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首页> 外文期刊>Renewable energy >Techno-economic analysis of microalgae production with simultaneous dairy effluent treatment using a pilot-scale High Volume V-shape pond system
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Techno-economic analysis of microalgae production with simultaneous dairy effluent treatment using a pilot-scale High Volume V-shape pond system

机译:使用中试规模的大体积V型池系统同时进行乳制品废水处理的微藻生产的技术经济分析

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摘要

In this study techno-economic evaluation of scaled-up microalgae production and simultaneous dairy effluent treatment was performed. It includes 'Base case' comprising a 3 m(3) High Volume V-shape Pond (HVVP) and 'Projected case(s)' in million liters per day (MLD) treatment capacity plant of <= 0.25, similar to 0.5 and >= 1.0 MLD dairy industries for 10-, 20- and 30-yrs lifetime span, respectively. Economic analysis includes capital expenditure (CapEx), operational expenditure (OpEx), payback period, internal rate of return (IRR), net present value and minimum biomass production price. As expected, centrifuge and its electricity consumption charges are major contributors of CapEx and OpEx, respectively. >= 1 MLD plant for 20 yrs showed most feasible with an IRR and payback period of 118% and 1.9 yrs, respectively. Annual algal production was 504 ton at $0.482/kg with similar to 240,000 m(3) of treated clean water. HVVP is found to be one of the cost-effective and area efficient microalgal cultivation systems for mass production. Besides, the process aids in resolving environmental concerns associated with current practices of direct discharge of dairy effluents. This study aims to overcome some of the key hindering factors viz., high land foot-print and cost-intensive cultivation systems that are associated in commercialization of microalgae production. (c) 2019 Elsevier Ltd. All rights reserved.
机译:在这项研究中,对扩大规模的微藻生产和同时进行的乳制品废水处理进行了技术经济评价。它包括“基本案例”,其中包括一个3 m(3)高容量V形池塘(HVVP)和“预计案例”,其每日百万升(MLD)处理能力的工厂<= 0.25,类似于0.5和> = 1.0 MLD乳制品行业的寿命分别为10年,20年和30年。经济分析包括资本支出(CapEx),运营支出(OpEx),投资回收期,内部收益率(IRR),净现值和最低生物质生产价格。不出所料,离心机及其耗电量分别是CapEx和OpEx的主要贡献者。 > = 1个MLD工厂20年显示最可行,IRR和投资回收期分别为118%和1.9年。藻类年产量为504吨,0.482美元/千克,约有240,000 m(3)处理过的清洁水。 HVVP被认为是用于大规模生产的经济高效且区域有效的微藻培养系统之一。此外,该方法有助于解决与当前直接排放乳制品废水相关的环境问题。这项研究旨在克服一些关键的阻碍因素,即与微藻生产商业化相关的高土地足迹和成本密集型栽培系统。 (c)2019爱思唯尔有限公司。保留所有权利。

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