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21.
采用共沉淀法制备了Cu-Al、Co-Al和Cu-Co-Al复合金属氧化物催化剂,考察了3种催化剂对HCN的催化水解性能,并通过XRD、BET、XPS和H2-TPR等对催化剂的结构和性能进行表征.结果表明, Cu-Co-Al催化剂展示最高的催化活性. 反应温度200℃,反应180min后, Cu-Co-Al、Cu-Al和Co-Al催化剂对HCN的转化率分别为95%,90%,10%;NH3生成量分别为122,118,18mg/m3.低结晶度、高分散性、高比表面积的催化剂有利于低温HCN水解.适量的表面分子氧含量、较高的Cu2+和Co3+含量、较低的还原温度是Cu-Co-Al催化剂具有较高的HCN低温水解活性的主要原因. 相似文献
22.
近年来突发性跨境污染事件时有发生,广州市环保局曾先后成功处理北江镉污染、清远市乐排河氰化物污染等事件。本案例通过回放对清远市乐排河氰化物污染事件的应急处理过程,总结出环保部门应对突发性跨境污染事件三方面的思考:1.加强对跨境河流的监控是及时掌握突发性污染的必要手段;2.借鉴同类型污染事件的处理方法是有效处理事件的捷径;3.环保部门严格按职责处理是解决跨境污染事件的关键。 相似文献
23.
介绍了阿希金矿从设计到生产,不断改进含氰废水的治理措施,基本实现了废水零排放的三个阶段,分析阐述了阿希金矿是如何实现环保治理与企业生产相互协调发展的。 相似文献
24.
金矿废水中氰化物的自然降解及其环境影响 总被引:7,自引:2,他引:5
某金矿废水氰化物在尾矿坝、环保坝及河流中的自然降解规律可以用负指数方程描述 .废水进入河流 A、河流 C后浓度降低的主导因素是河水的稀释作用 .通过计算研究 ,该金矿废水氰化物基本不对国际河流 F造成影响 .控制该金矿废水对 A、C2河污染的有效途径是增加循环用水量、降低环保坝水位以便减少废水渗水量 . 相似文献
25.
26.
Metal(Cu,Co,or Zn) loaded ZSM-5 and Y zeolite adsorbents were prepared for the adsorption of hydrogen cyanide(HCN) toxic gas.The results showed that the HCN breakthrough capacity was enhanced significantly when zeolites were loaded with Cu.The physical and chemical properties of the adsorbents that influence the HCN adsorption capacity were analyzed.The maximal HCN breakthrough capacities were about the same for both zeolites at 2.2 mol of HCN/mol of Cu.The Cu2p XPS spectra showed that the possible species present were Cu2O and CuO.The N1s XPS data and FT-IR spectra indicated that CNwould be formed in the presence of Cu+/Cu2+ and oxygen gas,and the reaction product could be adsorbed onto Cu/ZSM-5 zeolite more easily than HCN. 相似文献
27.
铜氰溶液的电子束辐照降解 总被引:1,自引:0,他引:1
研究了铜氰溶液中总氰初始浓度、pH、铜浓度等对总氰降解效率的影响,比较了KCN溶液和铜氰溶液的总氰降解率,初步推断了铜氰溶液在辐照过程中的降解机制.实验结果表明,在同样的辐照剂量下,随着总氰初始浓度的增加,总氰降解率降低,相应的总氰降解G值增大;铜浓度越低,总氰降解率越高;pH越小的铜氰溶液总氰降解率越高.电子束辐照KCN溶液和铜氰溶液的总氰降解反应属于表观一级反应.在相同的辐照剂量下,KCN溶液的总氰降解率比铜氰溶液要高得多.铜氰溶液的电子束辐照降解过程非常复杂,主要是铜氰络合离子逐步离解出的CN-与·OH的反应. 相似文献
28.
