Karakteristik Alat Pemanen Madu Tipe Isap dengan Variasi Tekanan Vakum
DOI:
https://doi.org/10.23960/jabe.v4i2.10906
Abstract
Honey harvesting is one of the main activities in beekeeping. The honey harvesting process plays a crucial role in ensuring the quality and quantity of the final product. This study aims to analyze the characteristics of suction-type honey harvesting with variations in vacuum pressure to determine the impact of pressure factors on the effectiveness of hive repair, the quality of the honey produced, and the speed of harvesting. The study was conducted from July to September 2024 at PT Daud Teknik Maju Pratama, Agribusiness and Technology Park IPB, and The Animal House, using two different pressures: -23.37 cmHg and -21.34 cmHg. Vacuum pressure honey harvesting proved to be effective as it could be performed quickly without damaging the honeycomb. On the other hand, the pressing method was less effective because it could damage the hive, resulting in a longer time required for bees to repair it. Harvesting 300 ml of honey using pressures of -9.2 cmHg and -8.4 cmHg took approximately 5.4 minutes and 6.72 minutes, respectively. The honey produced showed varying viscosity values, such as honey from Trigona laeviceps in hive 1 with a viscosity of 122.395 mPa.s, hive 5 with a viscosity of 99.645 mPa.s, hive 10 with a viscosity of 121.117 mPa.s, and honey from Trigona itama with a viscosity of 79.346 mPa.s.
Keywords: Effectiveness, Honey, Pressure Variation, Vacuum Pump, Viscosity.
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References
Al Fady MF. 2015. Madu dan Luka Diabetik. Yogyakarta: Gosyen Publishing.
Aprilyani W. 2020. Analisis perubahan viskositas madu murni akibat penambahan larutan gula, sebagai identifikasi kemurnian madu [skripsi]. Mataram (ID): Universitas Islam Negri Mataram.
Aznury M, Purnamasari I, Mardiana S, Dewi T. 2019. Rancang bangun alat vacum drying dalam proses pembuatan tepung moringa oleifera lamk. Jurnal Kinetika. 10(3):29-34.
Chayati I. 2008. Sifat fisikokimia madu monoflora dari Daerah Istimewa Yogyakarta dan Jawa Tengah. Agritech Journal. 28(1):9-14.
Gairola A, Tiwari P, Tiwari JK. 2013. Physico-chemical properties of apis cerana- indica f. honey from uttarkashi district of uttarakhand. Journal of Global Biosciences. 2(1):2-25.
Kinoo MS, Mahomoodally MF, Puchooa, D. 2012. Anti-microbial and physico-chemical properties of processed and raw honeys of mauritius. Journal Advances in Infectious Diseases. 2(2): 25–36.
Meliana, Syahputra R, Fauzan. 2022. Pengaruh suhu terhadap viskositas minyak pelumas shell mysella s3n40 pada mesin gas type w18v50sg di pltmg sumbagut -2 peaker. Jurnal tektro. 6(1):92-97.
Monita DNK. 2023. Identifikasi jenis dan karakteristik sarang lebah madu tanpa sengat (stingless bee) di perternakan lebah simpur desa kecapi [Skripsi]. Lampung (ID). Universitas Islam Negeri Raden Intan Lampung.
Pujirahayu N, Hardianto F, Mando LOAS, Uslinawaty Z, Rosmarlinasiah, Basruddin. 2022. Karakteristik sarang dan tumbuhan sumber getah propolis lebah tak bersengat (stingless bee) dari buton utara. Jurnal Penelitian Kehutanan. 16(1):69-79.
Putra PAH, Watiniasih NL, Suartini NM. 2014. Struktur dan produksi lebah Trigona spp. pada sarang berbentuk tabung dan bola. Jurnal Biologi. 18(2):60-64.
Putra RG, Salim ATA, Aminudin A, Romandoni N, Bisono RM, Aditama CC, Febriana D, Rahmawati CN, Sari SF. 2021. Terapan IPTEK pada pengolahan dan peningkatan produktifitas lahan di masyarakat pacitan untuk budidaya lebah klanceng. Jurnal Pengabdian Magister Pendidikan IPA. 4(4):167-174.
Putral HS, Astuti W, Kartika R. 2018. Aktivitas amilase, protease dan lipase dari madu lebah Trigona sp, Apis mellifera dan Apis dorsata alctivities o amylase, protease and lipase from honey Trigona sp, Apis mellifera and Apis dorsata. Jurnal Kimia Mulawarman. 16(11):27–31.
Roubik DW. 2006. Stingless bee nesting biology. Journal Apidologie. 37(2):124–143.
Septiani A, Apriantini A, Suryati T. 2022. Hubungan tingkat konsumsi madu dengan pengetahuan gizi, status gizi, dan kebugaran remaja di Kota Bogor. Jurnal Ilmu Produksi Dan Teknologi Hasil Peternakan. 10(2):69–76.
[BSN] Badan Standarisasi Nasional. 2018. SNI 8664:2018. Madu. Jakarta (ID): Badan Standardisasi Nasional.
Sousa JM, Souza EL, Marques G, Benassi MT, Gullόn B, Pintado MM, Magnani M. 2017. Sugar profile, physicochemical and sensory aspects of monofloral honeys produced by different stingless bee species in Brazilian semiarid region. Journal LWT-Food Science and Technology. 65 : 645-651.
Sudaryanto H. 2010. Analisis kualitas fisik dan kimia madu lebah (Apis cerana) di Desa Kuapan, Kecamatan Tambang, Kabupaten Kampar [Skripsi]. Riau (ID): UIN Sultan Syarif Kasim.
Suranto A. 2008. Khasiat dan Manfaat Madu Herbal. Jakarta: PT. Agro Media Pustaka.
Syakdani A, Purnamasari I, Necessary E. 2019. Prototipe alat evaporator vakum (efektivitas temperatur dan waktu evaporasi terhadap tekanan vakum dan laju evaporasi pada pembuatan sirup buah mengkudu (morinda citrifolia l.)). Jurnal Kinetika. 10(2):29-35.
Wahyuningsih E, Wulandari FT, Lestari AT. 2020. Peningkatan produktivitas lebah madu trigona sp dengan kayu dadap (erythrina vareigata l) sebagai bahan baku stup lebah, di Desa Pendua, Kec. Kayangan, Kab. Lombok Utara, NTB. Jurnal Pendidikan dan Pengabdian Masyarakat. 3(4):274-278.
Wulansari D. 2018. Madu Sebagai Terapi Komplementer. Yogyakarta: Graha Ilmu.
Yap SK, NL Chin, YA Yusof, KY Chong. 2019. Quality characteristic of dehydrated raw Kelulut honey. International Journal of Food Properties. 22(1):556- 671.
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