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971.
为保证整套甲醇装置安全平稳长期运行,需要解决在原料负荷低且波动频繁条件下的废热锅炉水质控制问题,吐哈油田公司甲醇厂通过对低负荷工艺条件下废热锅炉给水和炉水水质控制问题进行研究,针对废热锅炉用水水质要求,从给水除氧效果、磷酸根控制、锅炉排污量方面分析了废热锅炉水质不稳定的原因,并提出了针对性的优化措施,实际运行效果表明:优化措施实施后,未出现爆管事故,刺刀外管内壁检查未发现腐蚀及杂质,取得了较好的环境和经济效益。  相似文献   
972.
以浙江省江山市淤头镇联户沼气工程为例,从经济、技术及社会可行性三方面进行具体分析,指出联户沼气相比户用沼气具有规模经济效益显著、资金支持渠道多、管理便利、农户满意度高、技术和市场创新空间大等突出优势,可为联户沼气工程推广提供经验借鉴。  相似文献   
973.
采用涡流空化(SC)/Fenton协同降解溶液中活性艳红K-2BP,探讨了H2O2、Fe2+、pH、涡流压力以及活性艳红K-2BP初始浓度对SC/Fenton降解效果的影响。结果表明,H2O2和Fe2+的浓度过高或过低都会降低活性艳红K-2BP的降解率,低pH环境有助于活性艳红K-2BP的降解,活性艳红K-2BP的降解率随涡流压力的增大而升高,随其初始浓度的增加而降低。当活性艳红K-2BP初始质量浓度为10mg/L,H2O2质量浓度为165mg/L,Fe2+摩尔浓度为1.5×10-4mol/L,pH为4.0,涡流压力为0.8MPa时,活性艳红K-2BP降解率可达91.81%。  相似文献   
974.
Land use conversion and fertilization have been widely reported to be important managements affecting the exchanges of greenhouse gases between soil and atmosphere. For comprehensive assessment of methane (CH4) and nitrous oxide (N2O) fluxes from hilly red soil induced by land use conversion and fertilization, a 14-month continuous field measurement was conducted on the newly converted citrus orchard plots with fertilization (OF) and without fertilization (ONF) and the conventional paddy plots with fertilization (PF) and without fertilization (PNF). Our results showed that land use conversion from paddy to orchard reduced the CH4 fluxes at the expense of increasing the N2O fluxes. Furthermore, fertilization significantly decreased the CH4 fluxes from paddy soils in the second stage after conversion, but it failed to affect the CH4 fluxes from orchard soils, whereas fertilizer applied to orchard and paddy increased soil N2O emissions by 68 and 113.9 %, respectively. Thus, cumulative CH4 emissions from the OF were 100 % lower, and N2O emissions were 421 % higher than those from the PF. Although cumulative N2O emissions were stimulated in the newly converted orchard, the strong reduction of CH4 led to lower global warming potentials (GWPs) as compared to the paddy. Besides, fertilization in orchard increased GWPs but decreased GWPs of paddy soils. In addition, measurement of soil moisture, temperature, dissolved carbon contents (DOCs), and ammonia (NH4 +-N) and nitrate (NO3 ?-N) contents indicated a significant variation in soil properties and contributed to variations in soil CH4 and N2O fluxes. Results of this study suggest that land use conversion from paddy to orchard would benefit for reconciling greenhouse gas mitigation and citrus orchard cultivation would be a better agricultural system in the hilly red soils in terms of greenhouse gas emission. Moreover, selected fertilizer rate applied to paddy would lead to lower GWPs of CH4 and N2O. Nevertheless, more field measurements from newly converted orchard are highly needed to gain an insight into national and global accounting of CH4 and N2O emissions.  相似文献   
975.
976.
The release of engineered nanomaterials (ENMs) into the biosphere will increase as industries find new and useful ways to utilize these materials. Scientists and engineers are beginning to assess the material properties that determine the fate, transport, and effects of ENMs; however, the potential impacts of released ENMs on organisms, ecosystems, and human health remain largely unknown. This special collection of four review papers and four technical papers identifies many key and emerging knowledge gaps regarding the interactions between nanomaterials and ecosystems. These critical knowledge gaps include the form, route, and mass of nanomaterials entering the environment; the transformations and ultimate fate of nanomaterials in the environment; the transport, distribution, and bioavailability of nanomaterials in environmental media; and the organismal responses to nanomaterial exposure and effects of nanomaterial inputs, on ecological communities and biogeochemical processes at relevant environmental concentrations and forms. This introductory section summarizes the state of knowledge and emerging areas of research needs identified within the special collection. Despite recent progress in understanding the transport, transformations, and fate of ENMs in model environments and organisms, there remains a large need for fundamental information regarding releases, distribution, transformations and persistence, and bioavailability of nanomaterials. Moreover, fate, transport, bioaccumulation, and ecological impacts research is needed using environmentally relevant concentrations and forms of ENMs in real field materials and with a broader range of organisms.  相似文献   
977.
