scholarly journals Kajian Sanitasi Lingkungan Pemukiman di Bantaran Sungai Musi Kota Palembang

2019 ◽  
Vol 18 (2) ◽  
pp. 67
Author(s):  
Inoy Trisnaini ◽  
Haerawati Idris ◽  
Imelda Gernauli Purba

Latar belakang: Budaya membangun rumah di bantaran sungai apabila tidak diiringi dengan pemeliharaan sanitasi lingkungan, berpotensi mengakibatkan pencemaran sungai. Kondisi ini juga dapat menghasilkan berbagai permasalahan sanitasi lingkungan pada permukiman di bantaran sungai oleh tingginya aktivitas di wilayah bantaran sungai serta buangan rumah tangga. Kondisi ini yang tampak di Kecamatan Sebrang Ulu I Kota Palembang Propinsi Sumatera Selatan. Sehingga tujuan penelitian ini ialah untuk mengkaji karakteristik sanitasi lingkungan pemukiman serta program dan kebijakan yang berlaku bagi pemukiman di bantaran Sungai Musi Kecamatan Sebrang Ulu I Kota Palembang.Metode: Penelitian ini menggunakan mix method, yaitu pengumpulan data dilakukan secara kuantitatif yaitu analisis spasial menggunakan Geographic Information System (GIS), serta kualitatif melalui observasi dan wawancara. Penelitian dilakukan di 6 Kelurahan di Kecamatan Sebrang Ulu I Kota Palembang, dengan sampel sebanyak 150 orang warga dan 13 orang informan yang berasal dari masing-masing kelurahan serta petugas dinas kesehatan.  Hasil:Kondisi sanitasi sumber air dan SPAL seluruh responden tidak memenuhi syarat kesehatan. Mayoritas jamban keluarga (96,7%) dan tempat penampungan sampah (92,7%) yang dimiliki responden dalam kondisi tidak memenuhi syarat kesehatan. Program penyehatan lingkungan pemukiman khususnya rumah sehat yang diterima oleh masyarakat yang tinggal di bantaran Sungai Musi ialah berupa kunjungan oleh petugas kesehatan setempat. Serta tidak adanya kebijakan terkait pemukiman di bantaran Sungai Musi Kecamatan Sebrang Ulu I Kota PalembangSimpulan: Masih buruknya kondisi sanitasi dasar di Pemukiman bantaran Sungai Musi di Kecamatan Sebrang Ulu I Kota Palembang, serta belum optimalnya program penyehatan lingkungan pemukiman yang telah dilakukan oleh petugas kesehatan setempat. ABSTRACTTitle: Study of Settlement Environmental Sanitation in The Bank Of Musi River, Palembang CityBackground: The culture of building houses on river banks if not accompanied by the maintenance of environmental sanitation could potentially cause pollution in the river, as well as generate various environmental sanitation problems in settlements along the riverbanks. This was due to the high level of activity in the river banks as well as household discharges, which disrupts the aesthetics and function of the river. This condition was also evident in the Sebrang Ulu I Subdistrict, Palembang City, South Sumatra Province.So the purpose of this study is to examine the sanitation characteristics of the residential environment and the programs and policies that apply to settlements on the banks of the Musi River, Sebrang Ulu I District, Palembang City.Methods: This study uses the mixed method. Data collection is carried out quantitatively, namely spatial analysis using Geographic Information System (GIS), a qualitative manner through observation and interviews. The study was conducted in 6 Outlands in Sebrang Ulu I Sub-District, Palembang City, with a sample of 150 residents and 13 informants from each of the outpatients and health service officers.Results: The sanitation conditions of water sources and SPAL all respondents did not meet health requirements. The majority of family latrines (96.7%) and garbage shelters (92.7%) owned by respondents in conditions do not meet health requirements. The program to restructure the residential environment, especially the healthy houses received by the people living on the banks of the Musi River, is in the form of visits by local health workers. The absence of policies related to settlements on the banks of the Musi River in the Sebrang Ulu I Sub-District, Palembang CityConclusions: The poor condition of basic sanitation in the settlements of the Musi River banks in the Sebrang Ulu I Sub-district, Palembang City, as well as the lack of optimal environmental sanitation programs that have been carried out by local health workers.

2005 ◽  
Vol 95 (12) ◽  
pp. 2180-2185 ◽  
Author(s):  
Marie Lynn Miranda ◽  
Jennifer M. Silva ◽  
M. Alicia Overstreet Galeano ◽  
Jeffrey P. Brown ◽  
Douglas S. Campbell ◽  
...  

