博彩评级网-博彩网_百家乐投资_全讯网新2

position: EnglishChannel  > InnovationChina> China’s Breakthrough in Propylene Production

China’s Breakthrough in Propylene Production

Source: Science and Technology Daily | 2024-07-19 16:56:34 | Author: Science and Technology Daily

By YIN Wei & CHEN Xi


Defective TiOx overlayers catalyze propane dehydrogenation promoted by base metals.?(COURTESY?PHOTO)

Scientists from Tianjin University in China have developed a cost-effective and environment-friendly catalyst for the production of propylene, one of the highest produced basic chemicals globally, used to manufacture plastics, rubber, fibers, and pharmaceuticals.

The groundbreaking achievement boosts the development of sustainable catalysts for low-carbon olefin production technologies and is strategically important for the global petrochemical industry chains. In 2023, China's propylene production exceeded 60 million tons, accounting for approximately one-third of the global output, with its total value surpassing 600 billion RMB.?

The finding is the cover story of the July 19th issue of Science.

Among the various propylene production technologies, propane dehydrogenation (PDH) is preferred due to its high economic efficiency and reduced dependence on petroleum. However, traditional PDH catalysts rely heavily on expensive platinum or the highly toxic chromium oxide, making the process costly and detrimental to the environment. The quest for a more efficient, cheaper, and greener next-generation propylene catalyst has thus become a global focal point in chemical research.

The Energy and Catalysis Adventure Team at Tianjin University hypothesized that inexpensive and environmentally friendly oxides could be used to interact electronically with metals, thereby enhancing the catalytic process. Based on this hypothesis, they developed a titanium oxide-nickel composite catalyst. Titanium is abundantly available, with China being one of the top source countries. Nickel is also plentiful globally.

The titanium oxide overlayers were tailored to completely coat an entire nickel nanoparticle through strong metal-support interaction at elevated temperatures under hydrogen reduction, which remained intact under propane dehydrogenation reaction conditions. The result was fine-tuned electronic transfer between titanium oxide and nickel, enhancing catalytic activity while suppressing side reactions such as cracking and carbon deposition.

This new catalyst demonstrates exceptional propylene selectivity and stability, outperforming international counterparts. It can reduce costs by 30-50 percent while ensuring non-toxic and low-energy consumption during preparation and use.

This innovation also provides feedback for the next generation of efficient, cost-effective, and sustainable propylene catalysts.?

Editor:龍云

Top News

Energy Cooperation Gets New Direction

?Chinese President Xi Jinping sent a congratulatory message to the 7th China-Russia Energy Business Forum in Beijing on November 25, sparking enthusiastic responses from various sectors in both countries.

WEEKLY REVIEW (Dec.3-10)

Liang Wenfeng, founder and CEO of the Chinese AI firm DeepSeek, and "deep diver" Chinese geoscientist Du Mengran are on the annual "Nature's 10" list, which highlights 10 people at the heart of some of the biggest science stories of 2025.

抱歉,您使用的瀏覽器版本過低或開啟了瀏覽器兼容模式,這會影響您正常瀏覽本網頁

您可以進行以下操作:

1.將瀏覽器切換回極速模式

2.點擊下面圖標升級或更換您的瀏覽器

3.暫不升級,繼續瀏覽

繼續瀏覽
苗栗市| 百家乐赌球| 川宜百家乐官网破解版| 如何玩百家乐官网赢钱技巧| 百家乐官网园试玩| 中华百家乐的玩法技巧和规则| 大发888娱乐城大发888大发网| 百家乐官网做中介赚钱| 真人百家乐打法| 太阳城百家乐软件| 边城棋牌中心| 百家乐官网看大路| 百家乐翻天粤语qvod| 大发娱乐城官网| 娱乐场百家乐官网大都| 百家乐赌场凯时娱乐| 蒲江县| 做生意必须看风水吗| 大发888开户注册首选| 百家乐官网游戏高手| 百家乐学院教学视频| game88city| 太阳城百家乐主页| 泽州县| 百家乐真人娱乐场| 棋牌娱乐城注册送58| 百家乐官网路单走势图| 威尼斯人娱乐场首页| 大发888游戏下载官方| 百家乐如何切牌好| 突泉县| 伯爵百家乐官网娱乐| 中国百家乐澳门真人娱乐平台网址| 百家乐官网路单打法| 百家乐多少点数算赢| 大发888国际游戏平台| 百家乐官网双龙出海注码法| 百家乐珠盘路| 18皇宝| 百家乐的出牌技巧| 百家乐棋牌外挂|