ZnS核壳式量子点团聚体,而且通过CLSM(激光扫描共聚焦荧光显微镜)进行深度扫描发现,量子点团聚体吸附到生物膜表面后可以进一步扩散到生物膜深层,在25 min内可穿透45 μm的生物膜,并在生物膜中随深度呈线性分布特征.FRAP分析表明,量子点团聚体被生物膜固定后还具有较强的移动性,漂白区的荧光强度在5 min可恢复30%.量子点团聚体在生物膜中会溶解产生Cd2+、Zn2+等重金属离子,从而对生物膜产生毒性并杀死细菌.研究显示,虽然纳米颗粒进入环境中会形成微米级的团聚体,但依然可以进入生物膜,对水生微生物生态系统产生危害.TIRF、CLSM和FRAP技术是研究纳米颗粒物在生物膜表面吸附和内部扩散动力学的有效工具.   相似文献   
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