Hasil Pencarian  ::  Simpan CSV :: Kembali

Hasil Pencarian

Ditemukan 12 dokumen yang sesuai dengan query
cover
Artikel Jurnal  Universitas Indonesia Library
cover
Abstrak :
A site evaluation was made for a low-lying property in an old river levee/marsh association, used marginally for cattle raising, which was contaminated due to historical practices. Contamination was related to geomorphology: the lowest areas ...
Artikel Jurnal  Universitas Indonesia Library
cover
Tanwir Ahmad Farhan
Abstrak :
Fluid Catalytic Cracking (FCC) merupakan metode perengkahan minyak nabati menjadi fraksi yang lebih sederhana dan menghasilkan produk biofuel. Grup riset AIR mengembangkan sebuah teknologi sistem FCC skala bench untuk mengolah minyak kelapa sawit menjadi bahan bakar nabati. Salah satu komponen sistem FCC adalah FCC furnace. FCC furnace merupakan tempat terjadinya proses pembakaran dan memberikan perpindahan panas yang tinggi di seluruh sistem FCC, terutama untuk memanaskan striper. Pengujian pertama menggunakan 2 kg bricket biochar dan pengujian kedua menggunakan 1kg bricket biochar dan 1kg biochar halus. Tujuan penelitian ini untuk melakukan optimasi online menggunakan model ANN dan optimasi PSO pada FCC furnace. Optimasi pemodelan ANN dan Optimasi PSO dapat memprediksi temperatur maksimum striper terjadi dengan menggunakan 1 kg bricket biochar dan 1 kg biochar halus. Dengan menggunakan optimasi online, temperatur striper actual mencapai 131.25 oC ,dan perbedaan pada setiap temperatur distabilkan dibawah 100 oC. Pemodelan algoritma optimasi online dapat berjalan dengan baik namun belum dapat meningkatkan temperatur aktual striper mencapai temperatur striper PSO maksimum dengan baik. ......Fluid Catalytic Cracking (FCC) is a method of cracking vegetable oil into simpler fractions and producing biofuel products. The AIR research group developed a bench-scale FCC system technology to process palm oil into biofuels. One component of the FCC system is the FCC furnace. The FCC furnace is where the combustion process occurs and provides high heat transfer throughout the FCC system, especially for heating the striper. The first test used 2 kg of biochar bricks and the second test used 1 kg of biochar bricks and 1 kg of fine biochar. The purpose of this study is to carry out online optimization using the ANN model and PSO optimization on the FCC furnace. ANN modeling optimization and PSO optimization can predict the maximum temperature of the striper that occurs using 1 kg of biochar bricket and 1 kg of fine biochar. By using online optimization, the actual striper temperature reaches 131.25 oC, and the difference at each temperature is stabilized below 100 oC. Online optimization algorithm modeling can run well but has not been able to increase the actual temperature of the striper to reach the maximum PSO striper temperature properly.
Depok: Fakultas Teknik Universitas Indonesia, 2023
T-pdf
UI - Tesis Membership  Universitas Indonesia Library
cover
Siti Safira Nur
Abstrak :
Eutrofikasi air merupakan fenomena penurunan kualitas udara yang timbul akibat adanya ion fosfat yang berlebihan dalam suatu ekosistem perairan. Oleh karena itu, untuk menyerap fosfat dari sistem perairan, diperlukan adsorben yang efisien dan efektif. Untuk tujuan penyerapan fosfat dalam sistem perairan, penelitian ini membandingkan massa tiga komposit adsorben yang terdiri dari Biochar teraktivasi yang berasal dari Tandan Kosong Kelapa Sawit (TKKS) dan MgO:KBc (1:5):MgO:KBc (1: 12.5), dan MgO:KBc (1:20). Setelah perlakuan awal dengan KOH, TKKS disintesis melalui pencampuran yang dimodifikasi. Biochar digunakan dalam komposit dengan MgO. Beberapa parameter digunakan untuk mengevaluasi kapasitas adsorpsi, termasuk variasi bahan, variasi pH, dan durasi kontak. Adsorben MgO:KBc (1:5) menunjukkan efisiensi tertinggi dalam adsorpsi fosfat pada pH 7 dengan waktu kontak optimal empat jam. Kinetika adsorpsi MgO:KBc (1:5) adsorben mengikuti kinetika orde dua semu. Hasil terbaik adsorben MgO:KBc (1:5) dalam mengadsorpsi fosfat adalah nilai kapasitas adsorpsi sebesar 9,3108 mg-P/g dan efisiensi adsorpsi sebesar 99,10%. Perangkat DGT terdiri dari gel pengikat, gel difusi, dan membran filter. Agen pengikat bertanggung jawab untuk menempelkan analit tertentu pada gel pengikat. Senyawa