Innovative Barn Cattle for Microclimate Management through the Misting System

https://doi.org/10.21059/buletinpeternak.v47i4.79464

koekoeh santoso(1*), Rani Audona(2), komariah komariah(3), Kudang Boro Seminar(4), Mokhamad Fakhrul Ulum(5)

(1) Division of Physiology, School of Veterinary Medicine And Biomedical Sciences, IPB University, Bogor, 16680
(2) Department of Animal Production and Technology, Faculty of Animal Science, IPB University, Bogor, 16680
(3) Department of Animal Production and Technology, Faculty of Animal Science, IPB University, Bogor, 16680
(4) Department of Mechanical and Biosystem Engineering, Faculty of Agricultural Technology, IPB University, Bogor, 16680
(5) Division of Reproduction, School of Veterinary Medicine And Biomedical Sciences, IPB University, Bogor, 16680
(*) Corresponding Author

Abstract


Cattle is meat-producing livestock of the large ruminant. The environmental conditions must remain in the thermoneutral zone because this affects livestock productivity. An environmental modification related to microclimate management is required through a misting system using a water sprinkler. The study was conducted in one of the barns of the Sekolah Peternakan Rakyat (SPR) Maju Bersama livestock group in Drokilo Village, Kedungadem District, Bojonegoro Regency, East Java. The purpose of this study was to analyze the microclimate management of the barn through the misting system in order to improve the physiological response of cattle. The variables observed were the air temperature, air humidity, Temperature Humidity Index (THI), respiratory frequency, heart rate, rectal temperature, and body surface temperature. Body surface temperatures were measured on the face, back, and rump. The analytical method used in this was unpaired T-test five replications. The results showed that the average microclimate data for barn cattle were: air temperature 27.40±0.59°C, air humidity 83.92±1.55%, and Temperature Humidity Index (THI) 79.59±1.06. The results showed that the average physiological response data for cattle were: heart rate 47.02±2.29 beats per minute, respiration rate 16.94±1.26 beats per minute, and rectal temperature 38.65±0.27°C. The results showed that the average body surface temperature data for the face was 37.03±0.38°C, the back was 36.33±0.59°C, and the rump was 36.28±0.68°C. The results showed that the treatment before and after the morning measurement water misting was significantly different (p<0.05) in all the observed variables. Water misting has the effect on decreasing the air temperature, humidity, Temperature Humidity Index (THI), respiratory rate, heart rate, body temperature, and rectal temperature.


Keywords


Cattle; Innovative barn; Microclimate; Misting process

Full Text:

1. Koekoeh


References

Adhianto, K., Siswanto and C. N. Kesuma. 2015. Pengaruh frekuensi penyiraman air menggunakan sprinkler terhadap respon fisiologis dan pertumbuhan sapi Peranakan Simmental. Buletin Peternakan 39: 109- 115.

Aditia, E. L., A. Yani and A. F. Fatonah. 2017. Respon fisiologis sapi Bali pada sistem integrasi kelapa sawit berdasarkan kondisi lingkungan mikroklimat. Jurnal Ilmu Produksi dan Teknologi Hasil Peternakan 5: 23-28.

Amiano, K., B. Satata and R. Imanuel. 2018. Status fisiologis ternak sapi Bali (Bos sondaicus) betina yang dipelihara pada lahan gambut. Jurnal AGRI PEAT 19: 94- 101. Aziza, I. N. 2019. Smart farming untuk peternakan ayam. Jurnal Teknologi Informasi dan Komunikasi 9: 36-40.

Badan Meteorologi, Klimatologi dan Geofisika (BMKG). 2022a. Prakiraan cuaca Kecamatan Kedungadem Kabupaten BojonegoroProvinsi Jawa Timur. https://www.bmkg. go.id/cuaca/prakiraancuaca.bmkg?Kec=Ked ungadem&kab=Kab._Bojonegoro&Prov=Ja wa_Timur&AreaID=5008178. Badan Meteorologi, Klimatologi dan Geofisika (BMKG). 2022b. Prakiraan cuaca Indonesia. https://www.bmkg.go.id/cuaca/prakiraancuaca-indonesia.bmkg

Badan Pusat Statistik (BPS). 2021. Populasi sapi potong menurut provinsi tahun 2019-2021. https://www.bps.go.id/indicator/24/469/1/pop ulasi-sapi-potong-menurut-provinsi.html.

