연못시스템의 처리정도는 기후조건(氣候條件)과 아주 밀접한 관계가 있다. 기존시스템이 없는 경우 비슷한 기후권의 사례지역을 반드시 비교분석하게 된다. 미국 온대권에 위치한 Corinne과 Eudora 시스템의 기온과 태양복사량을 김포지역과 비교한 결과 아주 유사함이 규명되었다. 특히 태양복사열의 경우, 여름철에 김포지역이 두 시스템보다 조류성장에 유리한 조건이다. 국내 중부지방에 Corinne과 Eudora 시스템과 비슷한 연못시스템을 설치운영(設置運營)하는 데는 문제점이 없음을 알 수 있다. 남부지방은 연중기온이 김포지역보다 높으므로 연못시스템의 이용이 김포지역보다 유리하다. 미국에서는 연못시스템이 2차처리시설(次處理施設)로 합법화되어 있으며, 2차처리 수질기준(水質基準)을 충족시키고 있다. Corinne과 Eudora 연못시스템의 처리수준을 분석한 결과 처리수의 $BOD_5$ 가 30mg/l 이하로 처리되고 있으나, SS 농도가 30mg/l 보다 다소 높은 경우가 있다. Eudora시스템에서 4월에 일어나는 연못하수의 회전기간(回轉期間)을 제외하고는 연못시스템에 적용하는 처리수의 SS기준인 70-100mg/l 이내로 처리되고 있다. 우리나라 중부지방에 Corinne과 Eudora 시스템과 유사한 연못처리시스템을 설치(設置)하면 2차 처리수준으로 하수를 처리할 수 있을 것으로 판단된다. 연못시스템은 양어, 작물생산, 레크레이션이용과 결합시킬 수 있어, 국내의 경우 농촌소도시 지역, 도시경계 생산녹지지역, 내륙 및 하구의 저습지(wetland)에서 소형뿐아니라 대형 시스템으로 활용이 가능하다.
정유산업 방출폐수를 재처리하여 양질의 공업용수로 활용하고자 역삼투막 및 공정으로 구성된 재활용 system을 고안하여 현장 pilot 실험을 수행하였다. 생산공정 운전상황에 따라 불규칙적으로 변하는 폐수 특성에도 불구하고 역삼투막의 경우 10~15kg/cm2 의 운전압력 범위내에서 96~99%정도의 비교적 높은 염배제율을 보였으며 본 실험을 통하여 얻은 재생수의 경우 냉각탑 공급용수로써의 충분한 가능성을 보여 주었다. 그러나 본 연구에서 제안 사용된 여과형 전처리 공정만으로는 충분한 처리효율을 기대하기 어려웠으며, 이는 각 여과공정법 처리수의 수질분석 결과 및 NaOH를 이용한 역삼투막 세정 결과로부터 쉽게 확인되었다.
The purpose of this study was to develop a recycling system for ozone off-gas. Although the ozone transmission rate of the injector method differs slightly depending on the ozone injection rate, it reaches approximately 99%, which is very high. During the increase in water inflow to the ozone recycling system from 2 L/min to 10 L/min, the average ozone recycling rate was 99.4% at a 1 ppm ozone injection rate, 98.6% at a 2 ppm ozone injection rate, 98.1% at a 3 ppm ozone injection rate. Ozone treatment facility operating costs can be divided into the costs of pure oxygen production, ozone production, and maintenance. The annual operating costs of ozone treatment facilities in Korea are estimated to be approximately 38.9 billion won. The annual savings are estimated to be approximately 5.8 billion won when the ozone transfer rate of the diffuser method, which is mostly employed in domestic water treatment plants, is 85% and 15% of the ozone is recycled.
