Hasil Pencarian  ::  Simpan CSV :: Kembali

Hasil Pencarian

Ditemukan 154099 dokumen yang sesuai dengan query
cover
cover
Jakarta Sekretariat Menteri Negara Kependudukan dan Lingkungan Hidup 1990,
364.046 91 IND p
Buku Teks  Universitas Indonesia Library
cover
Vidya Fauzianti
"Di kota yang sedang berkembang seperti Depok, perlu dilakukan suatu pengelolaan kualitas lingkungan hidup, salah satunya adalah kualitas udara, sebagai suatu langkah antisipasi maupun menurunkan tingkat pencemaran udara yang ada. Melalui data kualitas udara ambien tiap tahunnya, dilakukan suatu analisa kuantitatif deskriptif terhadap parameter mana saja yang melewati ambang batas baku mutu yang telah ditentukan, yaitu debu yang melebihi 230 _g/m³ dan kebisingan yang melebihi 70 dB di Cimanggis dan Terminal Depok. Analisa dilanjutkan dengan uji validasi melalui pengukuran langsung di Cimanggis dan Terminal pada hari kerja dan non kerja, dimulai pada pukul 07.00-09.00, 12.00-13.00 dan 16.00-18.00, yang dikaitkan dengan sumbernya, yaitu beban kendaraan bermotor. Pengolahan data selanjutnya menggunakan persamaan regresi linier darab, dimana jumlah kendaraan sebagai variable bebas dan polutan sebagai variable terikat. Persamaan regresi yang didapatkan memperlihatkan bahwa terdapat hubungan positif maupun negatif untuk beban kendaraan terhadap polutannya, yang berarti jumlah beban kendaraan mempengaruhi tingkat pencemarnya. Hubungan linier terlihat pada lokasi pengukuran Cimanggis, sedangkan hubungan berkebalikan terlihat pada lokasi pengukuran Terminal.Melalui identifikasi sumber, dapat disarankan suatu langkah pengendalian dan pengelolaan kualitas udara, dimana pengendalian lebih diarahkan pada perbaikan manajemen transportasi, yaitu pada debu lebih diarahkan pada kendaraan roda 4/lebih berbahan bakar diesel, sedangkan untuk kebisingan lebih diarahkan pada kendaraan roda 4 berbahan bakar bensin.

In a developing city like Depok, environmental management is needed, which air quality is one of them. Air quality management is needed both for prevention as well as an effort to decrease the existing air pollution. Based on the existing data of air quality for each year, the quantitative analysis was using parameter that is above the standard, which are dust that is above 230 _g/m³ and noise above 70 dB in Cimanggis and Terminal Depok. Analysis continued with validation by doing road side monitoring in Cimanggis and Terminal Depok on work days and week days, started in 07.00-09.00, 12.00-13.00 and 16.00-18.00, connected with their sources, which is vehicles load. Data analysis was made using linear regression equation with vehicles load as independent variable, and pollutant as dependent variable. Regression equation shows that there are positive and negative relationships between pollutant and its sources, which means that the quantity of vehicles influence the level of pollutant. Linear relationship showed in Cimanggis, and invers relationship showed in Terminal.Through identification of source pollution, it is suggested that air quality monitoring and management step by transportation management improvement, with dust pollution, need more attention in 4 or more wheel vehicles with solar fuel, and for noise pollution need more attention in 4 wheel vehicles with gas fuel."
Depok: Fakultas Teknik Universitas Indonesia, 2006
S35291
UI - Skripsi Membership  Universitas Indonesia Library
cover
Jakarta: Menteri Negara Kependudukan dan Lingkungan Hidup, 1988
344.046 IND k
Buku Teks  Universitas Indonesia Library
cover
Nevy Rinda Nugraini
"Dampak penting dari semburan Lumpur panas adalah pencemaran lingkungan salah satunya adalah kenaikan intensitas bau. Tujuan dari penelitian adalah untuk mengetahui konsentrasi H2S, persepsi masyarakat tentang gangguan kesehatan dari H2S, menghitung perkiraan risiko dan pencegahannya. Variabel penelitian adalah konsentrasi H2S, persepsi tentang gangguan kesehatan (iritasi mata, sakit kepala, dizzines, hyperpnoea, apnoea, asphyxia).
