Analisis Parameter Kimia Kualitas Air Minum Ayam Petelur (Gallus domesticus) di Kabupaten Blitar dan Kajian Literatur Fitoremediasi Kadar Fluorida

Eny Yulianti, Titian Ajeng Wahyuningtyas, Badiatus Sholikhah, Rostiwi Endah Yuliastuti, Moch Royanudin, Sriani Nafi’ah

Abstract


Drinking water quality is a crucial factor that influences livestock productivity. Regular evaluation of the quality of livestock drinking water is an essential activity. Blitar Regency is known as a center for egg production from laying hens (Gallus domesticus). This study aims to evaluate the quality of livestock drinking water and provide a literature review regarding the potential for improvement through phytoremediation methods. This research method involves laboratory analysis and literature review. Laboratory analysis is carried out to determine the quality of water chemical parameters, then the results are compared with livestock drinking water standards regulated by Regulation of the Minister of Health of the Republic of Indonesia Number 32 of 2017. If a discrepancy is found with the standards, it is continued with a literature study regarding the use of phytoremediation methods as a solution. Analysis of chemical parameters, including ion levels, using a reagent kit with the help of Spectroquant Pharo 300 UV Vis spectroscopy. The results of the analysis involve iron, fluoride, manganese, nitrate, nitrite, cyanide, hardness, cadmium, zinc metal and sulfate. All parameters meet quality standards, except for Fluoride (F-) levels which exceed the threshold of 1.5 mg/L, caused by the use of groundwater sources or wells which have the potential to have higher mineral content than surface water. The potential impacts of high fluoride levels on laying hens include reduced egg production, impaired growth, reproductive disorders, decreased water consumption, and decreased body weight. The literature review highlights phytoremediation methods involving plants as an economical and effective solution. Afforestation, such as planting grass or bushes around livestock areas and wells, or through creating ponds with aquatic plants, can significantly reduce fluoride levels in livestock drinking water.


Keywords


Livestock Drinking Water, Phytoremediation, Laying Chickens (Gallus domesticus), Fluoride Levels.

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References


Abuzar, S. S. (2015). Koefisien Transfer Gas (KLa) pada Proses Aerasi Menggunakan Tray Aerator Bertingkat 5 (Lima). Skripsi. Universitas Andalas.

Ananda, M. S. (2019). Uji Kadar Sulfat pada Air Minum Dalam Kemasan (AMDK) secara Spektrofotometri Uv-Vis. Jurnal Amina, 1(1), 35-38. https://doi.org/10.22373/amina.v1i1.12

Arifiati, N., Hayat, F., Andriyani, A., & Ramayulis, R. (2023). Analisis Parameter Fisikokimia dan Bakteriologi Sungai Cikambuy Kabupaten Serang, Banten, Indonesia. Jurnal Kedokteran dan Kesehatan, 18(2), 249-259. https://doi.org/10.24853/jkk.18.2.249-259

Asdani, A. (2020). Kualitas Air Minum Ayam Pedaging yang Ditinjau dari Konsentrasi Timbal (Pb) dan Residunya pada Hati Ayam Pedaging. Skripsi. Universitas Hasanuddin.

Banerjee, A., & Roychoudhury, A. (2019). Fluoridaine: A Biohazardous Agent for Plants and Phytoremediation Strategies for its Removal from the Environment. Biologia Plantarum, 63(48), 104-112. http://doi.org/10.32615/bp.2019.013

Baunthiyal, M., & Ranghar, S. (2015). Accumulation of Fluoridaide by Plants: Potential for Phytoremediation. CLEAN – Soil, Air, Water, 43(1), 127-132. https://doi.org/10.1002/clen.201300353

Boukhris, A., Schwob, I. L., Mezghani, I., El-Kadri, L., Prudent, P., Pricop, A., Tatoni, T., & Chaieb, M. (2015). Screening Biological Traits and Fluoridaide Contents of Native 43 Vegetations in Arid Environments to Select Efficiently Fluoridaide-Tolerant Native Plant 44 Species for In-Situ Phytoremediation. Chemosphere, 119(1), 217-223. http://doi.org/10.1016/j.chemosphere.2014.06.007

Daya, A. T. (2020). Retrieved Agustus 26, 2023, from Adika Tirta Daya. Interactwebsite: https://adikatirtadaya.co.id/mengenal-teknologi-sistem-aerasi-dalam-pengolahan-air-limbah/

de Araujo, C. E., Lisnahan, C. V., & Dethan, A. A. (2022). Pengaruh Pemberian Suplemen Organik Cair GDM terhadap Pertumbuhan Ayam Kampung (Gallus domesticus). Jounal of Animal Science, 7(4), 59-61. https://doi.org/10.32938/ja.v7i4.3189

Denita, V. A. (2019). Analisis Kualitas Air Minum pada Peternakan Ayam Petelur di Kecamatan Tengaran, Kabupaten Semarang. Skripsi. Universitas Katolik Soegijapranata.