Using the waste(sand wastr and boiler ash) in fluidized bed inciverator, lightweight aggregate concrete was produced and a recycling plan was prepated. The first, the result of the leaching test shows that the waste fluid sand and boiler ash did not exceed the effluent standard. This indicates that there is no harmful effect for recycling. The second, in the lightweight aggregate test using waste fluid sand and boiler ash, the sample that combined cement, waste fluid sand, and sand showed the highest compressive strength, and the mix proportion was 10: 7: 3. Lightweight aggregate concrete that combined cement, waste fluid sand, boiler ash, and sand had a low compressive strength by and large. The third, the same results were identified in the relation between the content of SiO2 and that of Na2O. As the SiO2 content is lowered, the overall viscosity and plasticity of the concrete also decrease, which is not a good condition to form concrete. As for Na2O, as the content increases, the viscosity of the sample and the viscosity of the cement are remarkably lowered, and the strength of the finished concrete is lowered. Therefore, it was concluded that the higher the content of SiO2 and the lower the content of Na2O, the more suitable it is to mix with cement to produce concrete. Fourth, from the fluidized bed incinerator currently operated by company A in city B, a total of 14,188 tons/year were discharged as of 2016, including 8,355 tons/year of bottom ash (including waste fluid sand) and 5,853 tons/year of boiler ash. The cost for landfill bottom ash and boiler ash discharged is 51,000 won/ton, and the total annual landfill cost is 723,588,000 won/ year. Assuming that the landfill tax to be applied from the year 2018 is about 10,000 won/ton, and if there is no reduction in waste disposal charge, an additional landfill tax of 141,880,000 won/year will be imposed. Consequently, the sum total of the annual landfill cost will be 865,468,000 won/year. Therefore, if the entire amount is used for recycling, the annual savings of about 8.7 billion won can be expected.
Concrete is most widely used construction material in the world. Its superior properties make it a suitable material for utilization. Modern age concretes are more durable and have high strengths as compared to old age concretes. However, these high strength concretes presents high shrinkage at early-ages, which is due to low water/binder (w/b) ratios. Keeping in view this problem, this research study is conducted. Mortars were made with cement and silica fume as binders with incorporation of two different size ranges of tea waste particles. Setting time, flow and chemical shrinkage of fresh mortars were investigated. The results showed that the addition of saturated tea waste particles reduced the chemical shrinkage at early ages as compared to the mixes without tea waste particles.
Since the Framework Act on Resource Circulation was enacted in 2018, the government should establish a National Resource Circulation Master Plan every 10 years, which defines mid- to long-term policy goals and directions on the efficient use of resources, prevention of waste generation and recycling of waste. In addition, we must set mid- to longterm and stepwise targets for the final disposal rate, recycling rate (based on sorted recyclable materials and recycled products), and energy recovery rate of wastes, and relevant measures should be taken to achieve these targets. However, the current industrial waste (IW) statistics have limitations in setting these targets because the final disposal rate and recycling rate are calculated as the ratio of the recycling facility input to the IW generation. In this study, the material flow from the collection stage to the final disposal of industrial waste was analyzed based on the generation of 2016, and the actual recycling amount, actual incineration amount, final disposal amount and their rates were calculated. The effect on the recycling, incineration and final disposal rates was examined by changing the treatment method of nonhazardous wastes from the factory and construction and demolition wastes, which were put in landfills in 2016. In addition, the variation of the waste treatment charge was investigated according to the change of treatment methods. The results of this study are expected to be effectively used to establish the National Resource Circulation Master Plan and industrial waste management policy in the future in South Korea.
Since the import ban of plastic waste in China has been enforced, plastic wastes were not properly collected and recycled in Korea. Hence, the management strategies for plastic waste in Korea should be improved by examining the regulations and policy in developed countries such as United States, Japan, EU and United Kingdom. The management strategy for the recycling cycle should be implemented to expand the labeling system of separation and discharge, reduce the consumption of plastic products, automate the separation and sorting method in recycling facilities, and improve the economical efficiency of the recycling cycle. The concept of residual waste (secondary waste) in the material flow analysis should be implemented to identify the shortage point in the plastic waste stream. Finally, the cooperation with international communities is required for a transboundary movement of plastic waste, which includes participation at the working group of international standards to recycle plastic waste.
