• 제목/요약/키워드: chlorinated aliphatic

검색결과 21건 처리시간 0.028초

Development and Application of an In Situ Technology to Treat Various Soil and Groundwater Contaminants

  • Goltz, Mark N.
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2003년도 International Symposium
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    • pp.89-110
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    • 2003
  • 최근 현장(In situ)에서의 토양 및 지하수 오염 정화는 오염물질을 현장에서 추출해 지상에서 처리하는 것이 아니라, 직접 현장에서 미생물 혹은 화학물질과 오염물질의 혼합을 통한 분해기 작을 이용해, 오염물질을 제거하는 과정을 의미한다. 이러한 현장오염정화 기법 중 하나가 Figure 1에 도시한 수직흐름처리정(Horizontal Flow Treatment Wells, HFTWs)으로 2개의 정(well) 중간지점에 반응물질을 설치한 후 각각의 정에서 상향 및 하향흐름을 발생시켜 주위의 지하수를 순환시키면서 정화하는 기법이다.

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Field Studios of In-situ Aerobic Cometabolism of Chlorinated Aliphatic Hydrocarbons

  • Semprini, Lewts
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2004년도 총회 및 춘계학술발표회
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    • pp.3-4
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    • 2004
  • Results will be presented from two field studies that evaluated the in-situ treatment of chlorinated aliphatic hydrocarbons (CAHs) using aerobic cometabolism. In the first study, a cometabolic air sparging (CAS) demonstration was conducted at McClellan Air Force Base (AFB), California, to treat chlorinated aliphatic hydrocarbons (CAHs) in groundwater using propane as the cometabolic substrate. A propane-biostimulated zone was sparged with a propane/air mixture and a control zone was sparged with air alone. Propane-utilizers were effectively stimulated in the saturated zone with repeated intermediate sparging of propane and air. Propane delivery, however, was not uniform, with propane mainly observed in down-gradient observation wells. Trichloroethene (TCE), cis-1, 2-dichloroethene (c-DCE), and dissolved oxygen (DO) concentration levels decreased in proportion with propane usage, with c-DCE decreasing more rapidly than TCE. The more rapid removal of c-DCE indicated biotransformation and not just physical removal by stripping. Propane utilization rates and rates of CAH removal slowed after three to four months of repeated propane additions, which coincided with tile depletion of nitrogen (as nitrate). Ammonia was then added to the propane/air mixture as a nitrogen source. After a six-month period between propane additions, rapid propane-utilization was observed. Nitrate was present due to groundwater flow into the treatment zone and/or by the oxidation of tile previously injected ammonia. In the propane-stimulated zone, c-DCE concentrations decreased below tile detection limit (1 $\mu$g/L), and TCE concentrations ranged from less than 5 $\mu$g/L to 30 $\mu$g/L, representing removals of 90 to 97%. In the air sparged control zone, TCE was removed at only two monitoring locations nearest the sparge-well, to concentrations of 15 $\mu$g/L and 60 $\mu$g/L. The responses indicate that stripping as well as biological treatment were responsible for the removal of contaminants in the biostimulated zone, with biostimulation enhancing removals to lower contaminant levels. As part of that study bacterial population shifts that occurred in the groundwater during CAS and air sparging control were evaluated by length heterogeneity polymerase chain reaction (LH-PCR) fragment analysis. The results showed that an organism(5) that had a fragment size of 385 base pairs (385 bp) was positively correlated with propane removal rates. The 385 bp fragment consisted of up to 83% of the total fragments in the analysis when propane removal rates peaked. A 16S rRNA clone library made from the bacteria sampled in propane sparged groundwater included clones of a TM7 division bacterium that had a 385bp LH-PCR fragment; no other bacterial species with this fragment size were detected. Both propane removal rates and the 385bp LH-PCR fragment decreased as nitrate levels in the groundwater decreased. In the second