21348
|
|
Silva, COG; Vaz, RP; Filho, EXF Bringing plant cell wall-degrading enzymes into the lignocellulosic biorefinery concept(2018)Biofuels Bioproducts & Biorefining-Biofpr, 12.0, 2 |
5285
|
|
Intasian, P; Prakinee, K; Phintha, A; Trisrivirat, D; Weeranoppanant, N; Wongnate, T; Chaiyen, P Enzymes, In Vivo Biocatalysis, and Metabolic Engineering for Enabling a Circular Economy and Sustainability(2021)Chemical Reviews, 121, 17 |
1230
|
|
Sheldon, RA Biocatalysis and biomass conversion: enabling a circular economy(2020)Philosophical Transactions Of The Royal Society A-Mathematical Physical And Engineering Sciences, 378, 2176 |
5933
|
|
Rojas, LF; Zapata, P; Ruiz-Tirado, L Agro-industrial waste enzymes: Perspectives in circular economy(2022) |
2748
|
|
Nargotra, P; Ortizo, RGG; Wang, JX; Tsai, ML; Dong, CD; Sun, PP; Bajaj, BK; Kuo, CH; Sharma, V Enzymes in the bioconversion of food waste into valuable bioproducts: A circular economy perspective(2024)Systems Microbiology And Biomanufacturing, 4, 3 |
16895
|
|
Sheldon, RA; Brady, D Green Chemistry, Biocatalysis, and the Chemical Industry of the Future(2022)Chemsuschem, 15, 9 |
1844
|
|
Sarsaiya, S; Jain, A; Awasthi, SK; Duan, YM; Awasthi, MK; Shi, JS Microbial dynamics for lignocellulosic waste bioconversion and its importance with modern circular economy, challenges and future perspectives(2019) |