288. Wanyonyi WC, Mulaa FJ (2019) Alkaliphilic enzymes and their application in novel leather
processing technology for next-generation tanneries. Adv Biochem Eng Biotechnol. https://
doi.org/10.1007/10_2019_95
289. Costa SA, Tzanov T, Carneiro F, Gübitz GM, Cavaco-Paulo A (2002) Recycling of textile
bleaching effluents for dyeing using immobilized catalase. Biotechnol Lett 24:173–176
290. Oluoch KR, Welander U, Andersson MM, Mulaa FJ, Mattiasson B, Hatti-Kaul R (2006)
Hydrogen peroxide degradation by immobilized cells of alkaliphilic Bacillus halodurans.
Biocatal Biotransformation 24:215–222
291. Paar A, Costa S, Tzanov T, Gudelj M, Robra K-H, Cavacao-Paulo A, Gübitz GM (2001)
Thermo-alkali-stable catalases from newly isolated Bacillus sp. for treatment and recycling of
textile bleaching effluents. J Biotechnol 89:147–153
292. Paar A, Raninger A, Desousa F, Beurer I, Cavaco-Paulo A, Gübitz GM (2003) Production of
catalase-peroxidase and continuous degradation of hydrogen peroxide by an immobilized
alkalothermophilic Bacillus sp. Food Technol Biotechnol 41:101–104
293. Kulshreshtha N, Kruthiventi A, Bisht G, Pasha S, Kumar R (2012) Usefulness of organic acid
produced by Exiguobacterium sp. 12/1 on neutralization of alkaline wastewater. Sci World J
2012:345101. https://doi.org/10.1100/2012/345101
294. Jain RM, Mody KH, Keshri J, Jha B (2011) Biological neutralization of chlor-alkali industry
wastewater. Mar Pollut Bull 62:2377–2383
295. Li Q (2019) Progress in microbial degradation of feather waste. Front Microbiol 10:2717.
https://doi.org/10.3389/fmicb.2019.02717
Alkaliphiles: The Versatile Tools in Biotechnology
51
processing technology for next-generation tanneries. Adv Biochem Eng Biotechnol. https://
doi.org/10.1007/10_2019_95
289. Costa SA, Tzanov T, Carneiro F, Gübitz GM, Cavaco-Paulo A (2002) Recycling of textile
bleaching effluents for dyeing using immobilized catalase. Biotechnol Lett 24:173–176
290. Oluoch KR, Welander U, Andersson MM, Mulaa FJ, Mattiasson B, Hatti-Kaul R (2006)
Hydrogen peroxide degradation by immobilized cells of alkaliphilic Bacillus halodurans.
Biocatal Biotransformation 24:215–222
291. Paar A, Costa S, Tzanov T, Gudelj M, Robra K-H, Cavacao-Paulo A, Gübitz GM (2001)
Thermo-alkali-stable catalases from newly isolated Bacillus sp. for treatment and recycling of
textile bleaching effluents. J Biotechnol 89:147–153
292. Paar A, Raninger A, Desousa F, Beurer I, Cavaco-Paulo A, Gübitz GM (2003) Production of
catalase-peroxidase and continuous degradation of hydrogen peroxide by an immobilized
alkalothermophilic Bacillus sp. Food Technol Biotechnol 41:101–104
293. Kulshreshtha N, Kruthiventi A, Bisht G, Pasha S, Kumar R (2012) Usefulness of organic acid
produced by Exiguobacterium sp. 12/1 on neutralization of alkaline wastewater. Sci World J
2012:345101. https://doi.org/10.1100/2012/345101
294. Jain RM, Mody KH, Keshri J, Jha B (2011) Biological neutralization of chlor-alkali industry
wastewater. Mar Pollut Bull 62:2377–2383
295. Li Q (2019) Progress in microbial degradation of feather waste. Front Microbiol 10:2717.
https://doi.org/10.3389/fmicb.2019.02717
Alkaliphiles: The Versatile Tools in Biotechnology
51