2017년 고리 1 호기 영구정지를 계기로 국내 원자력발전소의 해체가 점차 가시화되고 있다. 앞으로 원전 해체가 본격적으로 추진될 경우 원전 1기 당 약 16만 t의 콘크리트 폐기물이 발생될 것으로 예측되었으며, 이들 콘크리트 폐기물은 대부분 오염 준위가 매우 낮아 자체처분 대상으로 고려될 수 있다. 따라서, 국내 자체처분 폐기물(원자력안전위원회 고시 2017-65호에 따른 자체처분 허용농도 또는 자체처분 허용선량을 만족하는 폐기물)에 대한 현행 규제체계가 대량의 콘크리트 폐기물에 대한 무제한적 자체처분에 대해서도 유효성을 유지할 수 있는지를 사전에 확인할 필요가 있다. 이와 관련, 국내 자체처분 규정 개발 시 참조기준인 IAEA SRS No. 44를 심층분석하고, 국내 산업계 현황을 반영한 입력값과 계산식을 이용하여 4가지 자체 처분 시나리오에 대한 예상 피폭방사선량을 평가하였다. 그 결과, 재활용 시나리오에 대한 예상선량은 대부분 정상 시나리오에 대한 자체처분 선량 기준(즉, 0.01 mSv·y-1)보다 낮은 것으로 평가되었으나, 성토 후 거주 시나리오의 경우 보수적인 가정을 적용하면 자체처분 선량 기준을 초과할 가능성도 배제할 수 없는 것으로 나타났다. 따라서, 대량의 해체 콘크리트 폐기물의 안전하고 지속가능한 자체처분을 위해서는 폐기물 처리업체 다변화, 성토 시나리오에 대한 보다 구체적인 평가, 성토를 통한 자체처분에 대한 부분적 제한조건 설정 등을 고려할 수 있다.
This study investigated the applicability of horticultural media with recycled coir substrates the growth of Chinese cabbage (Brassica campestris L. ssp. Pekinensis) and lettuce (Lactuca sativa L.) crop. The six different types of coir based substrates were A, Coir 45: Perlite 35: Vermiculite 12: Zeolite 8 (%), B, Coir 55: Perlite 25: Vermiculite 12: Zeolite 8 (%), C, Coir 65: Perlite 15: Vermiculite 12: Zeolite 8 (%), D, Coir 75: Perlite 5: Vermiculite 12: Zeolite 8 (%), E, Coir 85: Perlite 5: Vermiculite 5: Zeolite 5 (%) and F, nursery media (control). The pH and Electric conductivity of the horticultural nursery media were 6.06–7.00 and 0.45–1.10 dS/m-1, respectively. The nursery media containing coir substrates had higher level of Total N, Ca, K, Mg and P than those without coir. Additionally, it was observed that the growth of Chinese cabbage was the best on D (containing 75% coir) while that of lettuce was the best on E (containing 85% coir). In general, when substrates containg a higher percentage of coir were used, the growth of Chinese cabbage and lettuce was ideal. Additionally, the P, Ca, and Mg content in both plants was not significantly altered by the amount of coir present in the media. However, with an increase in the amount of coir substrate, the chlorophyll, N, and K content was increased. After harvesting, there was no significant difference in the chemical properties of the horticultural nursery media of both plants. Thus, it can be suggested that, coir substrate after a single use could be recycled as horticulture nursery media.
Domestic automotive shredder residue (ASR) recycling facilities must comply with 60% of the energy recovery criteria calculated by the waste control act, based on resource circulation of electrical and electronic equipment and vehicles. The method of calculating energy recovery criteria was newly enacted on November 6, 2017, and it has been judged that it is necessary to consider applicability. In this study, the energy recovery efficiency of 7 units was calculated by past and present calculation methods. Furthermore, this study attempts to find applicability and a method of increasing the energy recovery efficiency by taking advantage of available potentials. An analysis of the calculation results showed that the average values calculated by past methods, present methods, and the method that includes available potentials are 76.35%, 70.68%, and 78.24%, respectively. Therefore, the new calculation method for energy recovery efficiency is also applicable to domestic automotive shredder residue recycling facilities.
The coffee grounds generated during the coffee extraction process contain several resources, but the technology for their recycling has not been commercialized yet, causing various environmental problems. Due to the recent increase in coffee consumption worldwide, the amount of coffee grounds produced has been continuously increasing, reaching more than 750 million tons. In Korea, about 120,000 tons of coffee waste are annually generated; however, most of them are landfilled or incinerated. Although there is still a shortage of coffee waste recycling technologies compared to the amount of coffee grounds produced, various recycling approaches are being actuated in many countries including Korea. In this study, the generation of coffee grounds at home and abroad, the status of coffee grounds recycling, and the associated technology development trends were investigated. The coffee grounds recycling has been studied in the fields of energy, adsorbent, construction, agriculture, and bio-foods. Research is most active in the energy and biotechnology areas; in particular, since the oil in the coffee grounds is valuable as a feedstock for biomass energy, the technology related to energy recovery is currently under development worldwide. Removed because confusing and unnecessary.
