Industrialisasi adalah model pembangunan alternatif yang diperlukan oleh suatu negara untuk memacu proses ekonomi. Selain menyebabkan percepatan ekonomi, pembangunan industrialisasi juga memberikan dampak yang perlu diwaspadai salah satunya keberadaan limbah B3 hasil industri. Limbah B3 industri merupakan salah satu sumber pencemaran lingkungan yang potensial. Limbah B3 industri berpotensi menimbulkan risiko terhadap lingkungan dan dampak kesehatan bagi manusia. Pengelolaan limbah B3 industri sangat erat kaitannya dengan aspek kesehatan dan lingkungan. Menyadari banyaknya permasalahan terkait pengelolaan limbah B3 dari kegiatan industrialisasi, perlu dilakukannya pembaharuan konsep-konsep pengelolaan limbah B3 yang bersifat menyeluruh, terpadu dan berkelanjutan, serta pembuatan program yang cermat dan praktis oleh pemangku kepentingan untuk mengurangi potensi dampak paparan limbah B3 ke manusia dan lingkungan. Penelitian ini merupakan kajian literatur yang membahas kondisi pengelolaan limbah B3 industri yang terjadi saat ini serta potensi dampak limbah B3 industri bagi kesehatan dan lingkungan.
The article describes a concept of health and safety to conduct research in Nanomaterial Laboratory in Two Public University in Malang, East Java, Indonesia. The utilization of nanomaterials in the world of education has been done in two universities in Malang, namely Malang State University and Brawijaya University. The nanomaterial laboratory as a means for research and development of nanomaterial science that often creates hazards and risks of work accidents for its users, but things that are often not realized. Dangers and risks of work accidents caused by the absence of standards. This research focuses on hazards and accidents in the nanomaterial laboratory using the HIRA (Hazard Identification and Risk Assessment) method, which is then followed by a variety of independent variables. The population in this study were nanomaterial researchers at two universities in Malang. Based on the results of trials between respondents 'competency expertise with the level of risk of workplace accidents in the nanomaterial laboratory obtained p- value 0.00 (<0.05), meaning that there is a significant relationship between the respondents' scientific conservation and the level of work accident risk in the nanomaterials laboratory. Furthermore, the results of the study were also obtained between the research respondents with the level of risk of work accidents in the nanomaterial laboratory with a p-value of 0.00 (<0.05), meaning that there was a significant correlation between the respondent's research experience and the level of work accident risk in the nanomaterial laboratory.
<p style="margin-bottom: 0.04in; line-height: 0.17in; orphans: 0; widows: 0;" lang="en-US">The article describes a concept of health and safety to conduct research in Nanomaterial Laboratory in Two Public University in Malang, East Java, Indonesia. The utilization of nanomaterials in the world of education has been done in two universities in Malang, namely Malang State University and Brawijaya University. The nanomaterial laboratory as a means for research and development of nanomaterial science that often creates hazards and risks of work accidents for its users, but things that are often not realized. Dangers and risks of work accidents caused by the absence of standards. This research focuses on hazards and accidents in the nanomaterial laboratory using the HIRA (Hazard Identification and Risk Assessment) method, which is then followed by a variety of independent variables. The population in this study were nanomaterial researchers at two universities in Malang. Based on the results of trials between respondents 'competency expertise with the level of risk of workplace accidents in the nanomaterial laboratory obtained p- value 0.00 (<0.05), meaning that there is a significant relationship between the respondents' scientific conservation and the level of work accident risk in the nanomaterials laboratory. Furthermore, the results of the study were also obtained between the research respondents with the level of risk of work accidents in the nanomaterial laboratory with a p-value of 0.00 (<0.05), meaning that there was a significant correlation between the respondent's research experience and the level of work accident risk in the nanomaterial laboratory.</p>
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