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排序方式: 共有271条查询结果,搜索用时 31 毫秒
1.
朱斌 《环境监测管理与技术》1995,7(5):15-16
连续5天腹腔注射同一剂量(1/5LD50)的合成洗涤剂,取小鼠骨髓细胞测定嗜多染色红细胞的微核率,研究表明,3种合成洗涤剂(加大香洗衣粉,洁牌餐具洗涤剂,恩威高级餐具洗洁精)使小鼠微核率有所增高,但恩威,洁牌餐具洗涤剂与对照无显著性差异。 相似文献
2.
液相加热法制备了Al2O3作为光催化剂,研究了不同光源、光照时间、催化剂用量和溶液酸度等条件对常见有机染料光催化降解性能影响。结果表明,用太阳光作为光源照射3h,50mL染料溶液中加入Al2O3 30mg,溶液pH8~10,孔雀石绿,酚藏花红,甲基紫等染料脱色率达93%以上。将使用过的Al2O3经过简单处理,孔雀石绿溶液脱色率仍达到94.1%,催化性能稳定,可以重复利用。通过紫外可见光谱分析,表明染料分子在催化剂和光照条件下发生了降解。 相似文献
3.
感光胶片废水的水解酸化—好氧处理工艺试验 总被引:1,自引:0,他引:1
对感光胶片有机生产废水处理工艺进行了方法采用水解酸化-好氧串联工艺和传统活性污泥法两种方法并进行对照。结果经水解酸化处理,废水的BOD5/CODcr可提高至0.54-0.56,平均增加了17%左右,证实了水解酸化菌在该工艺条件下具有搞高效片废水可生化性的功能。 相似文献
4.
The capability of decolorization for commercial dyes by Coriolus versicolur fermentation broth containing laccase with or without immobilized mycelium was evaluated.With cell-free fermentation broth containing laccase,high decolorization ratio was achieved for acid orange 7,but not for the other dyes concerned.The immobilized mycelium was proved to be more efficient than the cell-free system.All the four dyestuffs studied were found being decolourized with certain extent by immobilized mycelium.The repeated-batch decolorization was carried out with satisfactory results.The experimental data showed that the continuous decolorization of wastewater from a printing and dyeing industry was possible by using self-immobilized C.Versicolor. 相似文献
5.
水解酸化-好氧工艺处理感光材料有机废水研究 总被引:2,自引:0,他引:2
感光材料有机生产废水含有多种合成有机物,其BOD5/CODer比值为0.46~0.48,可生化性良好,经水解酸化处理后该废水的BOD5/CODcr的比值可提高至0.54~056,平均增加了17%左右。水解酸化-好氧串联工艺对该废水总的处理效果表明:在废水CODer进水浓度2000~2500mg/L范围内,CODer总去除率可达95%左右,BOD5总去除率可达97%左右;水解酸化后好氧生化系统的动力学半速度常数Ks=103mg/L,最大比降解速度K=5.0/日。 相似文献
6.
环境意识对提高环境与发展综合决策水平有很大作用。环境意识高低与综合决策的水平有很大联系。对环境意识的形成、其对综合决策的影响作用以及如何提高环境意识、促进综合决策发展做了研究。 相似文献
7.
污泥活性炭对染料的吸附动力学研究 总被引:34,自引:2,他引:34
以城市污水处理厂脱水污泥作为原料,采用化学活化法(ZnCl2作为活化剂)制得污泥活性炭,全面研究了污泥活性炭对活性艳红K-2BP、酸性大红GR和直接紫N这3种染料的吸附动力学行为.结果表明,污泥活性炭可以有效地吸附染料,实现污泥的资源化;3种染料的平衡吸附量qe均随着染料初始浓度和温度的增大而增大,相同条件下平衡吸附量qe的大小顺序为:酸性大红GR>活性艳红K-2BP>直接紫N;伪二级动力学模型能够很好地描述3种染料在污泥活性炭上的吸附动力学行为;对于活性艳红K-2BP和直接紫N,颗粒内扩散过程是该吸附速率的控制步骤,但不是唯一的速率控制步骤,吸附速率同时还受颗粒外扩散过程的控制,而对于酸性大红GR,颗粒内扩散过程不是吸附速率的控制步骤;污泥活性炭对3种染料的吸附是一个吸热过程,吸附活化能较小,主要为物理吸附过程. 相似文献
8.
The production of laccase by Coriolus versicolor was studied.The effect of cultivation on laccase production by Coriolus versicolor was examined to obtain optimal medium and cultivation conditions.Both batch and repeated-batch processes were performed for laccase production.In repeated-batch fermentation with self-immobilized mycelia, total of 14 cycles were performed with laccase activity in the range between 3.4 and 14.8U/ml. 相似文献
9.
Andreas Züttel 《Mitigation and Adaptation Strategies for Global Change》2007,12(3):343-365
Hydrogen storage and transportation or distribution is closely linked together. Hydrogen can be distributed continuously in
pipelines or batch wise by ships, trucks, railway or airplanes. All batch transportation requires a storage system but also
pipelines can be used as pressure storage system. Hydrogen exhibits the highest heating value per weight of all chemical fuels.
Furthermore, hydrogen is regenerative and environment friendly. There are two reasons why hydrogen is not the major fuel of
toady’s energy consumption: First of all, hydrogen is just an energy carrier. And, although it is the most abundant element
in the universe, it has to be produced, since on earth it only occurs in the form of water. This implies that we have to pay
for this energy, which results in a difficult economic task, because since the industrialization we are used to consuming
energy for free. The second difficulty with hydrogen as an energy carrier is the low critical temperature of 33 K, i.e. hydrogen
is a gas at room temperature. For mobile and in many cases also for stationary applications the volumetric and gravimetric
density of hydrogen in a storage system is crucial. Hydrogen can be stored by six different methods and phenomena: high pressure
gas cylinders (up to 800 bar), liquid hydrogen in cryogenic tanks (at 21 K), adsorbed hydrogen on materials with a large specific
surface area (at T < 100 K), absorbed on interstitial sites in a host metal (at ambient pressure and temperature), chemically bond in covalent
and ionic compounds (at ambient pressure), oxidation of reactive metals e.g. Li, Na, Mg, Al, Zn with water. These metals easily
react with water to the corresponding hydroxide and liberate the hydrogen from the water. Finally, the metal hydroxides can
be thermally reduced to the metals in a solar furnace. 相似文献
10.