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| DC 欄位 | 值 | 語言 |
|---|---|---|
| dc.contributor.advisor | 周楚洋 | |
| dc.contributor.author | Shih-Hao Yang | en |
| dc.contributor.author | 楊士豪 | zh_TW |
| dc.date.accessioned | 2021-06-08T05:19:39Z | - |
| dc.date.copyright | 2005-07-30 | |
| dc.date.issued | 2005 | |
| dc.date.submitted | 2005-07-28 | |
| dc.identifier.citation | 中國鋼鐵企業網站 http://www.csc.com.tw/
江晃榮,2000,「生物技術與污染防治(一)固定化微生物在廢水處理上之應用」,工業污染防治技術叢書,廢水好氧處理論著彙編(下),台北,頁31-40。 李公哲,2000,「工業廢水處理技術(四)」,工業污染防治技術叢書,廢水好氧處理論著彙編(上),台北,頁55-65。 吳美惠,張芳賓,朱昱學,2000,「固定化微生物廢水處理技術評估」,工業污染防治技術叢書,廢水好氧處理論著彙編(下),台北,頁177-206。 陳秋楊,2000,「工業廢水生物處理及應用」,工業污染防治技術叢書,廢水好氧處理論著彙編(上),台北,頁195-224。 陳秋楊,林景行,2000,「生物處理法在工業廢水處理之應用」,工業污染防治技術叢書,廢水好氧處理論著彙編(下),台北,頁17-30。 陳國誠,吳建一,2000,「微生物固定化技術在廢水處理的應用」,工業污染防治技術叢書,廢水好氧處理論著彙編(下),台北,頁269-292。 經濟部工業局,1996,「鋼鐵業廢棄物資源化案例彙編」,台北。 劉安琪,1996,「應用固定化細胞技術處理豬糞尿廢水」,國立台灣大學農業機械工程研究所碩士論文,台北。 Chen, K. C., C. Y. Chen, J. W. Peng and J. Y. Houng. 2002. Real-time control of an immobilized-cell reactor for wastewater treatment using ORP. Water Research 36:230-238. Chen, K. C., S. C. Lee, S. C. Chin, and J. Y. Houng. 1998. Simultaneous carbon-nitrogen removal in wastewater using hosphorylated PVA-immobilized microorganisms. Enzyme and Microbial Technology 23:311-320. Kim, S. J. and P. Y. Yang. 2004. Two-stage entrapped mixed microbial cell (EMMC) process for simultaneous removal of organics and nitrogen for rural domestic sewage application. Water Science and Technology, In Press. Loh, K. C., T. S. Chung and W. F. Ang. 2000. Immobilized-cell membrane bioreactor for high-strength phenol wastewater. Journal of Environmental Engineering: 75-79. Melidis, P., D. Georgiou and A. Aivasidis. 2002. Scale-up and design optimization of anaerobic immobilized cell reactors for wastewater treatment. Chemical Engineering and Processing 42: 897-908. Qian, X., P.Y. Yang and T. Maekawa. 2001. Evaluation of direct removal of nitrate with EMMC technology using ethanol as carbon source. Water Enviroment Research. 73:584-589. Yang, P. Y., S. Nitisoravut and J. S. Wu. 1995. Nitrate removal using a mixed-culture entrapped microbial cell immobilization process under high salt conditions. Water Research 29:1525-1532. Yang, P. Y., T. Ma and H. J. Chen. 1997. The PEMMC process for land-limited small wastewater-treatment plants. Bioresource Technology 60:35-42. Yang, P. Y., Z. Q. Zhang. and B. G. Jeong. 1997. Simultaneous removal of carbon and nitrogen using an Entrapped-Mixed-Microbial-Cell process. Water Research 31:2617-2625. Yang, P. Y., M. Shimabukuro and S. J. Kim. 2002. A pilot scale bioreactor using EMMC for carbon and nitrogen removal. Clean Technologies and Environmental Policy 3:407-412. Yang, P. Y., K. Cao, and S. J. Kim. 2002. Entrapped mixed microbial cell process for combined secondary and tertiary wastewater treatment. Water Environment Research 74:226-234. Yang, P. Y., H. J. Chen, and S. J. Kim. 2003. Integrating EMMC process for biological removal of carbon and nitrogen from dilute swine wastewater for agricultural reuse. Bioresource Technology 86:245-252. Yang, P. Y. and T. T. Myint. 