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Contact Name
Praditya Sigit Ardisty Sitogasa
Contact Email
praditya.s.tl@upnjatim.ac.id
Phone
+6282233144099
Journal Mail Official
esec@upnjatim.ac.id
Editorial Address
DEPARTMENT OF ENVIRONMENTAL ENGINEERING FACULTY OF ENGINEERING Jl. Raya Rungkut Madya Gunung Anyar, Surabaya 60294
Location
Kota surabaya,
Jawa timur
INDONESIA
Environmental Science and Engineering Conference Proceeding
ISSN : 27986268     EISSN : 27986241     DOI : -
Environmental Science and Engineering Conference National Seminar Proceedings was created to be a medium that academics, practitioners and stakeholders can use to access various research results and literature published on this website. Proceedings of the National Environmental Science and Engineering Conference (ESEC) is a collection of papers or scientific articles that have been presented at the National Seminar on Environmental Science and Engineering Conference (ESEC) which is held regularly every year by the Environmental Engineering Study Program, UPN "Veteran" East Java. The scope is intentionally to recognises the complexity of issues and challenges in the Environmental Science and Engineering Areas. All scale of studies and analysis form environmental science to environmental engiinering, chemistry/chemical/biochemistry engineering, renewable energy, and industrial engineering to public health are welcomed.
Articles 132 Documents
Analisis Hubungan antar Parameter Pencemar Udara di Sekitar Pasar X menggunakan Metode Uji Korelasi pada Perangkat Lunak Minitab Okik Hendriyanto Cahyonugroho; Tri Karisma Wardhani
Prosiding ESEC Vol. 4 No. 1 (2023): Seminar Nasional (ESEC) 2023
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Abstract

Market is a place to conduct transactions in the form of buying and selling and provide the needs of both goods and services. In addition, the market also has many roles from the role for producers to development. In planning the placement of the market, the thing that needs to be considered is air quality. Therefore, in this study, air quality measurements were taken directly at three points around the market. The results of air quality measurements will be carried out a correlation test using minitab software to determine the relationship between pollutant parameters. Air quality parameters measured are Sulfur Dioxide (SO2), Carbon Monoxide (CO), Nitrogen Dioxide (NO2), Oxidant (O3) accordingly, Non-methane Hydrocarbons, Total Solid Particulates, Lead (Pb), PM 10, and PM 2.5. The measurement results of these air quality parameters still meet the quality standards according to PP No. 22 of 2021. There are four parameters with the same results at each measurement point, so the correlation test was carried out on parameters with different levels, namely Sulfur Dioxide (SO2), Total Solid Particulate (TSP), PM10, PM2.5, and Lead (Pb). Based on the results of the correlation test, it is found that the parameters that correlate with each other are PM10, PM2.5, and Total Solid Particulate Matter (TSP) parameters. In addition, the parameters of Lead (Pb) and Sulfur Dioxide (SO2) are also correlated with each other but not with other parameters.
Analisis Sebaran Emisi SO2 dan NOx Dari Cerobong Steam Boiler dan Genset PT X Menggunakan Pemodelan AERMOD Praditya Sigit Ardisty Sitogasa; Daffa Maulana Atthoriqh
Prosiding ESEC Vol. 4 No. 1 (2023): Seminar Nasional (ESEC) 2023
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Pemodelan Persebaran Emisi Udara di Kawasan Industri Pelabuhan Tanjung Perak Komang Kurniawan
Prosiding ESEC Vol. 4 No. 1 (2023): Seminar Nasional (ESEC) 2023
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The maritime industry in Indonesia is increasing every year, especially in the maritime service sector. Tanjung Perak Port is one of the areas in Surabaya whose operational activities focus on the maritime service sector. The operational activities of the maritime service sector produce emissions from both ship chimneys and chimneys resulting from the burning of raw materials for the maritime service industry. To find out directly the emissions produced, a test was carried out on the chimney at one of the maritime service sector companies. Measurements were made by testing the parameter concentration of SO2. From the measurement results obtained, it will be modeled into the aeromod software so that the distribution of emissions generated around the maritime service industry area can be known. After modeling it in the AERMOD software, the results show that the concentration of SO2 produced by the maritime service industry has been dispersid from a distance of 500 meters from the chimney resulting from the combustion of raw materials for the maritime service industry. With the results obtained, the solution to reduce the concentration of SO2 produced is to modify the chimney that produces emissions so that the emissions produced can be reduced and the emission distribution area can be reduced so that it does not have a wide impact on the surrounding area
Kajian Dampak Lingkungan pada Proses Produksi Pupuk NPK di PT. X Menggunakan Metode Life Cycle Assessment (LCA) Aprilia Ningrum
Prosiding ESEC Vol. 4 No. 1 (2023): Seminar Nasional (ESEC) 2023
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The fertilizer industry is one of the strategic sectors that can spur the national economy. This is because the fertilizer industry plays an important role in encouraging increased production in the agricultural sector which supports the national food security program in the future. NPK is a compound fertilizer consisting of several elements needed by plants including nitrogen, phosphorus and potassium. Broadly speaking, the process of making granulated NPK fertilizer consists of solid raw material feeding, slurry preparation, granulation process, drying and screening process, cooling and screening (cooling and screening), and coating (coating). Those who operate industrial activities will also have an impact on environmental changes such as the quality of water, soil and air. The Life Cycle Assessment (LCA) approach is an appropriate tool for analyzing to reduce pollution and environmental impacts during the product life cycle. In this study, the Open LCA 1.11.0 software was used. The purpose of this research is to determine the extent of the environmental impact of the LCA process by using a gate to gate approach in the production process. After knowing the magnitude of the resulting environmental impact, alternative improvements will be determined in order to reduce the amount of the resulting environmental impact.
