科研動態(tài)

首頁 > 科學(xué)研究 > 科研動態(tài) > 正文

申戰(zhàn)輝博士在SCI期刊《Environmental Research》發(fā)表論文

時間:2024-04-02 16:44:38 來源:科研與研究生管理辦公室 作者:閆軍輝 閱讀:

標(biāo)題:Pd/Cu bimetallic nano-catalyst supported on anion exchange resin (A520E) for nitrate removal from water: High property and stability

作者Zhanhui Shen, Menghao Fang, Li Tang, Jialu Shi, Wanfeng Wang

來源出版物Environmental Research

DOI10.1016/j.jenvman.2024.120719

出版年2024

文獻(xiàn)類型Journal Article

語種英文

摘要:High nitrate concentration in water can lead to eutrophication and the disruption of healthy aquatic ecosystems. Additionally, in the human digestive system, it has the potential to be reduced to nitrite, which can be damaging to people's physical health. Catalytic hydrogenation of nitrate is one of the strategies for removing nitrate from water. Using A520E resin as support, we prepared Pd/Cu nano-catalyst (Pd/Cu@A520E) according to a liquid phase reduction method. A520E could improve the transfer process of nitrate in the solution to the activity sites of Pd/Cu nanoparticles, thus increase the reaction rate of nitrate reduction. Pd/Cu bimetallic nano-particles were evenly distributed on/in the resin with a size range from 2 nm to 10 nm. The External Circulating System equipped with Venturi tube (ECSV) was designed to improve the utilization efficiency of H-2 in both batch tests and long-term continuous-flow tests. Nearly 100% of nitrate removal efficiency and above 90% of N-2 selectivity were achieved in both batch tests and continuous-flow tests. Coexisting Cl- and SO42- at 300 mg/L showed little impact on the property of Pd/Cu@A520E. Pd/Cu@A520E also showed high nitrate removal property and stability in continuous-flow tests of more than 800 h. NO3- was adsorbed onto the active sites (functional groups and Pd/Cu particle sites), meanwhile H-2 was adsorbed onto the active sites of Pd/Cu@A520E to form Pd [H]. Then the adsorbed NO3- was reduced into N-2 (main product) or NH4+ by Pd [H]. In addition, Pd/Cu@A520E showed high nitrate removal property from municipal waste water.

關(guān)鍵詞Pd/Cu; Nanoparticle; Hydrogenation catalysis; Nitrate pollution; Municipal wastewater

影響因子8.3

論文鏈接https://www.sciencedirect.com/science/article/abs/pii/S0013935123024209

編輯:閆軍輝
泾阳县| 永春县| 翁牛特旗| 彝良县| 同德县| 嵊州市| 麻城市| 图片| 虎林市| 德惠市| 邛崃市| 普宁市| 甘德县| 德保县| 封开县| 汝南县| 海阳市| 嫩江县| 伊金霍洛旗| 手机| 易门县| 牙克石市| 四平市| 太白县| 宜都市| 会昌县| 拜泉县| 天祝| 许昌县| 江都市| 侯马市| 富宁县| 竹山县| 孟连| 普兰县| 洪江市| 金山区| 美姑县| 海安县| 江口县| 河东区|