Hasil Pencarian  ::  Simpan CSV :: Kembali

Hasil Pencarian

Ditemukan 5 dokumen yang sesuai dengan query
cover
Djoko Sumaljo
"Salah satu sektor industri yang memberikan kontribusi adalah industri perminyakan. Industri ini selain memberi dampak positif, juga menimbulkan dampak negatif berupa limbah diantaranya lumpur dari pengeboran.
Ada dua jenis Lumpur yang dipakai yaitu oil base mud dan water base mud. Berat jenis lumpur merupakan fungsi utama untuk menahan tekanan dari bawah tanah supaya tidak terjadi semburan liar. Untuk mendapatkan berat jenis tersebut harus digunakan bahan kimia yang mempunyai kandungan logom berat.
Rumusan permasalahan yang dapat disusun adalah sebagai berikut:
1. Apakah dengan mengubah penerapan konsep teknologi water base mud menjadi oil base mud dalam kegiatan pengeboran minyak lepas pantai, beban limbah berupa air lumpur buangan dapat dikurangi karena lumpur masih tetap dapat dipakai untuk pengeboran berikutnya?
2. Apakah penerapan konsep pengurangan komponen aditif dari sumber dalam kegiatan pengeboran minyak bumi di lepas pantai dapat menimbulkan dampak kemungkinan terjadinya semburan liar dan memberikan dampak manfaat bagi industri perminyakan tersebut yaitu berkurangnya beban limbah yang dihasilkan?
3. Apakah penerapan konsep minimisasi limbah dalam kegiatan pengeboran minyak bumi di lepas pantai tersebut di atas dapat meningkatkan efisiensi biaya produksi bagi industri perminyakan?
4. Apakah kegiatan pengeboran minyak lepas pantai di daerah operasi minyak lapangan Maxus mempunyai pengaruh dampak negatif terhadap kualitas air laut dan dampak positif langsung terhadap persepsi masyarakat sekitarnya?
Tujuan penelitian ini adalah:
1. Untuk mengetahui pengaruh pengurangan penggunaan bahan kimia (aditif) pada lumpur pengeboran terhadap kualitas limbah yang dihasilkan dan kemungkinan terjadinya semburan liar.
2. Untuk mengetahui pengaruh penerapan perubahan media air menjadi media minyak dalam pembuatan lumpur terhadap beban limbah yang dihasilkan setelah operasi Pengeboran.
3. Untuk mengetahui pengaruh penerapan konsep minimisasi limbah dalam kegiatan pengeboran minyak bumi di lepas pantai terhadap tingkat efisiensi biaya produksi pada industri perminyakan.
4. Untuk mengetahui pengaruh kegiatan operasi pengeboran minyak lepas pantai di daerah operasi minyak lapangan Maxus terhadap kualitas air laut dan terhadap persepsi masyarakat sekitarnya.
Hipotesis dalam penelitian ini adalah:
1. Pengurangan penggunaan bahan kimia (aditif) pada lumpur Pengeboran akan mengurangi bahaya limbah yang dihasilkan serta mengurangi resiko terjadinya semburan liar.
2. Penerapan perubahan media air menjadi media minyak dalam pembuatan lumpur akan menurunkan beban limbah yang dihasilkan setelah operasi Pengeboran.
3. Penerapan konsep minimisasi limbah dalam kegiatan pengeboran minyak bumi di lepas pantai akan meningkatkan efisiensi biaya produksi pada industri perminyakan.
4. Kegiatan operasi pengeboran minyak lepas pantai di daerah operasi minyak lapangan Maxus menimbulkan dampak menurunnya kualitas air laut dan persepsi negatif masyarakat sekitarnya.
Jenis penelitian ini merupakan penelitian kuantitatif dengan metode survei dan ekspos fakto. Penelition ini dilakukan di daerah operasi wilayah Maxus di Laut Jawa dan berlangsung selama kurang lebih 6 bulan, yaitu sejak Desember 2001 - Juni 2002.
