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·2592· 精细化工 FINE CHEMICALS 第 39 卷
2011, 45(5): 11-16. [27] CHEN J L (陈佳丽). Straw as an alternative carbon source for
[21] WANG H, PAN C Y, XU F, et al. Enhanced saccharification for cephalosporin C fermentation[D]. Hefei: Hefei University of
wheat straw with micro-thermal explosion technology of in situ SO 3 Technology (合肥工业大学),2020.
reaction[J]. Chemical Engineering Journal, 2016, 286: 394-399. [28] YOU J M (游见明), CAO X Z (曹新志). Analysis on the distribution
[22] MA X J (马晓静). Nitrogen metabolic regulation of sophorolipids of tea polyphenol in tea tree by folin-ciocalteaut method[J]. Hubei
synthesis, characteristics of sophorolipids and sophorolipids production Agricultural Sciences (湖北农业科学), 2013, 52(10): 2417-2419.
from low-cost substrate[D]. Jinan: Shandong University (山东大学), [29] WAN G C (万广聪). The influence of pseudo-lignin formation and
2012. the changes of LCC during dilute acid pretreatment on the enzymatic
[23] CHEN G (陈光), LI X L (李晓丽), SUN Y (孙旸). Research progress hydrolysis of sugarcane bagasse[D]. Nanning: Guangxi University
in preparation of sophorolipids from lignocellulosic materials[J]. (广西大学), 2019.
Journal of Jilin Agricultural University (吉林农业大学学报), 2020, [30] CHEN M, ZHAO J, XIA L M. Comparison of four different chemical
42(1): 1-7. pretreatments of corn stover for enhancing enzymatic digestibility[J].
[24] DHABHAI R, JAIN A, CHAURWSIA S P. Production of Biomass and Bioenergy, 2009, 33(10): 1381-1385.
fermentable sugars by dilute acid pretreatment and enzymatic [31] SHENG Y Q, XU Y. Nuclear magnetic resonance analysis of
saccharification of three different lignocellulosic materials[J]. ascorbic acid assisted lignocellulose decomposition in dilute acid
International Journal of Chemtech Research, 2012, 4(4): 1497-1502. pretreatment and its stimulation on enzymatic hydrolysis[J].
[25] AHN D J, KIM S K, YUN H S. Optimization of pretreatment and Bioresource Technology, 2022, 343: 126147.
saccharification for the production of bioethanol from water hyacinth [32] SUN D Z (孙多志),HUANG Q F (黄清发),WANG F (王复),et al.
by Saccharomyces cerevisiae[J]. Bioprocess and Biosystems Engineering, Study on inhibitors in dilute acid hydrolysate of straw[J]. Journal of
2012, 35(1): 35-41. Analytical Science (分析科学学报), 2008, 24(5): 553-556.
[26] YAO R S, HU H J, DENG S S, et al. Structure and saccharification [33] DING C (丁驰), HUANG H Q (黄慧琴), ZHANG S D (张树栋),
of rice straw pretreated with sulfur trioxide micro-thermal explosion et al. Effects of different concentrations of NaOH pretreatment on
collaborative dilutes alkali[J]. Bioresource Technology, 2011, inhibitor components in rice straw hydrolysate[J]. Food and
102(10): 6340-6343. Fermentation Industries (食品与发酵工业), 2015, 41(9): 51-56.
(上接第 2560 页) community of a sequencing batch reactor under divalent cadmium
[45] QIAN J Z (钱九州), HAN Y (韩懿), XIA L (夏良), et al. Effects of Cd(Ⅱ) stress[J]. Chemical Engineer Journal, 2018, 336: 325-333.
C/N ratio on partial-denitrification and extracellular polymeric [50] GOPALAKRISHNAN K, RAMESH C, RAGUNATHAN V, et al.
substance[J]. Journal of Tianjin Cheng Jian University (天津城建大 Antibacterial activity of Cu 2O nanoparticles on E. coli synthesized
学学报), 2020, 6(6): 420-425. from tridax procumbens leaf extract and surface coating with
[46] GUO J B, WANG S H, LIAN J, et al. Rapid start-up of the anammox polyaniline[J]. Digest Journal of Nanomaterials & Biostructures,
process: Effects of five different sludge extracellular polymeric 2012, 7: 833-839.
substances on the activity of anammox bacteria[J]. Bioresource [51] DING A Q, ZHAO D, DING F, et al. Effect of inocula on performance
Technology, 2016, 220: 641-646. of bio-cathode denitrification and its microbial mechanism[J].
[47] CHEN L L (陈丽丽), XIAO Q T (肖启涛), YU X Q (俞晓琴), et al. Chemical Engineering Journal, 2018, 343: 399-407.
Optical composition and potential driving factors of chromophoric [52] LIU Y F (刘远峰), ZHANG X L (张秀玲), ZHANG Q C (张其春),
dissolve dorganic matter in large lakes and reservoirs in the eastern et al. Research progress of anode electrogenic microorganisms in
region of China[J]. Environmental Science (环境科学), 2022, 43(4): microbial fuel cells[J]. Fine Chemicals (精细化工), 2020, 37(9):
1930-1940. 1729-1737.
[48] SHIH C, MUSETH A K, ABRAHAMSSON M, et al. Tryptophan- [53] ISHII S I, SUZUKI S, NORDENKRICHMAR T M, et al. A novel
accelerated electron flow through proteins[J]. Science, 2008, metatranscriptomic approach to identify gene expression dynamics
320(5884): 1760-1762. during extracellular electron transfer[J]. Nature Communications,
[49] LI S S, XU Q Y, MA B R, et al. Performance evaluation and microbial 2013, 4: 1601.
(上接 2568 页) Heritage Scientific Research (中国文物科学研究), 2021, 61(1):
61-66.
[20] LI X R, LIANG Y Z, ZHOU T, et al. Comparative analysis of [23] ZHANG Y M (张艳梅), LI Z B (李泽兵), AN K (安凯), et al.
volatile constituents between recipe jingfangsan and its single herbs Degradation characteristics and influencing factors of DMF degrading
by GC-MS combined with alternative moving window factor communities[J]. Chemical Industry and Engineering Progres (化工进
analysis method[J]. Journal of Separation Science, 2009, 32(2): 展), 2019, 38(3): 1517-1523.
258-266. [24] LIU L Y (刘丽英), ZHANG W Y (张渭源). Effect of surface
[21] HU J (胡静), XIAO Z B (肖作兵), ZHOU R J (周如隽), et al. modification on heat and moisture transfer properties of fabrics[J].
Properties of aroma sustained-release cotton fabric with rose fragrance Journal of Donghua University (Natural Science) (东华大学学报:
nanocapsule[J]. Chinese Journal of Chemical Engineering (中国化学 自然科学版), 2002, 28(1): 87-90.
工程学报), 2011, 19(3): 523-528. [25] CHEN K, XU C, ZHOU J, et al. Multifunctional fabric coatings with
[22] OU X H (欧秀花), CUI Y J (崔玉娟), ZHANG R X (张睿 slow-releasing fragrance and UV resistant properties from ethyl
祥). Feasibility study on strengthening ancient book paper with ethyl cellulose/silica hybrid microcapsules[J]. Carbohydrate Polymers,
cellulose and nano SiO 2 compound solution[J]. China Cultural 2019, 232: 115821.