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Biotic and abiotic effects on CO2 sequestration during microbially-induced calcium carbonate precipitation

机译:微生物诱导碳酸钙沉淀过程中CO2螯合的生物和非生物作用

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In this study, CO2 sequestration was investigated through the microbially-induced calcium carbonate precipitation (MICP) process with isolates obtained from a cave called 'Cave Without A Name' (Boerne, TX, USA) and the Pamukkale travertines (Denizli, Turkey). The majority of the bacterial isolates obtained from these habitats belonged to the genera Sporosarcina, Brevundimonas, Sphingobacterium and Acinetobacter. The isolates were investigated for their capability to precipitate calcium carbonate and sequester CO2. Biotic and abiotic effects of CO2 sequestration during MICP were also investigated. In the biotic effect, we observed that the rate and concentration of CO2 sequestered was dependent on the species or strains. The main abiotic factors affecting CO2 sequestration during MICP were the pH and medium components. The increase in pH led to enhanced CO2 sequestration by the growth medium. The growth medium components, on the other hand, were shown to affect both the urease activity and CO2 sequestration. Through the Plackett-Burman experimental design, the most important growth medium component involved in CO2 sequestration was determined to be urea. The optimized medium composition by the Plackett-Burman design for each isolate led to a statistically significant increase, of up to 148.9%, in CO2 uptake through calcification mechanisms.
机译:在本研究中,通过微血上诱导的碳酸钙沉淀(MICP)方法研究了CO2螯合,其中分离物从名为“洞穴没有名称”(BOENNE,TX,USA)和Pamukkale Travertines(DeNizli,土耳其)的洞穴。从这些栖息地获得的大多数细菌分离物属于属孢子瘤,Brevundimonas,鞘曲杆菌和acineTobacter。研究了分离物以沉淀碳酸钙和螯合CO 2的能力。还研究了CO2螯合在麦克风期间的生物和非生物效应。在生物效应中,我们观察到CO2螯合率和浓度依赖于物种或菌株。影响MICP期间CO2封存的主要非生物因子是pH和中等成分。 pH的增加导致生长培养基增强CO2封存。另一方面,生长培养基组分显示出影响脲酶活性和CO2螯合。通过Plackett-Burman实验设计,CO2螯合中涉及的最重要的生长培养基组分被确定为尿素。通过Plackett-Burman设计的优化介质组成,每个分离物导致统计上显着增加,高达148.9%,通过钙化机制采用高达148.9%。

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