Methods to quantify calcium carbonate precipitation in small scale

Bio cement is a new process used to aid the construction industry in strengthening the concrete material. Cracks on concrete are inevitable in the long run. Especially when the concrete material is exposed to extreme load and weathering. Bio cement has a self-healing property that could prevent wors...

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Main Author: Nur Insyirah Mazlan
Other Authors: Cao Bin
Format: Final Year Project (FYP)
Language:English
Published: Nanyang Technological University 2021
Subjects:
Online Access:https://hdl.handle.net/10356/154347
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author Nur Insyirah Mazlan
author2 Cao Bin
author_facet Cao Bin
Nur Insyirah Mazlan
author_sort Nur Insyirah Mazlan
collection NTU
description Bio cement is a new process used to aid the construction industry in strengthening the concrete material. Cracks on concrete are inevitable in the long run. Especially when the concrete material is exposed to extreme load and weathering. Bio cement has a self-healing property that could prevent worsening of cracks. If cracks are not well maintained, it can cause catastrophic accidents. The process of bio cement follows MICP (Microbially induced calcium carbonate precipitation). In this process, addition of urea and calcium ion on bacteria results in the formation of calcium carbonate and ammonium ion. In this study the bacteria used is Sporosarcina Pasteurii (DSM33). It has a high urease activity which allow the crystallization of calcium carbonate to occur in between cracks of cement. On top of that, to quickly and indirect method identifying the urease activity in the bio cement is quantify the reactants and product of calcium carbonate reaction. In this case, quantifying ammonium, and calcium ion. This study will be using Nessler reagent and chromogenic reagent respectively. These two reagents allow the reaction with ion to precipitate a certain colour. By colorimetric method, the absorbance can be measured using a microplate reader. By developing a standard concentration against absorbance linear graph for both ions, it can be checked against the absorbance for bio cement effluent. As the solution of urea, calcium chloride and DSM33 is injected at different interval, the effluent can be obtained and measure for absorbance. As a result, the small-scale standard serves as a reference to identify the number of ions present in the effluent.
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spelling ntu-10356/1543472021-12-20T13:06:21Z Methods to quantify calcium carbonate precipitation in small scale Nur Insyirah Mazlan Cao Bin School of Civil and Environmental Engineering BinCao@ntu.edu.sg Engineering::Environmental engineering Bio cement is a new process used to aid the construction industry in strengthening the concrete material. Cracks on concrete are inevitable in the long run. Especially when the concrete material is exposed to extreme load and weathering. Bio cement has a self-healing property that could prevent worsening of cracks. If cracks are not well maintained, it can cause catastrophic accidents. The process of bio cement follows MICP (Microbially induced calcium carbonate precipitation). In this process, addition of urea and calcium ion on bacteria results in the formation of calcium carbonate and ammonium ion. In this study the bacteria used is Sporosarcina Pasteurii (DSM33). It has a high urease activity which allow the crystallization of calcium carbonate to occur in between cracks of cement. On top of that, to quickly and indirect method identifying the urease activity in the bio cement is quantify the reactants and product of calcium carbonate reaction. In this case, quantifying ammonium, and calcium ion. This study will be using Nessler reagent and chromogenic reagent respectively. These two reagents allow the reaction with ion to precipitate a certain colour. By colorimetric method, the absorbance can be measured using a microplate reader. By developing a standard concentration against absorbance linear graph for both ions, it can be checked against the absorbance for bio cement effluent. As the solution of urea, calcium chloride and DSM33 is injected at different interval, the effluent can be obtained and measure for absorbance. As a result, the small-scale standard serves as a reference to identify the number of ions present in the effluent. Bachelor of Engineering (Environmental Engineering) 2021-12-20T13:06:20Z 2021-12-20T13:06:20Z 2021 Final Year Project (FYP) Nur Insyirah Mazlan (2021). Methods to quantify calcium carbonate precipitation in small scale. Final Year Project (FYP), Nanyang Technological University, Singapore. https://hdl.handle.net/10356/154347 https://hdl.handle.net/10356/154347 en EN-51 application/pdf Nanyang Technological University
spellingShingle Engineering::Environmental engineering
Nur Insyirah Mazlan
Methods to quantify calcium carbonate precipitation in small scale
title Methods to quantify calcium carbonate precipitation in small scale
title_full Methods to quantify calcium carbonate precipitation in small scale
title_fullStr Methods to quantify calcium carbonate precipitation in small scale
title_full_unstemmed Methods to quantify calcium carbonate precipitation in small scale
title_short Methods to quantify calcium carbonate precipitation in small scale
title_sort methods to quantify calcium carbonate precipitation in small scale
topic Engineering::Environmental engineering
url https://hdl.handle.net/10356/154347
work_keys_str_mv AT nurinsyirahmazlan methodstoquantifycalciumcarbonateprecipitationinsmallscale