Tahapan penelitian meliputi penentuan jenis penelitian yaitu penelitian kuantitatif dengan metode survei dan ekspos fakto, penentuan lokasi penelitian yaitu di daerah operasi Maxus, penentuan rancangan penelitian yang meliputi variabel penelitian. tahapan penelitian, pengumpulan data, dan analisis data serta, perencanaan upaya minimisasi limbah lumpur dari sumbernya.
Secara umum parameter kualitas badan air masih berada pada kisaran di bawah baku mutu dengan dijumpai beberapa unsur logam berat Ni, Cd dan Pb yang masih di atas ambang baku mutu. Keberadaan ketiga unsur logam berat tersebut meskipun masih di atas baku mutu tetapi belum terlihat pengaruhnya terhadap kehidupan biota laut.
Dari survey tentang pengaruh kegiatan operasi Pengeboran terhadap persepsi masyarakat, ternyata disimpulkan bahwa persepsi masyarakat terhadap kegiatan tersebut positif. Dengan kondisi tekanan awal dan akhir yang berbeda, secara prinsip bila penggunaan berat jenis lumpur pada operasi Pengeboran terlalu besar kemungkinan terjadi hilang lumpur sangat besar. Bila terjadi kehilangan lumpur maka kemungkinan terjadinya semburan liar sangat besar.
Secara prinsip, volume limbah yang dibuang di lingkungan pada media water base mud lebih besar bila dibandingkan dengan memakai media oil base mud.
Kesimpulan peneliiian ini adalah:
1. Pemakaian oil base mud dapat mengurangi jumlah volume pembuangan limbah lumpur, karena lumpur bekas oil base mud masih dapat digunakan kembali.
2. Penurunan berat jenis sesuai dengan penurunan tekanan formasi akan .mengurangi jumlah pemakaian bahan kimia, terutama yang mengandung logam berat. sehingga dampak yang ditimbulkan juga makin berkurang. Penurunan jumlah bahan kimia akan menurunkan biaya operasi dan pengelolaan lingkungan.
3. Secara umum semua parameter kualitas badan air masih berada dalam batas baku mutu yang ditetapkan sehingga daerah wilayah operasi masih cukup baik. Tetapi beberapa komponen logam berat seperti Ni, Pb, dan Cd masih berada di atas baku mutu, namun secara berangsur ketiga unsur tersebut cenderung mengalami penurunan.
4. Penilaian masyarakat tentang kegiatan operasi minyak dan gas Maxus terhadap kehidupan kegiatan sosial ekonomi mereka ternyata positif baik.
5. Meskipun kualitas air dan persepsi masyarakat baik, tetapi perubahan parameter bawah tanah menghendaki penurunan berat jenis yang dipakai, karena pemakaian berat jenis yang tinggi memungkinkan terjadinya kehilangan lumpur. Bila hal tersebut terjadi, penahan tekanan formasi tidak ada sehingga akibatnya semburan liar dapat terjadi.

Minimizing Mud Waste in Offshore Oil Drilling (A case study at the Maxus Offshore Oil Drilling Platform in the Java Sea)One of the industrial sectors that provide considerable contribution has been petroleum industry. This industry brings out positive effect, and it also causes negative effect in the form of various sorts of waste including mud and sludge produced by the drilling activity.
There are two types of mud in use, oil base mud and water base mud. The specific gravity of the mud constitutes the prime function that is to restrain the underground pressure from surging up, and thus no wild spouts would occur. In order to obtain such specific gravity we must employ certain chemicals that have heavy metal content.
The formulation of the problematic questions can be practically arranged as follows:
1. Can the alteration made in the application of water base mud concept into that of oil base mud in the offshore oil drilling activity reduce the waste load that comprises muddy waste water, considering the fact that the application of oil base mud technology makes the mud remain potentially usable in the next drilling?
2. Can the application of concept on additive component reduction from the source in the offshore petroleum drilling activity raise possible effect that causes wild spouts, and will such application give beneficial effect to the oil industry, that is the decrease in the waste load produced?
