LESTARI, NINING (2025) RANCANG BANGUN SISTEM DAUR ULANG LIMBAH AIR WUDHU MENGGUNAKAN METODE FUZZY LOGIC. S1 thesis, Universitas Mercu Buana Jakarta.
|
Text (HAL COVER)
01 COVER.pdf Download (540kB) | Preview |
|
![]() |
Text (BAB I)
02 BAB 1.pdf Restricted to Registered users only Download (234kB) |
|
![]() |
Text (BAB II)
03 BAB 2.pdf Restricted to Registered users only Download (472kB) |
|
![]() |
Text (BAB III)
04 BAB 3.pdf Restricted to Registered users only Download (1MB) |
|
![]() |
Text (BAB IV)
05 BAB 4.pdf Restricted to Registered users only Download (693kB) |
|
![]() |
Text (BAB V)
06 BAB 5.pdf Restricted to Registered users only Download (226kB) |
|
![]() |
Text (DAFTAR PUSTAKA)
07 DAFTAR PUSTAKA.pdf Restricted to Registered users only Download (221kB) |
|
![]() |
Text (LAMPIRAN)
08 LAMPIRAN.pdf Restricted to Registered users only Download (138kB) |
Abstract
The escalating clean water crisis caused by groundwater quality degradation and local hydrological imbalance necessitates innovative solutions in water resource management. One untapped potential is ablution water waste, which, although relatively clean, is generally discarded without further processing. This study aims to design and develop a recycling system for ablution water waste using fuzzy logic and Internet of Things (IoT) technology integrated with the Blynk platform. The methodology involves simple filtration using natural materials such as silica sand, activated carbon, and zeolite, along with pH, TDS, and turbidity sensors to monitor water quality parameters. Data from the sensors are processed using fuzzy logic to evaluate the feasibility of the recycled water. The ESP32 microcontroller acts as the control center, integrated with the Blynk application, enabling real-time water quality monitoring. The research process includes prototype design, water parameter testing, and evaluation of the recycling system's effectiveness. Preliminary results show that the designed system can improve water quality in accordance with the standards set by the Indonesian Ministry of Health Regulation No. 492/MENKES/PER/IV/2010. The recycled water can be reused for non-potable purposes such as ablution, cleaning, or light irrigation. The implementation of this technology is expected to provide a sustainable solution to address the clean water crisis in mosques or other places of worship. Keywords: ablution water, fuzzy logic, IoT, water recycling, Blynk, ESP32. Krisis air bersih yang semakin meningkat akibat degradasi kualitas air tanah dan ketidakseimbangan hidrologi lokal memerlukan solusi inovatif dalam pengelolaan sumber daya air. Salah satu potensi yang belum dimanfaatkan secara optimal adalah limbah air wudhu, yang meskipun relatif bersih, umumnya langsung dibuang tanpa pengolahan lebih lanjut. Penelitian ini memiliki tujuan untuk merancang dan mengembangkan sistem daur ulang limbah air wudhu berbasis metode fuzzy logic dan Internet of Things (IoT) menggunakan platform Blynk. Metodologi yang digunakan pada project ini ialah sistem filtrasi air sederhana dengan menggunakan bahan alami seperti pasir silika, karbon aktif, dan zeolit, serta pemanfaatan sensor pH, TDS, dan kekeruhan sebagai parameter kualitas air. Data dari sensor diproses menggunakan metode fuzzy logic untuk mengevaluasi kelayakan air hasil filtrasi. Mikrokontroler ESP32 digunakan sebagai pusat kendali yang terintegrasi dengan aplikasi Blynk, memungkinkan pemantauan kualitas air secara real-time. Proses penelitian mencakup perancangan prototipe, pengujian parameter air, serta evaluasi efektivitas sistem daur ulang. Hasil awal menunjukkan bahwa sistem yang dirancang mampu meningkatkan kualitas air sesuai standar Permenkes RI Nomor 492/MENKES/PER/IV/2010. Air hasil daur ulang dapat digunakan kembali untuk keperluan nonkonsumtif seperti berwudhu, mencuci, atau irigasi ringan. Penerapan teknologi ini diharapkan dapat menjadi solusi berkelanjutan dalam mengatasi krisis air bersih di lingkungan masjid atau tempat ibadah lainnya. Kata Kunci: air wudhu, fuzzy logic, IoT, daur ulang air, Blynk, ESP32
Actions (login required)
![]() |
View Item |