A combination of a twin-screw extrusion and an acid-catalyzed hot water extraction process performed
at a bench-scale was used to prepare high monomeric xylose hydrolysate for cellulosic production. The
influences of the screw speed (30–150 rpm), barrel temperature (80–160 C) and corresponding specific
mechanical energy of the extruder on the structural properties of the pretreated rice straw, sugar concentration
and conversion were investigated. The optimal condition for the extrusion step was determined to
be 40 rpm with 3% H2SO4 at 120 C; the optimal condition for the extraction step was determined to be
130 C for 20 min. After the pretreatment at the optimal condition, 83.7% of the xylan was converted to
monomeric xylose, and the concentration reached levels of 53.7 g/L. Finally, after the subsequent enzymatic
hydrolysis, an 80% yield of the total saccharification was obtained.