3. Can the application of waste minimization concept in the offshore petroleum drilling activity as mentioned above improve the efficiency of production cost in the oil industry?
4. Is offshore oil drilling in the Maxus operation area viewed positively by the existing community in the vicinity of the project?
The objectives of the research are:
1. To know and understand the extent of the effect resulting from reducing the (additive) chemicals applied in the drilling mud to the quality of the waste produced, and to the possible occurrence of wild spouts.
2. To see the effect of change from the application of the water media into oil media in mud production, especially towards the waste load associated with the drilling operation.
3. To see the effect of waste minimization concept in the offshore oil drilling activity towards the level of the efficiency in production cost.
4. To observe the effect of Maxus offshore oil drilling operation activities to the sea water quality and to the community existing in the neighborhood.
The hypothesis in the present research includes:
1. Reduction in the use of (additive) chemicals in the drilling mud will mitigate the hazards of the waste produced, and to lessen the risk of wild spouts occurrence.
2. The change from water media into oil media in mud production eation will decrease the waste load associated with drilling operation.
3. The application of waste minimization in offshore petroleum drilling will improve the efficiency of production costs in the oil industry.
4. The offshore oil drilling activities in the Maxus field is detrimental to the sea water quality, and creates negative perception to the community.
This is a quantitative research conducted through survey and fact exposing method. The present research was conducted at the Maxus operations in the Java Sea, and took approximately 6 months, starting from December 2001 to June 2002.
The phases in the research cover the designation of the research type, which is to be a quantitative research with survey and fact exposing method, and the designation of the research site, namely the Maxus operation zone. The designation of the research arrangement covers research variables, research phases, data collection, and data analysis as well as planning the efforts to minimize the mud waste from the source.
In general, the water body quality lies in the range of being under quality standard with a number of heavy metals elements (Ni, Cd, and Pb) above the threshold limit value. Although, three heavy metal elements are above the standard value, their effect to the sea aquatic life is yet to be seen.
From the survey conducted on the negative influence brought about by the drilling operation to the local society's perception, it turns out that such community's perception toward the activity is favorably positive.
With the beginning and end pressure being different, it can be principally postulated that when the use of the mud's specific gravity at the drilling operation is excessively high it is very likely that the loss of the mud is substantially high. When such high loss of mud occurs it is very likely that a wild spout will occur.
In principle, the volume of waste entering is greater for the water base mud media compared to the oil base mud.
The conclusions of the present research are:
1. The application of oil base mud reduces the volume of the disposed mud waste, because the oil base mud media can be reused.
2. The decrease in the specific gravity will, in accordance with the decrease in the formation pressure, reduce the number of the chemicals in use, particularly of those that contain heavy metal. As a result, the environment impact will be less. Subsequently, the reduction of chemicals wed reduces the operating and environmental management costs.
3. For the most part, all water quality parameters are within the acceptable limit. This means that the environmental quality of the operation area is reasonably good. However, there are several heavy metal components such as Ni, Cd, and Pb that are above the threshold limit value. However, the quantity of these three elements tends to gradually go down.
4. The opinion of the local community on the oil and gas operation activities proves to be positive.
5. In spite of the good water quality and the favorable perception from the local people. The change in underground parameter necessitates a decrease in the mud specific gravity mud will potentially result in more mud loss. When this happens, wild spouts are bound to happen as there is not enough mud to counter the pressure."
