1394 research outputs found

    Aktivitas Air dan Stabilitas Bahan Makanan

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    Usaha Peningkatan Pemanfaatan Jambu Mete: Pengaruh Perlakuan Pemanasan dan Pendinginan Jambu Mete Terhadap Sari Buah yang Dihasilkan

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    Pendinginan pada 0oC selama 12 jam terhadap buah jambu mete dapat mengurangi rasa sepet dan kadar tanin pada sari buah yang dihasilkan. Pemanasan dengan uap air panas selama 15 menit pada buah jambu mete akan meningkatkan kekeruhan, menaikkan angka asam, dan menyebabkan perubahan cita-rasa (flavor) pada sari buah yang dihasilkan. Perlakuan pendinginan terhadap jambu mete dan penjernihan dari buahnya dengan gelatin 0,25% dapat mengurangi kadar tanian 50-75%

    Air dan Masalahnya

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    Substitusi Lupin (Lupineus luteus) terhadap Kedelai (Glycine max) dalam Pembuatan Kembang Tahu

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    Soy-lupines film (yuba) were prepared from three combinations of soybean and lupines = 75 : 25 ; 50 : 50; and 25 : 75. Traditional method was used to process soy-lupines film with variation of pH (8 and 10) and water addition (10 and 12 times of raw material weight). The products were characterized for their chemical composition, yield and organoleptics properties. Result showed that to produce the acceptable protein film that gave an average of 35% yield, lupines could subtitute soybean up to 50%

    Peningkatan Kandungan Protein Mie Basah dari Tapioka dengan Substitusi Tepung Koro Pedang Putih (Canavalia ensiformis L.)

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    Noodle can be made from tapioca, but the protein content was very limited. The purpose of this study was to increase protein content of tapioca wet noodle with addition of 0-50% white jack bean flour and to evaluate the physical, chemical and organoleptic properties. This study was preceded by a reduction HCN content. After HCN content fulfilled SNI standards, white jack bean was then made into flour. In this study, wet noodle was made with the ratio of tapioca: white jack bean flour 100:0; 90:10; 80:20; 70:30; 60:40; and 50:50 respectively. Physical characteristics of noodle was investigated in this study were cooking loss, expansion ratio, tensile strength, and elongation. Organoleptic characteristics were studied by preference and difference test.  Noodle product which was preferred by panelists was analyzed for the nutritional content. The results showed that soaking jack bean in 2% sodium bicarbonate solution for 40 hours with pulping in the first 10 hours and continued with soaking water 3 times 10 hours can reduce HCN content by 87.08%. The cooking loss and force of tensile strength were increased while expansion ratio and elongation decreased with higher proportions of white jack bean flour used. Wet mie made of ratio tapioca: white jack bean flour 80:20 got the preferences by panelists, and was able to increase protein content 9.51 fold with protein content 7.15% db.ABSTRAKMie dapat dibuat dari tapioka, namun kandungan protein mie tapioka sangat rendah. Tujuan dari penelitian ini adalah untuk meningkatkan kandungan protein mie basah dari tapioka dengan penambahan tepung koro pedang putih 0-50% dan evaluasi sifat fisik, kimia, dan organoleptik produk mie basah tersebut. Penelitian ini didahului dengan pengurangan kadar HCN koro pedang putih dan pembuatan tepung koro pedang putih. Pembuatan mie basah dari tapioka dilakukan dengan variasi rasio campuran tapioka: tepung koro pedang putih 100:0; 90:10; 80:20; 70:30; 60:40; dan 50:50. Karakteristik fisik mie yang diteliti meliputi kehilangan padatan akibat pemasakan, rasio pengembangan, tensile strength, dan elongasi. Karakteristik organoleptik mie yang diteliti meliputi uji kesukaan dan pembedaan. Mie yang disukai panelis selanjutnya dianalisis kandungan gizinya. Hasil penelitian menunjukkan bahwa perendaman koro pedang putih dalam larutan natrium bikarbonat 2% selama 40 jam dengan pengupasan pada jam ke-10 pertama dan dilanjutkan dengan penggantian air rendaman setiap 10 jam dapat mengurangi kadar HCN sebesar 87,08%. Pada mie yang dihasilkan, makin banyak penambahan tepung koro pedang putih, kehilangan padatan akibat pemasakan (cooking loss) dan gaya pada tensile strength meningkat, sedangkan rasio pengembangan dan elongasi menurun. Produk mie basah yang dibuat dengan rasio tapioka: tepung koro pedang putih sebanyak 80:20 masih disukai panelis, dan mampu meningkatkan kandungan protein sebesar 9,51 kali sehingga kandungan protein mie yang dihasilkan sebanyak 7,15% db