This study investigated both leaching of heavy metals and ecological toxicity when coal bottom ash (CBA) generated by power plants has been used to reduce both erosion and turbidity of surface runoff at construction sites. The Korean leaching test (KLT) method, sequential extraction method, and acute toxicity test using Daphnia magna were performed to evaluate the environmental impacts and the ecological risks of CBA. According to the results of the KLT method of CBA, trace amounts of Cu were leached at limit of quantitation whereas metal leaching was not monitored for other heavy metals. Through the sequential extraction method of CBA, the relatively high leaching potential was found for As and Pb due to greater fraction of exchangeable (F1) and bound to carbonates (F2), and reasonable probability of leaching under the reducing/anaerobic environment was expected for Cu due to high faction of bound to Fe?Mn oxides (F3). However, significantly low probability of leaching was expected for Cd, Cr, Ni, and Zn with grater fractions of bound to organic matter (F4) and residual (F5). Additionally, total amount of heavy metals in CBA was lower than criteria for soil pollution concerns, and were similar or slightly lower levels than the ‘15 National soil average concentration excluding Cr6+. Finally, acute toxicity test using Daphnia magna display no impact for mobilization and lethality in either the prefiltration or post-filtration experiment, indicating that the ecological toxicity was insignificant with zero values of toxic unit. Consequently, no environmental impacts or ecological toxicity are expected when CBA generated by power plants has been used to reduce both erosion and turbidity of surface runoff at construction sites.
This study examined the potentials for greenhouse gas reduction by material recovery and energy recovery from municipal solid waste between 2017 and 2026 in Daejeon Metropolitan City (DMC), which is trying to establish a material-cycle society by constructing a waste-to-energy town by 2018. The town consists of energy recovery facilities such as a mechanical treatment facility for fluff-type solid refuse fuel (SRF) with a power generation plant and anaerobic digestion of food waste for biogas recovery. Such recycling and waste-to-energy facilities will not only reduce GHGs, but will also substitute raw materials for energy consumption. The emissions and reduction rate of GHGs from MSW management options were calculated by the IPCC guideline and EU Prognos method. This study found that in DMC, the decrease of the amount of MSW landfilled and the increase of recycling and waste-to-energy flow reduced GHGs emissions from 167,332 tonCO2 eq/yr in 2017 to 123,123 tonCO2 eq/yr in 2026. Material recycling had the highest rate of GHG reduction (-228,561 tonCO2 eq/yr in 2026), followed by the solid refuse fuels (-29,146 tonCO2 eq/yr in 2026) and biogas treatment of food waste (-3,421 tonCO2 eq/yr in 2026). This study also shows that net GHG emission was found to be -30,505 tonCO2 eq in 2017 and -105,428 tonCO2 eq, indicating a great and positive impact on future CO2 emission. Improved MSW management with increased recycling and energy recovery of material waste streams can positively contribute to GHGs reduction and energy savings. The results of this study would help waste management decision-makers clarify the effectiveness of recycling MSW, and their corresponding energy recovery potentials, as well as to understand GHG reduction by the conversion.
In this study, the amount of plastic waste produced in Korea and the state of its treatment are analyzed. In addition, trends in sales prices of recyclable resources are identified and used as basic research data in countermeasures for the rejection of recyclable waste collection companies. According to the state of waste generation and disposal nationwide in 2017, the amount of plastic waste generated increased by 7.2% annually over the five-year period starting in 2012, reaching 7.1 million tons in 2016. In the case of composition ratio, 36.7% of household wastes occupy. In the case of the plastic recycling market, the demand for recycled waste plastics and plastics decreased due to sluggish domestic and overseas economies since 2015, and the prices of synthetic resins such as PE, PP, and PS of pellets dropped by about 20%. As for the selling prices of recyclable resources in apartment houses in March 2017, the average selling price including plastics is 1071 won/ month·generation. When plastic was excluded it was 941 won/month·generation, which amounts to about a 130 won/month·generation difference. The average selling price of recyclable resources over the period of March- May 2018 is about 697 won/month·generation. In March 2017, it was found to decrease by about 26% of the sale price.