study the potential for bioaugmentation of a butane culture was evaluated in a series of field tests conducted at the Moffett Field Air Station in California. A butane-utilizing mixed culture that was effective in transforming 1, 1-dichloroethene (1, 1-DCE), 1, 1, 1-trichloroethane (1, 1, 1-TCA), and 1, 1-dichloroethane (1, 1-DCA) was added to the saturated zone at the test site. This mixture of contaminants was evaluated since they are often present as together as the result of 1, 1, 1-TCA contamination and the abiotic and biotic transformation of 1, 1, 1-TCA to 1, 1-DCE and 1, 1-DCA. Model simulations were performed prior to the initiation of the field study. The simulations were performed with a transport code that included processes for in-situ cometabolism, including microbial growth and decay, substrate and oxygen utilization, and the cometabolism of dual contaminants (1, 1-DCE and 1, 1, 1-TCA). Based on the results of detailed kinetic studies with the culture, cometabolic transformation kinetics were incorporated that butane mixed-inhibition on 1, 1-DCE and 1, 1, 1-TCA transformation, and competitive inhibition of 1, 1-DCE and 1, 1, 1-TCA on butane utilization. A transformation capacity term was also included in the model formation that results in cell loss due to contaminant transformation. Parameters for the model simulations were determined independently in kinetic studies with the butane-utilizing culture and through batch microcosm tests with groundwater and aquifer solids from the field test zone with the butane-utilizing culture added. In microcosm tests, the model simulated well the repetitive utilization of butane and cometabolism of 1.1, 1-TCA and 1, 1-DCE, as well as the transformation of 1, 1-DCE as it was repeatedly transformed at increased aqueous concentrations. Model simulations were then performed under the transport conditions of the field test to explore the effects of the bioaugmentation dose and the response of the system to tile biostimulation with alternating pulses of dissolved butane and oxygen in the presence of 1, 1-DCE (50 $\mu$g/L) and 1, 1, 1-TCA (250 $\mu$g/L). A uniform aquifer bioaugmentation dose of 0.5 mg/L of cells resulted in complete utilization of the butane 2-meters downgradient of the injection well within 200-hrs of bioaugmentation and butane addition. 1, 1-DCE was much more rapidly transformed than 1, 1, 1-TCA, and efficient 1, 1, 1-TCA removal occurred only after 1, 1-DCE and butane were decreased in concentration. The simulations demonstrated the strong inhibition of both 1, 1-DCE and butane on 1, 1, 1-TCA transformation, and the more rapid 1, 1-DCE transformation kinetics. Results of tile field demonstration indicated that bioaugmentation was successfully implemented; however it was difficult to maintain effective treatment for long periods of time (50 days or more). The demonstration showed that the bioaugmented experimental leg effectively transformed 1, 1-DCE and 1, 1-DCA, and was somewhat effective in transforming 1, 1, 1-TCA. The indigenous experimental leg treated in the same way as the bioaugmented leg was much less effective in treating the contaminant mixture. The best operating performance was achieved in the bioaugmented leg with about over 90%, 80%, 60 % removal for 1, 1-DCE, 1, 1-DCA, and 1, 1, 1-TCA, respectively. Molecular methods were used to track and enumerate the bioaugmented culture in the test zone. Real Time PCR analysis was used to on enumerate the bioaugmented culture. The results show higher numbers of the bioaugmented microorganisms were present in the treatment zone groundwater when the contaminants were being effective transformed. A decrease in these numbers was associated with a reduction in treatment performance. The results of the field tests indicated that although bioaugmentation can be successfully implemented, competition for the growth substrate (butane) by the indigenous microorganisms likely lead to the decrease in long-term performance.