    Sistem Pengendali Kemudi Traktor Otomatis Empat Roda pada Pengujian Lintasan Lurus

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    This research is the development of autonomous tractor. Although research for automatic tractor have been carried out, but it is still developed to get more precision and optimal method. The purpose of this research is to develop a trajectory control system tractor to follow a straight-line when the working soil tillage. Model that was developed to be able calculate steering angle correction of the tractor position so that the tractor will run on a reference trajectory. Tractor position is determined from RTK DGPS. Tractor direction is calculated from two position of tractor. Control algorithm consists of the arrangement of commands to control the tractor move the reference trajectory. Simulations were performed to determine controlling algorithm ability  the tractor to follow reference trajectory. The algorithm ability is tested in real conditions on a straight- line path along 30 m with a speed of tractor 0.5 m/s in a field. The test results obtained in the field of performance accuracy rate is 97.13% control and average deviation with reference trajectory is 8.62 cm.ABSTRAKPenelitian ini merupakan penelitian pengembangan traktor otomatis. Meskipun penelitian mengenai traktor otomatis telah banyak dilakukan, namun pengembangan masih terus dilakukan untuk mendapatkan presisi yang lebih tinggi dan metode yang optimal. Tujuan penelitian ini adalah mengembangkan sistem pengendali kemudi traktor agar dapat mengikuti jalur kerja lintasan lurus ketika melakukan kegiatan pengolahan tanah. Model yang dikembangkan harus mampu menghitung sudut setir koreksi dari posisi traktor agar traktor mampu berjalan pada lintasan lurus yang telah ditentukan. Arah pergerakan traktor diketahui dari perbandingan dua posisi traktor yang diperoleh dari RTK DGPS. Algoritma pengendalian terdiri dari susunan perintah-perintah untuk mengendalikan traktor bergerak mengikuti lintasan acuan. Simulasi dilakukan untuk mengetahui kemampuan algoritma yang telah dibuat untuk mengendalikan traktor agar dapat berjalan mengikuti lintasan acuan. Kemampuan algoritma tersebut kemudian diuji dalam kondisi riil dilapangan pada lintasan lurus sepanjang 30 m dengan kecepatan traktor 0.5 m/s. Hasil pengujian di lapangan diperoleh tingkat akurasi kinerja kontrol sebesar 97.13% dan besar simpangan rata-rata terhadap lintasan acuan sebesar 8.62 cm

    Pengaruh Suhu Penyimpanan pada Gabah Basah yang Baru Dipanen terhadap Perubahan Mutu Fisik Beras Giling