Local government should have waste treatment facilities to provide good service to local residents, even though private recycling is working. There was a problem with plastic waste management in Korea in 2018. Therefore, study was conducted on whether local government has the capacity to handle additional waste streams. The study was conducted, solely using government statistics, on domestic mixed solid waste. The amount of additional plastic waste to be disposed was 2,418 ton/day (incinerate 713 ton/day + landfill 1,705 ton/day), and paper waste was 4,469 ton/day (incinerate 1,104 ton/day + landfill 3,365 ton/day). Current incinerator capacity is sufficient, and if paper waste is added, the incinerator capacity is found to be under1,544 ton/day. Landfill capacity is sufficient even if plastic and paper waste is added, but the residual life of the landfill was reduced from 31.4 years to 25.4 years. Regionally, Gyeongbuk, Daejeon, Jeju, and Sejong should develop new plans for waste management.
According to the revised version of Waste Control Act to enter into force in 2017, Wastes could only be recycled assuming that the use of recycled wastes is safe for the environment and human health by environmental safety assessment. Even before this revision of the law, inorganic sludges could have been recycled as alternative materials for filler and cover materials by mixing with soil. However, in case of inorganic sludge from car-washing facilities, the revised law provides that the waste has to be landfilled. To assess the possibility of recycling this waste, we investigate the characteristics of the generation and concentration level of hazardous substances and evaluate the safety of recycling this material to assess whether this process meets the environmental standards. We obtained a total of eight sludge samples from car-wash shops, such as those in gas stations, car-repair shops and car-wash facilities. According to the results of leaching tests, most of the samples(8) fell under the detection limit and thus could be legally treated as general waste. However, in the results of contents some heavy metals, such as hexavalent chromium, lead, copper and zinc, exceeded the standards for soil contamination. We can conclude that the recycling of inorganic sludge from car-wash facilities could cause pollution in soil media when recycled and should not be recycled for filler and cover materials.
폐기물은 발생원을 기준으로 생활폐기물, 사업장폐기물 및 건설폐기물로 구분된다. 폐기물 처리는 재활용을 우선적으로 정책이 이루어지고 있다. 그러나 폐기물을 재활용하기 위해서는 기술적인 한계성과 경제성 등이 해결되어야 하며 이러한 이슈가 극복되지 않으면 재활용에는 한계가 따른다. 국내에서 도입된 네가티브 재활용 제도가 다양한 기술을 재활용로서 적용될 수 있도록 하였으며, 그 중 폐기물 에너지화 기술로써만 인식되어온 폐기물 가스화 기술은 에너지회수 기술 뿐 만 아니라 원료를 대체할 수 있는 재활용 기술로도 적용될 수 있게 되었다. 폐기물의 재활용은 물질재활용 기술로서 3R기술 위주로 재활용되어 왔으나 화학전환 기술에 의한 재활용을 위해서는 가스화 기술이 많은 기여를 할 것으로 기대된다. 또한 폐기물의 에너지 회수기술은 소각에 의한 에너지회수 또는 고형연료를 생산하여 연소보일러에 의한 에너지회수 방법이 주로 이용되어 왔으며 이러한 기술은 열에너지를 회수하는 기술에 국한되어 있다. 그러나 폐기물 가스화 기술은 열에너지와 화학에너지의 생산이 가능하므로 다양한 에너지로의 회수 기술과 고효율 에너지 이용기술의 적용이 가능한 기술이다. 따라서 본 연구에서는 폐기물 가스화를 통한 에너지회수 기술과 화학전환 기술로서 원료대체를 통한 재활용 기술로서의 특성을 고찰하였다. 폐기물 가스화 기술은 가연성물질이 함유된 폐기물의 대부분을 대상으로 적용이 가능하지만 합성가스를 이용하는 기술에 따라서 합성가스의 생산품질을 만족하기 위해서는 폐기물의 적정 발열량이 확보되어야 된다. 폐기물의 종류에 따라 기준은 달리 적용되겠지만 저위발열량 기준으로 3,200 kcal/kg이상인 경우 안정적인 합성가스를 생산할 수 있다고 판단되며, 폐기물종류 및 이용기술에 따라서는 3,000 kcal/kg이상인 경우 합성가스 생산품질을 유지할 수 있다. 폐기물 가스화를 통해 생산된 합성가스를 에너지회수 기술로서는 스팀터빈, 가스터빈, 가스엔진, 연료전지 등의 기술을 적용할 수 있고, LNG, 경우, 석탄, LPG 등 화석연료를 대체하는 가스연료로 적용할 수도 있다. 또한 합성가스의 주요성분인 일산화탄소와 수소는 고순도 수소 및 고순도 일산화탄소 자체로도 원료대체가 가능하며, 화학촉매 또는 미생물촉매 전환 공정을 통해 다양한 화학원료로 대체하는 재활용기술로서의 적용이 가능한 특성을 가지고 있다.