2018 ◽  
Vol 2 (1) ◽  
pp. 45
Author(s):  
Fahmi Arif Kurnianto ◽  
Bejo Apriyanto ◽  
Elan Artono Nurdin ◽  
Fahrudi Ahwan Ikhsan ◽  
Rosmadi Bin Fauzi

Jember regency has several areas that are morphology of folding hills and mountain folds. The part of landslide prone zone is closely related to the slope of the slope. Areas with a sloping slope of more than 15º need attention to the possibility of a landslide disaster. Interconnection contacts with weathering of rocks, settlements and land cover also affect the landslide potential. The existence of Ijen Volcano that produces volcanic rock deposits that are generally not yet unified will increase the potential for landslides in Jember Regency. Landslide has occurred one of them on Gunung Gumitir Street which is the main route of Surabaya-Jember-Banyuwangi traffic. In May 2016 this street is hit by landslide, so the flow of traffic through this lane is paralyzed and must be diverted to a further path, which rotates to Situbondo City. The transfer of this pathway resulted in a loss to the local community and who crossed the path.The occurrence of landslide disaster shows that Jember Regency area is vulnerable and potentially return to landslide. Therefore there is a need for a solution to solve this problem. One solution to solve the problem is by utilizing Geographic Information System (GIS) application. The purpose of this research is to analyze zonation prone to landslide in jember district. The design of the research is Geographic Information System overlay analysis. This design combines several parameters in the determination of landslide-prone zones. This design combines several parameters in the determination of landslide-prone zones. The parameter used in this research is (1) land use, (2) topography, and (3) soil.Based on the research results, it can be known zone with highest to lowest vulnerability level. Zone with very high level of vulnerability is located in Panti sub-district, Sumberbaru, Sukorambi, Dyke, Silo and Jelbuk. The zones have similar characteristics that include (1) soil type of andosol, (2) clay texture, (3) uncompacted rock, (4) slope of 30⁰-40⁰ (steep and very steep), and (5) land use for settlements and plantations. Keyword: landslide disaster, jember regency, Geographic Information System


2018 ◽  
Vol 164 ◽  
pp. 01001
Author(s):  
Agung Alfiansyah ◽  
Anas Azhar

This paper aims to build a database that can be used as the most important part of a geographic information system by using data from reliable sources. Data collection is done through process scrapping on some official website of Indonesia government. In addition to collecting quantitative data of higher education, this paper also mapping geographically from the high level of existing in Indonesia. It is expected that this data will be able to help the community and government in observing and analyzing the quantity and distribution of universities. The result of this research is one database that is ready to be integrated in more complex geographic information system. In addition, the scrapping method used allows us to perform the upgrade of data that has been obtained previously.


10.1068/b2779 ◽  
2002 ◽  
Vol 29 (4) ◽  
pp. 589-606 ◽  
Author(s):  
Kyushik Oh ◽  
Yeunwoo Jeong

The authors' focus was to determine the usefulness of the fuzzy set approach in evaluating the urban residential environment, compared with the crisp (or Boolean) approach. Particular emphasis was placed upon the comparison of evaluation results produced by the two methods within a geographic information system (GIS). This comparison highlighted the advantages of the GIS-fuzzy set approach as follows. First, it was revealed that the fuzzy set approach could reduce excessive abstraction or exaggeration in environmental phenomena. Hence, without the loss of valuable information, more accurate decisionmaking can be rendered. Second, by integrating membership functions into GIS, greater efficiency of the entire evaluation process was achieved.


2018 ◽  
Vol 2 ◽  
pp. 223
Author(s):  
Humam Zarodi

<p>Erupsi Gunungapi Merapi tahun 2010 mengakibatkan banyak korban jiwa, kerusakan aset dan kerugian di berbagai bidang. Untuk meminimalkan korban jiwa, kerusakan dan kerugian, diperlukan upaya pengurangan risiko bencana (PRB). Salah satu upaya yang dilakukan adalah program desa bersaudara (<em>sister village</em>) yang digagas oleh Pemerintah Kabupaten Magelang melalui Badan Penanggulangan Bencana Daerah (BPBD). Program desa bersaudara ini bertujuan agar ada kepastian tempat pengungsian, mengurangi kesemrawutan proses pengungsian serta memudahkan pelayanan pengungsi. Program ini dapat memanfaatan Sistem Informasi Geografis/<em>Geographic Information System</em> (GIS) yang berbasis web (<em>WebGIS</em>). <em>WebGIS</em> mampu mendiseminasikan peta yang dihasilkan dalam program desa bersaudara, misalnya peta jalur evakuasi. Makalah ini bertujuan untuk mendiskripsikan pemanfataan <em>WebGIS</em> dalam mendukung program desa bersaudara, dengan mengambil kasus di Desa Ngargomulyo (desa rawan bencana) dan Desa Tamanagung (desa penyangga/ penerima pengungsi). Metodenya adalah memaparkan proses pemetaan jalur evakuasi. Proses penyusunan peta tersebut terbagi empat tahap:   survei lapangan, penyiapan data spasial, coding dan publikasi. Hasilnya adalah tampilan peta jalur evakuasi yang bisa diakses oleh siapapun tanpa menggunakan aplikasi GIS yang memudahkan masyarakat pengungsi, penerima pengungsi, pemerintah maupun parapihak, mengetahui asal pengungsi, jalur evakuasi dan titik pengungsian. Penelitian ini menyimpulkan bahwa pemetaan <em>WebGIS</em> dapat mendukung upaya PRB dengan keunggulan bisa dijangkau pengguna secara sangat luas.<strong></strong></p><p><strong>Kata kunci</strong>: desa bersaudara, <em>sister village</em>, pemetaan jalur evakuasi, <em>gis</em>, <em>webgis</em></p>


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