MgO:KBc (1:5) digunakan dalam penelitian ini sebagai bahan pengikat pada proses penyerapan senyawa fosfat. Senyawa MgO:KBc (1:5) disintesis menggunakan teknik modifikasi pencampuran dan selanjutnya dianalisis menggunakan FTIR, XRD, FESEM-EDX, dan BET. Keberhasilan sintesis gel pengikat MgO:KBc (1:5) ditunjukkan oleh kesamaan serapan antara gel difusi dan gel pengikat menggunakan FTIR. Waktu optimal DGT MgO:KBc (1:5) adalah 72 jam, dengan konsentrasi 68319,55 ng. Untuk Ferrihidrit DGT waktu idealnya juga 72 jam dengan konsentrasi 57859,29 ng. Terakhir, pH ideal untuk DGT MgO:KBc (1:5) dan Ferihidrit adalah pH 3, dengan konsentrasi 55354,60 ng. ......Water eutrophication is a phenomenon of decreasing air quality that arises due to the presence of excessive phosphate ions in an aquatic ecosystem. Therefore, to adsorb phosphate from water systems, efficient and effective adsorbents are needed. For the purpose of phosphate adsorption in aquatic systems, this study compared the mass of three adsorbent composites consisting of activated Biochar derived from Empty Fruit Bunches (EFB) and MgO:KBc (1:5):MgO:KBc (1: 12.5), and MgO:KBc (1:20). After pretreatment with KOH, EFB was synthesized via modified mixing. Biochar is used in composites with MgO. Several parameters are used to evaluate adsorption capacity, including material variations, pH variations, and contact duration. The MgO:KBc (1:5) adsorbent showed the highest efficiency in phosphate adsorption at pH 7 with an optimal contact time of four hours. The adsorption kinetics of MgO:KBc (1:5) adsorbent follows pseudo second order kinetics. The best results of the MgO:KBc (1:5) adsorbent in adsorbing phosphate were an adsorption capacity value of 9.3108 mg-P/g and an adsorption efficiency of 99.10%. The DGT device consists of a binding gel, a diffusion gel, and a filter membrane. The binding agent is responsible for attaching a particular analyte to the binding gel. The compound MgO:KBc (1:5) was used in this research as a binding agent in the adsorption process of phosphate compounds. The MgO:KBc (1:5) compound was synthesized using a modified mixing technique and then analyzed using FTIR, XRD, FESEM-EDX, and BET. The successful synthesis of the MgO:KBc (1:5) binding gel was demonstrated by the similarity of adsorption between the diffusion gel and the binding gel using FTIR. The optimal time for DGT MgO:KBc (1:5) is 72 hours, with a concentration of 68319.55 ng. For DGT ferrihydrite, the ideal time is also 72 hours with a concentration of 57859.29 ng. Finally, the ideal pH for DGT MgO:KBc (1:5) and Ferrihydrite is pH 3, with a concentration of 55354.60 ng
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2024
T-pdf
UI - Tesis Membership  Universitas Indonesia Library
cover
Fikri Dhiya Ulhaq
Abstrak :
TKKS memiliki kandungan lignin sebesar 17,8% dengan komposisi karbon sebanyak 44,2%. Komposisi karbon yang tinggi menandakan banyak senyawa aromatik sehingga dapat terdekomposisi menjadi nano-biochar sebagai pengganti material carbon black N-550 untuk dicampurkan pada Styrene Butadiene Rubber (SBR) guna memperkuat kekuatan mekanis ban. Penelitian ini berfokus untuk menginvestigasi pengaruh temperatur proses pyrolysis terhadap yield, komposisi, dan struktur mekanis biochar. Selain itu, penelitian ini juga menginvestigasi pengaruh variasi rasio campuran nano-biochar terhadap carbon black. Hasil penelitian menunjukkan kenaikan temperatur pada pyrolysis lignin menyebabkan nilai yield biochar yang dihasilkan menjadi mengecil, namun meningkatkan nilai fixed carbon content dari biochar. Kenaikan temperatur pada pyrolysis lignin juga menurunkan ukuran partikel nano-biochar, memperbesar volume pori dan meningkatkan area permukaan, serta menyebabkan struktur microporous pada nano-biochar. Properti mekanis nano-biochar sudah menyerupai carbon-blac N-550 dari segi ukuran partikel dan struktur microporous pada permukaan nano-biochar. Selain itu, dari segi kekuatan mekanis vulcanized rubber, komposisi 50% nano-biochar dan 50% carbon black N-550 merupakan variasi yang optimum untuk menghasilkan vulcanized rubber dengan kekuatan mekanis yang baik. ......OPEFB has a lignin content of 17.8% with a carbon composition of 44.2%. The high carbon composition indicates that OPEFB contains many aromatic compounds