Yu X Zhou P Zhou X Liu Y 《Environmental science and pollution research international》2005,12(4):221-226
Background Little is known about metabolism rates of environmental chemicals by vegetation. A good model compound to study the variation
of rates among plant species is cyanide. Vascular plants possess an enzyme system that detoxifies cyanide by converting it
to the amino acid asparagine. Knowledge of the kinetic parameters, the half-saturation constant (Km) and the maximum metabolic
capacity (vmax), is very useful for enzyme characterization and biochemical purposes. The goal of this study is to find the
enzyme kinetics (KM and vmax) during cyanide metabolism in the presence of Chinese vegetation, to provide quantitative data
for engineered phytoremediation, and to investigate the variation of metabolic rates of plants.
Methods Detached leaves (1.0 g fresh weight) from 12 species out of 9 families were kept in glass vessels with 100 mL of aqueous
solution spiked with potassium cyanide at 23°C for 28 h. Four different treatment concentrations of cyanide were used, ranging
from 0.44 to 7.69 mg CN/L. The disappearance of cyanide from the aqueous solution was analyzed spectrophotometrically. Realistic
values of the half-saturation constant (KM) and the maximum metabolic capacity (vmax) were estimated by a computer program
using non-linear regression treatments. As a comparison, Lineweaver-Burk plots were also used to estimate the kinetic parameters.
Results and Discussion The values obtained for KM and vmax varied with plant species. Using non-linear regression treatments, values of vmax and
KM were found in a range between 6.68 and 21.91 mg CN/kg/h and 0.90 to 3.15 mg CN/L, respectively. The highest vmax was by
Chinese elder (Sambucus chinensis), followed by upright hedge-parsley (Torilis japonica). The lowest vmax was demonstrated
by the hybrid willow (Salix matssudana x alba). However, the highest KM was found in the water lily (Nymphea teragona), followed
by the poplar (Populus deltoides Marsh). The lowest KM was demonstrated by corn (Zea mays L.). The values of vmax were normally
distributed with a mean of 13 mg CN/kg/h.
Conclusions Significant removal of cyanide from aqueous solution was observed in the presence of plant materials without phytotoxicity,
even at high doses of cyanide. This gives rise to the conclusion that the Chinese plant species used in this study are all
able to efficiently metabolize cyanide, although with different maximum metabolic capacities. A second conclusion is that
the variation of metabolism rates between species is small. All these plants had a similar KM, indicating the same enzyme
is active in all plants.
Recommendations and Outlook Detoxification of cyanide with trees seems to be a feasible option for cleaning soils and water contaminated with cyanide.
For phytoremediation projects, screening appropriate plant species adapted to local conditions should be seriously considered.
More chemicals should be investigated to find common principles of the metabolism of environmental chemicals by plants. 相似文献
29.
聚氨酯泡沫固定化产碱杆菌细胞生物转化氰化物 总被引:6,自引:1,他引:6
利用1株产碱杆菌DN25作为降氰菌株,以聚氨酯泡沫为载体进行固定化,研究其转化特性.结果表明,采用吸附生长法能有效实现菌株DN25的固定,固定细胞量可达到每g泡沫载体生物量干重0.35g.固定化细胞的最适转化温度和pH为35℃、8.0.对于低浓度氰化物,固定化细胞和游离细胞的转化速率相当;对于高浓度氰化物,固定化细胞具有明显优势,不仅可耐受更高浓度的氰化物转化,其转化速率也高于游离细胞,最大转化速率为507mg/(L·h),是游离细胞的2.8倍.通过初步的摇瓶模拟序列批式反应,固定化细胞活性可保持20d. 相似文献
30.
离子色谱法测定工业废水中的微量氰化物 总被引:1,自引:0,他引:1
用HPIC AG6为前置柱 ,以 0 5 12mol L醋酸钠 0 1mol L氢氧化钠 0 5 % (V V)乙二胺作洗脱液 ,用离子色谱法可测定废水中的微量氰化物 ,CN- 含量在 2 8μg L~ 1 5mg L的范围内 ,线性关系良好 (r=0 998) ,16mg L以下的S2 -及大量的SCN- 、Cl- 等共存物质不干扰测定 相似文献