Australia is prospective for platinum group metal (PGM) mineralisation (in particular primary magmatic reef, primary magmatic by-product, late magmatic and hydrothermal, and alluvial placer type) but its known PGM endowment is negligible compared to that of South Africa, Russia, the USA and Canada. Most Australian PGM projects are operated by mid-cap or junior companies and form part of larger, more diverse project portfolios held by these explorers. Most projects were ‘hot’ while market conditions were favourable. However, as other metals became ‘fashionable’ and market conditions for PGM changed, so did the focus of these companies. Pure PGM companies are rare in Australia. The search for and development of PGM-only deposits in Australia are high risk business activities. No new primary PGM deposits have been discovered since the mid to late 1980s and none of the significant deposits that were discovered or evaluated in the 1980s have been mined. This review suggests that at least several A$10 million but more likely several A$100 million were sunk into PGM exploration and development projects but none advanced to the mining stage. The viability of Australian PGM projects is very sensitive to (1) metal prices, (2) the US$/A$ exchange rate, and (3) large capital expenditure requirements relative to the small size of Australian PGM-only deposits. Most PGM-only projects were initiated at times of high PGM prices. However, advanced exploration, feasibility studies and project development always lagged behind the price booms. South Africa, Russia and Canada contain approximately 98% of the known global PGM reserves. This situation has a very negative effect on the Australian PGM industry as the well-endowed nations continue to receive the lion's share of exploration spend and new projects.  相似文献   
978.
李冬  程文  秦璐  任杰辉  郑兴 《中国环境科学》2021,41(3):1398-1404
为探究二氯乙腈(DCAN)对大肠杆菌(E.coli)基因表达的影响及相应的毒性作用,采用自组织映射(SOM)聚类及剂量效应关系分析方法考察了E.coli在不同剂量DCAN暴露120min过程中其基因表达状况.结果表明:随时间及浓度改变E.coli基因表达具有动态性;在DCAN浓度为1.429×10-3mg/L时,多个参...  相似文献   
979.
矿井水害问题长期困扰着煤矿的安全生产,查明矿井涌水水源是矿井水害防治问题的前提。为提高矿井涌水水源的识别精度,提出了一种基于KPCA-APSO-ELM的矿井涌水水源判别模型。以袁二矿为例,在分析主要含水层地下水水化学特征的基础上,选取7种水化学离子作为判别指标。随后利用KPCA提取主要指标作为模型识别的判别因子,并通过APSO对ELM模型进行参数寻优。以63组样本数据中70%作为训练样本、30%作为预测样本进行仿真试验建立KPCA-APSO-ELM模型,并将识别结果与PCA-Logistic、KPCA-ELM和PSO-ELM模型进行比较。结果表明:KPCA算法可以有效消除指标间的冗余信息,基于KPCA-APSO-ELM模型的预测精度相对较高;与其他模型相比,该模型的均方误差和平均绝对百分比误差显著降低。  相似文献   
980.
新疆喀什地区地下水氟的空间分布规律及其富集因素分析   总被引:1,自引:0,他引:1  
陈劲松  周金龙  陈云飞  张杰  魏兴  范薇 《环境化学》2020,39(7):1800-1808
高氟地下水严重影响当地居民的身体健康.基于新疆喀什地区571个地下水样的氟离子实测含量,运用Mapgis软件绘制研究区地下水氟含量分布图,结果表明,研究区地下水氟含量呈西部、北部高于东部、南部,中部最低的特点;山麓斜坡冲洪积砾质平原区氟含量表现为浅层潜水高于深层潜水,中下游河流冲积平原区地下水氟含量表现为潜水浅层承压水深层承压水.采用绘制Gibbs图、Piper三线图、离子比例图等方法对研究区水化学环境特征及地下水氟的富集因素进行研究,结果表明,研究区地下水氟源于山前含氟基岩;受地下水径流条件影响,研究区地下水氟含量平均值表现为中下游河流冲积平原区山麓斜坡冲洪积砾质平原区;蒸发浓缩作用使F~-浓度进一步增大;研究区高氟地下水水化学类型主要为HCO_3-Na和Cl·SO_4-Na型,地下水弱碱性环境有助于F~-的富集.  相似文献   
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