폐기물관리법 개정・시행(’16.7.)으로 폐기물의 재활용방식이 포지티브(허용행위 열거방식)에서 네거티브(제한행위 열거방식)로 전환됨에 따라 재활용대상 폐기물의 재활용 가능여부를 판단하기 위해 재활용환경성평가 제도를 도입하였다. 위 제도의 도입에 따라 폐기물의 재활용으로 인한 인체・환경영향을 사전에 파악하기 위해 지정폐기물에 함유된 유해물질의 용출・함량관리 이외에 유해특성 항목의 확대 및 상향류 투수방식의 유출시험 도입 등 평가항목 및 평가방법을 확대하였으며, 비매체접촉형 및 매체접촉형 재활용유형으로 분리하여 폐기물의 재활용으로 인한 토양, 지하수, 수질 등 환경매체의 영향까지 고려하도록 하였다. 본 연구에서는 재활용 제품에 대한 장기영향평가를 위하여 도입된 상향류 투수방식의 유출시험을 수행하여, 폐기물의 재활용으로 인한 지표수 및 지하수 등에 대한 영향여부를 평가하고자 하였다. 페로니켈슬래그를 시료로 하여 상향류 투수방식의 유출시험 분석결과 알루미늄을 제외한 모든 항목이 먹는 물 수질기준 미만 또는 정량한계 미만으로 나타났으며, 페로니켈 슬래그의 매체접촉형 재활용 시 중금속의 용출로 인한 환경의 영향은 미비할 것으로 판단된다. 또한, 고액비(L/S ratio)에 따른 용출경향 파악을 위하여 폐기물 용출시험(L/S=10) 결과와 상향류 투수방식의 유출시험(L/S=2) 결과를 비교・검토하였으며, 검출경향은 상향류 투수방식의 유출시험에서 더 높게 검출되는 경향이 나타나, 폐기물의 재활용에 대한 장기 용출영향 평가 방법으로 적합하다고 판단하였다.
폐기물관리법 개정(시행 ’16.7.21)으로 폐기물의 재활용방식이 포지티브(허용행위 열거방식)에서 네거티브(제한행위 열거방식)로 전환됨에 따라 재활용대상 폐기물의 재활용 가능여부를 판단하기 위해 재활용환경성평가 제도를 도입하였다. 이에따라, 2018년 1월 1일부터 재활용환경성평가 제도 중 매체접촉형으로 사용되는 폐기물은 새로운 재활용 유형인 경우이거나 기존 재활용유형 12만 톤 이상 또는 3만 제곱미터 이상의 규모의 경우 유해특성항목의 생태독성항목을 적용하도록 되어있다. 생태독성시험의 시행은 화학시험의 평가와는 달리 환경영향에 대한 부분을 종합적으로 평가할 수 있을 것이다. 현재 재활용환경성평가에서의 물벼룩을 이용한 급성독성(생태독성) 기준은 「폐기물 유해특성의 성질 및 해당 기준」에 TU 2.0을 초과하지 않도록 설정되어 있다. 그러나, 현재 재활용환경성평가의 생태독성의 경우 상향류 투수방식의 유출시험(컬럼시험)을 통하여, 고상시료를 액상시료로 변환시키는 시험방법을 사용하고 있다. 폐기물의 종류에 따라 생태독성시험 적용을 위해 pH 조정이 필요한 경우가 발생하여, 전처리 과정을 통하여 중화시킨 후 독성 분석을 실시하였다. 이에 본 연구는 매체접촉형 재활용에 이용되었던 석탄재, 폐석재, 폐토사 등을 대상으로 컬럼시험을 통해 얻은 유출액을 생태독성시험에 적용하여 재활용환경성평가의 생태독성항목에 대한 시험방법을 마련하고, 독성기준의 만족여부를 조사하였다.