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    Rice storage on high moisture content and temperatures could accelerate aging process. This research studied the effect of temperature and storage time to changes in the milling quality and color of the milled rice. This study used freshly harvested rough rice of IR 64 varieties with a moisture content of 26.73%, storage temperatures consist of room temperature, 40 °C, 50 °C and 60 °C, and storage time of 0, 2, 4, 6, 8, and 10 days. Observations comprise weight loss and a decrease in grain moisture content, and color quality milled rice. The results showed that the temperature and storage time affects weight loss and decrease moisture content of rough rice, milling quality, and color of the milled rice. The higher temperature and the longer storage, the weight loss and the decreasing moisture content of rough rice increases. Freshly harvested rough rice storage at 40 °C after 6 days showed a relatively large weight loss due to damage of rough rice. The yield and quality of milled rice increased with storage time. Rice color was relatively fixed until the 10th days at room temperature and 40 °C, while stored at 50 °C and 60 °C, the yellowing started after the 4th day and 2nd day respectively. Based on SNI 6128: 2008, water content of milled rice entered the category of quality I, head rice yield on category II and III, while the broken grains and grain groats entered in category II, III, and IV. Temperature and storage time recommended for the storage of freshly harvested rough rice was at 40 °C for 6 days. ABSTRAKSelama penyimpanan gabah terjadi proses pengusangan yang akan mengubah mutu giling dan warna beras. Penyimpanan gabah pada kadar air dan suhu tinggi dapat mempecepat proses penurunan mutu.  Penelitian ini mempelajari pengaruh suhu dan lama penyimpanan terhadap kehilangan berat dan penurunan kadar air gabah, perubahan mutu giling dan warna beras selama penyimpanan gabah kering panen. Suhu  penyimpanan yang digunakan adalah  suhu ruang, 40 °C, 50 °C, dan 60 °C, sedang lama penyimpanan adalah 0, 2, 4, 6, 8, dan 10 hari. Suhu dan lama penyimpanan mempengaruhi kehilangan berat dan penurunan kadar air gabah, mutu giling dan warna beras. Semakin tinggi suhu dan semakin lama penyimpanan, kehilangan berat dan penurunan kadar air gabah semakin besar. Penyimpanan gabah pada suhu 40 °C setelah 6 hari menunjukkan kehilangan berat yang relatif besar, meskipun terjadi peningkatan rendemen dan mutu giling. Berdasarkan SNI 6128:2008, kadar air beras giling masuk pada katagori mutu I, persentase beras kepala masuk pada katagori mutu II dan III, sedangkan butir patah dan butir menir masuk pada katagori mutu II, III,  dan IV. Warna beras relatif tetap sampai 10 hari penyimpanan pada suhu ruang dan pada 40 °C, sedang pada suhu 50 °C mulai terjadi penguningan setelah penyimpanan 4 hari dan pada suhu 60 °C setelah 2 hari. Suhu dan lama penyimpanan yang direkomendasikan untuk penyimpanan gabah kering panen adalah pada suhu 40 °C selama 6 hari.  ice storage on high moisture content and temperatures could accelerate aging process. This research studied the effect of temperature and storage time to changes in the milling quality and color of the milled rice. This study used freshly harvested rough rice of IR 64 varieties with a moisture content of 26.73%, storage temperatures consist of room temperature, 40 °C, 50 °C and 60 °C, and storage time of 0, 2, 4, 6, 8, and 10 days. Observations comprise weight loss and a decrease in grain moisture content, and color quality milled rice. The results showed that the temperature and storage time affects weight loss and decrease moisture content of rough rice, milling quality, and color of the milled rice. The higher temperature and the longer storage, the weight loss and the decreasing moisture content of rough rice increases. Freshly harvested rough rice storage at 40 °C after 6 days showed a relatively large weight loss due to damage of rough rice. The yield and quality of milled rice increased with storage time. Rice color was relatively fixed until the 10th days at room temperature and 40 °C, while stored at 50 °C and 60 °C, the yellowing started after the 4th day and 2nd day respectively. Based on SNI 6128: 2008, water content of milled rice entered the category of quality I, head rice yield on category II and III, while the broken grains and grain groats entered in category II, III, and IV. Temperature and storage time recommended for the storage of freshly harvested rough rice was at 40 °C for 6 days.ABSTRAKelama penyimpanan gabah terjadi proses pengusangan yang akan mengubah mutu giling dan warna beras. Penyimpanan gabah pada kadar air dan suhu tinggi dapat mempecepat proses penurunan mutu.  Penelitian ini mempelajari pengaruh suhu dan lama penyimpanan terhadap kehilangan berat dan penurunan kadar air gabah, perubahan mutu giling dan warna beras selama penyimpanan gabah kering panen. Suhu  penyimpanan yang digunakan adalah  suhu ruang, 40 °C, 50 °C, dan 60 °C, sedang lama penyimpanan adalah 0, 2, 4, 6, 8, dan 10 hari. Suhu dan lama penyimpanan mempengaruhi kehilangan berat dan penurunan kadar air gabah, mutu giling dan warna beras. Semakin tinggi suhu dan semakin lama penyimpanan, kehilangan berat dan penurunan kadar air gabah semakin besar. Penyimpanan gabah pada suhu 40 °C setelah 6 hari menunjukkan kehilangan berat yang relatif besar, meskipun terjadi peningkatan rendemen dan mutu giling. Berdasarkan SNI 6128:2008, kadar air beras giling masuk pada katagori mutu I, persentase beras kepala masuk pada katagori mutu II dan III, sedangkan butir patah dan butir menir masuk pada katagori mutu II, III,  dan IV. Warna beras relatif tetap sampai 10 hari penyimpanan pada suhu ruang dan pada 40 °C, sedang pada suhu 50 °C mulai terjadi penguningan setelah penyimpanan 4 hari dan pada suhu 60 °C setelah 2 hari. Suhu dan lama penyimpanan yang direkomendasikan untuk penyimpanan gabah kering panen adalah pada suhu 40 °C selama 6 hari.

