Zobrazeno 1 - 10
of 15
pro vyhledávání: '"Biswajit S. De"'
Publikováno v:
ACS Applied Energy Materials. 4:9639-9652
Hydrogen production in the microfluidic alkaline membraneless electrolyzer (μAME) marks a new paradigm in sustainable energy technology. One challenge in this field is implementing a bifunctional c...
Publikováno v:
Journal of Industrial and Engineering Chemistry. 91:273-284
Recent technological advancement allows the synthesis of malonic acid from the bio-fermentation route by using cost-effective raw material like biomass, which enhances its overall production. The dilute aqueous stream of malonic acid produced from th
Publikováno v:
Sustainable Energy & Fuels. 4:6234-6244
Membrane-less microfluidic reactors for water electrolysis can serve as a disruptive technology for the sustainable production of hydrogen utilizing excess electricity from intermittent renewable energy sources. Membrane-less electrolyzers facilitate
Autor:
Abdalla M. Abdalla, Sumisha Anappara, Abul K. Azad, Suddhasatwa Basu, Ajit Behera, Tribani Boruah, Mohamed K. Dawood, Biswajit S. De, Sangeetha Dharmalingam, Anastasia Elias, Basem E. Elnaghi, Mohamed El-Sabahy, Qian Fu, Pablo A. García-Salaberri, Sonali Gautam, Nirali H. Gondaliya, Charu Goyal, Ram K. Gupta, Shahzad Hossain, Linbin Hu, Jayapriya Jayaprakash, Neeraj Khare, Haribabu Krishnan, Vaidhegi Kugarajah, Anuj Kumar, Dipak Kumar Das, Jun Li, Qiang Liao, Cauê A. Martins, Saranya Narayanasamy, Tuan Anh Nguyen, Fahimeh Hooriabad Saboor, Karthick Senthilkumar, Shabana P.S. Shaikh, John Solomon, Muhammad Rizwan Sulaiman, Shashank Sundriyal, Liang Zhang, Yunfeng Zhang, Xun Zhu
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::54810c7c2f0e324d3bdb7edb8493f391
https://doi.org/10.1016/b978-0-323-85727-7.00022-9
https://doi.org/10.1016/b978-0-323-85727-7.00022-9
Publikováno v:
Journal of Chemical & Engineering Data. 64:1101-1112
Protocatechuic acid has wide pharmacological significance. The separation of protocatechuic acid (0.001–0.01 mol·kg–1) from tri-n-octylamine (TOA) (0.3140–2.827 mol·kg–1), in petroleum ether, toluene, and isobutyl acetate was investigated a
Publikováno v:
Reaction Chemistry & Engineering. 4:78-89
The development of in situ product recovery (ISPR), i.e., integrated bioconversion with a product separation and recovery system, is crucial for a competitive and sustainable technology for biotechnological protocatechuic acid (PCA) production. The m
Autor:
Jing-Li Luo, Joshua Cunningham, Neeraj Khare, Anastasia L. Elias, Biswajit S. De, Suddhasatwa Basu
Publikováno v:
Applied Energy. 305:117945
Advances in device miniaturization, ranging from sensors to transmitters, are driving the need for micro-scaled personalized on-demand power sources. Herein, the tandem operation of a membraneless, two-phase flow microfluidic electrolysis cell and fu
Publikováno v:
Separation Science and Technology. 54:3100-3114
Owing to its chemical and pharmacological significances, the efficacy of reactive separation of protocatechuic acid (0.001–0.01 kmol m−3) from aqueous stream by means of tri-n-octylamine (TOA), di-...
Publikováno v:
Chemical Data Collections. :244-253
Protocatechuic acid is an effective analgesic, anti-inflammatory, antiseptic, etc. The experimental results for recovery of protocatechuic acid using natural non-toxic (groundnut oil and canola oil) and conventional solvents (1-octanol and 2-ethylhex