Depok: Program Pascasarjana Universitas Indonesia, 2002
T 11055
UI - Tesis Membership  Universitas Indonesia Library
cover
"Methods in Chemical Process Safety, Volume Two, the latest release in a serial that publishes fully commissioned methods papers across the field of process safety, risk assessment, and management and loss prevention, aims to provide informative, visual and current content that appeals to both researchers and practitioners in process safety. This new release contains unique chapters on offshore safety, offshore platform safety, human factors in offshore operation, marine safety, safety during well drilling and operation, safety during processing (top side), safety during transportation of natural resources (offshore pipeline), and regulatory contextHelps acquaint the reader/researcher with the fundamentals of process safetyProvides the most recent advancements and contributions on the topic from a practical point-of-viewPresents users with the views/opinions of experts in each topicIncludes a selection of the author(s) of each chapter from among the leading researchers and/or practitioners for each given topic"
Cambridge: Elsevier, 2018
622.293 MET
Buku Teks SO  Universitas Indonesia Library
cover
Ridwan Rahadian
"Environmental, Social and Governance (ESG) merupakan tiga faktor penting dari pelaku industri untuk mendukung keberlanjutan (sustainability). Target utama kriteria lingkungan dalam ESG antara lain adalah upaya mengatasi perubahan iklim dengan mengurangi dampak lingkungan dari kegiatan operasi yang dilaksanakan. Studi ini bertujuan untuk mengidentifikasi potensi dampak lingkungan dari produksi minyak mentah berat di lapangan Zuli melalui melakukan Life Cycle Assessment (LCA) menggunakan software SimaPro. Ruang lingkup penelitian ini adalah cradle-to-gate, meliputi proses pemboran, well service, ekstraksi bahan baku, proses pemisahan, proses flaring, pengangkutan fluida kotor, dan pengolahan air terproduksi. Dengan menggunakan beberapa metodologi karakterisasi dampak, yaitu IPCC 2013, CML-baseline dan non-baseline, dan Cumulative Energy Demand, hasil penilaian dampak menunjukkan bahwa untuk 1 MJ minyak yang dihasilkan, kontribusi potensial 2.49 g CO2-eq GWP, 1.49×10-10 kg CFC11-eq Ozone Layer Depletion, 2.66×10-6 kg PO4-eq Eutrophication, 1.05 MJ Fossil Abiotic Depletion, 9.42×10-10 kg Sb-eq non-Fossil Abiotic Depletion, 1.71×10-5 kg ​​SO2-eq Acidification, 1.10 × 10-4 MJ dan 1.03 × 10-4 MJ Cumulative Energy Demand non-Renewable dan Renewable.

Environmental, Social and Governance (ESG) are three important factors for industry players to support sustainability. The main targets of the environmental criteria in the ESG include efforts to overcome climate change by reducing the environmental impact in every stages of their activities. This study aims to identify the environmental impact of crude oil production in the Zuli field through conducting a Life Cycle Assessment (LCA) using SimaPro software. The scope of this research is cradle-to-gate, covering the drilling process, well service, raw material extraction, separation process, flaring process, dirty fluid transportation, and produced water treatment. By using several impact characterization methodologies, namely IPCC 2013, CML-baseline and non-baseline, and Cumulative Energy Demand, the impact results show that for 1 MJ of oil produced, potential to contribute 2.49 g CO2-eq GWP, 1.49×10-10 kg CFC11-eq Ozone Layer Depletion, 2.66×10-6 kg PO4-eq Eutrophication, 1.05 MJ Fossil Abiotic Depletion, 9.42×10-10 kg Sb-eq non-Fossil Abiotic Depletion, 1.71×10-5 kg ​​SO2-eq Acidification, 1.10 × 10-4 MJ and 1.03 × 10-4 MJ Cumulative Energy Demand non-Renewable dan Renewable."