Effendi, H., Idris, M., & Prayoga, G. (2022). Kondisi Sesaat Kualitas Air di Sekitar Kampus PSDKU IPB di Kota Sukabumi. Journal of Environmental Sustainability Management, 5(3), 748-758. https://doi.org/10.36813/jplb.5.3.748-758

Fitra, D., Ulupi, N., Arief, I. I., Mutia, R., Abdullah, L., Sadarman, Pasaribu, A., & Basir, G. A. (2020). Kinerja Produksi dan Kualitas Telur Ayam Petelur yang Diberi Minum Air Gambut dan Air Non Gambut. Jurnal Agripet, 20(2), 203-209. http://doi.org/10.17969/agripet.v20i2.15802

Hong, B. D., Joo, R. N., Lee, K. S., Lee, D. S., Rhie, J. H., Min, S. W., Song, S. G., & Chung, D. Y. (2016). Fluoride in Soil and Plant. Korean Journal of Agricultural Science, 43(1), 522-536. http://dx.doi.org/10.7744/kjoas.20160054

Indrawati, E., Musada, Z., Tantu, A. G., & Renal, R. (2022). Status Pencemaran Logam Berat Timbal dan Kadmium di Sungai Tallo Menggunakan Bioindikator Ikan Nila Oreochromis niloticus. Jurnal Ilmiah Ecosystem, 22(2), 348-361. https://doi.org/10.35965/eco.v22i2.1562

Indrayani, E., Nitimulya, K. H., Hadisusanto, S., & Rustadi, R. (2015). Analisis Kandungan Nitrogen, Fosfor, dan Karbon Organik di Danau Sentani Papua. Jurnal Manusia dan Lingkungan, 22(2), 217-225. https://doi.org/10.22146/jml.18745

Izzatunnisa, K., Abdullah, S., & Mulyasari, T. M. (2019). Pengaruh Kadar Cr (VI) Air Sungai dan Jarak Sumur Gali dengan Sungai terhadap Kadar Cr (VI) Air Sumur Gali di Kelurahan Banyurip Kota Pekalongan Tahun 2018. Buletin Keslingmas, 38(1), 57-66. https://doi.org/10.31983/keslingmas.v38i1.4074

Jannah, Z. N., Herawati, D., & Ngibad, K. (2021). Review: Analisis Konsentrasi Ion Sulfat dalam Air Menggunakan Spektrofotometri. Jurnal Pijar MIPA, 16(2), 203-206. https://doi.org/10.29303/jpm.v16i2.1907

Laetti, R. M., Septiani, S., & Riyanti, A. (2022). Penetapan Kesadahan Total Air Sumur dengan Menggunakan Metode Kompleksometri di Desa Cikeusal Kidul Brebes Jawa Tengah. Jurnal Multidisiplin Madani, 2(10), 3628-3633. https://doi.org/10.55927/mudima.v2i10.1476

Meirindany, T., Dalimunthe, K. T., & Nauli, M. (2023). Analisis Risiko Kesehatan Lingkungan Pajanan Logam Berat Fe pada Air Sumur Penduduk Kawasan Industri Desa Dagang Kelambir Tanjung Morawa. Miracle Journal, 3(1), 16-22. https://doi.org/10.51771/mj.v3i1.511

Mondal, N. K. (2017). Effect of Fluoride on Photosynthesis, Growth and Accumulation of Four Widely Cultivated Rice (Oryza Sativa L.) Varieties in India. Ecotoxicology and Environmental Safety, 144(1), 36-44. http://doi.org/10.1016/j.ecoenv.2017.06.009

Nurhayati, N. (2018). Fitoremediasi Air yang Tercemar Limbah Laundry dengan Menggunakan Eceng Gondok (Eichhornia crassipes) dan Kayu Apu (Pistia stratiotes). Skripsi. Institut Teknologi Sepuluh Nopember.

Nurlaili, R., & Aulia, B. U. (2019). Penentuan Lokasi Sentra Produksi Komoditas Telur Ayam Ras di Kabupaten Blitar. Jurnal Teknik ITS, 8(2), 207-212. http://doi.org/10.12962/j23373539.v8i2.46980

Pandey, G. K. (2017). Mechanism of Plant Hormone Signaling Under Stress. New Jersey: John Wiley & Sons.

