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Production of non-axenic ureolytic spores for self-healing concrete applications

机译:用于非自修复混凝土应用的非树胶脲解孢子的生产

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The bin-based self-healing concrete market demands an inexpensive bin-agent. The use of axenic ureolytic spore cultures has been demonstrated to be efficient but too expensive, due to an operational expense (OPEX) cost of about 500 (sic)/kg of bio-agent. A new selection process to obtain a powderous material containing an efficient ureolytic microbial community (Cyclic EnRiched Ureolytic Powder or CERUP) has been developed. Ureolytic activity, calcium carbonate precipitation capability and the effects in concrete were evaluated at production scales of 5 L and 50 L The non-axenic culture obtained following this new selective process, at both 5 L and 50 L scales, proved to be as good as the benchmark Bacillus sphaericus both in urea hydrolysis (20 g urea/L in 24 h) and calcium carbonate precipitation (0.3 g CaCO3/g VS.h). Plain incorporation of CERUP in concrete was found to be efficient at levels of 0.5% and 1% of the cement weight. Furthermore, a brief economical evaluation was performed to verify the economic feasibility of this product. Only OPEX costs were considered since capital expense (CAPEX) costs are directly related to the dimensions of scale and thus not possible to estimate at this stage of the research. The OPEX cost per unit of CERUP is about 40 times lower than the OPEX cost of a B. sphaericus axenic culture. However, even with such decrease in cost, the production of bacterial spores to incorporate in concrete is too expensive. (C) 2015 Elsevier Ltd. All rights reserved.
机译:基于箱的自修复混凝土市场需要便宜的箱代理。由于操作费用(OPEX)成本约为每公斤生物试剂500(sic),已证明使用树胶尿素分解孢子培养物是有效的,但过于昂贵。已经开发出一种新的选择方法,以获得包含有效的尿素分解微生物群落的粉末状材料(循环富集尿素分解粉末或CERUP)。在5 L和50 L的生产规模下评估了尿素分解活性,碳酸钙的沉淀能力和对混凝土的影响。通过这种新的选择性工艺,在5 L和50 L规模下获得的非树胶培养物被证明与在尿素水解(24 g尿素/ L,24小时)和碳酸钙沉淀(0.3 g CaCO3 / g VS.h)中均是基准球芽孢杆菌。发现将CERUP简单地掺入混凝土中可以达到水泥重量的0.5%和1%的水平。此外,进行了简短的经济评估,以验证该产品的经济可行性。由于资本支出(CAPEX)成本与规模的大小直接相关,因此在此研究阶段无法估算,因此仅考虑了运营支出。每单位CERUP的OPEX成本比球形芽孢杆菌(B.但是,即使成本降低了,生产掺入混凝土中的细菌孢子还是太昂贵了。 (C)2015 Elsevier Ltd.保留所有权利。

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