Depok: Fakultas Teknik Universitas Indonesia, 2022
T-Pdf
UI - Tesis Membership  Universitas Indonesia Library
cover
Sutimadji Tjokro
"Kegiatan eksplorasi dan produksi minyak dan gas bumi merupakan salah satu kegiatan pemanfaatan potensi sumber daya alam yang memberikan kontribusi pada pembangunan. Hasil kegiatan migas CNOOC yang berlokasi di laut lepas (offshore) adalah produk minyak yang mempunyai nilai ekonomis, dan limbah air terproduksi sebagai hasil ikutan dari proses eksplorasi yang tidak mempunyai nilai ekonomis. Limbah air terproduksi yang jumlahnya sangat melimpah mengandung zat-zat ikutan secara alami terdapat dalam formasi di bawah tanah seperti bahan organik dan anorganik, yang bersifat toxic, bioakumulasi dan biokonsentrasi dalam jangka waktu lama dapat mematikan biota laut. Penelitian pengolahan limbah air terproduksi menggunakan flokulan B (yang ramah lingkungan) dalam unit flotator jenis Induced Gas Flotator, sehingga diduga dapat memperbaiki kualitas limbah air terproduksi yang dibuang ke laut. Kualitas air laut sangat mempengaruhi kehidupan biota laut, dan keberadaan populasi biota laut secara langsung mempengaruhi tingkat eksploitasi sumberdaya taut yang dilakukan oleh masyarakat dalam hal ini penduduk atau nelayan demi meningkatkan kesejahteraannya. Hal ini akan menimbulkan suatu persepsi masyarakat. Penelitian ini dibagi menjadi tiga bagian utama yaitu penelitian mengenai pengelolaan limbah dengan program minimisasi limbah, penelitian mengenai pengolahan limbah air terproduksi, dan penelitian persepsi masyarakat terhadap kegiatan migas.

The exploration and production of oil are activities that exploit natural resources. These activities also contribute to economic growth. CNOOC Ltd. is an exploration and production facility that is located offshore. Offshore oil exploration produces a relatively small amount of oil compared to the large amount of waste produced water as a by-product. The oil has commercial value while the produced water does not. The large amount of produced water is considerably risky and destructive to the sea environment because it contains large quantities organic and inorganic materials that are toxic, bioaccumulated, and bioconcentrated materials that can harm the marine life over a long period of exposure. This study of a waste treatment facility for water produced as a by-product of an offshore exploration and production, uses flocculants B (which are environmentally friendly) in a flotator unit with an induced-gas flotator type that can improve the quality of the produced water. The high levels of contamination of produced water will degrade the quality of the sea water. Consequently, marine life is affected adversely. As a result the lives of fishermen and local people are also adversely affected. This situation can contribute to a negative perception of the oil exploration facility from the local people. This thesis is divided into three main sections. The first section deals with the company's waste management using the waste-minimization agenda; the second section outlines the optimization of Process of produced water treatment, and the third section deals with the perception of the local community to CNOOC Ltd."
Jakarta: Program Pascasarjana Universitas Indonesia, 2005
T15096
UI - Tesis Membership  Universitas Indonesia Library
cover
"This encyclopedia adopts a wider definition for the concept of ocean engineering. Specifically, it includes (1) offshore engineering: fixed and floating offshore oil and gas platforms; pipelines and risers; cables and moorings; buoy technology; foundation engineering; ocean mining; marine and offshore renewable energy; aquaculture engineering; and subsea engineering; (2) naval architecture: ship and special marine vehicle design; intact and damaged stability; technology for energy efficiency and green shipping; ship production technology; decommissioning and recycling; (3) polar and Arctic Engineering: ice mechanics; ice-structure interaction; polar operations; polar design; environmental protection; (4) underwater technologies: AUV/ROV design; AUV/ROV hydrodynamics; maneuvering and control; and underwater-specific communicating and sensing systems for AUV/ROVs.
It summarizes the A–Z of the background and application knowledge of ocean engineering for use by ocean scientists and ocean engineers as well as nonspecialists such as engineers and scientists from all disciplines, economists, students, and politicians. Ocean engineering theories, ocean devices and equipment, ocean design and operation technologies are described by international experts, many from industry and each entry offers an introduction and references for further study, making current technology and operating practices available for future generations to learn from. The book also furthers our understanding of the current state of the art, leading to new and more efficient technologies with breakthroughs from new theory and materials.
As the land resources approach the exploitation limit, ocean resources are becoming the next choice for the sustainable development. As such, ocean engineering is vital in the 21st century."
Singapore: Springer Singapore, 2019
e20510220
eBooks  Universitas Indonesia Library