so that they can be decomposed into nano-biochar as a substitute for carbon black N-550 for mixing in Styrene Butadiene Rubber (SBR) to strengthen the tire's mechanical strength. This study focuses on investigating the effect of pyrolysis process temperature on the yield, composition, and mechanical structure of biochar. In addition, this study also investigated the effect of variations in the ratio of nano-biochar mixture to carbon black. The results showed that the temperature increase in lignin pyrolysis caused the yield value of the resulting biochar to decrease. On the other hand, an increase in temperature increases fixed carbon content of biochar. The increase in temperature in lignin pyrolysis also reduces the particle size of nano-biochar, increases the pore volume and increases the surface area up, and causes the microporous structure of nano-biochar. The mechanical properties of nano-biochar already resemble carbon-black N-550 in terms of particle size and microporous structure on the surface of the nano-biochar. In addition, in terms of the mechanical strength of the vulcanized rubber, the composition of 50% nano-biochar and 50% carbon black N-550 is the optimal variation to produce vulcanized rubber with good mechanical strength.
Depok: Fakultas Teknik Universitas Indonesia, 2023
S-pdf
UI - Skripsi Membership  Universitas Indonesia Library
cover
Rifka Charmelita
Abstrak :
Industri ban menyerap sekitar 80% produksi karet dunia dengan kebutuhan carbon black sebanyak 240.000 ton per tahun. Carbon black (CB) umumnya digunakan sebagai filler karet ban untuk meningkatkan sifat mekanis dan memberikan pigmen warna hitam. Sampai saat ini,70% kebutuhan CB masih diimpor dari China dan India. Lignin TKKS merupakan senyawa aromatik dengan kandungan karbon sebesar 60% yang berpotensi sebagai reinforcing filler karet ban setelah terdekomposisi menjadi biochar. Penelitian ini bertujuan untuk memperoleh karakteristik unsur dan morfologi nano-biochar pada suhu 400, 500, dan 600oC serta memperoleh pengaruh rasio nano-biochar terhadap CB N330 pada sifat mekanis karet ban. Nano-biochar pada setiap suhu dianalisis karakteristik fisika-kimianya. Hasil penelitian menunjukkan yield biochar berkurang seiring dengan meningkatnya suhu pirolisis. Jumlah fixed carbon dan kandungan karbon tertinggi diperoleh pada suhu pirolisis 600oC. Sementara itu, luas permukaan biochar tertinggi diperoleh pada suhu pirolisis 500oC sebesar 86,79 m2/g.  Struktur biochar yang lebih berpori diperoleh pada suhu 600oC. Sifat mekanis karet ban lebih tinggi pada tensile strength, elongation at break, modulus 100%, tear strength, dan hardness diperoleh ketika SBR dicampur dengan filler 25% nano-biochar. Hal ini membuktikan potensi biochar sebagai komplemen karbon CB N330 dalam meningkatkan sifat mekanis karet ban. ......The tire industry absorbs about 80% of the world's rubber production with a carbon black requirement of 240,000 tons per year. Carbon black (CB) is commonly used as a tire rubber filler to improve mechanical properties and provide black pigment. Until now, 70% of CB needs are still imported from China and India. Lignin of TKKS is an aromatic compound with a carbon content of 60% which has the potential as a reinforcing filler for tire rubber after being decomposed into biochar. This study aims to obtain the elemental and morphological characteristics of nano-biochar at temperatures of 400, 500, and 600oC and to obtain the effect of the ratio of nano-biochar to CB N330 on the mechanical properties of tire rubber. Nano-biochar at each temperature was analyzed for its physico-chemical characteristics. The results showed that the biochar yield decreased as the pyrolysis temperature increased. The highest amount of fixed carbon and carbon content was obtained at 600oC pyrolysis temperature. Meanwhile, the highest biochar surface area was obtained at 500oC pyrolysis temperature of 86.79 m2/g.  A more porous biochar structure was obtained at 600°C. Higher mechanical properties of tire rubber in tensile strength, elongation at break, 100% modulus, tear strength, and hardness were obtained when SBR was mixed with 25% nano-biochar filler. This proves the potential of biochar as a complement to CB N330 carbon in improving the mechanical properties of tire rubber.
