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In this research, an anaerobic co-digestion using decanter cake from palm oil mill industry to improve the biogas production from frozen seafood wastewater is studied using Continuously Stirred Tank Reactor (CSTR) process. The experiments were conducted in laboratory-scale. The suitable Hydraulic Retention Time (HRT) was observed in CSTR experiments with 24 hours of mixing time using the mechanical mixer. The HRT of CSTR process impacts on the efficiency of biogas production. The best performance for biogas production using CSTR process was the anaerobic codigestion for 20 days of HRT with the maximum methane production rate of 1.86 l/d and the average maximum methane production of 64.6%. The result can be concluded that the decanter cake can improve biogas productivity of frozen seafood wastewater.
", "languages": [ { "id": "eng", "title": { "en": "English" } } ], "publication_date": "2012-05-26", "publisher": "Zenodo", "references": [ { "reference": "S. Pipatmanomai, S. Kaewluan, T. Vitidsant, \"Economic assessment of\nbiogas-to-electricity generation system with H2S removal by activated\ncarbon in small pig farm\", Applied Energy, 86, 2009, 669-674." }, { "reference": "G.V. Nallathambi, \"Anaerobic digestion of biomass for methane\nproduction: A review\", Biomass Bioenergy, 13, 1997, 83-114." }, { "reference": "R.E. Speece, \"Anaerobic technology for industrial wastewaters\", Archae\nPress, USA, 1996, 22." }, { "reference": "K.V. Rajeshwari, M. Balakrishnan, A. Kansal, K. Lata, V.V.N. Kishore,\n\"State-of-the-art of anaerobic digestion technology for industrial wastewater treatment\", Renew. Sustain. Energy Rev., 4, 2000, 135-156." }, { "reference": "D.A. Burke, \"Dairy waste anaerobic digestion handbook\", Environmental Energy Company, 6007 Hill Street Olympia, WA 98516,\n2001, 17-27." }, { "reference": "A. Mshandete, A. Kivaisi, M. Rubindamayugi, B. Mattiasson,\n\"Anaerobic batch co-digestion of sisal pulp and fish wastes\",\nBioresource Technology, 95(1), 2004, 19-24." }, { "reference": "W. Parawira, M. Murto, R. Zvauya, B. Mattiasson, \"Anaerobic batch\ndigestion of solid potato waste alone and in combination with sugar beet\nleaves\", Renewable Energy, 29, 2004, 1811-1823." }, { "reference": "O. Chavalparit, W.H. Rulkens, A.P.J. Mol, S. Khaodhair, \"Options for\nenvironmental sustainability of the crude palm oil industry in Thailand through enhancement of industrial ecosystems\", Environment,\nDevelopment and Sustainability, 8(2), 2006, 271-287." }, { "reference": "K. Yetilmezsoy, S. Sakar, \"Development of empirical models for\nperformance evaluation of UASB reactors treating poultry manure\nwastewater under different operational conditions\", J. Hazardous Materials, 153, 2008, 532-543.\n[10] APHA, AWWA, WAE, \"Standard methods for the examination of water\nand wastewater\", 18th edition, In: Greenberg, A.E., Clesceri, L.S., Trussel, R.R., 1992.\n[11] P. Kaparaju, L. Ellegaard, I. Angelidaki, \"Optimisation of biogas\nproduction from manure through serial digestion: Lab-scale and pilotscale\nstudies\", Bioresource Technology, 100, 2009, 701-709." } ], "resource_type": { "id": "publication-article", "title": { "de": "Zeitschriftenartikel", "en": "Journal article" } }, "rights": [ { "description": { "en": "The Creative Commons Attribution license allows re-distribution and re-use of a licensed work on the condition that the creator is appropriately credited." }, "icon": "cc-by-icon", "id": "cc-by-4.0", "props": { "scheme": "spdx", "url": "https://creativecommons.org/licenses/by/4.0/legalcode" }, "title": { "en": "Creative Commons Attribution 4.0 International" } } ], "subjects": [ { "subject": "anaerobic co-digestion" }, { "subject": "frozen seafood wastewater" }, { "subject": "decanter cake" }, { "subject": "biogas" }, { "subject": "hydraulic retention time" } ], "title": "Influence of Hydraulic Retention Time on Biogas Production from Frozen Seafood Wastewater using Decanter Cake as Anaerobic Co-digestion Material", "version": "9213" }, "parent": { "access": { "owned_by": { "user": 32148 } }, "communities": { "default": "a59dd046-9a86-4a47-97ce-b51f1bb8fc3f", "entries": [ { "access": { "member_policy": "open", "members_visibility": "public", "record_policy": "open", "review_policy": "open", "visibility": "public" }, "children": { "allow": false }, "created": "2017-05-31T21:24:26.028360+00:00", "custom_fields": {}, "deletion_status": { "is_deleted": false, "status": "P" }, "id": "a59dd046-9a86-4a47-97ce-b51f1bb8fc3f", "links": {}, "metadata": { "curation_policy": "", "description": "", "page": "", "title": "World Academy of Science, Engineering and Technology" }, "revision_id": 0, "slug": "waset", "updated": "2017-11-15T12:37:31.935319+00:00" } ], "ids": [ "a59dd046-9a86-4a47-97ce-b51f1bb8fc3f" ] }, "id": "1072334", "pids": { "doi": { "client": "datacite", "identifier": "10.5281/zenodo.1072334", "provider": "datacite" } } }, "pids": { "doi": { "client": "datacite", "identifier": "10.5281/zenodo.1072335", "provider": "datacite" }, "oai": { "identifier": "oai:zenodo.org:1072335", "provider": "oai" } }, "revision_id": 5, "stats": { "all_versions": { "data_volume": 24660936.0, "downloads": 76, "unique_downloads": 71, "unique_views": 43, "views": 44 }, "this_version": { "data_volume": 24660936.0, "downloads": 76, "unique_downloads": 71, "unique_views": 43, "views": 44 } }, "status": "published", "updated": "2020-01-20T17:08:34.260460+00:00", "versions": { "index": 1, "is_latest": true } }