首页 | 本学科首页   官方微博 | 高级检索  
文章检索
  按 检索   检索词:      
出版年份:   被引次数:   他引次数: 提示:输入*表示无穷大
  收费全文   18517篇
  免费   1373篇
  国内免费   4199篇
安全科学   982篇
废物处理   288篇
环保管理   4858篇
综合类   10931篇
基础理论   2320篇
环境理论   7篇
污染及防治   1636篇
评价与监测   1421篇
社会与环境   1405篇
灾害及防治   241篇
  2024年   98篇
  2023年   375篇
  2022年   568篇
  2021年   581篇
  2020年   657篇
  2019年   536篇
  2018年   484篇
  2017年   729篇
  2016年   886篇
  2015年   918篇
  2014年   940篇
  2013年   1238篇
  2012年   1349篇
  2011年   1403篇
  2010年   1078篇
  2009年   1034篇
  2008年   796篇
  2007年   1274篇
  2006年   1228篇
  2005年   987篇
  2004年   864篇
  2003年   827篇
  2002年   704篇
  2001年   577篇
  2000年   558篇
  1999年   469篇
  1998年   311篇
  1997年   308篇
  1996年   271篇
  1995年   234篇
  1994年   219篇
  1993年   196篇
  1992年   146篇
  1991年   113篇
  1990年   90篇
  1989年   84篇
  1988年   77篇
  1987年   69篇
  1986年   48篇
  1984年   47篇
  1983年   57篇
  1982年   58篇
  1981年   74篇
  1980年   81篇
  1979年   74篇
  1978年   50篇
  1977年   48篇
  1973年   45篇
  1972年   38篇
  1971年   61篇
排序方式: 共有10000条查询结果,搜索用时 43 毫秒
61.
本文构建S-T模型,运用集对分析理论(set pair analysis)构建基本模型,采用层次分析法并参考毒性当量因子确定各指标权重,应用三角模糊数(triangular fuzzy number)对差异度系数进行改进,基于加拿大沉积物环境质量标准,对沉积物中多环芳烃进行生态风险分级评价.结果表明,该模型考虑到化合物之间的相互作用因素并做模糊处理,对差异度系数进行改进体现沉积物中多环芳烃生态风险等级标准的模糊性,为持久性有机污染物生态风险分级评价提供了一种简便客观有效的方法.  相似文献   
62.
以海洋环境中一个非常重要的局部腐蚀形式——低水位加速腐蚀(ALWC)为对象,自其检测、发生原因、防护三个方面就国内外的文献报告进行综述分析。在检测方面,首先介绍了常用的宏观观察这一被动形式,并突出其特征,然后介绍了利用海水中可溶性无机氮含量作为ALWC发生概率预测这一主动形式,分析其优势与不足。在发生原因方面,在对将ALWC认定为一种典型的微生物腐蚀(MIC)形式的认知过程进行介绍之后,重点分析了微生物对ALWC作用机制不清晰的原因,并建议在后续研究中突出动态演变过程,结合高通量测序等分子生物学技术,确定在不同的阶段影响ALWC的关键微生物,且进一步在大气-海水体系下研究典型菌株及其协同作用的影响,提出微生物对ALWC的作用机制。在防护方面,根据新建和已建钢结构设施分别对传统和针对ALWC所具有的MIC与局部腐蚀特性的新型高效防护方法进行了介绍,并分析了防护方法的优缺点。  相似文献   
63.
分析了毛细饱水带的水动力学特性,指出在地下水污染研究中,污染物在毛细饱和水带和潜水怪具有相同的水平运动规律,并以实例分析说明该带对污染物运移的重要性。建议在研究和一非饱和条件地下水及污染物运动问题时把毛细饱水带与潜水含水层统一为饱马毛细饱水带顶面作为饱水面。  相似文献   
64.
High concentrations of arsenic in ground waters in West Bengal and Bangladeshhave become a major cause for concern in recent years. Given the enormity and the severity of the problemof arsenic poisoning, a task of evaluating the commercially available arsenic detection field kits for their capabilities was undertaken. In the light of the findings, generic specificationswere recommended which could form the basis forindigenous manufacture of these kits in the arsenic affected countries. This article presents the results of the laboratory and fieldevaluation conducted in Bangladesh and West Bengalof five arsenic testing field kits. The salient features of the kits, their merits and limitationshave been brought out. Based on the criteria of kitdesign, quality of chemicals used, colourcomparator charts, detection range, time required for analysis, cost etc., a comparative ranking ofthe kits has been made to facilitate the choice of the kit to meet specific requirements.  相似文献   
65.
