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Featured researches published by Zhang Zhengzhu.


Journal of Near Infrared Spectroscopy | 2015

Detection and quantification of sugar and glucose syrup in roasted green tea using near infrared spectroscopy

Li Luqing; Wei Lingdong; Ning Jingming; Zhang Zhengzhu

The adulteration of roasted green tea by sugar and glucose syrup increases the risk of moisture sensitivity and microbiological hazards in tea products and is considered to be an illegal business operation. The analytical method of high-performance liquid chromatography, which is commonly used for the detection of sugar and glucose syrup, has high specificity and sensitivity, but it is time-consuming and requires highly skilled operators. In this study, near infrared (NIR) spectroscopy combined with multivariate calibration was employed to detect and quantitatively analyse sugar and glucose syrup in roasted green tea. An orthogonal experimental design, sample preprocessing, partial least squares (PLS) models and qualitative models were systemically utilised when developing the method. The model was optimised using leave-one-out cross-validation, and its performance was tested according to root mean square error of prediction and correlation coefficient of determination for the prediction set samples. To reduce heterogeneity, tea samples were ground and homogenised before spectra were acquired. The repeatability of spectra was optimised when the powder particle size was 40–60 mesh, the pressure was 40 MPa and sample cakes had a thickness of 4 mm. PLS models of the sugar and glucose syrup (adulterants) were established under cross-validation and tested with an independent set of samples, yielding coefficients of determination of 0.998, 0.996 and 0.996, 0.998 for sugar and glucose syrup, respectively. The corresponding values for the root mean square error of calibration and prediction were found to be 0.31% and 0.43% for sugar and 0.41% and 0.30% for glucose syrup, respectively. The identification accuracies for these adulterants in roasted green tea were up to 96% and 100%, respectively. These results reveal the feasibility of using NIR spectroscopy for the detection and quantification of adulterants (sugar and glucose syrup) in roasted green tea with acceptable accuracy.


Plant Growth Regulation | 2013

Influences of different ion channel inhibitors on the absorption of fluoride in tea plants (Camellia sinesis L.)

Zhang Xianchen; Gao Hong-jian; Zhang Zhengzhu; Wan Xiaochun


Journal of Tea Science | 2010

The Nonlinear Regression of Bitterness and Astringency of Main Compounds in Green Tea and the Application in Organoleptic Tests

Xu WenPing; Li Daxiang; Zhang Zhengzhu; Tang Qian; Wan XiaoChun


Archive | 2015

Rapid discriminant method for fermentation quality of congou black tea on basis of near-infrared spectrum analysis technology

Ning Jingming; Yan Ling; Zhang Zhengzhu; Huang Caiwang; Wei Lingdong; Fang Junting


Archive | 2013

Pu-Er ripe tea fingerprint identification method based on GC/MS technology

Ning Jingming; Wan Xiaochun; Zhang Zhengzhu


Archive | 2013

HPLC-based fingerprint identification method for different Pu-Er ripe tea

Ning Jingming; Zhang Zhengzhu; Wan Xiaochun


Archive | 2013

Fingerprint spectrum recognition method for Pu'er drying green raw tea and based on chemical components

Ning Jingming; Wan Xiaochun; Zhang Zhengzhu


Archive | 2013

Influences of different ion channel inhibitors on the absorption of fluoride in tea plants

Zhang Xianchen; Gao Hong-jian; Wan Xiaochun; Zhang Zhengzhu


China Oils and Fats | 2010

Research advance in comprehensive utilization of tea seeds

Zhang Zhengzhu


Journal of Tea Science | 2009

A method for determination of imidacloprid residue in tea with HPLC-UV.

Hou Ruyan; Zhu XuJun; Zhang Zhengzhu; Cai Huimei; Wan Xiaochun

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Ning Jingming

Anhui Agricultural University

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Wan Xiaochun

Anhui Agricultural University

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Li Luqing

Anhui Agricultural University

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Gao Hong-jian

Anhui Agricultural University

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Wei Lingdong

Anhui Agricultural University

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Zhang Xianchen

Anhui Agricultural University

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Li Daxiang

Anhui Agricultural University

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Cai Jibao

University of Science and Technology of China

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Geng Zhao-yu

Anhui Agricultural University

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Hou Ruyan

Anhui Agricultural University

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