Badan Pusat Statistik (BPS). 2013. Kabupaten Bojonegoro dalam angka 2013. https://bojonegorokab.bps.go.id/publication/2 013/09/13/b1932f2dae876fbce649d206/kab upaten-bojonegoro-dalam-angka-2013.html.

Brandl, B. T. M. 2018. Understanding heat stress in beef cattle. Rev. Bras. Zootecn. 47: 1-9.

Brandl, B. T. M. and D. D. Jones. 2011. Feedlot cattle susceptibility to heat stress: An animal-specific model. ASABE. 54: 583- 598.

Bulitta, F. S., S. Aradom and G. Gebrensenbet. 2015. Effect of transport time of up to 12 hours on the welfare of cattle and bulls. Journal of Service Science and Management. 8: 161-182. DOI: 10.4236/jssm.2015.82019.

Curtis, S. E. 1983. Environmental management in animal agricultural. The Iowa State University Press, Iowa.

Dzivenu, C. C. E., R. Mrode, E. Oyieng, E. Komwihangilo, E. Lyatuu, G. Msutta, J. M. K. Ojango and A. M. Okeyo. 2020. Evaluating the impact of heat stress as measured by Temperature-Humidity Index (THI) on testday milk yield of smallholder dairy cattle in a Sub-Sahara African climate. Livest. Sci. 242: 2-7. DOI: 10.1016/j.livsci.2020.104314

Efendy, J. 2018. Aktivitas harian dan deteksi stress pada sapi Peranakan Ongole (PO). Maduranch 3: 53-58. http://dx.doi.org/10. 53712/maduranch.v3i2.443.

Hamdani, M. D. I., H. Ali, Sulastri and E. Y. M. Putri. 2019. Profil peternakan dan performa kuantitatif sapi Peranakan Ongole (PO) betina di Sentra Peternakan Rakyat Kabupaten Lampung Selatan dan Lampung Timur. Journal of Extension and Development 01: 115-121. https://doi.org/10. 23960/jsp.Vol1.No2.2019.23.

Hermawansyah, Salundik and R. Priyanto. 2020. Physiological response of reared Bali cattle based on different peat land characteristics. Chalaza Journal of Animal Husbandry 5: 12- 21.

Knizkova, I. and P. Kune. 2007. Applications of infrared thermography in animal production. Journal of Faculty of Agriculture 22: 329- 336.

Kolibu, H. S. and V. A. South. 2019. Kajian eksperimen pengaruh lingkungan panas terhadap suhu kulit manusia menggunakan Fast Response Temperature Probe PS2135 dan Temperature Array PS-2157. Jurnal Mipa Unsrat Online 8: 67-70. https://doi.org/10.35799/jmuo.8.2.2019.242 52.

Martello, L. S., S. L. Silva, R. C. Gomes, R. R. P. S. Corte and P. R. Leme. 2015. Infrared thermography as a tool to evaluate body surface temperature and its relationship with feed efficiency in Bos indicus in tropical conditions. Int. J. Biometeorol. 13: 1-6. DOI: 10.1007/s00484-015-1015-9.

Novianti, J., B. P. Purwanto and A. Atabany. 2013. Respon fisiologis dan produksi susu sapi perah FH pada pemberian rumput gajah (Pennisetum purpureum) dengan ukuran pemotongan yang berbeda. Jurnal Ilmu Produksi dan Teknologi Hasil Peternakan 1: 138-146.

Nuriyasa, I. M., G. A. M. Dewi and N. L. G. Budiari. 2015. Indeks kelembapan suhu dan respon fisiologis yang dipelihara secara feedlot pada ketinggian berbeda. Majalah Ilmiah Peternakan 18: 5-10.

