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PERAN KAJIAN LINGKUNGAN HIDUP STRATEGIS (KLHS) DALAM KEGIATAN PERIZINAN BERUSAHA DI INDONESIA Fajri, Muhammad Azizul; Asisti, Putri Ananda; Satria, Noval Dwi; Ahmadi, Fadhil; Iskandar; Wulandari
Causa: Jurnal Hukum dan Kewarganegaraan Vol. 8 No. 11 (2024): Causa: Jurnal Hukum dan Kewarganegaraan
Publisher : Cahaya Ilmu Bangsa

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.3783/causa.v8i11.7875

Abstract

Kajian Lingkungan Hidup Strategis (KLHS) merupakan instrumen penting dalam sistem perencanaan pembangunan di Indonesia yang bertujuan mengintegrasikan prinsip-prinsip keberlanjutan lingkungan ke dalam proses pengambilan keputusan strategis, termasuk dalam kegiatan perizinan berusaha. Penelitian ini menganalisis peran fundamental KLHS dalam menciptakan keseimbangan antara kepentingan pembangunan ekonomi dan pelestarian lingkungan hidup. Melalui pendekatan yuridis normatif, kajian ini menyelidiki kerangka hukum, implementasi, dan signifikansi KLHS dalam konteks perizinan berusaha di Indonesia. Hasil penelitian menunjukkan bahwa KLHS memiliki peran strategis dalam mencegah degradasi lingkungan, meminimalisasi risiko ekologis, dan mendorong pembangunan berkelanjutan. Kompleksitas implementasi KLHS mengungkapkan tantangan signifikan dalam koordinasi lintas sektor, kapasitas kelembagaan, dan penegakan hukum lingkungan.
Design and performance testing of a safety instrumented system for water level control simulator using plc with cause-effect matrix implementation Mujiyanti, Safira Firdaus; Ahmadi, Fadhil; Patrialova, Sefi Novendra; Adziimaa, Ahmad Fauzan; Wahyu Nugroho, Dwi Oktavianto; Nanta, Tepy Lindia
Jurnal Nasional Aplikasi Mekatronika, Otomasi dan Robot Industri (AMORI) Vol. 4 No. 1 (2025): July
Publisher : Faculty of Vocational Studies - Research Center, DRPM ITS

Show Abstract | Download Original | Original Source | Check in Google Scholar

Abstract

Safety Instrumented Systems (SIS) are widely employed in industrial settings to ensure operational safety and prevent system failures that could pose risks to the environment, personnel, and assets. This research presents the design of an SIS for a water level control system, utilizing Programmable Logic Control (PLC) to enhance safety and mitigate the risk of leakage or flooding. The SIS design is developed based on the Layers of Protection Analysis (LOPA) methodology, incorporating multiple protective layers, including water level measurement instruments, controllers, and final control elements to manage risk effectively. Following the LOPA-based design process, system testing was conducted using a cause-and-effect matrix to evaluate performance under various operational scenarios. The findings indicate that implementing SIS in water level control systems significantly enhances operational safety. In simulated test conditions, the SIS effectively detected potentially hazardous situations, such as excessive water levels that could lead to overflow or dangerously low levels that might disrupt process continuity. The system then executed appropriate mitigation measures, such as alerting operators or automatically shutting off water flow, to prevent accidents and equipment damage. The results demonstrate that integrating an SIS into water level control systems provides substantial benefits in managing operational risk, ensuring system reliability, and safeguarding industrial processes.