cover
Contact Name
Alfan Hadi
Contact Email
alvanibra70@gmail.com
Phone
+6287835553491
Journal Mail Official
pgmialaminjournal@gmail.com
Editorial Address
Jl. TGH Abdul Karim Gersik-Kediri-Lombok Barat-NTB
Location
Kab. lombok barat,
Nusa tenggara barat
INDONESIA
Jurnal Pendidikan Guru Madrasah Ibtidaiyah Al-Amin
ISSN : 29860946     EISSN : 28298276     DOI : https://doi.org/10.54723/ejpgmi.v2i2
Jurnal Pendidikan Guru Madrasah Ibtidaiyah Al-Amin adalah Jurnal Pendidikan dan Pembelajaran Dasar berisi tulisan tentang gagasan konseptual, kajian dan penerapan teori, penulisan praktis, dan hasil penelitian pendidikan dan pengajaran sekolah dasar. Jurnal Pendidikan Guru Madrasah Ibtidaiyah Al-Amin menjadi wadah bagi peneliti, guru, dosen dan pemerhati pendidikan. Jurnal ini diterbitkan dua kali per tahun yaitu bulan April dan Oktober.
Arjuna Subject : Umum - Umum
Articles 182 Documents
Evaluasi Karakter Agronomi Mutan Putatif Bawang Putih Generasi Mv2 Hasil Iradiasi Gamma Pada Dataran Tinggi Utin Winarni; Dini Dinarty; Fahrudin Arfianto
Jurnal Pendidikan Guru Madrasah Ibtidaiyah Al-Amin Vol. 5 No. 1 (2026): April
Publisher : STAI AL-AMIN

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.54723/ejpgmi.v5i1.697

Abstract

Garlic has a narrow diversity because it is propagated vegetatively. Mutation breeding can be used to produce diversity in a short time but has the disadvantage of randomness and instability of genetic traits that appear in the next generation. The purpose of this study was to evaluate the agronomic characters and to obtain the MV3 generation garlic putative mutants which have better adaptability to highland areas with better performance. The planting material used was MV2 generation garlic in the form of bulbil and cloves from single technique gamma ray irradiation (Acute Irradition). The garlic genotypes used were Lumbu Kuning, Ciwidey and Tawangmangu Baru. Clove planting material at LD50 and doses above LD50, bulbil LD20. The dosage levels used for cloves were: Tawangmangu Baru 8 Gy (LD50) and wild type (control), Lumbu Kuning 10 Gy and wild type (control), Ciwidey 6 Gy (LD50), 8 Gy (dose above LD50) and wild type ( control). Dosage levels for bulbil: Ciwidey 1.75 Gy and Tawangmangu Baru 0.5 Gy. The results showed that the CWS 8 Gy and LKS 10 Gy mutants had higher number of cloves and tuber weight than the control. Varigata was present only in the CWS 8 Gy mutant. Analysis of the main components of the quantitative and qualitative properties of garlic was reduced to 8 main components.
Evaluasi Implementasi Pengelolaan Limbah Bahan Berbahaya dan Beracun (B3) Jenis Sludge oil pada Industri Pengolahan Minyak Bumi Berdasarkan Regulasi Lingkungan Hadarianto Dio Febrianto Nainggolan; Tastaptyani Kurnia Nufutomo; Thariq Miswary
Jurnal Pendidikan Guru Madrasah Ibtidaiyah Al-Amin Vol. 5 No. 1 (2026): April
Publisher : STAI AL-AMIN

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.54723/ejpgmi.v5i1.698

Abstract

The implementation of hazardous and toxic waste (B3) management in the petroleum refining industry requires a systematic approach to control potential environmental risks from waste generation to its utilization or transfer to licensed waste management facilities. One type of hazardous waste requiring special management is Sludge oil, a residue generated from tank cleaning and storage tank maintenance activities that contains hydrocarbons and other hazardous compounds. This study aimed to evaluate the implementation of Sludge oil hazardous waste management at PT X based on Government Regulation No. 22 of 2021 and the Regulation of the Minister of Environment and Forestry No. 6 of 2021. A descriptive qualitative approach was employed through field observations, interviews with personnel involved in waste management, document reviews, and implementation evaluation at each stage of the waste management process. The evaluation covered waste identification and characterization, packaging, temporary storage, transportation, transfer to licensed third parties, and waste utilization. The results showed that the Sludge oil management system was implemented sequentially in accordance with the company's operational procedures, beginning with waste characterization based on oil content to determine the appropriate management method, followed by temporary storage in jumbo bags at the hazardous waste temporary storage facility, transportation by licensed transporters, and utilization by authorized third parties as alternative fuel and alternative material. During the period of July–December 2025, a total of 2,806.81 tons of Sludge oil waste was generated, of which 2,762.61 tons were transferred to licensed waste management facilities, while the remaining waste was temporarily stored in accordance with the company's operational procedures. The evaluation indicated that the implementation of Sludge oil waste management complied with the technical and administrative requirements stipulated in the applicable environmental regulations. These findings provide an overview of the implementation of a structured Sludge oil waste management system in the petroleum refining industry.