The Experts below are selected from a list of 8496 Experts worldwide ranked by ideXlab platform
Linee Goswami - One of the best experts on this subject based on the ideXlab platform.
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exploring metal detoxification and accumulation potential during vermicomposting of tea factory coal ash sequential extraction and fluorescence probe analysis
Scientific Reports, 2016Co-Authors: Linee Goswami, P Bhattacharyya, Sanjay Pratihar, Suman Dasgupta, Pronab Mudoi, Jayanta Bora, Satya Sundar BhattacharyaAbstract:Metal contamination from coal ashes (CAs) is widely recognized as a significant environmental concern. To learn more about metal detoxification and accumulation potential of earthworm species, metal-rich tea factory coal ashes (TFCA) were fed to Eisenia fetida and Lampito mauritii by employing a Fluorescent Tag detection method. Fascinatingly, on feeding fluorescence probed Zn and Cd along with cow dung to Eisenia fetida, the detection of the gut-proteins with a molecular mass higher than 100 kDa was a distinct evidence of metal binding. Significant increases were observed in the content of humified organic C [humic acid (HAC) and fulvic acid C (FAC)] and degree of humification during vermicomposting. Concurrently, considerably large amount of toxic metals (Cr, Cd, Pb, and Zn) was transformed from exchangeable to recalcitrant (organic matter and mineral bound) fractions. Moreover, total metal concentrations were reduced with high removal efficiency upon vermicomposting.
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exploring metal detoxification and accumulation potential during vermicomposting of tea factory coal ash sequential extraction and fluorescence probe analysis
Scientific Reports, 2016Co-Authors: Linee Goswami, Suma Dasgupta, Pronab Mudoi, Sanjay Pratiha, P Hattacharyya, Jayanta Ora, Satya Sunda Hattacharya, Kihyu KimAbstract:Metal contamination from coal ashes (CAs) is widely recognized as a significant environmental concern. To learn more about metal detoxification and accumulation potential of earthworm species, metal-rich tea factory coal ashes (TFCA) were fed to Eisenia fetida and Lampito mauritii by employing a Fluorescent Tag detection method. Fascinatingly, on feeding fluorescence probed Zn and Cd along with cow dung to Eisenia fetida, the detection of the gut-proteins with a molecular mass higher than 100 kDa was a distinct evidence of metal binding. Significant increases were observed in the content of humified organic C [humic acid (HAC) and fulvic acid C (FAC)] and degree of humification during vermicomposting. Concurrently, considerably large amount of toxic metals (Cr, Cd, Pb, and Zn) was transformed from exchangeable to recalcitrant (organic matter and mineral bound) fractions. Moreover, total metal concentrations were reduced with high removal efficiency upon vermicomposting.
Satya Sundar Bhattacharya - One of the best experts on this subject based on the ideXlab platform.
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exploring metal detoxification and accumulation potential during vermicomposting of tea factory coal ash sequential extraction and fluorescence probe analysis
Scientific Reports, 2016Co-Authors: Linee Goswami, P Bhattacharyya, Sanjay Pratihar, Suman Dasgupta, Pronab Mudoi, Jayanta Bora, Satya Sundar BhattacharyaAbstract:Metal contamination from coal ashes (CAs) is widely recognized as a significant environmental concern. To learn more about metal detoxification and accumulation potential of earthworm species, metal-rich tea factory coal ashes (TFCA) were fed to Eisenia fetida and Lampito mauritii by employing a Fluorescent Tag detection method. Fascinatingly, on feeding fluorescence probed Zn and Cd along with cow dung to Eisenia fetida, the detection of the gut-proteins with a molecular mass higher than 100 kDa was a distinct evidence of metal binding. Significant increases were observed in the content of humified organic C [humic acid (HAC) and fulvic acid C (FAC)] and degree of humification during vermicomposting. Concurrently, considerably large amount of toxic metals (Cr, Cd, Pb, and Zn) was transformed from exchangeable to recalcitrant (organic matter and mineral bound) fractions. Moreover, total metal concentrations were reduced with high removal efficiency upon vermicomposting.
Kihyu Kim - One of the best experts on this subject based on the ideXlab platform.