Depok: Fakultas Teknik Universitas Indonesia, 2023
S-pdf
UI - Skripsi Membership  Universitas Indonesia Library
cover
Tambunan, Betsyeba Bertameina
Abstrak :
Ampas tebu berpotensi besar untuk dimanfaatkan menjadi produk yang bernilai tinggi. Penelitian ini bertujuan untuk menghasilkan biochar dari ampas tebu melalui proses pirolisis dengan impregnasi logam dan proses aktivasi untuk digunakan sebagai bahan elektroda superkapasitor. Logam natrium dan nikel dapat memperbesar luas permukaan dan membentuk pori biochar sehingga dapat menghasilkan kinerja superkapasitor yang baik. Kandungan logam natrium dan nikel divariasikan sebesar 0%, 5%, 10%, suhu pirolisis pada 450 °C, 500 °C, 550 °C, dan suhu aktivasi pada 600°C dan 700°C. Karakterisasi dengan BET untuk mengetahui luas permukaan spesifik dan ukuran pori biochar, SEM untuk mengetahui morfologi biochar, dan band gap energy untuk mengetahui sifat konduktivitas biochar. Uji kinerja superkapasitor dilakukan dengan metode cyclic voltammetry menggunakan elektrolit KOH 3 M untuk mengetahui nilai kapasitansi. Didapatkan bahwa biochar terimpregnasi logam Ni 10% yang dipirolisis pada suhu 550 °C dan diaktivasi pada suhu 700 °C merupakan sampel terbaik untuk digunakan sebagai bahan elektroda superkapasitor yang dilihat dari terksturnya berpori, luas permukaan sebesar 285,202 m2/g, band gap energy sebesar 1 eV, dan diperoleh nilai kapasitansi spesifik sebesar 103,292 F/g yang menunjukkan bahwa biochar dapat digunakan sebagai bahan elektroda superkapasitor. ......Sugarcane bagasse has great potential to be used as a high-value product. This study aims to produce biochar from sugarcane bagasse through a pyrolysis process with metal impregnation and activation process to be used as a supercapacitor electrode material. Sodium and nickel metals can increase the surface area and form biochar pores so that they can produce good supercapacitor performance. The contents of sodium and nickel were varied by 0%, 5%, 10%, pyrolysis temperature at 450°C, 500°C, 550°C, and activation temperature at 600°C and 700°C. Characterization with BET to determine the specific surface area and pore size of biochar, SEM to determine the morphology of biochar, and band gap energy to determine the conductivity properties of biochar. The supercapacitor performance test was carried out using the cyclic voltammetry method using 3 M KOH electrolyte to determine the capacitance value. It was found that 10% Ni metal impregnated biochar which was pyrolyzed at 550 °C and activated at 700 °C was the best sample for use as a supercapacitor electrode material as seen from its porous texture, surface area of 285,202 m2/g, band gap energy of 1 eV, and a specific capacitance value of 103.292 F/g was obtained which indicated that biochar could be used as a supercapacitor electrode material.
