Capacity of Caulerpa lentillifera in the Removal of Fish Culture Effluent in a Recirculating Aquaculture System
Aquaculture is one of the fastest growing food producing industries in the world. Aquaculture effluent contains high concentrations of inorganic nutrients. Reduction of these inorganic nutrients in aquaculture effluent is crucial for fulfilling the effluent standards or reuse of aquaculture effluent...
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Published in | Processes Vol. 7; no. 7; p. 440 |
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Format | Journal Article |
Language | English |
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Abstract | Aquaculture is one of the fastest growing food producing industries in the world. Aquaculture effluent contains high concentrations of inorganic nutrients. Reduction of these inorganic nutrients in aquaculture effluent is crucial for fulfilling the effluent standards or reuse of aquaculture effluent. This study investigated the effective use of green macroalga Caulerpa lentillifera as a bioremediatory species for nutrient removal from aquaculture effluent by conducting an on-station experiment and measurements. The effluent of a fish culture unit was circulated through a macroalgal culture unit every four days for a total of 60 days, allowing 15 circulations. Concentrations of inorganic nutrients (NO2−-N, NO3−-N, NH3-N, and PO43−) were measured in the integrated system consisting of a fish unit, settling unit, macroalgal unit and extra tank for water circulation in triplicates. Multiple linear regression analysis revealed that the application of the bioremediation system led to a significant reduction in nutrient concentrations within one day, and slightly further in the following two days. On average over the 15 circulations, the first one day of application decreased the concentrations of NO2−-N, NO3−-N, NH3-N, and PO43− by 0.247 mg/L, 81.6 mg/L, 0.682 mg/L, and 0.352 mg/L, respectively. Furthermore, the C:N ratio of macroalgae decreased during the 60-day application period, providing evidence of the nutrient uptake by macroalgae. Based on the European Union (EU) standard and quality criteria of France and the Joint FAO/WHO Expert Committee (JFWEC), the macroalgae grown in the integrated system were at the safe level for human consumption in terms of contents of Cd, Pb, and As. The results of our study imply that recirculating aquaculture systems utilizing C. lentillifera for biofiltration have the potential for effective treatment of aquaculture effluent integrating fish and macroalgae production. |
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AbstractList | Aquaculture is one of the fastest growing food producing industries in the world. Aquaculture effluent contains high concentrations of inorganic nutrients. Reduction of these inorganic nutrients in aquaculture effluent is crucial for fulfilling the effluent standards or reuse of aquaculture effluent. This study investigated the effective use of green macroalga Caulerpa lentillifera as a bioremediatory species for nutrient removal from aquaculture effluent by conducting an on-station experiment and measurements. The effluent of a fish culture unit was circulated through a macroalgal culture unit every four days for a total of 60 days, allowing 15 circulations. Concentrations of inorganic nutrients (NO2−-N, NO3−-N, NH3-N, and PO43−) were measured in the integrated system consisting of a fish unit, settling unit, macroalgal unit and extra tank for water circulation in triplicates. Multiple linear regression analysis revealed that the application of the bioremediation system led to a significant reduction in nutrient concentrations within one day, and slightly further in the following two days. On average over the 15 circulations, the first one day of application decreased the concentrations of NO2−-N, NO3−-N, NH3-N, and PO43− by 0.247 mg/L, 81.6 mg/L, 0.682 mg/L, and 0.352 mg/L, respectively. Furthermore, the C:N ratio of macroalgae decreased during the 60-day application period, providing evidence of the nutrient uptake by macroalgae. Based on the European Union (EU) standard and quality criteria of France and the Joint FAO/WHO Expert Committee (JFWEC), the macroalgae grown in the integrated system were at the safe level for human consumption in terms of contents of Cd, Pb, and As. The results of our study imply that recirculating aquaculture systems utilizing C. lentillifera for biofiltration have the potential for effective treatment of aquaculture effluent integrating fish and macroalgae production. |
Author | Chirapart, Anong Tsusaka, Takuji W. Bambaranda, B. V. A. S. Manori Salin, Krishna R. Sasaki, Nophea |
Author_xml | – sequence: 1 givenname: B. V. A. S. Manori orcidid: 0000-0003-4325-4513 surname: Bambaranda fullname: Bambaranda, B. V. A. S. Manori – sequence: 2 givenname: Takuji W. orcidid: 0000-0002-9872-2436 surname: Tsusaka fullname: Tsusaka, Takuji W. – sequence: 3 givenname: Anong surname: Chirapart fullname: Chirapart, Anong – sequence: 4 givenname: Krishna R. surname: Salin fullname: Salin, Krishna R. – sequence: 5 givenname: Nophea orcidid: 0000-0002-8361-5283 surname: Sasaki fullname: Sasaki, Nophea |
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CitedBy_id | crossref_primary_10_3390_w12112991 crossref_primary_10_1007_s10811_021_02501_4 crossref_primary_10_1016_j_marpolbul_2021_113315 crossref_primary_10_1111_raq_12921 crossref_primary_10_1007_s13131_021_1909_9 crossref_primary_10_15625_1859_3097_20_3_14880 crossref_primary_10_3389_fmicb_2024_1371855 crossref_primary_10_3390_pr8030334 crossref_primary_10_1016_j_aqrep_2023_101793 crossref_primary_10_1155_2020_8848120 crossref_primary_10_1515_bot_2023_0064 crossref_primary_10_1007_s10811_023_03031_x crossref_primary_10_3390_plants12132507 crossref_primary_10_1007_s10811_024_03271_5 crossref_primary_10_1111_are_16118 |
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SubjectTerms | Agriculture Algae Ammonia Aquaculture Biofiltration Bioremediation Caulerpa lentillifera Effluents Eutrophication Experiments Farmers Farms Fish Fish culture Food industry Nitrogen Nitrogen dioxide Nutrient concentrations Nutrient uptake Nutrients Reduction Regression analysis Salinity Seawater System effectiveness Water circulation Water quality Water treatment |
Title | Capacity of Caulerpa lentillifera in the Removal of Fish Culture Effluent in a Recirculating Aquaculture System |
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