Pengumpulan data dilakukan dengan pengukuran langsung dan kuesioner. Pemilihan lokasi adalah purposive dan responden dengan simple random. Hasil dan pembahasan dari penelitian ini adalah konsentrasi H2S diatas bakumutu Kep-50/MENLH/11/1996. Uji Pearson Chi Square adalah Ҳ<0,05 antara konsentrasi H2S dengan iritasi mata, sakit kepala, dizzines dan hyperpnoea (Ҳ<0,05). Pajanan risiko tinggi sebesar 0?0,91 mgkg-1hari-1 (HQ 0- 1825,3) dan risiko rendah 0-0,0011 mgkg-1hari-1 (HQ 0-3,29). Pencegahan risiko dengan meningkatkan kondisi, nutrisi dan penggunaan APD.
Kesimpulan dan saran penelitian ini rata-rata konsentrasi H2S di atas 0,2 ppm. Karakterisasi risiko pajanan sebagaian besar adalah diatas dosis harian yang aman, untuk itu disarankan meningkatkan kondisi dan tidak sering kontak langsung pada sumber.

The major impacts of the Torrent of Hot Mud which happened in May 2006 in Sidoarjo are the changes in environment, social and economy. Another impact which has been identified is the increase of odor intensity which is suspected to be originated from an air pollutan H2S. A smelling disorder happened in which the intensity of odor is predicted to have caused the air pollution in areas surrounding the spewing of hot mud in Sidoarjo.
Based on the result of the test conducted by Ministry of Environmental (KLH), it is discovered there are a number pollutants the concentration which are above the standard quality of odor and H2S is one of them. H2S gas is a colorless gas with a strong odor similar to the smell of a rotten egg. A high concentration of H2S can react with tears and sweat resulting sulfuric acid and bring about impacts such as eyes and skin irritation. In addition, exposure to H2S with the concentration 0f 0,025?25 ppm in human requires human to use breathing aid. Problem this research is there isn?t environmental pollution for study of health risk mon environment.
Based on evaluation result of the acquired data, the topics of the destination in this research are 1) to find out about the concentration of H2S in the affected areas and to find out about the difference of H2S concentration in the areas with a high risk and the areas with a low risk, 2) to find out about perception of community about odor intensity 3) to find out about perception of community about health problems or not and whether there is a difference between concentration of H2S with the distribution 6 health problems and the duration of stay, age, education, income and job, 4) to calculation about the level of exposure from the pollutan indicator H2S, 5) to calculation about the level characterization of risk from the pollutan indicator H2S,6) to choice about alternative prevention and control. The variables of this research are H2S, distance from the center of torrent of the mud to the points of sampling location, the data on the 6 health problems (eyes irritation, headache, dizziness, asphyxia, apnea and hyperpnoea) which the community suffer and the data consisting of duration of stay, age, sex, education, job and income.
The data collection is conducted by direct measurement, and interview with a xii questionnaire. The calculation of exposure and risk characterization (hazard quotient (HQ)) is to determine the exposure level of the pollutan H2S. The selection of location for the research is based on the areas affected by purposive sampling. The size of sample is determined by the size of the population and 10% of trust level, and the selection of respondents is based on the simple random.
The data analysis is conducted to find out about the significant difference on the fourth problems. Result for this research is concentration of H2S in that location is above the standard quality as established by the decree of Kep-50/MENLH/11/1996 especially for Siring District, perception of community about health problems gotten there is different significant between concentration of H2S with eye irritation, headache, dizziness and hyperpnoea (Ҳ<0,05). Pollution of H2S not influence with losing of job, education and income. Risk assessment with a high risk had intake 0-0,91 mgkg-1day-1(HQ=0-1825,3) and area with a low risk had intake 0,0011 mgkg-1day-1. Average HQ score above from reference concentration. To control effort with wear self protection equipment, masks, glasses and avoiding frequent, direct contacts with the source.