Depok: Fakultas Teknik Universitas Indonesia, 2023
S-pdf
UI - Skripsi Membership  Universitas Indonesia Library
cover
Angelina Grace
Abstrak :
Pemanfaatan limbah menjadi alat yang bernilai guna sangat penting bagi lingkungan. Limbah tempurung kelapa dapat diolah sebagai sumber karbon untuk kemudian disintesis menjadi bahan aktif untuk aplikasi elektroda superkapasitor. Tujuan dari penelitian ini untuk mengetahui pengaruh kondisi impregnasi logam, suhu pirolisis, dan suhu aktivasi tempurung kelapa terhadap kinerja superkapasitor. Elektroda superkapasitor dirangkai dengan elektrolit berupa KOH 3 M, binder berupa PVA dengan campuran asam sitrat sebagai crosslinking agent, dan separator berupa kertas saring. Hasil penelitian terbaik berdasarkan uji Cyclic Voltammetry diperoleh sampel Ni10-P550-A700. Hal ini menunjukkan bahwa suhu pirolisis (550oC) dan aktivasi tertinggi (700oC) dapat berpengaruh terhadap hasil nilai kapasitansi tertinggi yaitu sebesar 165,75 F/g. Hasil perhitungan energi aktivasi menghasilkan nilai Ea terkecil yaitu 3,88 kJ/mol sehingga menandakan bahwa keberadaan logam dapat berperan sebagai katalis pada proses pirolisis. Karakterisasi BET pada bio-char menunjukkan luas permukaan spesifik sebesar 257,7 m2/g. Sementara itu, hasil karakterisasi SEM memperlihatkan permukaan char dengan persebaran pori yang banyak. Kemudian, hasil karakterisasi dengan Spektrofotometri UV-Vis memberikan hasil bahwa sampel Ni10-P550-A700 memiliki sifat konduktor. Oleh karena itu, seluruh hasil karakterisasi menunjukkan bahwa limbah tempurung kelapa hasil pirolisis dapat berfungsi sebagai penyimpan energi yang baik. ......Recycling waste into usable devices is essential for the environment. Coconut shell waste can be processed as a carbon source and synthesized into active ingredients for supercapacitor electrode applications. This study aimed to determine the effect of metal impregnation conditions, pyrolysis temperature, and coconut shell activation temperature on supercapacitor performance. Supercapacitor electrodes are assembled with electrolyte KOH 3 M, binder in the form of PVA with a mixture of citric acid as a crosslinking agent, and separator using filter paper. The Ni10-P550-A700 sample obtained the best research results from the Cyclic Voltammetry test. This result shows that the pyrolysis temperature (550o
Depok: Fakultas Teknik Universitas Indonesia, 2023
S-pdf
UI - Skripsi Membership  Universitas Indonesia Library
cover
Abstrak :
Metal contaminated soils are a major problem in Thailand. Plants that grow in this area will adsorb metal and broad impact across the food chain. Some types of biochar can immobilize metals and reduce the impact of such. This research was limited to study cadmium, zinc and lead adsorption. Durian and mangosteen shell were selected to produce biochar due to their high carbon content. The shells were firstly passed through the pyrolysis process. The chemical characterization of these biochars was then determined. The chemical characteristics of both materials were similar. Both were basic materials with pH around 10. They were high in percentage of C and TOC. Total Cd, Pb and Zn in both biochars were below the maximum allowed threshold according to biochar toxicity standard recommended by International Biochar Initiative. The buffering capability and acid neutralization capability were examined by adding acid and basic solution until the pH reached 2-12. The buffering capability of these two biochars was rather high. The values of acid neutralization capability (ANC) of biochar produced from durian and mangosteen shell were 1,464.80 meg/kg and 1,328.98 meq/kg, respectively. The study included an adsorption isotherm. Freundlich isotherm was a suitable isotherm to explain the adsorption of all three metals by biochar from durian shell, whereas Langmuir isotherm is better to explain the adsorption of metals by biochar from mangosteen shell. The adsorption capacity of both biochars was not much different.
King Mongkut?s Institute of Technology Ladkrabang. Faculty of Science, 2017
500 TIJST 22:1 (2017)
Artikel Jurnal  Universitas Indonesia Library
cover
Abstrak :
This book extends the framework of the climate-energy-land nexus to elucidate political, economic, social, and institutional factors and causal mechanisms that stringent climate targets bring about, rather than mitigate a disproportional heavy burden on the forest sector in Indonesia. Assessing climate, energy, agricultural, forest, and transmigration policies, and REDD+ and biochar solutions through a multidisciplinary approach, ranging from biological, agricultural, technological, economic, and institutional lenses, the book identifies the political-economic and socio-technical regimes that cause the crosssectoral transfer of responsibility for greenhouse gas emissions to palm-oil-based biofuel, imposing an excess burden on the forest sector and accelerating indirect land-use change. It also proposes possible countermeasures for agricultural and forest sectors, reconfirming that technical applications and integrated policymaking should trigger the socioeconomic changes that will make transformative change happen in Indonesia. As an analysis of the success, or otherwise, of stringent climate targets, policies, and technological and non-technological measures on the reduction of greenhouse gases, this book will be of great interest to students and scholars in the fields of environment & sustainability, Asian studies, energy, environment and agriculture, forestry, and agriculture & environmental sciences. It will also appeal to practitioners and policymakers tackling net-zero emissions and land and forest governance.
London: Routledge, 2023
e20534420
eBooks  Universitas Indonesia Library
<<   1 2   >>