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Bioremediation and Biodegradation Technologies for Removal of Pollutants and Wastes from the Environment 去除环境中污染物和废物的生物修复和生物降解技术
Pub Date : 2021-01-01 DOI: 10.4018/978-1-7998-4921-6.ch014
Amit Kumar
Bioremediation is defined as the process whereby organic wastes are biologically degraded under controlled conditions to an innocuous state, or to levels below concentration limits established by regulatory authorities. For bioremediation to be effective, microorganisms must enzymatically attack the pollutants and convert them to harmless products. As bioremediation can be effective only where environmental conditions permit microbial growth and activity, its application often involves the manipulation of environmental parameters to allow microbial growth and degradation to proceed at a faster rate. Bioremediation techniques are typically more economic than traditional methods such as incineration, and some pollutants can be treated on site, thus reducing exposure risks for clean-up personnel, or potentially wider exposure as a result of transportation accidents. Bioremediation is based on natural attenuation. The public considers it more acceptable than other technologies.
生物修复被定义为在受控条件下对有机废物进行生物降解,使其达到无害状态或低于监管当局规定的浓度限值的过程。为了使生物修复有效,微生物必须酶攻击污染物并将其转化为无害的产物。由于生物修复只有在环境条件允许微生物生长和活动的情况下才能有效,因此其应用通常涉及对环境参数的操纵,以允许微生物以更快的速度生长和降解。生物修复技术通常比焚烧等传统方法更经济,一些污染物可以在现场处理,从而减少清理人员的接触风险,或可能由于运输事故而更广泛地接触。生物修复是基于自然衰减的。公众认为它比其他技术更容易接受。
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引用次数: 1
Gene Cloning 基因克隆
Pub Date : 2021-01-01 DOI: 10.4018/978-1-7998-4312-2.ch007
Diane Fougere, Cheirinho de Canela
The discovery of two naturally occurring biological molecules, plasmid DNA and restriction enzymes, with remarkable properties have made possible the development of methods to isolate and manipulate specific DNA fragments. Through this technology, a DNA fragment, even an entire gene and its controlling elements, can be isolated and rejoined with a plasmid or phage DNA, and the hybrid DNA molecule can be inserted into a bacterium. The foreign DNA insert can be multiplied inside the bacterial host and induced to express or synthesize the protein product of the foreign DNA. The entire process through which this can be achieved is called recombinant DNA technology or genetic engineering. The recombinant DNA technology has been extended to animal and plant cells. In this chapter, methods for isolation, modification, rejoining and replication of genomic DNA, and production of new or enhanced protein products within a host cell have been described.
质粒DNA和限制性内切酶这两种自然存在的生物分子的发现具有显著的特性,这使得分离和操作特定DNA片段的方法的发展成为可能。通过这项技术,可以分离出DNA片段,甚至整个基因及其控制元件,并与质粒或噬菌体DNA重新连接,然后将杂交DNA分子插入细菌中。外源DNA插入物可以在细菌宿主内增殖,并诱导其表达或合成外源DNA的蛋白产物。实现这一目标的整个过程被称为重组DNA技术或基因工程。重组DNA技术已扩展到动物和植物细胞。在本章中,描述了基因组DNA的分离、修饰、重新连接和复制以及在宿主细胞内生产新的或增强的蛋白质产品的方法。
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引用次数: 0
Exchange Rate and Industry-Level Energy Import 汇率与工业级能源进口
Pub Date : 2021-01-01 DOI: 10.4018/978-1-7998-8335-7.CH005
Abdul Sahib, Sergey A. Prosekov
After the Bretton Woods exchange rate system in 1973, the free-floating exchange rate, the rate determined by the forces of supply and demand, began, which developed an interest in the area of many researchers to investigate, theoretically and empirically, the impact of exchange rate volatility on the world trade flows. There are two channels, direct and indirect, through which the change in exchange rate affects domestic prices. Under the direct channel, a fall in exchange rate leads to increase in imports as well as increases the prices of inputs in domestic currency. Secondly, under the indirect channel, a decline in the exchange rate triggers the availability of domestic goods to foreign buyers at a cheaper rate, and the demand for domestic products increased. Thus, the change in exchange rate affects trade flows either positively or negatively.
