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以城市污水处理厂剩余污泥和磷酸生产废渣磷石膏为原料制备多孔陶粒,考察不同配比、烧结温度及烧结时间对多孔陶粒堆积密度、吸水率及盐酸可溶率的影响。结果表明:在污泥与磷石膏混合比1∶4、烧结温度1 050℃、烧结时间15 min的条件下,可制得堆积密度为685.78 kg/m~3、吸水率27.34%、盐酸可溶率11.38%的陶粒,该陶粒内部含有丰富的膨胀气孔,可用作水处理滤料或建材骨料。 相似文献
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炼油废水深度净化与回用的试验研究 总被引:3,自引:0,他引:3
某炼油厂的生产废水经处理后虽然已达标排放,但由于水资源的严重缺乏,要求必须进行废水的深度处理以便回用.为此,该文提出了采用厌氧陶粒滤池、陶粒填料生物接触氧化池与陶粒滤料过滤池相串联的废水深度处理工艺并进行试验研究.结果表明,该工艺处理效率高、运行稳定,二级气浮出水中的COD、油类、悬浮物与酚类的去除率高达90%~100%,水质清澈透明、无色无味,满足该厂对回用水的水质要求. 相似文献
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Juan Qin Chuanmeng Yang Chong Cui Jiantao Huang Ahmad Hussain Hailong Ma 《环境科学学报(英文版)》2016,28(9):91-99
Lime mud is a kind of solid waste in the papermaking industry, which has been a source of serious environmental pollution. Ceramsites containing anorthite and gehlenite were prepared from lime mud and fly ash through the solid state reaction method at 1050°C. The objective of this study was to explore the efficiency of Ca2 + and OH− release and assess the phosphorus and copper ion removal performance of the ceramsites via batch experiments, X-ray diffraction (XRD) and scanning electron microscopy (SEM). The results show that Ca2 + and OH− were released from the ceramsites due to the dissolution of anorthite, gehlenite and available lime. It is also concluded that gehlenite had stronger capacity for Ca2 + and OH− release compared with anorthite. The Ca2 + release could be fit well by the Avrami kinetic model. Increases of porosity, dosage and temperature were associated with increases in the concentrations of Ca2 + and OH− released. Under different conditions, the ceramsites could maintain aqueous solutions in alkaline conditions (pH = 9.3–10.9) and the release of Ca2 + was not affected. The removal rates of phosphorus and copper ions were as high as 96.88% and 96.81%, respectively. The final pH values of both phosphorus and copper ions solutions changed slightly. The reuse of lime mud in the form of ceramsites is an effective strategy. 相似文献
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上流式曝气生物滤池两种填料启动挂膜的试验研究 总被引:1,自引:2,他引:1
在相同运行条件下,对瓷粒和陶粒2种不同填料曝气生物滤池(BAF)的启动运行进行了实验研究,考察了不同填料在挂膜过程中CODCr和NH4^+-N的去除效果及出水NO2^--N和NO3^--N质量浓度的变化。结果表明,在常温下(20~25℃)2种填料的所需的启动时间差异较大,陶粒填料所需时间为17d,而瓷粒填料别需37d。启动挂膜过程中,两者对CODCr和NH4^+-N可达到基本相同的去除率,但所需运行时间差异较大,陶粒BAF较之瓷粒BAF稳定,且硝化效果好于瓷粒BAF. 相似文献
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生活污泥改性烧制超轻陶粒的研究 总被引:14,自引:0,他引:14
针对无机生活污泥的特性。选取了能够提高污泥可塑性的粘结剂和提高烧胀性的改性剂。通过塑性指数试验揭示了粘结剂对污泥塑性的改善程度,研究表明该粘结剂可在20%~60%的较大范围掺加都能改善污泥的塑性。正交试验揭示了在1200℃烧成温度时三种改性剂对污泥烧胀性的影响程度和规律.试验结果充分证明生活污泥经过改性可以烧制超轻陶粒。 相似文献
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