Production of Laccase by Cochliobolus sp. Isolated from Plastic Dumped Soils and Their Ability to Degrade Low Molecular Weight PVC

T Sumathi, B Viswanath, A Sri Lakshmi… - Biochemistry …, 2016 - Wiley Online Library
One of the utmost man‐made problems faced today has been the ever‐increasing plastic
waste filling the world. It accounts for an estimated 20–30%(by volume) of municipal solid …

Production of Laccase by Cochliobolus sp. Isolated from Plastic Dumped Soils and Their Ability to Degrade Low Molecular Weight PVC

T Sumathi, B Viswanath, AS Lakshmi… - Biochemistry …, 2016 - search.proquest.com
One of the utmost man-made problems faced today has been the ever-increasing plastic
waste filling the world. It accounts for an estimated 20-30%(by volume) of municipal solid …

[PDF][PDF] Production of Laccase by Cochliobolus sp. Isolated from Plastic Dumped Soils and Their Ability to Degrade Low Molecular Weight PVC

T Sumathi, B Viswanath, AS Lakshmi, DVR SaiGopal - 2016 - pdfs.semanticscholar.org
One of the utmost man-made problems faced today has been the ever-increasing plastic
waste filling the world. It accounts for an estimated 20–30%(by volume) of municipal solid …

Production of lacease by Cochliobolus sp. isolated from plastic dumped soils and their ability to degrade low molecular weight PVC

T Sumathi, B Viswanath, AS Lakshmi… - Biochemistry Research …, 2016 - go.gale.com
One of the utmost man-made problems faced today has been the ever-increasing plastic
waste filling the world. It accounts for an estimated 20-30%(by volume) of municipal solid …

[引用][C] Production of Laccase by Cochliobolus sp. Isolated from Plastic Dumped Soils and Their Ability to Degrade Low Molecular Weight PVC

T Sumathi, B Viswanath, AS Lakshmi… - Biochemistry …, 2016 - airitilibrary.com
劉建良(2016). Assess the ability of dissimilatory metal reducing bacterial Shewanella spp. to
accumulate metal and degrade organic pollutant [博士論文, 國立臺灣大學]. 華藝線上圖書館 …

Production of Laccase by Cochliobolus sp. Isolated from Plastic Dumped Soils and Their Ability to Degrade Low Molecular Weight PVC

T Sumathi, B Viswanath… - Biochemistry …, 2016 - pubmed.ncbi.nlm.nih.gov
One of the utmost man-made problems faced today has been the ever-increasing plastic
waste filling the world. It accounts for an estimated 20-30%(by volume) of municipal solid …

Production of Laccase by Cochliobolus sp. Isolated from Plastic Dumped Soils and Their Ability to Degrade Low Molecular Weight PVC.

T Sumathi, B Viswanath, A Sri Lakshmi… - Biochemistry …, 2016 - search.ebscohost.com
One of the utmost man-made problems faced today has been the ever-increasing plastic
waste filling the world. It accounts for an estimated 20–30%(by volume) of municipal solid …

Production of Laccase by Cochliobolus sp. Isolated from Plastic Dumped Soils and Their Ability to Degrade Low Molecular Weight PVC

T Sumathi, B Viswanath, AS Lakshmi, DVR SaiGopal - 2016 - scholarworks.bwise.kr
One of the utmost man-made problems faced today has been the ever-increasing plastic
waste filling the world. It accounts for an estimated 20-30%(by volume) of municipal solid …

[PDF][PDF] Production of Laccase by Cochliobolus sp. Isolated from Plastic Dumped Soils and Their Ability to Degrade Low Molecular Weight PVC

T Sumathi, B Viswanath, AS Lakshmi, DVR SaiGopal - 2016 - core.ac.uk
One of the utmost man-made problems faced today has been the ever-increasing plastic
waste filling the world. It accounts for an estimated 20–30%(by volume) of municipal solid …

Production of Laccase by Cochliobolus sp. Isolated from Plastic Dumped Soils and Their Ability to Degrade Low Molecular Weight PVC.

T Sumathi, B Viswanath, DV SaiGopal - Biochemistry Research …, 2016 - europepmc.org
One of the utmost man-made problems faced today has been the ever-increasing plastic
waste filling the world. It accounts for an estimated 20–30%(by volume) of municipal solid …