Bioresource Technology 2013-09-01

Sulfate removal by Desulfovibrio sp. CMX in chelate scrubbing solutions for NO removal.

Mingxiang Chen, Yu Zhang, Jiti Zhou, Xiyang Dong, Xiaojun Wang, Zhuang Shi

Index: Bioresour. Technol. 143 , 455-60, (2013)

Full Text: HTML

Abstract

To study the effects of Fe chelate solution and nitrosyl-complex (Fe(II)EDTA-NO), which might be introduced in the simultaneous biodesulfurization and denitrification process, on the sulfate removal process, a sulfate reducing bacteria Desulfovibrio sp. CMX was investigated for its sulfate removal capacity in the presence of Fe chelate additives and Fe(II)EDTA-NO. Meanwhile, Fe(II)EDTA-NO reduction was also investigated. The addition of Fe(II)EDTA and Fe(III)EDTA could stimulate the sulfate reduction performance. Although Fe(II)EDTA-NO could inhibit the strain, CMX could survive by consuming lactate and recover its sulfate reducing activity after Fe(II)EDTA-NO removed. Sulfate reduction could be enhanced in higher Fe(II)EDTA-NO concentrations (2 and 4 mM) by lactate applied at the middle stage of the experiment, and 72.2% and 62.6% sulfate were removed in 182 h, respectively. In this study, above 90% Fe(II)EDTA-NO (0.25-4 mM) was removed less than 60 h, which was much faster than sulfate reduction.Copyright © 2013 Elsevier Ltd. All rights reserved.

Related Compounds

Structure Name/CAS No. Articles
Ethylenediaminetetraacetic acid disodium salt Structure Ethylenediaminetetraacetic acid disodium salt
CAS:139-33-3
Disodium monocalcium EDTA Structure Disodium monocalcium EDTA
CAS:62-33-9
Disodium edetate dihydrate Structure Disodium edetate dihydrate
CAS:6381-92-6
Ethylenediaminetetraacetic acid Structure Ethylenediaminetetraacetic acid
CAS:60-00-4
EDTA ferric sodium salt Structure EDTA ferric sodium salt
CAS:15708-41-5