Search Results - "Tang, Lianghua"

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  1. 1

    Cogasification of Biofermenting Residue in a Coal-Water Slurry Gasifier by Du, Yuying, Jiang, Xuguang, Ma, Xiaojun, Tang, Lianghua, Wang, Mingxia, Lv, Guojun, Jin, Yuqi, Wang, Fei, Chi, Yong, Yan, Jianhua

    Published in Energy & fuels (20-03-2014)
    “…Biofermenting residue (BR) arising from the production of antibiotics was cogasified in an industrial scale MCSG coal-water slurry gasifier. It released large…”
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    Journal Article
  2. 2

    Construction of Aspergillus niger lipase mutants with oil–water interface independence by Shu, Zhengyu, Wu, Jiguang, Xue, Longyin, Lin, Ruifeng, Jiang, Yongmei, Tang, Lianghua, Li, Xin, Huang, Jianzhong

    Published in Enzyme and microbial technology (08-02-2011)
    “…Based on previous bioinformational analytical results [Shu ZY, et al. Biotechnol Prog 2009;25:409–16], four A. niger lipase (ANL) mutants, ANL-Ser84Gly,…”
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  3. 3

    Purification and partial characterization of a lipase from Bacillus coagulans ZJU318 by Lianghua, Tang, Liming, Xia

    Published in Applied biochemistry and biotechnology (01-05-2005)
    “…An extracellular lipase was purified from the fermentation broth of Bacillus coagulans ZJU318 by CM-Sepharose chromatography, followed by Sephacryl S-200…”
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  4. 4

    Purification and application of a lipase from Penicillium expansum PED-03 by Lianghua, Tang, Liming, Xia, Min, Su, Huaying, Guo

    Published in Applied biochemistry and biotechnology (01-08-2007)
    “…An extracellular lipase was purified from the fermentation broth of Penicillium expansum PED-03 by DEAE-Sepharose chromatography, followed by sephacryl S-200…”
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  5. 5

    Substitution and mutation of the C-terminal loop domain of Penicillium expansum lipase significantly changed its regioselectivity and activity by Cai, Yuzhen, Bai, Qiaoyan, Yang, Lifang, Tang, Lianghua, Su, Min

    Published in Biochemical engineering journal (01-02-2022)
    “…In order to explore the effect of the C-terminal loop domain of Penicillium expansum lipase (PEL) on its regioselectivity and activity, homologous substitution…”
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  6. 6

    Substitution of L133 with Methionine in GXSXG Domain Significantly Changed the Activity of Penicillium expansum Lipase by Bai, Qiaoyan, Cai, Yuzhen, Yang, Lifang, Wu, Qingqing, Su, Min, Tang, Lianghua

    Published in Catalysis letters (01-07-2022)
    “…It is not clear how the amino acid composition of the X sites in GXSXG domain affects the properties of the lipase. To address this, saturation mutation at…”
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  7. 7

    Lid hinge region of Penicillium expansum lipase affects enzyme activity and interfacial activation by Tang, Lianghua, Su, Min, Yan, Junzhe, Xie, Sheng, Zhang, Wenhuang

    Published in Process biochemistry (1991) (01-08-2015)
    “…•Sites displaying the highest B factors in the lid were selected for mutagenesis.•Mutants showed properties remarkably different from those of wild-type…”
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  8. 8

    Chemical industrial kilns used for co-processing of hazardous waste: Low environmental risks of polycyclic aromatic hydrocarbons (PAHs) by Li, Xuebing, Li, Li, Du, Yuying, Liu, Meijia, Huang, Qifei, Yang, Jinzhong, Tang, Lianghua, Yan, Dahai

    “…[Display omitted] •Chemical industrial kilns can be used for co-processing of hazardous waste.•Co − processing of hazardous waste in CWSG has little effect on…”
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  9. 9

    Residue Val237 is critical for the enantioselectivity of Penicillium expansum lipase by Tang, Lianghua, Su, Min, Chi, Liying, Zhang, Junling, Zhang, Huihui, Zhu, Ling

    Published in Biotechnology letters (01-03-2014)
    “…The shape of the hydrophobic tunnel leading to the active site of Penicillium expansum lipase (PEL) was redesigned by single-point mutations, in order to…”
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  10. 10

    Substitution of Val72 residue alters the enantioselectivity and activity of Penicillium expansum lipase by Tang, Lianghua, Su, Min, Zhu, Ling, Chi, Liying, Zhang, Junling, Zhou, Qiong

    “…Error-prone PCR was used to create more active or enantioselective variants of Penicillium expansum lipase (PEL). A variant with a valine to glycine…”
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  11. 11

    Preparation, antibacterial properties and biocompatibility studies on vancomycin-poly(D,L)-lactic loaded plates by Tang, LiangHua, Zhao, ChangHong, Xiong, Yan, Wang, AiMin

    Published in International orthopaedics (01-06-2010)
    “…In the clinic, implant-associated infections are the chief risk facing orthopaedics and traumatology departments. Vancomycin-poly(D,L)-lactic acid (PDLLA)…”
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  12. 12

    Preparation, Release Profiles, and Antibacterial Properties of Vancomycinloaded Poly(D,L-lactic) Titanium Alloy Plates by Tang, LiangHua, Zhao, ChangHong, Xiong, Yan, Pan, ChangJiang, Wang, Aimin

    Published in Orthopedics (Thorofare, N.J.) (01-05-2009)
    “…The rate of infection in closed fractures is low and ranges from 0.7% to 4.2%. Patients with open fractures are known to be at higher risk of infection…”
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  13. 13

    Preparation, release profiles, and antibacterial properties of vancomycin-loaded poly(D,L-lactic) titanium alloy plates by Tang, LiangHua, Zhao, ChangHong, Xiong, Yan, Pan, ChangJiang, Wang, AiMin

    Published in Orthopedics (Thorofare, N.J.) (01-05-2009)
    “…The rate of infection in closed fractures is low and ranges from 0.7% to 4.2%. Patients with open fractures are known to be at higher risk of infection…”
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    Journal Article