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Bioethanol production from urban cellulosic waste employing Alcaligenes faecalis HI-1 isolated from gut of termite Heterotermes indicola
Iqtedar, Mehwish; Riaz, Sidra; Mirza, Saima Shehzaad; Aftab, Mahwish; Kaleem, Afshan; Abdullah, Roheena; Aihetasham, Ayesha; Aslam, Farheen; Wasim, Myra.
Affiliation
  • Iqtedar, Mehwish; Lahore College for Women University. Lahore. PK
  • Riaz, Sidra; Lahore College for Women University. Lahore. PK
  • Mirza, Saima Shehzaad; University of Agriculture. Faisalabad. PK
  • Aftab, Mahwish; Lahore College for Women University. Lahore. PK
  • Kaleem, Afshan; Lahore College for Women University. Lahore. PK
  • Abdullah, Roheena; Lahore College for Women University. Lahore. PK
  • Aihetasham, Ayesha; University of the Punjab. Lahore. PK
  • Aslam, Farheen; University of the Punjab. Lahore. PK
  • Wasim, Myra; University of the Punjab. Lahore. PK
Biosci. j. (Online) ; 37: e37023, Jan.-Dec. 2021. ilus, tab, graf
Article in En | LILACS | ID: biblio-1359541
Responsible library: BR396.1
ABSTRACT
This study assessed the potential of termite gut inhabiting bacteria towards bioconversion of cellulosic waste into biofuel. Total seven bacterial isolates from the gut of Heterotermes indicola were isolated. Among all the isolates, HI-1 produced the largest zone upon primary screening. Untreated paper had more cellulose content (73.03%) than acid (0.5%) treated paper that was used as a lignocellulosic substrate for saccharification. Among all the isolates tested, glucose yield (1.08mg/mL) was high for HI-1 isolate. Several factors were considered for optimizing augmented glucose yield (8.57mg/mL) and growth (8.07×108cfu/mL), such as temperature 37°C, pH 4.5, 5% (w/v) substrate concentration, 6 % bacterial inoculum size, agitation 150 rpm with PEG 0.25 % and Ca2+ ions 0.002 g/L. Overall 8-fold increase in glucose yield was achieved. Enzyme activity of HI-1 showed higher endoglucanase 0.29 ± 0.01 (U/mL/min) and exoglucanase 0.15±0.01 (U/mL/min) activity under optimum conditions, mentioned above. temperature 37°C, pH 4.5, substrate concentration 5%, inoculum size 6%, surfactants PEG 0.01%, ions Ca2+(0.002g/L) and agitation (120 rpm). Simultaneous saccharification and fermentation (SSF) of hydrolyzed office paper yielded 5.43mg/mL bioethanol. According to 16S rRNA sequence homology, the bacterial isolate H1 was identified as Alcaligenes faecalis. Bioethanol production from office paper untreated waste proved an effective strategy. Bacteria having natural tendency towards cellulosic waste consumption are promising for bioconversion of cellulosic waste to valuable products.
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Full text: 1 Collection: 01-internacional Database: LILACS Main subject: Isoptera / Alcaligenes faecalis / Bioethanol Language: En Journal: Biosci. j. (Online) Journal subject: Agricultura / Disciplinas das Ciˆncias Biol¢gicas / Pesquisa Interdisciplinar Year: 2021 Document type: Article Affiliation country: Pakistan Country of publication: Brazil

Full text: 1 Collection: 01-internacional Database: LILACS Main subject: Isoptera / Alcaligenes faecalis / Bioethanol Language: En Journal: Biosci. j. (Online) Journal subject: Agricultura / Disciplinas das Ciˆncias Biol¢gicas / Pesquisa Interdisciplinar Year: 2021 Document type: Article Affiliation country: Pakistan Country of publication: Brazil