2003. Integrating EMMC technology for treatment of wastewater containing DMSO for reuse in semiconductor industries. Clean Technologies and Environmental Policy 6:43-50. Yang, P. Y., R. Su and S. J. Kim. 2004. EMMC process for combined removal of organics, nitrogen and odor production substance. Journal of Environment Management, In Press. | |
| dc.identifier.uri | http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/24248 | - |
| dc.description.abstract | 為提高整廠的處理效率並降低成本,本研究以固定化微生物Entrapped Mixed Microbial Cell (EMMC) 反應槽處理煉焦程序經二級處理後之排放水,並探討水力停留時間 (hydraulic retention time,HRT) 及顆粒填充率 (packing ratio) 對處理效率的影響。
實驗全程溫度控制在30±1℃,以24 hrs HRT進行起動馴化實驗,待穩定後再以不同HRT (12、8、6、4、2及1 hrs) 和不同顆粒填充率 (35%和20%) 為操作條件觀察EMMC之處理效率;另外以污泥 (VC-756) 直接處理廢水 (VC-757),測試生物降解能力。並且在減少HRT、去除率持續下降的試驗後,將進流改為高濃度的原廢水 (VC-703) 對EMMC進行活性恢復實驗。 結果顯示,EMMC在顆粒填充率35%、HRT 12 hrs的操作條件下,有最高的SCOD去除率23%;在填充率35%、HRT 8 hrs時有最高的TSS去除率93%,而填充率20%、HRT 8 hrs時有最高的TCOD去除率52%。此外,有機負荷在63 mg TCOD/L/hr時 (HRT 8 hrs),系統的TCOD去除率可達50%以上,而有機負荷在24 mg SCOD/L/hr 時 (HRT 12 hrs),SCOD去除率亦可超過20%。至於生物降解能力的實驗,以污泥VC-756和廢水VC-757依4:1的比例混合處理12天後,SCOD最低可以降至479 mg/L,由此推算VC-756的生物可消化程度約為18%。在EMMC處理效率逐漸下降時,以1:1比例混合原廢水VC-703和二級排放水VC-757做為進流,其TCOD去除率提高至68%,SCOD去除率則可提高達73%,並估算出EMMC對VC-757的SCOD理論去除率 (theoretical removal efficiency,TRE) 可達78%。 | zh_TW |
| dc.description.abstract | In order to improve the performance of the treatment plant and reduce its operating cost, the Entrapped Mixed Microbial Cell (EMMC) reactors were utilized to treat the secondary effluent of the coking process in this study. The
effects of the hydraulic retention time (HRT) and the packing ratio on the treatment efficiency were evaluated. Temperature was controlled at 30±1°C during the whole experiment. Operation of the EMMC reactors were started with an HRT of 24 hrs, and followed with 12, 8, 6, 4, 2 and 1 hrs of HRT’s. Two different packing ratios, 35% and 20%, were also tested to assess the efficiency of the EMMC reactors. Also, the biodegradability of the secondary effluent VC-757 was examined using the activated sludge (VC-756). Besides, reactivation of the EMMC was conducted after series of reducing HRT tests. The concentrated raw wastewater (VC-703) was used as feed in the reactivation experiment. Results showed that, at the operational condition of 35% packing ratio and 12 hrs HRT, the optimal SCOD removal efficiency of 23% was achieved. The highest TCOD removal efficiency of 52% was achieved at 20% packing ratio and 8 hrs HRT, while the highest TCOD removal efficiency of 93% was observed at 35% packing ratio and 8 hrs HRT. Additionally, when comparing the organic