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토지이용에 따른 울산지역 지하수의 VOCs 함량 특성 (Concentrations of VOCs in Groundwater Associated with Land Uses in Ulsan Area)

  • 윤욱;조병욱
    • 자원환경지질
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    • 제37권6호
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    • pp.613-629
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    • 2004
  • 울산지역 지하수의 VOCs 함유 실태와 자연적 저감의 진행을 고찰하기 위해 168개 지하수 관정을 선정하여 유기오염 관련 연구를 수행하였다. 유기오염물에 의한 지하수 오염은 토지이용과 밀접한 관계가 있기 때문에 168개 지하수시료를 농업지역, 산림지역, 공업지역 및 주거 상업지역으로 구분하여 해석하였다. 지하수의 VOCs 분석결과 총 168개 중 65개 지하수에서 1개 성분 이상의 휘발성유기화합물이 검출되었다. 분석항목은 미국지질조사소 NAWQA프로그램에서 선정한 36개의 할로겐지방족 탄화수소와 25개 성분의 석유탄화수소(BTEX등 방향족 탄화수소와 MTBE포함)로 구성된다. 석유탄화수소는 26개 관정의 지하수에서 12개 성분이 검출되었으나 MTBE를 제외하고는 $1.5{\mu}g/L$미만의 낮은 농도를 나타내고 있다. 할로겐지방족 탄화수소는 63개관정의 지하수에서 검출되었으며, 검출된 성분은 11개 성분의 메탄류, 6개 성분의 에탄류, 6개 성분의 에텐류로 구성된다. 그중 메탄류는 $ND\~330{\mu}g/L$의 분포를 보이고, 에탄류는 $ND\~84{\mu}g/L$의 범위를 보이며, DCA, CA등은 $ND\~19{\mu}g/L$ 농도를 보인다. 에텐류는 $ND\~62{\mu}g/L$의 범위를 보이며, PCE, TCE 및 그 분해물들은 $ND\~62{\mu}g/L$의 농도를 보인다. 연구지역은 대부분이 호기성/탈질지대 및 $Fe^{3+}$ 지대로 구성되어 대부분의 방향족탄화수소는 분해가 잘되는 환경이나 염소계지방족 탄화수소는 대부분 생분해 반응이 서서히 일어나는 환경에 해당한다.

QSAR방법을 이용한 CAHs와 Chlorophenol 유도체에 대한 $EC_{50}$값 예측 (Prediction of $EC_{50}$ of Photobacterium phosphoreum for CAHs and Chlorophenol Derivatives Using QSAR)

  • 이홍주;유승오;이정건;김병용;전억한
    • 한국미생물·생명공학회지
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    • 제27권1호
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    • pp.54-61
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    • 1999
  • Measurement of inhibition of bioluminescence in Photobacterium phosphoreum has been porposed as a sensitive and rapid procedure to monitor toxic substances. However, at first, $EC_{50}$ which shows degree of toxicity to each toxic substances must be calculated. QSAR (Quantitative Structure Activity Relationship) model can be used to estimate $EC_{50}$ to save time and endeavor. Moderately high correlation coefficients ($r^2{\geq}$ 0.97) were calculated from the linear correlation between $EC_{50}$ and molecular connectivity indices of CAHs (chlorinated aliphatic hydrocarbons)such as $^0X$, $^0X^V$, $^1X$, $^2X$ and $^3X^v_c$ and quadratic correlation between $EC_{50}$ and $^0X$, $^0X^V$, $^2X^V$, $^3X_c$, $^3X^V_c$ and P. It shows that the molecular connection indices in carbon structure is contributed to biological characters with linear relation and that in the other one with quadratic relation. The $EC_{50}$ of chlorophenol derivatives had quadratic relation with the value of octanol/water prtition coefficients ($r^2$=0.99) and linear and quadratic relation with the number of chlorine compound (($r^2{\geq}$0.94). This confirms the already known trend of increasing toxicity with increasing ability of a compound to diffuse through cell membrane and number of chlorine substitution.

