Advances in Biochemical Engineering, Volume 006 by T.K. Ghose ,A. Fiechter, N.Blakebrough

By T.K. Ghose ,A. Fiechter, N.Blakebrough

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123. 124. 125. 126. 127. 128. 129. 130. 131. 132. 133. 134. 135. t36. 137. 138. 139. 140. 141. 142. 143. 144. 145. 146. 147. 148. 149. 150. 151. 152. 153. 154. 155. 156. 157. 158. 159. 160. 161. 162. 163. 164. 165. Arpad E. Torma Deindoerfer, F. : Adv. Appl. Microbiol. 2, 321 (1960). Calam, C. , Bowers, R. : J. Appl. Chem. 1,209 (1951). Deindoerfer, F. , Humphrey, A. : Ind. Eng. Chem. 51,809 (1959). , Menten, M. : Biochem. Z. 49, 333 (1913). : Ann. Rev. Microbiol. 3, 371 (1949). : J. Ann. Chem.

Wadsworth, M. : Trans. Soc. Min. Eng. AIME 254, 68 (1973). Malouf, E. : Mining Eng. , 43 (1971). Evans, L. , Sheffer, H. : Min. Congr. J. 54, 96 (1968). Fisher, J. , Lendrum, F. , MacDermid, B. : Can. Min. Met. Bull. 59, 588 (1966). MacGregor, R. : Can. Min. Met. Bull. 59, 583 (1966). : South Afr. Ind. Chem. 18, 127 (1964). Spedden, H. , Malouf, E. , Prater, J. : J. Met. 18, 1137 (1966). Torma, A. : Ann. Microbiol. (Inst. Pasteur) 124A, 111 (1973). Sutton, J. , Corrick, J. : U. S. Bur. Min. Rept.

Yet acid hydrolysis of cellulosics is still used in the Soviet Union [44]. In a recent report on the evaluation of substrates for the production of sugars from waste cellulose by enzymatic hydrolysis [3], availability and susceptibility of thirtyfive representative cellulosic wastes have been described. Assuming that we have a good cellulase enzyme and a saccharification technology, it is essential that the following aspects for a proper analysis of saccharification process be taken into consideration: (a) a positive margin between the total recovery of cellulosic wastes and the total demand for recycled pulp, and (b) administrative measures to ensure a stability in the price of waste pulp recovered for reuse.

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