排序方式: 共有30条查询结果,搜索用时 15 毫秒
1.
2.
3.
常温下考察了焙烧温度、金含量及水分对Au/ZnO催化剂上CO氧化性能的影响 ,并在常湿条件下考察了ZnO上CO氧化活性同温度的关系。结果表明 ,金的存在极大地提高了催化剂CO的氧化活性。另外焙烧温度和金含量对Au/ZnO催化剂的活性和稳定性均有较大影响 ,在常温常湿条件下 ,2 4 0℃焙烧的 2 %Au/ZnO催化剂 ,可连续反应 1 750h保持CO完全转化。XRD结果表明 ,锌的化学状态对催化剂的稳定性有较大的影响 ,氧化锌较碳酸锌表现出较高的稳定性。 相似文献
4.
5.
Rebecca L. Curtis 《Environmental Forensics》2014,15(4):293-295
Gold (Au) accounts for only 0.004 g/ton of the earth's crust and is the most desired element. With an average annual world production of approximately 2,500 tons, the current methods of Au mining in developing countries cause major environmental issues. These issues vary from deforestation to cyanide and mercury (Hg) contamination. This article presents several cases of environmental catastrophes caused by Au mining in different regions of the world (Africa, the Middle East, Eastern Europe, and South America). It discusses the currently available processes for the large-scale extraction of metallic Au grains and supports the need for an alternative sustainable process. 相似文献
6.
7.
We describe here a one-step method for the synthesis of Au/TiO2 nanosphere materials, which were formed by layered deposition of multiple anatase TiO2 nanosheets. The Au nanoparticles were stabilized by structural defects in each TiO2 nanosheet, including crystal steps and edges, thereby fixing the Au–TiO2 perimeter interface. Reactant transfer occurred along the gaps between these TiO2 nanosheet layers and in contact with catalytically active sites at the Au–TiO2 interface. The doped Au induced the formation of oxygen vacancies in the Au–TiO2 interface. Such vacancies are essential for generating active oxygen species (*O−) on the TiO2 surface and Ti3 + ions in bulk TiO2. These ions can then form Ti3 +–O−–Ti4 + species, which are known to enhance the catalytic activity of formaldehyde (HCHO) oxidation. These studies on structural and oxygen vacancy defects in Au/TiO2 samples provide a theoretical foundation for the catalytic mechanism of HCHO oxidation on oxide-supported Au materials. 相似文献
8.
9.
Au/γ-Al2O3催化剂的制备及其对气相三苯系污染物的催化消除 总被引:1,自引:0,他引:1
采用沉积一沉淀法制备了负载型Au/γ-Al2O3,催化剂,对模拟污染气体的三苯系(苯,甲苯,二甲苯)蒸气进行催化消除反应,探讨了金含量、活化条件对催化剂活性的影响.结果表明,负载型Au/γ-Al2O3催化剂用量为0.50g、反应气流速为20 mL·min-1时,295℃下可完全催化消除浓度为7.57 g·m-3的苯;在252℃下可完全催化消除浓度为7.49 g·m-3的甲苯;在235 ℃下能完全催化消除浓度为3.07 g·m-3的二甲苯.苯、甲苯和二甲苯最后都完全矿化为CO2和H2O,没有生成新的有机物.对催化反应进行了动力学研究,上述催化反应都是准一级反应.测定得到苯、甲苯和二甲苯催化反应的总包反应表观活化能分别为118.47 kj·mol-1、101.43 kJ·mol-1和85.18 kJ·mol-1. 相似文献
10.
为研究采矿活动及其污染事故对家禽养殖的影响,分别采集了金铜矿下游两岸不同村庄农户家养番鸭10只,分析了鸭肉、鸭肝和鸭血样品中Cu、Hg和As的含量,并对番鸭体内重金属的健康安全进行了评价.结果表明,在相同组织中,Cu含量较Hg和As高.在不同组织中,鸭肝样品中Cu含量最高,平均值为17.20 mg.kg-1,而Hg和As在3个组织间含量无明显差异.金铜矿下游两岸不同村庄农户番鸭样品体内3个组织中Cu、Hg和As的含量均未显示出明显的空间分布规律,表明污染事故及正常的采矿活动未对下游两岸村庄农户家养番鸭样品构成明显影响.所研究番鸭体内3个组织中的Cu、Hg和As的含量都处于正常值范围,且番鸭健康状况未表现出异常.但参照国家食品卫生标准评价结果显示,鸭肝样品中Cu超标率达到100%,最高超标1.74倍,部分鸭肉、鸭血与鸭肝样品中Hg含量也达到较高水平. 相似文献