Biomedical Engineering Reference
In-Depth Information
147. Chen HZ, Liu J, Li ZH. Production of single cell protein by fermentation of extracts from
hemicellulose autohydrolysis. Eng Chem Metall. 1999;20(4):428-31.
148. Martinez A, Rodriguez ME, Wells ML, York SW, Preston JF, Ingram LO. Detoxification of
dilute acid hydrolysates of lignocellulose with lime. Biotechnol Prog. 2008;17(2):287-93.
149. Ding X, Xia L, Xue P. Key factors affecting xylitol fermentation from hemicellulosic
hydrolysate by Candida sp. zu-04. J Zhejiang Univ Eng Sci. 2007;41(4):683-7.
150. Zhang YH, Wang J, Zhang W, Li CW, Ma L, Zhou W. Research progress of hemicellulose
fermentation to produce fuel alcohol. Liquor Mak Sci Technol. 2004;12(4):72-4.
151. Nakano K, Katsu R, Tada K, Matsumura M. Production of highly concentrated xylitol by
Candida magnoliae under a microaerobic condition maintained by simple fuzzy control.
J Biosci Bioeng. 2000;89(4):372-6.
152. Li XF, He XS. Microbial hydrolyzing of lignin. J Cell Sci Technol. 2004;12(2):41-6.
153. Yu RY, Ceng GM, Yu HY, Huang GH, Huang HL, Chen FR. Lignin degradation mechanism
by microbes. J Microbiol. 2008;28(3):59-63.
154. Fu SY, Yu HS, Wen XH, Huang XY. Investigations related to biodegradation of lignin in rice
straw by Panus conchatus -I. Isolation and characterization of low-molecular weight fractions
of the lignin degradation product. J Cell Sci Technol. 1997;5(1):21-8.
155. Fu SY, Yu HS, Wen XH, Huang XY. Investigations related to biodegradation of lignin in rice
straw by Panus conchatus -III. Structural features of low-molecular weight aromatic acids of
the lignin degradation products. J Cell Sci Technol. 1998;6(4):50-5.
156. Yu HS, Fu SY. Investigations related to biodegradation of lignin in rice straw by Panus
conchatus -II. Structural features of high-molecular weight fractions of the lignin degradation
products. J Cell Sci Technol. 1998;6(4):41-9.
157. Jia SR. Bioreaction engineering principles. Beijing: Science Press; 2003.
158. Chen HZ, Li ZH. Bioreactor engineering. Prog Biotechnol. 1998;18(4):46-49.
159. Shuler MI, Kargi F. Bioprocess engineering basic concepts (Trans: Tao C, Xueming Z).
Beijing: Chemical Industry Press; 2008.
160. Zheng DH, Hu SY, Li YR, Shen JZ, Wang JT. Mass integration for eco-industrial parks.
Comput Appl Chem. 2004;21(1):6-10.
161. Luo XC, Zhang AZ. On information
integrated analysis. Inform
Stud Theory
Appl.
2002;25(2):102-4.
162. Bai J, Feng X. Analysis of technologies for water system integration. Chem Ind Eng Prog.
2006;25(12):1471-6.
163. Chen HZ, Fu XG. Process engineering of biomass raw material and its ecological industry
integration—biomass
wisdom. Beijing: Science Press; 2010.
164. Chen HZ, Liu LY. Unpolluted fractionation of wheat straw by steam explosion and ethanol
extraction. Bioresour Technol. 2007;98(3):666-76.
165. Chen HZ, Liu LY, Yang X, Li ZH. New process of maize stalk amination treatment by steam
explosion. Biomass Bioenergy. 2005;28(4):411-7.
166. Zhai W, Chen HZ, Ma RY. Structural characteristics of cellulose after dissolution and
regeneration from the ionic liquid [Bmim]Cl. J Beijing Univ Chem Technol Nat Sci Ed.
2007;34(2):138-41.
167. Sun FB, Chen HZ. Comparison of atmospheric aqueous glycerol and steam explosion
pretreatments of wheat straw for enhanced enzymatic hydrolysis. J Chem Technol Biotechnol.
2008;83(5):707-14.
168. Jin SY, Chen HZ. Superfine grinding of steam-exploded rice straw and its enzymatic
hydrolysis. Biochem Eng J. 2006;30(3):225-30.
169. Chen HZ, Fu XG, Zhang ZF. A method to produce pulp and ethanol simultaneously from
forest wild grass. China Patent 200710121392.7, 2007.
170. Chen HZ. Officinal plant process engineering and its ecological industry integration. Beijing:
Science Press; 2010.
171. Chen HZ. Biomass science and engineering. Beijing: Chemical Industry Press; 2008.
energy
Search WWH ::




Custom Search