Conclusion from this research are 1) The result of the analysis in the location with a low risk shows that the concentration of H2S in that location is above the standard quality as established by the decree of Kep-50/MENLH/11/1996, 2) perception of community in high risk area about smell of odor is seldom (57%) smell (57%) and in the low risk area is often (63%) strong of smell (76%), 3) Pearson Chi square test show there is significant difference in concentration of H2S with 4 health problems are eye irritation, headache, dizziness and hyperpnoea (Ҳ<0,05), 4) The calculation of the exposure score in the area with the highest risk is 0-0,91 mgkg- 1day-1 and in an area with a low risk it is 0, 0011 mgkg-1day-1, 5) the HQ score in a high risk is 0-1825,3 and in a low risk it is 0-3,29. In a high risk environment, it shows that the HQ score is much bigger than the HQ score in a low risk environment, 6) HQ score > 1 shows that there is a risk of health problems in the affected community. For the reason, it is necessary to carry out the alternative control effort both in areas with a high risk and in areas with a low risk with to wear self protection equipment, masks, glasses and avoiding frequent, direct contacts with the source and decides desease vector are to correct environment , quality of drinking and to correct immune of host. From the result and the discussion, the recommendation is: Regulatory of H2S had intake above reference concentration, avoid recommending re-investigate and necessary to integrated study of environment risk assessment."
Depok: Program Pascasarjana Universitas Indonesia, 2008
T24962
UI - Tesis Open  Universitas Indonesia Library
cover
Sulthan Alvin Faiz Bara Mentari
"Jalan Raya Daan Mogot-Pesing Kota Jakarta Barat merupakan jalan raya yang memiliki fungsi vital karena dikelilingi perumahan, industri, pasar, menghubungkan dua kota besar (Jakarta Barat dan Tanggerang), serta merupakan jalan raya yang memiliki titik konsentrasi PM2.5 tertinggi dengan 298 µg/m3 berdasarkan data IQair. Oleh karena itu, diperlukan sebuah penelitian yang dapat menganalisis risiko kesehatan terhadap masyarakat yang tinggal disekitarnya akibat pajanan PM2.5. Penelitian ini menggunakan metode ARKL dengan sampel udara pada 4 titik pengukuran dan sampel subjek sebanyak 96 responden. Pengambilan sampel udara menggunakan alat Dusttrak sedangkan pengambilan data sampel subjek dilakukan dengan wawancara. Berdasarkan hasil pengukuran PM2.5 pada 4 titik pengukuran, terdapat 3 titik yang konsentrasinya telah berada diatas baku mutu PP No.22 tahun 2021 pada titik 2 dengan 73,8 µg/m3, titik 3 dengan 57,2 µg/m3, dan titik 4 dengan 155,4 µg/m3. Berdasarkan hasil wawancara, didapatkan data rerata berat badan responden 59,5 kg, umur 44,5 tahun, waktu pajanan 24 jam/hari, frekuensi pajanan 350 hari/tahun, dan durasi pajanan 20 tahun. Intake realtime dan lifetime tertinggi berada pada titik 4 pengukuran dengan konsentrasi maksimum 0,03 mg/kg/hari dan 0,05 mg/kg/hari. RQ realtime dan lifetime tertinggi berada pada titik 4 dengan nilai maksimum 1,74 dan 2,61. Dibutuhkan manajemen risiko yang dapat menanggulangi titik dengan kategori berisiko diantaranya edukasi penggunaan masker, menanam tanaman penyaring debu dalam rumah, peningkatan gizi, serta penghijauan jalan raya.

Daan Mogot-Pesing road of West Jakarta is a highway that has a vital function because it is surrounded by housing, industry, markets, connects two big cities (West Jakarta and Tangerang), and is a highway that has the highest PM2.5 concentration point with 298 µg/m3 based on IQair data. Therefore, a study is needed that can analyze the health risks to the people who live around them due to PM2.5 exposure. This study used the EHRA method with air samples at 4 measurement points and a sample of 96 respondents. Air samples were taken using the Dusttrak tool while the subject sample data was collected by interview. Based on the results of PM2.5 measurements at 4 measurement points, there are 3 points whose concentrations are above the PP No. 22 of 2021 quality standards at point 2 with 73.8 µg/m3, point 3 with 57.2 µg/m3, and point 4 with 155.4 µg/m3. Based on the interview results, the average respondent's body weight was 59.5 kg, age 44.5 years, exposure time 24 hours/day, exposure frequency 350 days/year, and exposure duration 20 years. The highest realtime and lifetime intakes were at point 4 of measurement with a maximum concentration of 0.03 mg/kg/day and 0.05 mg/kg/day. The highest realtime and lifetime RQ is at point 4 with a maximum value of 1.74 and 2.61. Risk management is needed that can address points with risk categories including education on using masks, planting dust filter plants in the house, improving nutrition, and planting plants around the road."
