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Integration of Cleaner Production and Waste Water Treatment on Tofu Small Industry for Biogas Production using AnSBR Reactor

机译:使用AnSBR反应器将豆腐小行业的清洁生产与废水处理相集成以生产沼气

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A research on developing a system that integrates clean production and waste water treatment for biogas production in tofu small industry has been conducted. In this research, tofu waste water was turned into biogas using an AnSBR reactor. Mud from the sewage system serves as the inoculums. This research involved: (1) workshop; (2) supervising; (3) technical meeting; (4) network meeting, and (5) technical application. Implementation of clean production integrated with waste water treatment reduced the amount of waste water to be treated in a treatment plant. This means less cost for construction and operation of waste water treatment plants, as inherent limitations associated with such plants like lack of fund, limited area, and technological issues are inevitable. Implementation of clean production prior to waste water treatment reduces pollution figures down to certain levels that limitations in waste water treatment plants can be covered. Results show that biogas in 16 days HRT in an AnSBR reactor contains CH_(4)(78.26 %) and CO_(2)(20.16 %). Meanwhile, treatments using a conventional bio-digester result in biogas with 72.16 % CH_(4)and 18.12 % CO_(2). Hence, biogas efficiency for the AnSBR system is 2.14 times greater than that of a conventional bio-digester.
机译:已经进行了开发将豆腐小工业中沼气生产的清洁生产与废水处理相结合的系统的研究。在这项研究中,使用AnSBR反应器将豆腐废水转化为沼气。污水系统中的泥浆充当接种物。本研究涉及:(1)研讨会; (二)监督; (3)技术会议; (4)网络会议,和(5)技术应用。清洁生产与废水处理相结合的实施减少了污水处理厂中要处理的废水量。这意味着废水处理厂的建设和运营成本会降低,因为不可避免地会遇到与此类厂相关的固有局限性,例如资金短缺,面积有限和技术问题。在废水处理之前实施清洁生产可以将污染数字降低到一定水平,从而可以解决废水处理厂的局限性。结果表明,在AnSBR反应器中进行HRT处理的16天沼气中含有CH_(4)(78.26%)和CO_(2)(20.16%)。同时,使用常规生物消化器处理的沼气中CH_(4)和CO_(2)分别为72.16%和18.12%。因此,AnSBR系统的沼气效率是传统生物消化器的2.14倍。

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