ANALISIS PENGARUH BEBAN PENCEMAR TERHADAP KUALITAS UDARA AMBIEN DARI KEGIATAN PENGEMBANGAN UNIVERSITAS X DI KOTA SURABAYA Okik Hendriyanto Cahyonugroho; Disnanda Utamifa Jannahdita
Prosiding ESEC Vol. 4 No. 1 (2023): Seminar Nasional (ESEC) 2023
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ABSTRAK Kegiatan pengembangan yang terjadi di Universitas X berpotensi menimbulkan pencemaran udara. Tujuan penelitian ini yaitu untuk mengetahui pengaruh beban pencemar terhadap kualitas udara ambien di sekitar lokasi kegiatan menggunakan software SPSS 23. Metode analisis yang digunakan mengacu pada metode regresi linear sederhana. Hasil analisis menunjukkan bahwa nilai signifikasi < 5% yang artinya dugaan adanya pengaruh kualitas udara ambient di titik 2 terhadap kualitas udara ambient di titik 1 dapat diterima. Hasil lain menunjukkan cek koefisien determinasi antara kedua titik sebesar 99,6% artinya ada hubungan linear yang sangat kuat antara kualitas udara ambient titik 2 dengan jumlah kualitas udara titik 1 yang dihasilkannya. Dapat ditarik kesimpulan diantara data yang dianalisis yaitu kualitas udara ambient titik 1 dan titik 2 memiliki hubungan linear yang sangat kuat dan nilai parameter dari data tersebut masih memenuhi baku mutu berdasarkan Pergub Jatim No 10 tahun 2009. ABSTRACK Development activities that occur at X University have the potential to cause air pollution. The purpose of this study is to determine the effect of pollutant load on ambient air quality around the activity location using SPSS 23 software. The analysis method used refers to the simple linear regression method. The results of the analysis show that the significance value is <5%, which means that the alleged influence of ambient air quality at point 2 on ambient air quality at point 1 can be accepted. Other results show that the coefficient of determination check between the two points is 99.6%, meaning that there is a very strong linear relationship between the ambient air quality of point 2 and the amount of air quality of point 1 that it produces. It can be concluded between the data analyzed, namely the ambient air quality of point 1 and point 2, has a very strong linear relationship and the parameter values of the data still meet the quality standards based on East Java Governor Regulation No. 10 of 2009.
Analisis Tingkat Kebisingan Akibat Aktivitas Kerja pada PT. A Gresik dengan Menggunakan Program Software Surfer Rizka Novembrianto; Audyna Ayu Ramadhani
Prosiding ESEC Vol. 4 No. 1 (2023): Seminar Nasional (ESEC) 2023
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Operational activities at PT. A have potential in the noise caused by the use of company tools. This noise greatly affects the employee's comfort at work and the environment around the company when the noise level exceeds the threshold value of noise. The purpose of this research is to determine the noise level, analyze the source of noise and provide solutions or suggestions for the control of such noise. The research method is performed by direct observation of the object using the Sound Level Meter (SLM) at 3 specified points and recording every 5 seconds for 5 minutes with the data obtained in decibels of ampere (dBA). The data will then be processed using the Surfer Software. The measurement results showed the noise level of PT. A at 3 points, namely 44,9 dB(A), 44,82 dB (A) and 55,31 dB(A). In the noise barrier effort that can be done by PT. A is to perform maintenance of the work equipment in the company on a regular basis so that the level of noise does not exceed the quality standards and the use of hearing protection in the workers.
