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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Economic pre-feasibility study of seawater desalination for a high-temperature gas-cooled reactor by reverse osmosis
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Economic pre-feasibility study of seawater desalination for a high-temperature gas-cooled reactor by reverse osmosis

机译:反渗透法对高温气冷堆海水淡化的经济预可行性研究

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The comprehensive study of high-temperature gas-cooled reactors (HTR) has been carried out for many years. In particular, the Chinese 10 MW (t) high-temperature gas-cooled reactor test module (HTR-10) has attained initial criticality since December 20, 2000. The HTR-10 design represents the features of modular HTGR design. The reactor core and steam generator are housed in two steel pressure vessels, which are arranged side by side. These steel pressure vessels are in touch with cold helium of about 250 deg C coming out from the circulator which sits over the steam generator tubes in the same vessel. A feasibility study for a four-module 200 MW(t)HTR, generating about 300 MW of electricity, has recently been performed by INET, Tsinghua University. This paper presents the economic feasibilities of a seawater desalination system for HTR by reverse osmosis (RO) (HTR-300), that produces 480,000d~3/d of fresh water, which was calculated using the Desalination Economic Evaluation Program (DEEP2.0) developed by the IAEA. The results indicated that the averaged discounted production of water cost is us0.57/m~3 and the averaged discounted electricity generation cost is us0.038/k Wh, which is lower than of a nuclear and fossil power plant for desalination plants. It has the advantages of its low electricity cost and water production for its inherent safety features of HTR, compared to other same-scale nuclear power and fossil power plants. The sensitive factors for the cost of water desalination and electricity generation were analyzed, which include net thermal efficiency, discount rate/interest rate, sepcific investment cost and seawater temperature/seawater total dissolved solid (TDS). The discount rate is one of the factors that has the greatest effect on the cost of water and electricity, which are us0.42/m~3, and us0.028/k Wh, us0.48/m~3 and us0.032/k Wh, us0.57/m~3 and us0.038/k Wh, us0.65/m~3 and us0.043/k Wh, us0.73/m~3 and us0.048/k Wh, respectively, while the discount rate/interest rate varies in the range of 3%, 5%, 8%, 10% and 12%. The water cost is strongly influenced by the TDS of the seawater, but not influenced by seawater temperature. The reference net thermal efficiency is another factor that has a great effect on water and electricity cost:us0.59/m~3 and us0.043/k Wh at 35%, us0.56/m~3 and us0.034/k Wt at 47.7%.
机译:高温气冷堆(HTR)的综合研究已经进行了很多年。特别是,中国的10兆瓦(t)高温气冷堆测试模块(HTR-10)自2000年12月20日以来已经达到了最初的关键。HTR-10设计代表了模块化HTGR设计的特点。反应堆堆芯和蒸汽发生器位于两个钢制压力容器中,两个容器并排布置。这些钢制压力容器与循环器中约250摄氏度的冷氦接触,循环器位于同一容器中的蒸汽发生管上方。最近由清华大学INET进行了一个四模块200 MW(t)HTR的可行性研究,该发电量约为300 MW。本文介绍了利用脱盐经济评价计划(DEEP2.0)计算出的通过反渗透(RO)的HTR海水淡化系统(HTR-300)的经济可行性,该系统可产生480,000d〜3 / d的淡水。 )由国际原子能机构(IAEA)开发。结果表明,水生产的平均贴现成本为0.57美元/ m〜3,发电的平均贴现成本为0.038美元/ k Wh,低于海水淡化厂的核电和化石发电厂。与其他同等规模的核电厂和化石电厂相比,它具有HTR固有的安全特性,即电力成本低,产水量低的优势。分析了海水淡化和发电成本的敏感因素,包括净热效率,折现率/利率,单独的投资成本和海水温度/海水总溶解固体(TDS)。贴现率是对水电成本影响最大的因素之一,分别为0.42 / m〜3、0.028 / k Wh,0.48 / m〜3和0.032。 / k Wh,分别为us0.57 / m〜3和us0.038 / k Wh,us0.65 / m〜3和us0.043 / k Wh,us0.73 / m〜3和us0.048 / k Wh ,而折现率/利率则在3%,5%,8%,10%和12%的范围内变化。水费受海水TDS的强烈影响,但不受海水温度的影响。参考净热效率是另一个对水电成本有很大影响的因素:在35%时,us0.59 / m〜3和us0.043 / k Wh,us0.56 / m〜3和us0.034 / k重量为47.7%。

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