1 |
Highly elastic aerogel derived from spent coffee grounds as oil removal adsorbent Chen Y, Cai W, Zhang M, Xie M, Tan F, Yang F Inpress KJChE, 1000(1000), 1, 2022 |
2 |
Efficient removal of Cr(VI) by spent coffee grounds: Molecular adsorption and reduction mechanism Hu Y, Zhi M, Chen S, Lu W, Lai Y, Wang X Inpress KJChE, 1000(1000), 1, 2022 |
3 |
Production of high purity magnetic nickel powder from spent DRI catalyst via cementation method Aboody H, Najafabadi AT, Saidi M Journal of Industrial and Engineering Chemistry, 110, 382, 2022 |
4 |
Catalytic removal of volatile organic compounds using black mass from spent batteries Park YK, Shim WG, Jung SC, Jung HY, Kim SC Korean Journal of Chemical Engineering, 39(1), 161, 2022 |
5 |
In Vitro Evaluation of Enriched Brewers' Spent Grains UsingBacillus subtilisWX-17 as Potential Functional Food Ingredients Tan YX, Mok WK, Chen WN Applied Biochemistry and Biotechnology, 193(2), 349, 2021 |
6 |
Surface Modification of Phosphoric Acid.activated Carbon in Spent Coffee Grounds to Enhance Cu(II) Adsorption from Aqueous Solutions Choi SS, Choi TR, Choi HJ Applied Chemistry for Engineering, 32(5), 589, 2021 |
7 |
Effect of moisture content on the extraction rate of coffee oil from spent coffee grounds using Norflurane as solvent Cante RC, Garella I, Gallo M, Nigro R Chemical Engineering Research & Design, 165, 172, 2021 |
8 |
Keramische Membrantechnologie fur die Verfugbarmachung biogener Stoffstrome Ceramic Membrane Technology for the Availability of Biogenic Material Streams Ebrahimi M, Humpert D, Schonherr S, Czermak P Chemie Ingenieur Technik, 93(1-2), 154, 2021 |
9 |
폐 이차전지 리사이클링을 위한 건식공정 생성물 분석 김진한, 김용철, 오승교, 전종기 Clean Technology, 27(2), 139, 2021 |
10 |
Intelligent optimization of bioleaching process for waste lithium-ion batteries: An application of support vector regression approach Ruhatiya C, Gandra R, Kondaiah P, Manivas K, Samhith A, Gao L, Lam JSL, Garg A International Journal of Energy Research, 45(4), 6152, 2021 |