TY - GEN AU - Dimitratos,Nikolaos AU - Albonetti,Stefania AU - Tabanelli,Tommaso AU - Dimitratos,Nikolaos AU - Albonetti,Stefania AU - Tabanelli,Tommaso TI - Catalytic Transformation of Renewables (Olefin, Bio-sourced, et. al) SN - books978-3-0365-1069-9 PY - 2021/// CY - Basel, Switzerland PB - MDPI - Multidisciplinary Digital Publishing Institute KW - Research & information: general KW - bicssc KW - Technology: general issues KW - furfural KW - MPV reaction KW - acid-base characterization KW - methylbutynol test reaction KW - Fischer-Tropsch synthesis KW - Co/SBA-15 KW - pore size KW - pore length KW - dry gel conversion KW - MFI zeolite KW - particle sizes KW - silica sources KW - hydrodeoxygenation KW - biocatalysis KW - bio-based platform chemicals KW - furans KW - reduction KW - whole cells KW - nickel phosphide KW - cellobiose KW - sorbitol KW - MCM-41 KW - hydrolytic hydrogenation KW - zeolites KW - catalysis KW - solid acid KW - solid base KW - chemical modification KW - alkylation KW - glycosidation KW - 2 methyl-furan KW - catalyst design KW - iron KW - magnesium oxide KW - catalytic hydrogen transfer reduction KW - methanol KW - diffusion KW - ab initio KW - industrial design KW - H-ZSM-5 KW - multiscale modeling KW - adiabatic reactor KW - zeolite catalysis KW - hydrogenation KW - palladium KW - nanoparticles KW - capping agent KW - sol-immobilization KW - furoic acid KW - gold KW - hydrotalcite KW - oxidation KW - bimetallic nanoparticles KW - base-free KW - green oxidation KW - embedded catalysts KW - biomass KW - Eucalyptus globulus wood KW - cross-flow autohydrolysis KW - kinetic modeling KW - hemicellulose-derived products KW - gold catalysis KW - selective oxidation KW - colloidal synthesis KW - 5-(hydroxymethyl)furfural KW - 2,5-furandicarboxylic acid KW - particle size KW - biomass conversion KW - in-situ synthesis KW - Sn-Beta zeolite KW - isomorphous substitution KW - glucose KW - HMF KW - oxidative condensation KW - furan-2-acrolein KW - Pd-based catalysts KW - n/a N1 - Open Access N2 - The objective of this Special Issue is to provide new contributions in the area of biomass valorization using heterogeneous catalysts and focusing specifically on the structure/activity relationships of specific and important oxidation, hydrogenation, hydrodeoxygenation and biocatalytic processes. The issue emphasizes the influence of the design and morphology of the catalyst, in terms of particle size, redox and acid-base properties and catalyst stability. Finally, mechanistic studies and examples of design and optimization of industrial processes are presented UR - https://mdpi.com/books/pdfview/book/4050 UR - https://directory.doabooks.org/handle/20.500.12854/76605 ER -