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포항과 구미의 대규모 산단지역 대기 중 휘발성 유기화합물 농도 분포 특성에 관한 연구 (Characterization of Atmospheric Concentrations of Volatile Organic Compounds in Industrial Areas of Pohang and Gumi Cities)

  • 백성옥;김수현;김미현
    • Environmental Analysis Health and Toxicology
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    • 제20권2호
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    • pp.167-178
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    • 2005
  • This study was carried out to evaluate the temporal, spatial, and seasonal variations of VOC, and to characterize the VOC concentrations in two large industrial complexes located in Pohang and Gumi cities. Twenty -four hours continuous sampling of selected VOC was made with STS 25 sequential tube samplers and double-bed adsorbent tubes. Air samples were collected every three hour interval for 7 consecutive days in each site during summer and winter. VOC were determined by thermal desorption coupled with GC/MS. A total of 27 VOCs of environmental concern were determined, including aliphatic, aromatic and halides. Generally. concentrations of toxic VOC were higher in Gumi than Pohang, and VOC levels in industrial areas were typically several-fold higher than those in residential areas. The most abundant VOC appeared to be toluene for both cities. However, chlorinated VOC were higher in Gumi than Pohang, while aromatic VOC were more abundant in Pohang than in Gumi. Two cities showed relatively different variations of VOC concentrations within a day. It is likely that traffic related sources are major factors affecting the VOC in Pohang, and industrial solvents usages are important sources in Gumi. These results imply that the occurrence and levels of atmospheric VOC are strongly dependent on the type of industries in each city. Therefore, in order to develop any control strategies or to establish the priority rankings for VOC in large industrial complexes, the type of industries and the occurrence of VOC in the atmosphere should be taken into consideration.

혼합조건에서의 CAH 화합물 분해 특성에 관한 연구 (CAH degradation characteristics under mixed conditions)

  • 김종호;배우근;심호재;신언빈
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2001년도 총회 및 춘계학술발표회
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    • pp.214-217
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    • 2001
  • 자연계에서는 오염물질이 단일물질로 존재하기보다는 혼합물로 존재하는 것이 대부분이다. 본 연구에서는 지하수 오염물질 chlorinated aliphatic hydrocarbon(CAH)들 중 trichloroethylene(TCE), vinyl chloride(VC)에 대해서 Fe$^{\circ}$와 함께 미생물, 활성탄을 이용하여 단일물질 및 혼합물질상태에서 그 분해특성을 살펴보았다. 실험은 120$m\ell$ serum bottle을 이용하여 단일물질 및 혼합물질상태에서 그 분해특성을 살펴보았다. 실험은 120$m\ell$ serum bottle을 이용하였고 headspace 50${\mu}\ell$를 GC에 주입하여 각 오염물질 농도를 분석하였으며, Fe$^{\circ}$, Fe$^{\circ}$+ cell, Fe$^{\circ}$+ 활성탄 3가지 조건에서 TCE (25${\mu}\ell$)가 단일화합물 또는 VC(10$\mu\textrm{m}$)와 혼합화학물로 존재시 분해특성을 조사하였다. 단일화합물로 존재시 2시간후 TCE농도 측정 결과 Fe$^{\circ}$만을 이용하였을 때보다 활성탄, Cell을 함께 이용하였을 경우 그 분해율이 각각 1.6배, 1.8배 높게 나타났다. 그러나, VC와 혼화합물로 존재시 TCE 분해율은 단일 화합물로 존재시와 비교 Fe$^{\circ}$, Fe$^{\circ}$+ 활성탄, Fe$^{\circ}$+ cell 조건에서 각각 63%, 28%, 5%로 나타났다. VC는 Fe$^{\circ}$만으로는 분해가 되지 않았지만 cell에 의해 완전분해 되었으며, 함께 존재시 TC는 Fe$^{\circ}$만으로는 분해가 되지 않았지만 cell에 의해 완전분해 되었으며, 함께 존재시 TCE분해에 저해작용을 미치는 것으로 나타났다.

