Related Experiment Video
Updated: Jan 16, 2026

Fabrication of Schottky Diodes on Zn-polar BeMgZnO/ZnO Heterostructure Grown by Plasma-assisted Molecular Beam Epitaxy
Published on: October 23, 2018
Occurrence of beryllium and its microscale interactions with coexisting phases in beryllium-containing sludge
Xiaobo Min1, Lin Yu2, Yong Ke1
1School of Metallurgy and Environment, Central South University, Changsha 410083, China; State Key Laboratory of Advanced Metallurgy for Non-ferrous Metals, Changsha 410083, China; Chinese National Engineering Research Center for Control & Treatment of Heavy Metal Pollution, Changsha 410083, China.
None:
Beryllium-containing sludge (BCS) is a typical hazardous waste from Be smelting, which can cause serious harm to ecology and human health by releasing harmful Be if it is stored long-term in environment. Nonetheless, the occurrence of Be in BCS is unclear, which seriously hinders the development of pollution control technologies. In order to enhance the understanding of BCS, the occurrence of Be and the microscale interactions with coexisting phases were investigated for the first time. It was found that CaSO4·2H2O and amorphous SiO2 are the primary phases of BCS. The simulated experiments of purified materials showed that Be interacted with CaSO4·2H2O and amorphous SiO2. Be can enter into the lattice of CaSO4·2H2O mainly as free Be2+. Amorphous SiO2 can adsorb Be2+ particularly at a pH range of 3-5. The dissolution behavior experiment of BCS shows that about 52 % of the Be is readily extracted under acidic conditions, which refers to the Be of independent occurrence. In contrast, the remaining 48 % of Be can be extracted only after the CaSO4·2H2O has completely dissolved. Hence, CaSO4·2H2O is identified as the key occurrence phase which determines the highly efficient dissolution of Be. As a result, this study enhances the understanding of BCS and lays the foundation for the development of Be separation technologies.
Related Concept Videos
Coagulation
Colloidal precipitates

