1 |
Effect of collagen hydrolysate obtained from leather waste on the setting, hydration and crystallization process of gypsum Ding X, Wei B, Dai R, Chen H, Shan Z Journal of Industrial and Engineering Chemistry, 110, 158, 2022 |
2 |
Zein.sodium alginate based microcapsules for essence controlled releasing coating as leather finishes Xu Q, Bai Z, Ma J, Yang Y, Huang M Journal of Industrial and Engineering Chemistry, 100, 204, 2021 |
3 |
Synergistic effects of hydrophilic nano-SiO2/graphene oxide @ copolymer nanocomposites in tanning leather Pan H, Wang SX, Wang XD, Gong CH, Ding T Advanced Powder Technology, 31(9), 3910, 2020 |
4 |
Characteristics of ash formation in the process of combustion of pelletised leather tannery waste and hardwood pellets Kluska J, Turzynski T, Ochnio M, Karda D Renewable Energy, 149, 1246, 2020 |
5 |
Facile fabrication of bimetallic collagen fiber particles via immobilizing zirconium on chrome-tanned leather as adsorbent for fluoride removal from ground water near hot spring Zhou J, Yu J, Liao H, Zhang YD, Luo XG Separation Science and Technology, 55(4), 658, 2020 |
6 |
Removal of Fat Components in High TDS Leather Wastewater by Saline-Tolerant Lipase-Assisted Nanoporous-Activated Carbon Pounsamy M, Somasundaram S, Palanivel S, Ganesan S Applied Biochemistry and Biotechnology, 187(2), 474, 2019 |
7 |
Steam Gasification of Biochar Derived from the Pyrolysis of Chrome-Tanned Leather Shavings Ferreira SD, Junges J, Scopel B, Manera C, Osorio E, Lazzarotto IP, Godinho M Chemical Engineering & Technology, 42(12), 2530, 2019 |
8 |
습식 인조피혁용 바이오 폴리올/폴리에스터 폴리올을 함유한 DMF 기반 폴리우레탄의 제조 및 물성 서석훈, 최필준, 고재왕, 박지현, 이재년, 이영희, 김한도 Clean Technology, 25(1), 7, 2019 |
9 |
폴리카보네이트 폴리올/바이오 폴리올을 이용한 습식 인조피혁용 폴리우레탄의 제조 및 물성 서석훈, 고재왕, 최필준, 이재년, 이영희, 김한도 Clean Technology, 25(2), 114, 2019 |
10 |
Pyrolysis characteristics and Cr speciation of chrome-tanned leather shavings: influence of pyrolysis temperature Fang CQ, Jiang XG, Lv GJ, Yan JH, Lin XL, Song HB, Cao JJ Energy Sources Part A-recovery Utilization and Environmental Effects, 41(7), 881, 2019 |