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Dive into the research topics where Gulab Singh is active.

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Featured researches published by Gulab Singh.


International Journal of Biomaterials | 2013

Isolation and Screening of Polyhydroxyalkanoates Producing Bacteria from Pulp, Paper, and Cardboard Industry Wastes

Anish Kumari Bhuwal; Gulab Singh; Neeraj Aggarwal; Varsha Goyal; Anita Yadav

Background. Polyhydroxyalkanoates (PHAs) are storage materials that accumulate by various bacteria as energy and carbon reserve materials. They are biodegradable, environmentally friendly, and also biocompatible bioplastics. Unlike petrochemical-based plastics that take several decades to fully degrade, PHAs can be completely degraded within a year by variety of microorganisms into CO2 and water. In the present study, we aim to utilize pulp, paper, and cardboard industry sludge and waste water for the isolation and screening of polyhydroxyalkanoates (PHAs) accumulating bacteria and production of cost-effective PHB using cardboard industry waste water. Results. A total of 42 isolates showed black-blue coloration when stained with Sudan black B, a preliminary screening agent for lipophilic compounds, and a total of 15 isolates showed positive result with Nile blue A staining, a more specific dye for PHA granules. The isolates NAP11 and NAC1 showed maximum PHA production 79.27% and 77.63% with polymer concentration of 5.236 g/L and 4.042 g/L with cardboard industry waste water. Both of the selected isolates, NAP11 and NAC1, were classified up to genus level by studying their morphological and biochemical characteristics and were found to be Enterococcus sp., Brevundimonas sp. and, respectively. Conclusion. The isolates Enterococcus sp. NAP11 and Brevundimonas sp. NAC1 can be considered as good candidates for industrial production of PHB from cardboard industry waste water. We are reporting for the first time the use of cardboard industry waste water as a cultivation medium for the PHB production.


BioMed Research International | 2013

Poly β-Hydroxybutyrate Production by Bacillus subtilis NG220 Using Sugar Industry Waste Water

Gulab Singh; Anish Kumari; Arpana Mittal; Anita Yadav; Neeraj Aggarwal

The production of poly β-hydroxybutyrate (PHB) by Bacillus subtilis NG220 was observed utilizing the sugar industry waste water supplemented with various carbon and nitrogen sources. At a growth rate of 0.14 g h−1 L−1, using sugar industry waste water was supplemented with maltose (1% w/v) and ammonium sulphate (1% w/v); the isolate produced 5.297 g/L of poly β-hydroxybutyrate accumulating 51.8% (w/w) of biomass. The chemical nature of the polymer was confirmed with nuclear magnetic resonance, Fourier transform infrared, and GC-MS spectroscopy whereas thermal properties were monitored with differential scanning calorimetry. In biodegradability study, when PHB film of the polymer (made by traditional solvent casting technique) was subjected to degradation in various natural habitats like soil, compost, and industrial sludge, it was completely degraded after 30 days in the compost having 25% (w/w) moisture. So, the present study gives insight into dual benefits of conversion of a waste material into value added product, PHB, and waste management.


Biotechnology Research International | 2014

Parametric Optimization of Cultural Conditions for Carboxymethyl Cellulase Production Using Pretreated Rice Straw by Bacillus sp. 313SI under Stationary and Shaking Conditions.

Varsha Goyal; Arpana Mittal; Anish Kumari Bhuwal; Gulab Singh; Anita Yadav; Neeraj Aggarwal

Carboxymethyl cellulase (CMCase) provides a key opportunity for achieving tremendous benefits of utilizing rice straw as cellulosic biomass. Out of total 80 microbial isolates from different ecological niches one bacterial strain, identified as Bacillus sp. 313SI, was selected for CMCase production under stationary as well as shaking conditions of growth. During two-stage pretreatment, rice straw was first treated with 0.5 M KOH to remove lignin followed by treatment with 0.1 N H2SO4 for removal of hemicellulose. The maximum carboxymethyl cellulase activity of 3.08 U/mL was obtained using 1% (w/v) pretreated rice straw with 1% (v/v) inoculum, pH 8.0 at 35°C after 60 h of growth under stationary conditions, while the same was obtained as 4.15 U/mL using 0.75% (w/v) pretreated substrate with 0.4% (v/v) inoculum, pH 8.0 at 30°C, under shaking conditions of growth for 48 h. For maximum titre of CMCase carboxymethyl cellulose was optimized as the best carbon source under both cultural conditions while ammonium sulphate and ammonium nitrate were optimized as the best nitrogen sources under stationary and shaking conditions, respectively. The present study provides the useful data about the optimized conditions for CMCase production by Bacillus sp. 313SI from pretreated rice straw.


Innovative Romanian Food Biotechnology | 2012

Production of phytase by acido-thermophilic strain of Klebsiella sp. DB-3 FJ711774.1 using orange peel flour under submerged fermentation.

Arpana Mittal; Gulab Singh; Varsha Goyal; Anita Yadav; Neeraj Aggarwal


Jundishapur Journal of Microbiology | 2011

Isolation and biochemical characterization of acido-thermophilic extracellular phytase producing bacterial strain for potential application in poultry feed

Arpana Mittal; Gulab Singh; Varsha Goyal; Anita Yadav; Kamal Rai Aneja; Sanjeev Gautam; Neeraj Aggarwal


Journal of Polymers and The Environment | 2013

Cost Effective Production of Poly-β-Hydroxybutyrate by Bacillus subtilis NG05 Using Sugar Industry Waste Water

Gulab Singh; Anish Kumari; Arpana Mittal; Varsha Goel; Anita Yadav; Neeraj Aggarwal


Bioresources and Bioprocessing | 2014

Poly-β-hydroxybutyrate production and management of cardboard industry effluent by new Bacillus sp. NA10

Anish Kumari Bhuwal; Gulab Singh; Neeraj Aggarwal; Varsha Goyal; Anita Yadav


Archive | 2011

Optimization of Poly-B-Hydroxybutyrate Production from Bacillus species

Gulab Singh; Arpana Mittal; Anish Kumari; Varsha Goel; Neeraj Aggarwal; Anita Yadav


Innovative Romanian Food Biotechnology | 2011

OPTIMIZATION OF MEDIUM COMPONENTS FOR PHYTASE PRODUCTION ON ORANGE PEEL FLOUR BY KLEBSIELLA sp. DB3 USING RESPONSE SURFACE METHODOLOGY

Arpana Mittal; Gulab Singh; Varsha Goyal; Anita Yadav; Neeraj Aggarwal


Archive | 2013

Purification and Characterization of Amyloglucosidase Produced by Aspergillus awamori NA21 under Solid State Fermentation using Tapioca Powder

Arpana Mittal; Neeraj Aggarwal; Varun Gupta; Gulab Singh; Anita Yadav

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Anita Yadav

Kurukshetra University

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Varsha Goel

Kurukshetra University

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Arpana Mittal

Ahvaz Jundishapur University of Medical Sciences

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