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exploring metal detoxification and accumulation potential during vermicomposting of tea factory coal ash sequential extraction and fluorescence probe analysis
Scientific Reports, 2016Co-Authors: Linee Goswami, Suma Dasgupta, Pronab Mudoi, Sanjay Pratiha, P Hattacharyya, Jayanta Ora, Satya Sunda Hattacharya, Kihyu KimAbstract:Metal contamination from coal ashes (CAs) is widely recognized as a significant environmental concern. To learn more about metal detoxification and accumulation potential of earthworm species, metal-rich tea factory coal ashes (TFCA) were fed to Eisenia fetida and Lampito mauritii by employing a Fluorescent Tag detection method. Fascinatingly, on feeding fluorescence probed Zn and Cd along with cow dung to Eisenia fetida, the detection of the gut-proteins with a molecular mass higher than 100 kDa was a distinct evidence of metal binding. Significant increases were observed in the content of humified organic C [humic acid (HAC) and fulvic acid C (FAC)] and degree of humification during vermicomposting. Concurrently, considerably large amount of toxic metals (Cr, Cd, Pb, and Zn) was transformed from exchangeable to recalcitrant (organic matter and mineral bound) fractions. Moreover, total metal concentrations were reduced with high removal efficiency upon vermicomposting.
Pronab Mudoi - One of the best experts on this subject based on the ideXlab platform.
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exploring metal detoxification and accumulation potential during vermicomposting of tea factory coal ash sequential extraction and fluorescence probe analysis
Scientific Reports, 2016Co-Authors: Linee Goswami, P Bhattacharyya, Sanjay Pratihar, Suman Dasgupta, Pronab Mudoi, Jayanta Bora, Satya Sundar BhattacharyaAbstract:Metal contamination from coal ashes (CAs) is widely recognized as a significant environmental concern. To learn more about metal detoxification and accumulation potential of earthworm species, metal-rich tea factory coal ashes (TFCA) were fed to Eisenia fetida and Lampito mauritii by employing a Fluorescent Tag detection method. Fascinatingly, on feeding fluorescence probed Zn and Cd along with cow dung to Eisenia fetida, the detection of the gut-proteins with a molecular mass higher than 100 kDa was a distinct evidence of metal binding. Significant increases were observed in the content of humified organic C [humic acid (HAC) and fulvic acid C (FAC)] and degree of humification during vermicomposting. Concurrently, considerably large amount of toxic metals (Cr, Cd, Pb, and Zn) was transformed from exchangeable to recalcitrant (organic matter and mineral bound) fractions. Moreover, total metal concentrations were reduced with high removal efficiency upon vermicomposting.
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exploring metal detoxification and accumulation potential during vermicomposting of tea factory coal ash sequential extraction and fluorescence probe analysis
Scientific Reports, 2016Co-Authors: Linee Goswami, Suma Dasgupta, Pronab Mudoi, Sanjay Pratiha, P Hattacharyya, Jayanta Ora, Satya Sunda Hattacharya, Kihyu KimAbstract:Metal contamination from coal ashes (CAs) is widely recognized as a significant environmental concern. To learn more about metal detoxification and accumulation potential of earthworm species, metal-rich tea factory coal ashes (TFCA) were fed to Eisenia fetida and Lampito mauritii by employing a Fluorescent Tag detection method. Fascinatingly, on feeding fluorescence probed Zn and Cd along with cow dung to Eisenia fetida, the detection of the gut-proteins with a molecular mass higher than 100 kDa was a distinct evidence of metal binding. Significant increases were observed in the content of humified organic C [humic acid (HAC) and fulvic acid C (FAC)] and degree of humification during vermicomposting. Concurrently, considerably large amount of toxic metals (Cr, Cd, Pb, and Zn) was transformed from exchangeable to recalcitrant (organic matter and mineral bound) fractions. Moreover, total metal concentrations were reduced with high removal efficiency upon vermicomposting.
Youngeun Kwon - One of the best experts on this subject based on the ideXlab platform.
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efficient and wash free labeling of membrane proteins using engineered npu dnae split inteins
Protein Science, 2018Co-Authors: Euiyeon Lee, Kyoungmi Min, Youngtae Chang, Youngeun KwonAbstract:An efficient and wash-free method to conjugate a Fluorescent Tag to a target membrane protein is developed, using engineered Npu DnaE split-inteins. This approach allowed fast labeling while avoiding the strenuous synthesis of a long polypeptide. Two different modes of labeling, namely specific binding and covalent conjugation, are observed. The covalent labeling was monitored within 5 min, without background staining.