Prakoso, D. 2018. Analisis pengaruh tekanan udara, kelembaban udara, dan suhu udara terhadap tingkat curah hujan di Kota Semarang. Universitas Negeri Semarang, Semarang.

Sahu, D., D. K. Mandal, C. Bhakal, A. Chatterjee, A. Mandal and M. Mandal. 2018. Effects of roof ceiling and flooring on the microclimate of the shed and physiological indices of crossbred jersey cattle. Int. J. Livest. Res. 8: 272-280.

Sandi, S. and P. P. Purnama. 2017. Manajemen perkandangan sapi pedaging di Desa Sejaro Sakti Kecamatan Indralaya Kabupaten Ogan Ilir. Jurnal Peternakan Sriwijaya 6: 12-19.

Santoso, K., M. F. Ulum, R. Arif, K. B. Seminar and A. Suprayogi. 2019. Mapping body surface temperature of Limousin cattle by infrared thermal camera. The 1st International Conference on Public Health. 2019 Nov 18, Aceh, Indonesia.

Darmawi, Parlindungan F, Reynaldi F, Sriwahyuni S, Putri ES, Safrizal, Muhsin SW (ed.). Fakultas Kesehatan Masyarakat Universitas Teuku Umar. hlm 95-100.

Schutz, K. E., N. Cox and L. R. Matthews. 2008. How important is a shade to dairy cattle? choice between share or lying following different levels of lying deprivation. Appl. Anim. Behav. Sci. 116: 28-34.

Serang, P. M., I. N. Suartha and I. P. G. Y. Arjentinia. 2016. Frekuensi respirasi sapi Bali betina dewasa di Sentra Pembibitan Sapi Bali Desa Sobangan, Kecamatan Mengwi, Kabupaten Badung. Buletin Veteriner Udayana 8: 25-29.

Sihombing, A. 1999. Lingkungan Ternak. Departemen Pendidikan dan Kebudayaan, Jakarta.

Sudarmono, A. S. and Y. B. Sugeng. 2016. Panduan Beternak Sapi Potong. Penebar Swadaya, Jakarta.

Suherman, D., S. Muryanto and E. Sulistyowati. 2017. Evaluasi mikroklimat dalam kandang menggunakan tinggi atap kandang berbeda yang berkaitan dengan respon fisiologis sapi Bali dewasa di Kecamatan XIV Koto Kabupaten Mukomuko. Jurnal Sains Peternakan Indonesia 12: 397-410.

Suherman, D., B. P. Purwanto, W. Manalu and I. G. Permana. 2013. Simulasi artificial neural network untuk menentukan suhu kritis pada sapi perah Fries Holland berdasarkan respon fisiologis. Jurnal Ilmu Ternak dan Veteriner 18: 70-80.

Sutedjo, H. 2016. Dampak fisiologis dari cekaman panas pada ternak. Jurnal Nukleus Peternakan 3: 93-105.

Walpole, R. 1995. Pengantar Statistika. Gramedia, Jakarta.

Yani, A., W. Al-Zahra and B. P. Purwanto. 2013. Respon denyut jantung dan frekuensi pernafasan sapi Bali berdasarkan perubahan suhu dan kelembapan udara di daerah beriklim tropika basah menggunakan artificial neural networks. Jurnal Ilmu Produksi dan Teknologi Hasil Peternakan 1: 54-62.

Yetmaneli, B. P. Purwanto, R. Priyanto and W. Manalu. 2020. Iklim mikro dan respon fisiologis sapi pesisir di dataran rendah dan dataran tinggi Sumatera Barat. Jurnal Agripet 20: 126-135.



DOI: https://doi.org/10.21059/buletinpeternak.v47i4.79464

Article Metrics

Abstract views : 275 | views : 159

Refbacks

  • There are currently no refbacks.




Creative Commons License
This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.

Buletin Peternakan (Bulletin of Animal Science) Indexed by:

   
 
Creative Commons License
This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.