loading, more than 50% of TCOD removal efficiency could be achieved at 63 mg TCOD/L/hr (at the test of HRT 8hrs), and more than 20% of SCOD removal efficiency was observed at organic loading of 24 mg SCOD/L/hr (HRT 12 hrs). For the biodegradability test of the feed VC-757, after 12 day’s treatment with 4:1 mixture of activated sludge (VC-756) and VC-757, SCOD was observed at the lowest concentration of 479 mg/L. Therefore, the biodegradability of the feed (VC-757) was estimated about 18%. In the reactivation test, after feeding with 1:1 of raw wastewater VC-703 and the secondary effluent VC-757, the TCOD removal efficiency was remarkably improved to 68%, and the SCOD removal efficiency was improved to 73%. Accordingly, 78% of the theoretical SCOD removal efficiency could be estimated for treatment of VC-757 using EMMC. | en |
| dc.description.provenance | Made available in DSpace on 2021-06-08T05:19:39Z (GMT). No. of bitstreams: 1 ntu-94-R90631013-1.pdf: 761861 bytes, checksum: 2aeb589f92d7ab487bdfa1d5175d58ef (MD5) Previous issue date: 2005 | en |
| dc.description.tableofcontents | 摘要 i
ABSTRACT iii 目錄 v 表目錄 ix 圖目錄 x 第一章 前言與研究目的 1 1-1 前言 1 1-2 研究目的 2 第二章 文獻探討 3 2-1 鋼鐵工業廢水 3 2-1-1 工業用水 3 2-1-2 鋼鐵工業 3 2-1-3 鋼鐵廠製程 4 2-1-4 各製程廢水 6 2-2 廢水生物處理法 7 2-2-1 生物處理原理 7 2-2-2 生物處理程序 8 2-2-3 生物處理影響因子 10 2-3 微生物固定化技術 11 2-4 微生物固定化原理和方法 13 第三章 材料與方法 16 3-1 實驗設備 16 3-1-1 反應槽主體 17 3-1-2 進出流裝置 18 3-1-3 溫度控制系統 18 3-1-4 曝氣設備 18 3-2 實驗材料 19 3-2-1 實驗廢水 19 3-2-2 污泥菌種 19 3-2-3 固定化細胞顆粒EMMC製作 19 3-3 實驗方法與步驟 22 3-3-1 起動操作 22 3-3-2 不同HRT下EMMC之處理效率實驗 23 3-3-3 生物降解能力實驗 23 3-3-4 EMMC活性恢復實驗 24 3-3-5 分析方法 25 3-3-5-1 pH 25 3-3-5-2 TCOD (總化學需氧量) 25 3-3-5-3 SCOD (可溶解化學需氧量) 26 3-3-5-4 TSS (總懸浮固形物) 26 第四章 結果與討論 28 4-1 起動操作 28 4-2 不同HRT下EMMC之處理效率實驗 30 4-2-1 pH 30 4-2-2 TCOD 45 4-2-3 SCOD 45 4-2-4 TSS 46 4-2-5 不同填充率之比較 46 4-2-6 不同負荷率(Loading Rate) 對EMMC操作的影響 49 4-2-7 最佳操作條件 50 4-3 生物降解能力(biodegradability) 實驗 50 4-4 EMMC活性恢復實驗 51 4-4-1 進流VC-703原廢水恢復EMMC活性實驗 51 4-4-2 以VC-703和VC-757的混合廢水恢復EMMC活性實驗 54 4-4-3 活性恢復後之EMMC再處理VC-757實驗 55 第五章 結論與建議 59 5-1 結論 59 5-2 建議 60 第六章 參考文獻 62 | |
| dc.language.iso | zh-TW | |
| dc.subject | 水力停留時間 | zh_TW |
| dc.subject | 固定化微生物 | zh_TW |
| dc.subject | HRT | en |
| dc.subject | EMMC | en |
| dc.title | 應用固定化微生物處理煉焦程序之二級排放水 | zh_TW |
| dc.title | Treatment of the Secondary Effluent of the Coking Process by Utilizing the Immobilized Cells | en |
| dc.type | Thesis | |
| dc.date.schoolyear | 93-2 | |
| dc.description.degree | 碩士 | |
| dc.contributor.oralexamcommittee | 方煒,李允中 | |
| dc.subject.keyword | 固定化微生物,水力停留時間, | zh_TW |
| dc.subject.keyword | EMMC,HRT, | en |
| dc.relation.page | 64 | |
| dc.rights.note | 未授權 | |
| dc.date.accepted | 2005-07-28 | |
| dc.contributor.author-college | 生物資源暨農學院 | zh_TW |
| dc.contributor.author-dept | 生物產業機電工程學研究所 | zh_TW |
| 顯示於系所單位: | 生物機電工程學系 | |
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