Dried noodles substitute tempeh flour and mocaf flour (modified cassava flour) with different percentages of cow's milk

Mi kering subtitusi tepung tempe dan mocaf (modified cassava flour) dengan perbedaan persentase susu sapi

Authors

  • Dwi Tunggul Pawoko Universitas Slamet Riiyadi Surakarta
  • Vivi Nuraini Universitas Slamet Riyadi Surakarta
  • Yannie Asrie Widanti Universitas Slamet Riyadi Surakarta

Keywords:

Noodles, Mocaf flour, cow's milk

Abstract

Dry noodles are noodles that are marketed in dry form. This noodle, which is also called egg noodle, has a low water content, only about 13%. Made from eggs and wheat flour, Dried noodles are processed by drying in an oven or drying in the sun to dry before being packaged and marketed. Tempeh has the potential to be used as raw material for noodles because it has a high protein content. Tempe is first processed into flour so that it becomes tempeh flour which will be used for making dry noodles. In addition, local raw materials such as mocaf flour and cow's milk are rich in nutrients such as protein content which can meet the protein needs in the body. The purpose of this study was to determine the chemical and organoleptic characteristics of dry noodles from tempeh and mocaf flour with the addition of cow's milk and to determine which noodle formulations produced high protein content. The experimental design was a completely randomized design (CRD) with the first factor being the ratio of tempe flour and mocaf flour (70 : 30, 60 : 40 and 50 : 50) with the addition of cow's milk (50%, 75% and 100%). The results of this study indicate that the dry noodle formulation with the addition of cow's milk is the best based on chemical and organoleptic values is a comparison tempeh flour 50 and mocaf 50 with a percentage of 100% cow's milk. The results obtained were a moisture content of 4.76%, an ash content of 2.63%, a protein content of 21.79%, a carbohydrate content of 70.81%, a fat content of 14.63% and a crude fiber content of 19.14%. Based on the organoleptic value, the ratio of tempe flour is 70 and mocaf 30 with a percentage of 75% cow's milk. The results obtained were 2.80% color, 2.80% aroma, and 2.99% elasticity. This research achieved the desired goal, namely to produce high protein noodles.

References

Agustiana. (2020). Sifat organoleptik dan kadar serat pangan mie basah dengan penambahan tepung okra hijau (abelmuschus esculentum L.). Jurnal Gizi, 9(1), 131.https://doi.org/10.26714/jg.9.1.2020.1 31-141

Astawan. (2013). Formulasi tepung tempe dan sari wortel pada pembuatan mie basah kaya gizi. Jurnal Agrotek Ummat, 6(1), 17. https://doi.org/10.31764/agrotek.v6i1. 954

Badan Standarisasi Nasional. (1996). SNI 01-2974-1996 (Mi Kering). 7. Bakara. (1996). Karakteristik fisik dan kandungan isoflavin cookers dengan substitusi tepung tempe. Institut Pertanian Bogor. https://repository.ipb.ac.id/handle/123 456789/40016

BPS. (2020). Badan pusat statistik, 2020. https://databoks.katadata.co.id/datapu blish/2021/08/18/indonesia- konsumsi-126-miliar-porsi-mi-instan- pada-2020

Dhevina. (2010). Kualitas kimia dan organoleptik nugget daging kelinci dengan penambahan tepung tempe. 9(1), 76–99.

Gumelar. (2019). Uji karakteristik mie kering berbahan baku tepung terigu dengan subsitusi tepung mocaf (Vol. 45, Issue 45).

Heslina. (2020). Analisis kadar karbohidrat dan lemak pada tempe berbahan dasar biji lamun (Enhalus acoroides).

BIOPENDIX: Jurnal Biologi, Pendidikan Dan Terapan, 6(2), 91–96. https://doi.org/10.30598/biopendixvol 6issue2page91-96

Husna, N., & Anggono, W. A. (2015). Karakteristik mie kering tersubtitusi tepung bungkil kacang tanah dengan penambahan getah pepaya kering (Carica Papaya L.) terhadap kualitas fisikokimia dan organoleptik.

Teknologi Pangan : Media Informasi Dan Komunikasi Ilmiah Teknologi Pertanian, 6(2), 2–9. https://doi.org/10.35891/tp.v6i2.468

Indrianti, N., Kumalasari, R., Ekafitri, R., & Darmajana, D. A. (2014). Pengaruh penggunaan pati ganyong, tapioka, dan mocaf sebagai bahan substitusi terhadap sifat fisik mie jagung instan. Agritech: Jurnal Fakultas Teknologi Pertanian UGM, 33(4), 391–398.

