단순한 폐기물 처리를 넘어, 선택적 분리와 통합 회수 기술로 산업폐기물 속 금속과 소재의 가치를 극대화합니다.
OUR TECHNOLOGY
Spent CatalystEV Battery & Black MassAluminum DrossHTO Air Pollution Control
01
SPENT CATALYST
From Partial Recovery to Total Resource Recovery
폐촉매 통합 자원 회수
Conventional processes typically recover only molybdenum and vanadium, leaving hazardous secondary by-products and disposal costs. MONOTECH selectively recovers Mo, V, Ni and alumina to maximize resource value while minimizing residual waste.
Spent batteries are dismantled and crushed, then separated into black mass and plastics. Hydrometallurgical extraction and crystallization recover nickel and cobalt compounds for renewed battery-material applications.
From Reactive Residue to Specialty Aluminium Hydroxide
알루미늄 드로스의 고부가가치 소재 전환
SJ MONOTECH applies a wet-chemical, low-temperature process to recover residual aluminium and convert the aluminium-bearing fraction of secondary dross into ultra-white and ultra-fine aluminium hydroxide. The integrated route is supported by one year of demonstration operation, actual product production, quality analysis and export experience.
High-Temperature Oxidation for VOC, Odor and Hazardous Organic Gas Control
고온 와류 연소를 이용한 대기오염물질 처리
Developed and patented by ECOPLANTECH, HTO is a high-efficiency thermal oxidation system for VOCs, hydrocarbons, carbon monoxide, aldehydes, PAHs and odorous organic compounds. MONOTECH combines this technology with industrial-waste recycling and international project-development capabilities for applications across the GCC, MENA and Africa.
One-year demo operation with actual product production and export experience.
02Low-temperature route
Wet-chemical processing designed to avoid the high energy demand of conventional pyrometallurgy.
03Higher-value products
Ultra-white and ultra-fine aluminium hydroxide, with specialty alumina development pathways.
04Commercial scale-up
Modular 15,000 t/y dry-dross facility concept based on demonstration operating data.
AIR POLLUTION CONTROL TECHNOLOGY
HTO Vortex Combustion
A patented high-temperature oxidation platform designed around the three fundamentals of complete combustion: temperature, residence time and turbulence.