A sub-surface desert water harvester was constructed in the sagebrush steppe habitat of south-central Idaho, U.S.A. The desert water harvester utilizes a buried micro-catchment and three buried storage tanks to augment water for wildlife during the dry season. In this region, mean annual precipitation (MAP) ranges between about 150–250 mm (6″–10″), 70% of which falls during the cold season, November to May. Mid-summer through early autumn, June through October, is the dry portion of the year. During this period, the sub-surface water harvester provides supplemental water for wildlife for 30–90 days, depending upon the precipitation that year. The desert water harvester is constructed with commonly available, “over the counter” materials. The micro-catchment is made of a square-shaped, 20 mL. “PERMALON” polyethylene pond liner (approximately 22.9 m × 22.9 m = 523 m2) buried at a depth of about 60 cm. A PVC pipe connects the harvester with two storage tanks and a drinking trough. The total capacity of the water harvester is about 4777 L (1262 U.S. gallons) which includes three underground storage tanks, a trough and pipes. The drinking trough is refined with an access ramp for birds and small animals. The technology is simple, cheap, and durable and can be adapted to other uses, e.g. drip irrigation, short-term water for small livestock, poultry farming etc. The desert water harvester can be used to concentrate and collect water from precipitation and run-off in semi-arid and arid regions. Water harvested in such a relatively small area will not impact the ground water table but it should help to grow small areas of crops or vegetables to aid villagers in self-sufficiency.  相似文献   
66.
新疆河流洪水水污染分析   总被引:4,自引:0,他引:4  
洪水期间的水污染主要来源于面源。其特点是污染物的浓度高、负荷量大。给工业、渔业和人民生活都会带来不同程度的危害。悬浮物是洪水过程中的主要面污染产物,同时还作为载体吸附和携带大量的有机物、无机盐、重金属类和微生物进入水体,致使河流水质下降。在研究洪水灾害的同时。不应忽略洪水期间的水污染问题。  相似文献   
67.
略谈淮北市城市景观生态建设   总被引:1,自引:0,他引:1  
张祖亮  吴淼 《干旱环境监测》2003,17(3):143-146,152
为了保护淮北市城市生态环境,拟利用城市景观生态学原理对该市城市景观进行生态设计,包括城市自然组分、非自然组分设计。自然组分包括种群源、廊道、节点等内容,力争使自然组分成为环境质量的控制性组分,使城市生态良性循环、物种多样并持续存在和流动可达,物质循环、能量流动、信息传递畅通。  相似文献   
68.
新疆生态功能区划初探   总被引:4,自引:0,他引:4  
“新疆生态功能区划”参考了“中国综合生态环境区划方案”,以《生态功能区划暂行规程》为依据,充分考虑新疆独特的地理分布格局,将新疆分为5个生态区,18个生态亚区,79个生态功能区。“新疆生态功能区划”对科学有效地管理新疆生态环境,因地制宜地实施保护和治理策略,保证社会经济可持续发展具有重要意义。  相似文献   
69.
Nahanni National Park Reserve is located at southwestern NWT-Yukon border. One of the first UNESCO World Heritage sites, Nahanni lies within Taiga Cordillera and Taiga Shield Ecozones. Base and precious metal mining occurred upstream of Nahanni prior to park establishment. Nahanni waters, sediments, fish, and caribou have naturally elevated metals levels. Baseline water, sediment and fish tissue quality data were collected and analyzed throughout Nahanni during 1988–91 and 1992–97. These two programs characterized how aquatic quality variables are naturally varying in space and time, affected by geology, stream flow, seasonality, and extreme meteorological and geological events. Possible anthropogenic causes of aquatic quality change were examined. Measured values were compared to existing Guidelines and site-specific objectives were established.  相似文献   
70.
This paper argues on both theoretical and empirical grounds that, beyond a certain point, there is an unavoidable conflictbetween economic development (generally taken to mean 'materialeconomic growth') and environmental protection. Think for a moment of natural forests, grasslands, marine estuaries, salt marshes, and coral reefs; and of arable soils, aquifers, mineraldeposits, petroleum, and coal. These are all forms of 'natural capital' that represent highly-ordered self-producing ecosystemsor rich accumulations of energy/matter with high use potential (low entropy). Now contemplate despoiled landscapes, eroding farmlands, depleted fisheries, anthropogenic greenhouse gases,acid rain, poisonous mine tailings and toxic synthetic compounds.These all represent disordered systems or degraded forms of energy and matter with little use potential (high entropy). The main thing connecting these two states is human economic activity. Ecological economics interprets the environment-economyrelationship in terms of the second law of thermodynamics. The second law sees economic activity as a dissipative process. Fromthis perspective, the production of economic goods andservices invariably requires the consumption of available energy and matter. To grow and develop, the economynecessarily 'feeds' on sources of high-quality energy/matter first produced by nature. This tends to disorder and homogenizethe ecosphere, The ascendance of humankind has consistently been accompanied by an accelerating rate of ecological degradation, particularly biodiversity loss, the simplificationof natural systems and pollution. In short, contemporary political rhetoric to the contrary, the prevailing growth-oriented global development paradigm is fundamentally incompatible with long-term ecological and social sustainability. Unsustainability is not a technical nor economic problem as usually conceived, but rather a state of systemic incompatibilitybetween a economy that is a fully-contained, growing, dependent sub-system of a non-growing ecosphere. Potential solutions fly inthe face of contemporary development trends and cultural values.  相似文献   
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号