supported by the National Natural Science Foundation of China(Grant No.52360009);the Lanzhou Science and Technology Plan(China)(2023-3-86).
Traditional Fenton oxidation is an effective method for reducing pollutants that are difficult to degrade.Owing to the large amounts of Fe(II),acids,and alkalis added in the reaction,large amounts of Fenton sludge are...
the project from Science and Technology Department of Yunnan Tobacco Cooperation(#202020530000241006);the key project from Zhejiang Science and Technology Bureaux(#2023C02002).
Iron-carbon micro-electrolysis system is a promising method for promoting electron transfer in nitrate removal.However,many traditional approaches involving simple physical mixing inevitably suffered from the confined...
Iron-carbon (Fe-C) composite microspheres prepared through a facile aerosol-based process are effective remediation agents for the simultaneous adsorp- tion and reduction of chlorinated hydrocarbons. Complete dechlo...
support by the High-tech Research Center and Open Research Center at the Saitama Institute of Technology
Tempering is final process used in heat treatment of steel components.It is important to improve the toughness and ductility of the quenched steel without a great loss of the hardness and strength.However,the traditio...
Project(2009ZX07315-005) supported by the National Water Pollution Controlled and Treatment Great Special of China
The nitrate nitrogen removal efficiency of iron-carbon micro-electrolysis system was discussed in treating pharmaceutical wastewater with high nitrogen and refractory organic concentration. The results show that the g...
Supported by the National Natural Science Foundation of China (Grant No. 50334010);the State Foundation for Key Projects: New Generation of Steels (Grant No. G1998061500)
This paper studies the composition, quantity and particle size distribution of nano-scaled precipitates with size less than 20 nm in high strength low carbon (HSLC) steel and their effects on mechanical properties of ...
The project was supported by the National Natural Science Foundation of China.
Studies on ultrafine particle catalyst have attracted many researchers' attention by its large surface area,higher activity and selectivity.Based on the mechanism of α-Fe and Fe_xC_y as the catalytical active species...