24小时热门版块排行榜    

Znn3bq.jpeg
查看: 1263  |  回复: 10
【奖励】 本帖被评价5次,作者daiqiguang增加金币 4.5
当前主题已经存档。
当前只显示满足指定条件的回帖,点击这里查看本话题的所有回帖

[资源] 马自达宣布新一代汽车尾气催化转化器——贵金属使用量大大降低

Mazda Motor Corporation has unveiled a new generation of catalytic converters that use 70 to 90 per cent less of the precious metals which help to purify exhaust emissions.

The converters rely on nanoparticles of the catalytic metal, each less than five nanometres across, studded onto the surface of tiny ceramic spheres. The Japanese firm claims this is the first time 'a catalyst material has been achieved that features single, nanosized precious metal particles embedded in fixed positions.'



The nanoparticle-studded ceramic sphere could cut the use of platinum-group metals in catalytic converters
© Mazda


Automotive catalysts use platinum, rhodium and palladium to speed up chemical reactions of pollutants such as nitrogen oxide, carbon monoxide and hydrocarbons, to create non-toxic emissions.

By using nanoparticles of the precious metals instead of larger particles, less metal is needed to produce the same surface area over the ceramic base of the catalyst.

This simple concept had not been utilized in the past because exhaust heat can make the nanoparticles migrate over the surface of the ceramic bead, agglomerating into larger particles, explained Michael Zins, deputy director of the Fraunhofer Institute for Ceramic Technologies and Systems (IKTS) in Dresden, Germany. This reduces the overall surface area of the metal, cutting the converter's efficiency.

Mazda reckons it has overcome the agglomeration problem by embedding the precious metal nanoparticles into the ceramic in fixed positions - but it's not saying how. 'Mazda is not giving any technological idea how they are doing it.,' Zins told Chemistry World. 'They are only saying, "We have the technology to do it."'

Jochen Münzinger, Mazda spokesman in Germany, would say only that Mazda has worked on the technology for 4 years. He also declined to discuss commercial details or timelines, saying only: 'We intend to put this new catalyst to practical use in the near future, but we cannot disclose which car adopts this first.'

Major development

Zins described the use of nanoparticles to produce catalysts as a major development, and one that all automakers would like to copy. 'I am sure all other companies are working on the technology,' he said.

Indeed, Mazda's claim comes just two months after rival Japanese automaker Nissan announced it had developed a nanotechnology-based catalyst that would cut its precious metals usage by 50 per cent. Nissan, which will share the technology with French partner Renault, intends to launch a new vehicle using the catalyst in late 2008 or early 2009.

The chief benefit of the technology is cost savings, Zins said. Vehicle manufacturers use a large proportion of the world's annual platinum, rhodium and palladium output, and the development could eventually have a big impact on the prices of these metals.

Less platinum and palladium in catalysts could also translate into health benefits. For example, ongoing research suggests that emissions of platinum-group metals from catalytic converters along US highways might be a root cause of an alarming rise in allergies and asthma.

Ned Stafford

Source: Chemistry World.

大概意思:

汽车尾气净化催化剂一般是贵金属负载在高热稳定性的载体之上,但是目前贵金属的用量还是比较高,为此汽车尾气净化催化剂的的一个热点问题就是:降低贵金属的含量、提高催化剂的热稳定性!

对于负载型贵金属催化剂来说,一般而言,如果贵金属的颗粒越小,如果达到相同催化效果的话所用的贵金属就越低!

但是贵金属颗粒如果很小的话,将导致另外一个问题:贵金属颗粒团聚、向催化剂表面迁移、流速!对于汽车尾气净化催化剂来说,催化剂面临苛刻的使用条件:高温、尾气组分变化不定,因而存在矛盾,相互制约,一直使得贵金属的含量不能降下来。

马自达公司近日(10-10)宣称他们已经找到了很好的方法,制备纳米贵金属并负载于高稳定性的载体之上(克服了贵金属团聚的问题),降低贵金属颗粒大小从而减少贵金属的用量!但是他们并没有透漏任何技术相关的信息!
本文引用地址:http://www.sciencenet.cn/blog/user_content.aspx?id=8918
回复此楼
已阅   回复此楼   关注TA 给TA发消息 送TA红花 TA的回帖

methane

至尊木虫 (正式写手)


★★★ 三星级,支持鼓励

国内的同行需要努力了
8楼2007-10-16 08:22:28
已阅   回复此楼   关注TA 给TA发消息 送TA红花 TA的回帖
查看全部 11 个回答

hanks2010

木虫 (著名写手)