Depok: Fakultas Kesehatan Masyarakat Universitas Indonesia, 2023
T-pdf
UI - Tesis Membership  Universitas Indonesia Library
cover
Anita Dwi Puspitasari
"Tujuan yaitu untuk mengetahui pola spasial pencemaran udara yang diakibatkan oleh PLTU dan PLTGU Muara Karang. Analisis yang digunakan adalah analisis keruangan hasil perhitungan Model Dispersi Gaussian untuk mengetahui semburan emisi PLTGU dan PLTU masing-masing parameter yaitu debu, NO2 dan SO2 pada enam hari pada bulan Juni dan Desember, selanjutnya hasil perhitungan tersebut ditampilkan dalam bentuk peta untuk mengetahui pola spasial pencemaran udara. Hasil penelitian menunjukkan bahwa pola pencemaran udara dari sumber PLTU dan PLTGU Muara Karang menunjukkan jangkauan dan nilai konsentrasi tiap parameter, berbeda-beda sesuai arah anginnya. Dalam kondisi atmosfer stabil, jangkauan emisi dari kedua sumber pencemar tersebut lebih jauh dibandingkan dalam kondisi atmosfer tidak stabil. Hasil analisis yaitu konsentrasi pencemar menurun sesuai dengan jaraknya. Kecamatan Taman Sari, Sawah Besar, Kemayoran, dan Tambora memiliki resiko paling tinggi terkena dampak pencemaran udara dari sumber PLTU dan PLTGU Muara Karang.

The objective of the study are to determines the spatial patterns of air pollution caused by Muara Karang Power Plant and Combined Cycle Power Plant. The analysis which used is spatial analysis of the calculated Gaussian Dispersion Model to find out bursts emissions of Combined Cycle Power Plant and power plant of each parameter that is dust, NO2 and SO2 on six days in June and December, then the calculation results are displayed in the form of a map to determine the spatial pattern of air pollution. The results showed that the pattern of air pollution from Muara Karang Power Plant and Combined Cycle Power Plant shows the range and concentration values of each parameter, varies according to wind direction. In stable atmospheric conditions, the range of pollutant emissions from both sources are more distant than in the unstable atmospheric conditions. The results of the analysis that pollutant concentration will be change in the air. Taman Sari, Sawah Besar, Kemayoran, and Tambora has a highest risk area affected by air pollution from Muara Karang Power Plant and Combined Cycle Power Plant."
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2011
S78
UI - Skripsi Open  Universitas Indonesia Library
cover
Fildzah Auliaul Haq
"Benzena merupakan cairan tidak berwarna yang memiliki bau khas dan bersifat toksik yang dapat terkonsentrasi di udara ambien sebagai zat pencemar udara. Salah satu penggunaan Benzena adalah menjadi unsur pokok pada bahan bakar di mana dia berperan sebagai bahan pengikat oktan dan anti-knock dengan konsentrasi 1-5 sehingga Benzena dapat terkonsentrasi udara dari gas buang kendaraan bermotor dan gas uap dari staisun pengisian bahan bakar. Penelitian ini dilakukan guna mengestimasi tingkat risiko kesehatan pajanan Benzena di udara terhadap siswa-siswi di SMPN 16 Bandung yang dekat dengan sumber pencemar Benzena. Penelitian dilakukan pada Mei-Juni 2017 dengan metode yang digunakan adalah Analisis Risiko Kesehatan Lingkungan ARKL. Dari penelitian didapatkan hasil konsentrasi Benzena di udara ambien memiliki rata-rata sebesar <0,316 mg/m3.

Benzene is a toxic colorless liquid which has sweet odor that can be concentrated in ambient air as pollutant. Benzene is used as constituent element in fuels which has function to bind octant and as anti knock with concentration of 1 5 , so that Benzene can be released to ambient air from vehicle exhaust gases and vapor gases from fueling stations. This study was conducted to estimate the health risk of exposure to air Benzene among the student at SMPN 16 Bandung which is located close to the source of pollutants Benzene. The study run during May June 2017 using Environmental Health Risk Analysis EHRA. The result showed that Benzene concentration in ambient air had average of <0,316 mg/m3.