Kartika, B., Hastuti, P., & Supartono, W. (1998). Pedoman uji inderawi bahan pangan. Universitas Gadjah Mada, Yogyakarta.

Kesehatan, D. (2005). Daftar komposisi bahan makanan (DKBM). http://perpus.poltekkestasikmalaya.ac. id/?p=show_detail&id=1012

Kurniadi. (2019). Karakteristik cookies dari campuran tepung ubi kayu termodifikasi mocaf, tempe, telur, kacang hijau dan ikan lele. 1–9.

Kusrahayu. (2012). Kadar air, kekenyalan, kadar lemak dan cita rasa bakso daging sapi dengan penambahan ikan bandeng presto ( Channos Channos Forsk ). 1(1), 567–583.

Lindani. (2016). Perbandingan pengukuran kadar air metode moisture Analyzer dengan metode oven pada Produk biskuit sandwich cookies di PT mondelez Indonesia manufacturing. Nuevos Sistemas de Comunicación e Información, 2013–2015.

Mariyani. (2008). Studi pembuatan mie kering berbahan baku tepung singkong dan mocaf. Journal of Chemical Information and Modeling, 1(1), 30–41. https://core.ac.uk/download/pdf/2702 59758.pdf

Masyarakat, D. J. K. (2017). Tabel komposisi pangan Indoensia 2017. Kementerian Kesehatan Republik Indonesia, 1–135.

Mustika. (2018). Penambahan Tepung Mocaf (Modified Cassava Flour) Dalam Pembuatan Nugget Nabati. 3(1).

Puspitasari. (2008). Kajian substitusi tepung mocaf dengan rumput laut (Eucheuma cottoni) pada pembuatan bakso.

Rahma, W., Inda, F., Br, V., & Safitri, R. W. (2018). Analisa zat gizi, kadar asam lemak, serta komponen asam amino nugget daging kelinci new zealand white ( oryctolagus cuniculus). 4(3), 141–148.

Revy. (2018). Kadar serat pangan, proksimat, dan energi pada mie kering substitusi tepung ubi jalar ungu (Ipomoea batatas L. Poir). Ilmu Gizi Indonesia, 2(1), 01. https://doi.org/10.35842/ilgi.v2i1.82

Rikhfan. (2016). Aspek Mikrobiologis serta Sensori ( Rasa , Warna , Tekstur, Aroma ) pada Dua Bentuk Penyajian Keju yang Berbeda. November, 0–4.

Rosmeri. (2013). Pemanfaatan tepung umbi gadung ( Dioscorea hispida Dennst ) dan tepung mocaf (Modified Cassava Flour) sebagai bahan substitusi dalam pembuatan mie basah, mie kering, dan mie instan. Teknologi Kimia Dan Industri, 2(2), 246–256.

Sudarmadji. (2008). Prosedur analisa untuk bahan makanan dan pertanian. Liberty.

Tandrianto. (2014). Pengaruh fermentasi pada pembuatan mocaf (Modified Cassava Flour) dengan menggunakan lactobacillus plantarum terhadap kandungan Protein. Jurnal Teknik Pomits, 3(2), 143–145.

Taufik. (2019). Formulasi Cookies Berbahan Tepung Terigu dan Tepung Tempe dengan Penambahan Tepung Pegagan Formulation. 5(April), 9– 16.

Trisnawati. (2018). Total bakteri, kekenyalan dan sifat sensori tahu putih dengan perendaman larutan kitosan berdasarkan lama simpan pada suhu ruang.

Wibowo, A. D. I., Hamzah, F., Vonny, D.A. N., & Johan, S. (2014).Pemanfaatan Wortel ( Daucus carota L .) Dalam Meningkatkan Mutu Nugget Tempe [ Utilization Of Carrot ( Daucus carota L .) To Improve The Quality Tempe Nugget ]. 13(2), 27–34.

Winarno. F G. (2007). Kimia Pangan dan Gizi. Gramedia Pustaka Utama.

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Published

2025-05-11

How to Cite

Pawoko, D. T., Nuraini, V., & Widanti, Y. A. (2025). Dried noodles substitute tempeh flour and mocaf flour (modified cassava flour) with different percentages of cow’s milk: Mi kering subtitusi tepung tempe dan mocaf (modified cassava flour) dengan perbedaan persentase susu sapi. Agrobioteknologi, 2(1), 57–67. Retrieved from https://ejurnal.unisri.ac.id/index.php/Agro/article/view/9836

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