★★★★★ 五星级,优秀推荐

Umicore据说在年底也将推出降低30%贵金属的三元催化剂;
还有Nissan也将推出低贵金属催化剂.
看来国内厂家必须要抓紧研发了,不然前面只能是死路一条!
2楼2007-10-13 22:49:50
已阅   回复此楼   关注TA 给TA发消息 送TA红花 TA的回帖

guaizaixx

金虫 (小有名气)


★★★★★ 五星级,优秀推荐

如果贵金属催化剂的团聚问题得到解决,那何止是NOx处理一方面的进展!整个贵金属催化剂研制中的寿命太短问题都会得到想当的启示。呵呵,但愿这项技术是真的。
3楼2007-10-13 23:12:06
已阅   回复此楼   关注TA 给TA发消息 送TA红花 TA的回帖

hanks2010

木虫 (著名写手)


哈哈 很可能原理也很简单
原理还是可以挖掘的

[ Last edited by hanks2010 on 2007-10-14 at 11:37 ]
4楼2007-10-14 11:20:38
已阅   回复此楼   关注TA 给TA发消息 送TA红花 TA的回帖
☆ 无星级 ★ 一星级 ★★★ 三星级 ★★★★★ 五星级
普通表情 高级回复 (可上传附件)
最具人气热帖推荐 [查看全部] 作者 回/看 最后发表
[考研] 求调剂288 +5 ioodiiij 2026-04-10 7/350 2026-04-10 15:49 by ioodiiij
[考研] 285求调剂 +9 AZMK 2026-04-07 11/550 2026-04-10 15:24 by AZMK
[考研] 一志愿京区985,085401,与本科专业一致,电子信息工程, +3 阳光开朗的男孩 2026-04-10 3/150 2026-04-10 15:15 by hemengdong
[考研] 一志愿211,化学学硕,310分,本科重点双非,求调剂 +19 努力奋斗112 2026-04-04 20/1000 2026-04-10 12:15 by pengliang8036
[考研] 289 分105500药学专硕求调剂(找B区学校) +5 白云123456789 2026-04-09 7/350 2026-04-09 21:03 by 白云123456789
[考研] 生物学调剂,一志愿西南大学348,Top期刊一区二作、二区三作,三等奖学金三次 +4 candyyyi 2026-04-09 4/200 2026-04-09 18:39 by l_paradox
[考研] 本科郑州大学,一志愿华东师范大学282求调剂 +23 熊哥xtk 2026-04-07 26/1300 2026-04-09 17:17 by 18446523
[考研] 0860004 求调剂 309分 +7 Yin DY 2026-04-08 7/350 2026-04-09 14:06 by ditto77778
[考研] 专硕310求调剂 +7 捞捞我…. 2026-04-04 8/400 2026-04-08 20:24 by yutian743
[考研] 336求调剂,一志愿中科大 +9 墨彧 yuyu 2026-04-06 9/450 2026-04-08 11:24 by 想读书的菌菌
[考研] 277求调剂 +4 考研调剂lxh 2026-04-06 6/300 2026-04-08 10:40 by 逆水乘风
[考研] 316求调剂 +4 15318418673 2026-04-07 4/200 2026-04-07 22:12 by hemengdong
[考研] 22408 一志愿双一流人工智能300分 四六级,数据分析国奖 +4 zzfeng123 2026-04-06 6/300 2026-04-07 21:02 by zzfeng123
[考研] 生物工程求调剂 +13 喜欢还是不甘心 2026-04-05 13/650 2026-04-07 16:55 by Ecowxq666!
[考研] 372分材料与化工(085600)英二数二求调剂 +4 蓝笺片 2026-04-06 4/200 2026-04-07 12:30 by dongzh2009
[考研] 一志愿太原理工大学计算机技术专硕348,求调剂指导 +3 nexious 2026-04-05 3/150 2026-04-07 08:19 by jp9609
[考研] 302分求调剂 一志愿安徽大学085601 +12 zyx上岸! 2026-04-04 12/600 2026-04-07 02:09 by BruceLiu320
[考研] 调剂 +3 李广火 2026-04-05 3/150 2026-04-05 18:57 by 蓝云思雨
[考研] 288求调剂,一志愿华南理工大学071005 +6 ioodiiij 2026-04-04 6/300 2026-04-05 10:09 by guoweigw
[考研] 085701求调剂 +7 龚禹铭 2026-04-04 8/400 2026-04-04 13:49 by 小小树2024
信息提示
请填处理意见