"
Depok: Fakultas Kesehatan Masyarakat Universitas Indonesia, 2017
S68716
UI - Skripsi Membership  Universitas Indonesia Library
cover
Niken Hayudanti Anggarini
"ABSTRAK
Abu terbang adalah salah satu emisi dari PLTU berbahan bakar batu bara yang termasuk sebagai TENORM. Lepasan abu terbang sebagai TENORM dari industri pembangkit listrik berbahan bakar batu bara berpotensi terakumulasi di lingkungan dan meningkatkan laju dosis radiasi lingkungan. Laju dosis radiasi lingkungan di sekitar PLTU Labuan belum terukur padahal dengan mengetahui hal ini dapat menilai dampak negatif lepasan abu terbang pada risiko paparan radiasi eksternal di masyarakat. Tujuan dari penelitian ini adalah mengukur laju dosis radiasi lingkungan di sekitar PLTU Labuan dan menganalisis pengaruh radius pada laju dosis radiasi lingkungan. Metode penelitian adalah melakukan pengukuran laju dosis radiasi menggunakan alat surveymeter gamma dengan detektor NaI TI jenis eksploranium GR-135 plus. Pengukuran dilakukan sepanjang lokasi grid yang telah ditentukan sebelumnya. Grid mewakili radius dari PLTU, semakin jauh dari PLTU semakin luas grid pengukurannya, grid yang ditentukan adalah sebesar 1x1 km, 3x3 km, 5x5 km, 10x10 km, 15x15 km. Lebih lanjut, pengaruh radius pada laju dosis radiasi diuji menggunakan uji anova. Hasil pengukuran menunjukkan bahwa rata-rata laju dosis radiasi di sekitar PLTU Labuan sebesar 47,71 4,17 nSv/jam, masih lebih rendah jika dibandingkan rata-rata laju dosis radiasi gamma dari sumber terrestrial yang diterima masyarakat dunia berdasarkan data dari UNSCEAR sebesar 0,48 mSv/tahun 54,79 nSv/jam . Nilai ini juga masih di bawah rata-rata radiasi gamma di Pulau Jawa yang sebesar 0,46 mSv/tahun 52,51 nSv/jam . Penelitian ini juga menunjukkan bahwa radius memiliki pengaruh yang nyata pada laju dosis radiasi lingkungan. Kesimpulan penelitian ini adalah laju dosis radiasi di sekitar PLTU Labuan masih aman dan terdapat pengaruh radius pada rata-rata laju dosis radiasi.

ABSTRACT
Flying ash is one of the emissions from coal fired power plant which is included as TENORM. The fly ash discharge as TENORM from the coal fired power plant industry has the potential to accumulate in the environment and increase the dose rate of environmental radiation. Environmental radiation dose rate around Labuan Power Plant has not been measurable, whereas it can assess the negative impact of fly ash release on the risk of exposure to external radiation in the community. The purpose of this study is to measure the rate of environmental radiation doses around Labuan Power Plant and to analyze the effect of radius on the dose rate of environmental radiation. The research method is to measure radiation dose rate using gamma surveymeter with detector NaI TI type eksploranium GR 135 plus. Measurements are made along the predetermined grid locations. The grid represents the radius of the power plant, the specified grid are 1x1 km, 3x3 km, 5x5 km, 10x10 km, 15x15 km. Furthermore, effect of radius on the rate of radiation dose was tested using anova. The measurement results show that the average rate of radiation dose around PLTU Labuan is 47.71 4.17 nSv hour, still lower than the average rate of gamma radiation dose from terrestrial sources received by the world community based on data from UNSCEAR of 0.48 mSv year 54.79 nSv hr . This average is also below the average of gamma radiation in Java which is 0.46 mSv year 52.51 nSv hr . The study also showed that the radius had a noticeable effect on the dose rate of environmental radiation. The conclusion of this research is the rate of radiation dose around Labuan power plant is still safe and radius effect on average of environmental radiation dose rate aound Labuan Power Plant."
2017
T-Pdf
UI - Tesis Membership  Universitas Indonesia Library
cover
Fakultas Teknik Universitas Indonesia, 2005
S35116
UI - Skripsi Membership  Universitas Indonesia Library
<<   1 2 3 4 5 6 7 8 9 10   >>