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为了评价污泥活性炭(SAC)改良黏土作为垃圾卫生填埋场衬垫防渗材料的可行性,该文通过吸附动力学试验、等温吸附平衡试验、柔性壁渗透试验,分别研究了掺量为0%、1%、3%、5%的SAC改良黏土对Cd(Ⅱ)、Cu(Ⅱ)的吸附特性以及渗透性能。试验结果表明,改良黏土对Cd(Ⅱ)或Cu(Ⅱ)的吸附以30 min内的颗粒表面吸附为主,吸附平衡时间分别为120 min或90 min。改良黏土对Cd(Ⅱ)或Cu(Ⅱ)的吸附符合Langmuir等温吸附模式。随SAC掺量由0%增加至5%,在S/L=120 g/L,Cd(Ⅱ)、Cu(Ⅱ)最大吸附量qm分别增加了25%、47%;当固液比增加到200 g/L,Cd(Ⅱ)、Cu(Ⅱ)最大吸附量qm分别增加了32%、48%。水、垃圾渗滤液2种渗透媒介下SAC改良黏土的渗透系数为1.8×10-9~1.2×10-8cm/s,均<1×10-7cm/s的防渗要求。因此,SAC改良黏土可以作为垃圾填埋场的衬垫防渗材料使用,可以有效阻滞渗滤液中重金属离子的迁移。 相似文献
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Interactions between the red algaPlocamium hamatum J. Agardh (Rhodophyta) and other benthic organisms including the alcyonacean soft coralSinularia cruciata (Tixier-Durivault) were investigated on an inshore fringing reef environment in whichP. hamatum was the dominant large fleshy alga. Field observations of sessile reef organisms including octocorals and sponges living in close proximity toP. hamatum revealed that varying degrees of tissue necrosis were suffered by the invertebrates when in physical contact with the alga. In order to establish whether the chemical constituents of the alga, especially chloromertensene, played a role in this necrosis, manipulative field experiments were carried out in the Pelorus Channel, Palm Island group (18°34S; 146°29E), North Queensland, Australia, in November and December 1988. The first experiment involved the relocation of healthy plants and soft corals into contact and non-contact situations on a mesh grid. In all cases of contact betweenP. hamatum andS. cruciata, the soft coral suffered tissue necrosis (n=6,p=0.0022). The second experiment had the same design, but involved the use of artificial plants both uncoated and coated with natural levels of chloromertensene, in contact withS. cruciata. In all cases of contact with coated treatments, necrosis was observed inS. cruciata (n=4,p=0.025). In cases where uncoated artificial fronds were placed in contact with soft corals,S. cruciata showed minor abrasion effects, but no appreciable necrosis. Coated treatments were not fouled by epiphytes during the experiment and were not consumed by predators. Uncoated treatments were rapidly reduced in size by predation and any remaining material was biofouled. These experiments thus demonstrated that the deleterious effects observed in soft corals in the field were caused by contact with the algaP. hamatum, that these effects were indeed chemically mediated by chloromertensene, and that physical contact without chemical intervention caused no such deleterious effects. This is the first experimental evidence which conclusively demonstrates allelopathy between an alga and other marine organisms and identifies the compound responsible for the observed allelopathic effects. 相似文献