Simulasi Sebaran Emisi Udara CO dan NH3 Menggunakan AERMOD di TPA Jawa Timur Rania Ichdatunnisa
Prosiding ESEC Vol. 4 No. 1 (2023): Seminar Nasional (ESEC) 2023
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The landfill located in East Java produces air emissions in the form of TSP, Hg, CO, NOx and NH3 parameters from the incinerator chimney.. This study aims to test the Aermod model in predicting the distribution of CO and NH3 parameters at landfill in East Java. The quality standards used are listed in Government Regulation no. 22 of 2021 concerning Implementation of Environmental Protection and Management Attachment VII Ambien Air Quality Standards. By using Aermod View Software, dispersion simulation can be calculated. The data used in modeling the distribution of landfill in East Java 2013 – 2022, and Upper Air Met Data in Sidoarjo Regency from 2013 – 2022. So the results obtained are the CO parameter of 12.9 µg/m3, and the NH3 parameter of 0.024 µg/m3.
Jurnal Review: Pengaruh Perbedaan Jenis Sampah Organik Terhadap Pertumbuhan Larva Bsf (Black Soldier Fly) dan Kecepatan Penguraian Sampah Organik Restu Hikmah Ayu Murti; RATNA ENDAH DWI PUSPITASARI
Prosiding ESEC Vol. 4 No. 1 (2023): Seminar Nasional (ESEC) 2023
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Nowadays, waste production in Indonesia is increasing, one of which is organic waste. The utilization of BSF (Black Slodier Fly) larvae as an organic waste reducer is an alternative to reducing waste in Indonesia. This journal uses a qualitative descriptive method with a type of literature study (research study), namely collecting information through scientific articles related to the utilization of BSF larvae as organic waste reducers. This study aims to determine the effect of different types of organic waste reduced by BSF larvae on larval growth and organic waste reduction speed. BSF larvae can reduce various types of organic waste such as fruit waste, vegetable waste, animal meat, and even decomposing waste. The humidity and temperature of the larval growth medium is one of the factors that influence the speed of the organic waste reduction process by BSF larvae.
Indeks Kualitas Air Menggunakan Metode Indeks Pencemaran Pada Kawasan Industri di Jawa Timur Euis Nurul Hidayah; Aurelia Asilah Zahrah
Prosiding ESEC Vol. 4 No. 1 (2023): Seminar Nasional (ESEC) 2023
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Kawasan industri mengalami perkembangan berkat potensi sumber daya yang mendukung, mendorong pertumbuhan ekonomi lokal. Kualitas Air pada Effluent IPAL Kawasan Industri di Jawa Timur tergolong baik dengan rata-rata parameter COD sebesar 18,28 mg/L sedangkan rata-rata parameter TSS sebesar 11,06 mg/L dan memenuhi kriteria kualitas air kelas III. Pengujian kualitas air dilakukan melalui perbandingan nilai parameter kualitas air dengan standar mutu yang berlaku di kawasan industri. Hal ini dapat menyebabkan perbedaan pandangan tentang tingkat polusi pada setiap parameter. Penelitian ini dilakukan dengan tujuan untuk mengetahui tingkat polusi limbah salah satu kawasan industri Jawa Timur dengan menggunakan metode Perhitungan Indeks Pencemaran dan Uji Normalitas. Metode umum ini digunakan karena dapat menentukan tingkat pencemaran dengan penggunaan beberapa parameter dalam mewakili kondisi pencemaran air. Pengujian harian dilakukan di titik efluen IPAL kawasan industri dan dibandingkan dengan baku mutu yang tercantum dalam Peraturan Gubernur Jawa Timur Nomor 72 Tahun 2013. Parameter yang diuji adalah TSS dan COD sedangkan parameter lain digunakan untuk memonitor nutrisi lain penyebab kontaminasi. Dari hasil uji kualitas air ditemukan bahwa air tidak melebihi baku mutu, namun perlu dilakukan pemantauan lanjutan sebagai upaya pemantauan mutu air limbah yang akan dibuang ke badan air, mengingat meningkatnya aktivitas industri di kawasan industri tersebut.
Uji Model Aermod Terhadap Emisi di PT. X Jawa Timur Syadzadhiya Qothrunada Zakiyayasin Nisa; Diva Yanuar Pramana Putra
Prosiding ESEC Vol. 4 No. 1 (2023): Seminar Nasional (ESEC) 2023
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This study aims to test the AERMOD model in predicting the distribution of TSP, SO2, NOx, Hg parameters in PT. X East Java. The source of emissions produced comes from production process activities and supporting activities. By using AERMOD View Software, dispersion simulations can be calculated. The data used in modeling the distribution of emissions of PT. X is meteorological data (wind direction/speed, surface temperature, air humidity, atmospheric pressure, exposure to solar radiation, atmospheric cover, etc.), Hourly Surface Met Data in Sidoarjo Regency from 2013 – 2022, and Upper Air Met Data in Sidoarjo Regency from 2013 – 2022. So the results obtained are SO2 parameters of 3.47 ug / m3, NOx parameters of 17.8 ug / m3, TSP parameters of 2.310 ug / m3, parameters Hg of 0,0024 ug/m3