    Pengaruh Diet Protein Kedelai terhadap Profil Lipida Tikus Diabetik Induksi Alloxan

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    Hypolipidemic of soybean protein were evaluated in alloxan-induced diabetic rats. The objectives of this research were to evaluate the effects of soybean protein feeding on total, HDL, LDL cholesterol and triacylglycerol serum level in both normal cholesterol and hypercholesterol alloxan-induced diabetic rats. Twenty-eight male Sprague-Dawley rats (250-300 g) were used and divided into four groups of seven rats. They were (1) Standard-Placebo (STP), (2) StandardAlloxan (STA), Soybean protein-Alloxan (PKA) and (4) Soybean protein- Hypercholesterol-Alloxan (PKHKA) groups. Three groups were diabetic induced by alloxan injection (80 mg/Kg of body weight by intra-muscular injection) and one group was injected with aquabidest (Placebo). PKHKA group was fed hypercholesterol diet for 2 weeks prior to the alloxan injection. STP and STA groups were fed standard diet whereas PKA and PKHKA were fed soybean protein diet for 28 days. Concentration of lipids were determined before injection (0 day ) and 1, 7, 14, 21, and 28 days after injection. It was found that alloxan injection increased serum total and LDL cholesterol and triacylglycerol concentration of STA, PKA and PKHKA rats. In 28 days intervention, soybean protein diet decreased the serum total cholesterol by 12% (PKA) and 33% (PKHKA), LDL cholesterol by 15% (PKA) and 48% (PKHKA); and triacylglycerol by 31% (PKA) and 37% (PKHKA). In addition, the diet increased the serum HDL cholesterol by 3% (PKA) and 8% (PKHKA). On the other hand, standard diets were failed to decreased the serum total cholesterol, LDL cholesterol and triacylglycerol

    Perubahan Komposisi Kasein pada Permukaan Globula Minyak sebagai Pengaruh Pengingkatan Konsentrasi Fosfolipida selama Emulsifikasi

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    Casein and phospholipids are natural compounds usually used concomitantly as emulsifier. This research is conducted to elucidate the adsorbed casein composition that stabilized oil globule interface during fish oil emulsification as affected by phospholipids concentration. Each casein has different behaviour at oil globule interface. The results showed the changes of adsorbed a A and fc casein at oil globule interface because of phospholipids addition. Among caseins, a casein has prefrence to desorb, 8 casein has preference to adsorb, and K casein has no preference to adsorb Cr desorb. Their preferences to adsorb or desorb are influenced by their surface activities and layer properties. Casein compositional changes are caused by caseinsphospholipids complex formation. This complex has less preference to adsorb at oil globule interface

    Pengaruh Penambahan NaCl sebagai Stress Agent dalam Kultivasi Sel Mikroalga Dunaliella tertiolecta ATCC 30929 terhadap Akulumasi Lipid Intrasel

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    Lipid composition of microalgae cell was affected by saline medium. Increasing of initial NaCI in modified NORO medium from 0.5 M to 1.0 M resulted in an increase of intracellular lipid content of Dunaliella tertiolecta ATCC 30929 cell from 60% to 67% (db). Loading of 0.5 M NaCI at a middle of logarithmic phase or 1.0 M at the end of logarithmic phase during the growth on the same medium increased intracellular lipid content to 70% (db). Addition of NaCI up to 2.0 M during the culture gave a high intracellular lipid content up to 77% (db) , although cell concentration was decreased to a half The temperature, light intensity, and aeration was adjusted at 30 °C, 150 mo1.11.m-2 (10.000 lux) and 250 ml/min CO2 enriched air (CO2 3%)

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