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C. bifermentans DPH-1 균주로부터 정제한 테트라클로로에틸렌 (PCE) 분해효소의 제성질 (Purification and Characterization of a Tetrachloroethylene (PCE) Dehalogenase from Clostridium bifermentans DPH-1)

  • 장용철;정권;유영식;김민영;신재영
    • 한국환경보건학회지
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    • 제26권2호
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    • pp.14-21
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    • 2000
  • DEAE-Toyopearl 650S, Superdex pg-75, Poros HQ, Superdex H200의 각종 칼러크로마토그래피를 이용하여 C.bifermentans DPH-1균주로부터 테트라클로로에틸렌(PCE) 분해 효소를 정제했다. 이 PCE 분해효소 (PCE dehalogenase)는 PCE를 환원적 탈염소화 반응에 의해 시스디클로로에딜렌 (cis-1,2-dichloroethylene)에 전환 가능하여, 이 때의 Vmax 및 Km 치는 각각 73 nmol/h.mg protein, 12$\mu$M이었다. 본 PCE dehalogenase의 겔여과 분자량 Maker Kit를 이용한 분석결과(70kDa)는 SDS-PAGE에 나타난 분자량(35kDa)의 약 2배인 것으로 확인되었다. 따라서 본 효소는 분자량 70kDa의 이량체(Homo dimer)인 것으로 추정되었다. 본 효소의 최적온도 및 pH는 각각 35$^{\circ}C$ 및 8.0 이었다. 또한 본 효소는 PCE외의 트리클로로에틸렌, 디클로로에틸렌 이성체, 1,2-디클로로에템, 1,2-디클로로프로판, 1,1,2-트리클로로에탄에 대하여도 활성을 타나내었다. N-말단 아미노산 분석결과에서도 본 효소는 현재 알려진 PCE dehalogenase와 그 배열이 전혀 다른 것으로 나타나 각종 유기염소 화합물의 분해능을 보유한 신종의 PCE 분해효소인 것이 확인되었다.

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고농도 PCE 및 1,1,1 TCA 제거를 위한 영가금속 선정 (Screening of Zero-Valent Metal for the Removal of High Concentration PCE and 1,1,1 TCA)

  • 권수열;김영
    • 한국습지학회지
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    • 제12권1호
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    • pp.23-31
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    • 2010
  • 본 연구는 고농도의 PCE 및 1,1,1-TCA가 단독 또는 혼합물로 오염된 지하수 복원을 위해 영가 금속을 이용한 탈염소환원공정을 적용할 때 기술적으로, 경제적으로 가장 적절한 영가금속 선정을 목표로 수행되었다. 고순도 영가철, 고순도 영가아연, 철광석, 고로 슬래그, 차수재용슬래그, 망간 광석 및 아연 광석 등을 대상으로 회분식 반응조 실험을 수행하였으며, PCE, 1,1,1-TCA 및 혼합물의 분해능 및 탈염소화율을 도출하고, 금속 단가 당 변환량을 포함한 경제성 등을 검토하여 최적의 금속광물을 선정하고자 하였다. 연구결과 단일물질 처리시 고순도 영가철과 고순도 영가아연에 의한 제거율 및 분해능이 가장 높게 나타났으며, 그 다음으로 아연광석에 의한 분해능이 양호하였다. 두 물질 제거를 위한 경제성 비교에서는 고순도 영가철과 고순도 영가아연에 비해 아연광석이 매우 양호한 것으로 나타났다. 두 물질의 혼합처리 시에는 단일 처리에 비해 분해능이 감소하는 것으로 나타났다. 이상의 결과로부터 단일 또는 혼합 1,1,1-TCA, PCE 처리를 위한 분해능, 처리특성 및 경제성 등을 고려하였을 때 아연광석이 가장 적절한 금속광물로 사료된다.