Paul, S., Roychoudhury, A., Banerjee, A., Chaudhuri, N., & Ghosh, P. (2017). Seed Pre-Treatment with Spermidine Alleviates Oxidative Damages to Different Extent in the Salt (NaCl)-Stressed Seedlings of Three Indica Rice Cultivars with Contrasting Level of Salt Tolerance. Plant Gene, 11(1), 112-123. http://doi.org/10.1016/j.plgene.2017.04.002

Peraturan Menteri Kesehatan Republik Indonesia Nomor 32 Tahun 2017 tentang Standar Baku Mutu Kesehatan Lingkungan dan Persyaratan Kesehatan Air. 2017. Jakarta: Kementerian Kesehatan Republik Indonesia.

Podgorski, J., & Berg, M. (2022). Global Analysis and Prediction of Fluoride in Groundwater. Nature Communications, 13(1), 1-9. https://doi.org/10.1038/s41467-022-31940-x

Pratiwi, C. M., Kriswandana, F., & Wardoyo, I. R. E. (2022). Efektifitas Pistia stratiotes L. dan Echinodorus palaefolius dalam Penyerapan Ferrum (Fe) dalam Air Sumur Menggunakan Metode Fitoremediasi. Gema Lingkungan Kesehatan, 20(2), 124-132. https://doi.org/10.36568/gelinkes.v20i2.33

Qomariyuti, R. S., Majid, R. A., Amany, N. R., Fajrin, R. F., Tyagita, T., & Viqih, M. (2023). Enteritis dan Infeksi Sekunder Coccidiosis pada Ayam Broiler di Kota Tegal, Jawa Tengah. Buletin Veteriner Udayana, 15(5), 864-872. https://doi.org/10.24843/bulvet.2023.v15.i05.p22

Riskianto, H. (2018). Perbedaan Kadar Fluorida pada Air Sumur Gali Setelah Pemberian Kapur (CaO). Skripsi. Universitas Jember.

Santoso, S. W. H., Ardana, I. B. K., & Gelgel, K. T. P. (2020). Prevalensi Colibacillosis pada Broiler yang Diberi Pakan tanpa Antibiotic Growth Promoters. Indonesia Medicus Veterinus, 9(2), 197-205. https://doi.org/10.19087/imv.2020.9.2.197

Sofiana, L., Nofisulastri, N., & Safnowandi, S. (2023). Pola Distribusi Siput Air (Gastropoda) sebagai Bioindikator Pencemaran Air di Sungai Unus Kota Mataram dalam Upaya Pengembangan Modul Ekologi. Biocaster : Jurnal Kajian Biologi, 3(3), 133-158. https://doi.org/10.36312/biocaster.v3i3.191

Soni, D., Prasetiawati, R., & Sari, D. N. (2019). Pengaruh Lokasi terhadap Kadar Ion Fluorida pada Air Sumur dan Air PAM dengan Metode Kolorimetri. Jurnal Ilmiah Farmako Bahari, 10(1), 76-90. https://doi.org/10.52434/jfb.v10i1.650

Sultan, S. N., Abidjulu, J., & Koleangan, H. S. J. (2015). Analisis Kandungan Merkuri dan Sianida di Daerah Aliran Sungai Talawaan, Sulawesi Utara. Jurnal Ilmiah Sains, 15(1), 70-73. https://doi.org/10.35799/jis.15.1.2015.8311

Vidyanti, R. A., Rachmaniyah, R., & Rokhmalia, F. (2020). Fitoremediasi Tanaman Kangkung Air (Ipomoea aquatica) dalam Menurunkan Kadar Timbal (Pb) pada Air Sumur. Jurnal Gema Kesehatan Lingkungan, 18(1), 39-44. https://doi.org/10.36568/kesling.v18i1.1084

Wiedosari, E., & Wahyuwardani, S. (2015). Studi Kasus Penyakit Ayam Pedaging di Kabupaten Sukabumi dan Bogor. Jurnal Kedokteran Hewan, 9(1), 9-13. https://doi.org/10.21157/j.ked.hewan.v9i1.2777

Wulandari, P. E., Pinontoan, O. R., & Boky, H. B. (2019). Kualitas Air Sumur Berdasarkan Parameter Fluorida dan Parameter pH di Kelurahan Sumompo Kecamatan Tuminting Kota Manado. Jurnal Kesehatan Masyarakat, 8(6), 13-19.

Yodifta, A. (2017). Analisis Kandungan Ion Fluorida pada Sampel Air Tanah dan Air PAM secara Spektrofotometri. Skripsi. Universitas Indonesia.




DOI: https://doi.org/10.33394/bioscientist.v12i1.8885

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