林蒋海

发布者:2019-03-11发布者:175

1.  Fan Z#, Lin J#, Wu J, Zhang L, Lyu X, Xiao W, Gong Y, Xu Y, Liu Z. Vacuum-assisted black liquor-recycling enhances the sugar yield of sugarcane bagasse and decreases water and alkali consumption. Bioresource Technology 2020, 309: 123349.

2.  Shi T#, Lin J#, Li J, Zhang Y, Jiang C, Lv X, Fan Z, Xiao W, Xu Y, Liu Z. Pre-treatment of sugarcane bagasse with aqueous ammonia-glycerol mixtures to enhance enzymatic saccharification and recovery of ammonia. Bioresour Technol 2019, 289: 121628.

3.  Lv X#, Lin J#, Luo L, Zhang D, Lei S, Xiao W, Xu Y, Gong Y, Liu Z. Enhanced enzymatic saccharification of sugarcane bagasse pretreated by sodium methoxide with glycerol. Bioresource Technology 2018, 249: 226-233.

4.  Lv X, Xiong C, Li S, Chen X, Xiao W, Zhang D, Li J, Gong Y, Lin J, Liu Z. Vacuum-assisted alkaline pretreatment as an innovative approach for enhancing fermentable sugar yield and decreasing inhibitor production of sugarcane bagasse. Bioresour Technol 2017, 239: 402-411.

5.  Li J, Zhou P, Lv X, Xiao W, Gong Y, Lin J*, Liu Z*. Use of Sugarcane Bagasse with Different Particle Sizes to Determine the Relationship between Physical Properties and Enzymatic Hydrolysis. BioResources 2016, 11: 4745-4757.

6.  Huang Q, Yan Q, Fu J, Lv X, Xiong C, Lin J*, Liu Z*. Comparative study of different alcoholate pretreatments for enhanced enzymatic hydrolysis of sugarcane bagasse. Bioresource Technology 2016, 211: 464-471.

7.  Gong Y, Zhang C, Yan Q, He W, Xiao W, Lin J*, Liu Z*. Enhanced enzymatic hydrolysis of sugarcane bagasse hemicellulose using recombinant glucose oxidase expressed by Pichia pastoris. Industrial Crops and Products 2015, 77: 458-466.

8.  Li J, Zhou P, Liu H, Xiong C, Lin J, Xiao W, Gong Y, Liu Z. Synergism of cellulase, xylanase, and pectinase on hydrolyzing sugarcane bagasse resulting from different pretreatment technologies. Bioresource Technology 2014, 155: 258-265.

9.  Li J, Zhou P, Liu H, Wu K, Xiao W, Gong Y, Lin J, Liu Z. Ethanol production from xylan-removed sugarcane bagasse using low loading of commercial cellulase. Bioresour Technol 2014, 163: 390-394.

10.  Li J, Zhou P, Liu H, Wu K, Kang X, Gong Y, Xiao W, Lin J, Liu Z. A comparison of fermentation strategies for cellulosic ethanol production from NaOH-soaked sugarcane bagasse at high solid loading with decreased cellulase loading. Industrial Crops and Products 2014, 62: 446-452.

11.  Li J, Zhou P, Liu H, Lin J, Gong Y, Xiao W, Liu Z. Monosaccharides and Ethanol Production from Superfine Ground Sugarcane Bagasse Using Enzyme Cocktail. BioResources 2014, 9: 2529-2540.

12.  Li J, Wu K, Xiao W, Zhang J, Lin J, Gong Y, Liu Z. Effect of antioxidant extraction on the enzymatic hydrolysis and bioethanol production of the extracted steam-exploded sugarcane bagasse. Biochem Eng J 2014, 82: 91-96.

13.  Li J, Lin J, Zhou P, Wu K, Liu H, Xiong C, Gong Y, Xiao W, Liu Z. One-pot simultaneous saccharification and fermentation: A preliminary study of a novel configuration for cellulosic ethanol production. Bioresour Technol 2014, 161: 171-178.

14.  Gong Y, Tang G, Wang M, Li J, Xiao W, Lin J, Liu Z. Direct fermentation of amorphous cellulose to ethanol by engineered Saccharomyces cerevisiae coexpressing Trichoderma viride EG3 and BGL1. The Journal of General and Applied Microbiology 2014, 60: 198-206.

15.  Li J, Lin J, Xiao W, Gong Y, Wang M, Zhou P, Liu Z. Solvent extraction of antioxidants from steam exploded sugarcane bagasse and enzymatic convertibility of the solid fraction. Bioresour Technol 2013, 130: 8-15.

16.  Xiao W, Liu Z, Lin J, Li J, Wu K, Ma Y, Gong Y, Liu Z. Polymorphisms in TLR1, TLR6 and TLR10 genes and the risk of Graves’ disease. Autoimmunity 2015, 48: 13-18.

17.  Xiao W, Liu Z, Lin J, Xiong C, Li J, Wu K, Ma Y, Gong Y, Liu Z. Association of TLR4 and TLR5 gene polymorphisms with Graves' disease in Chinese Cantonese population. Hum Immunol 2014, 75: 609-613.

18.  Xiao W, Liu Z, Lin J, Li J, Wu K, Ma Y, Xiong C, Gong Y, Liu Z. Association of Toll-like receptor 7 and 8 gene polymorphisms with Graves' disease in Chinese Cantonese population. Tissue Antigens 2015, 85: 29-34.

19.  Painter JN, Anderson CA, Nyholt DR, Macgregor S, Lin J, Lee SH, Lambert A, Zhao ZZ, Roseman F, Guo Q, Gordon SD, Wallace L, Henders AK, Visscher PM, Kraft P, Martin NG, Morris AP, Treloar SA, Kennedy SH, Missmer SA, Montgomery GW, Zondervan KT. Genome-wide association study identifies a locus at 7p15.2 associated with endometriosis. Nat Genet 2011, 43: 51-54.

20.  Lin J, Zong L, Kennedy SH, Zondervan KT. Coding regions of INHBA, SFRP4 and HOXA10 are not implicated in familial endometriosis linked to chromosome 7p13-15. Mol Hum Reprod 2011, 17: 605-611.

21.  Lin J, Kennedy SH, Svarovsky T, Rogers J, Kemnitz JW, Xu A, Zondervan KT. High-quality genomic DNA extraction from formalin-fixed and paraffin-embedded samples deparaffinized using mineral oil. Anal Biochem 2009, 395: 265-267.

22.  Zondervan KT, Treloar SA, Lin J, Weeks DE, Nyholt DR, Mangion J, Mackay IJ, Cardon LR, Martin NG, Kennedy SH, Montgomery GW. Significant evidence of one or more susceptibility loci for endometriosis with near-Mendelian inheritance on chromosome 7p13-15. Hum Reprod 2007, 22: 717-728.