울산지역 지하수, 하수 및 하천수의 VOCs 오염특성 (Characteristics of Groundwater, Sewage Water and Stream Water Contamination Based on VOCs Concentration Around Ulsan, Korea)

  • 조병욱;윤욱;임현철;성익환;장우석
    • 자원환경지질
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    • 제38권1호
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    • pp.57-65
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    • 2005
  • 울산광역시 일대 지하수내 VOCs 함량을 파악하기 위하여 168개의 지하수, 12개의 하천수, 6개의 하수 시료를 채 취하여 61개 성분의 VOCs를 분석하였다. 분석결과 하천수에서는 VOCs가 검출되지 않았고 도심에 위치한 5개 하수 의 총 VOCs 함량은 ND-22.3 ${\mu}$g/L으로 낮은 편이었다. 168개 지하수 시료에서 분석된 61개 VOCs 성분 중 1성분 이상 검출된 시료 수는 78개이다. 78개 지하수 시료의 총 VOCs 함량은 0.1 ${\mu}$g/L- 387.1${\mu}$g/L의 범위이나, 78개 시료 의 84.6%인 66개 시료의 총 VOCs 함량이 10${\mu}$g/L 이하이고, 음용수기준치를 넘는 시료는 6개에 불과하다. 검출된 VOCs 성분은 분석된 61개 중 42개 성분으로 방향족탄화수소(Aromatic hydrocarbon)가 25개 성분 중 14개 성분이, 염소계지방족탄화수소(Chlorinated aliphatic hydrocarbon)가 35개 성분 중 27개 성분, 그리고 MTBE가 검출되었다. VOCs 성분의 검출빈도로 보면 클로로포름이 전체 시료의 25.6%에 해당하는 43개로서 가장 높다. 그 다음으로는 methylene chloride 21.4%(36개), TCE 15.5%(26개), 1,1-dichloroehane 11.3%(19개), PCE 9.5%(16개), cis-1,2- DCE 8.9%(15개), tolune 8.3%(14개)의 순서로 검출되고 있다. 연구지역 지하수의 VOCs의 함량범위로 볼 때, 아직까 지 VOCs에 의한 지하수 오염은 우려할만한 수준은 아니나, 도시화가 진행되고 있고, 음용수기준치가 강화되는 경향 등을 고려할 때 계속적인 관찰이 요구된다.

자연광석을 이용한 염소계 지방족 탄화수소 혼합물 변환 특성 (Transformation Characteristics of Chlorinated Aliphatic Hydrocarbon (CAH) Mixtures by Natural Ores)

  • 손봉한;김남희;홍광표;윤준기;이채영;김영;권수열
    • 한국물환경학회지
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    • 제23권5호
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    • pp.712-722
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    • 2007
  • This study screened three natural ores (iron, mangenase, and zinc), two types of slags, and two elemental metals (elemental iron and zinc) to evaluate transformation characteristics of CAH mixtures [e.g. Carbontetrachloride (CT), 1,1,1-Trichloroethane (1,1,1-TCA), and Perchloroethene (PCE)]. To select an effective metal medium to treat the CAH mixtures, we measured transformation capacities (CAH mass ultimately transformed/mass of metal added) and the degree of dechlorination. We also considered economical efficiency of the metal media by comparing the value, CAH mass ultimately transformed divided by the price of metal medium added. A simplified mathematical model adapting CAH transformation capacity, first-order transformation kinetics, and available mass of metal transforming CAH was developed and used for estimating CAH transformation rate coefficient and longevity of the metal medium. CAH transformation capacity for elemental iron and elemental zinc were 4258~7129 and $4215{\sim}6330{\mu}g\;CAH\;transformed/g$ metal added, respectively, which are a factor of 80~200 higher than slags and natural ores. They also showed a factor of 1.1 to 2.2 greater degree of dechlorination than the others. Among natural ores and slags, Zinc ore showed the highest transformation capacity, $47{\sim}53{\mu}g\;CAH\;transformed/g$ metal added. Although zinc ore have smaller transformation capacity than elemental metals, economical efficiency of zinc ore is a factor of 10~20 greater than elemental metals tested. Consequently, zinc ore would be more economical medium than the others tested in this study. We estimated the pseudo first-order transformation rate of zinc ore was in the order of CT > 1,1,1-TCA > PCE.