在1973年布雷顿森林汇率制度之后,由供给和需求力量决定的自由浮动汇率开始了,这引起了许多研究人员的兴趣,他们从理论上和经验上调查汇率波动对世界贸易流动的影响。汇率变动对国内物价的影响有直接和间接两种渠道。在直接渠道下,汇率下跌会导致进口增加,也会导致以本币计价的投入价格上涨。其次,在间接渠道下,汇率的下降触发了国内商品以更便宜的价格提供给外国买家,对国内产品的需求增加。因此,汇率的变化对贸易流动有积极或消极的影响。
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引用次数: 0
M-Components Mathematical Modeling for Coniferous Tree Ignition 针叶树点火的m -分量数学建模
Pub Date : 2021-01-01 DOI: 10.4018/978-1-7998-7250-4.ch004
Based on the one-dimensional three-layer physical and mathematical model of ignition of a coniferous tree (pine), the influence of the m-components of the cloud-to-ground lightning discharge and the appropriateness of their consideration in technical systems for monitoring the forest fire danger are evaluated. The problem is solved in a cylindrical coordinate system. Typical cloud-to-ground lightning discharges are considered. An assessment of the influence of m-components was carried out for a typical range of changes in their characteristics.
基于针叶树(松)着火的一维三层物理数学模型,评价了云对地闪电放电m分量的影响及其在森林火情监测技术系统中考虑的适宜性。这个问题在柱坐标系中求解。考虑了典型的云对地闪电放电。对m组分的影响进行了评估,以确定其特征的典型变化范围。
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引用次数: 0
Handbook of Research on Microbial Remediation and Microbial Biotechnology for Sustainable Soil 可持续土壤微生物修复与微生物生物技术研究手册
Pub Date : 2021-01-01 DOI: 10.4018/978-1-7998-7062-3
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引用次数: 7
Concepts of Molecular Plant Breeding and Genome Editing 分子植物育种与基因组编辑的概念
Pub Date : 2021-01-01 DOI: 10.4018/978-1-7998-4312-2.ch001
Traditional plant breeding depends on spontaneous and induced mutations available in the crop plants. Such mutations are rare and occur randomly. By contrast, molecular breeding and genome editing are advanced breeding techniques that can enhance the selection process and produce precisely targeted modifications in any crop. Identification of molecular markers, based on SSRs and SNPs, and the availability of high-throughput (HTP) genotyping platforms have accelerated the process of generating dense genetic linkage maps and thereby enhanced application of marker-assisted breeding for crop improvement. Advanced molecular biology techniques that facilitate precise, efficient, and targeted modifications at genomic loci are termed as “genome editing.” The genome editing tools include “zinc-finger nucleases (ZNFs),” “transcription activator-like effector nucleases (TALENs),” oligonucleotide-directed mutagenesis (ODM), and “clustered regularly interspersed short palindromic repeats (CRISPER/Cas) system,” which can be used for targeted gene editing. Concepts of molecular plant breeding and genome editing systems are presented in this chapter.
传统的植物育种依赖于作物植物的自发和诱导突变。这种突变是罕见的,是随机发生的。相比之下,分子育种和基因组编辑是先进的育种技术,可以加强选择过程,并在任何作物中产生精确的靶向修饰。基于ssr和snp的分子标记鉴定以及高通量(HTP)基因分型平台的可用性加速了生成密集遗传连锁图谱的过程,从而增强了标记辅助育种在作物改良中的应用。促进精确、高效和有针对性的基因组位点修改的先进分子生物学技术被称为“基因组编辑”。基因组编辑工具包括“锌指核酸酶(ZNFs)”、“转录激活因子样效应核酸酶(TALENs)”、寡核苷酸定向突变(ODM)和“聚集规律穿插短回复性重复序列(CRISPER/Cas)系统”,可用于靶向基因编辑。本章介绍了分子植物育种和基因组编辑系统的概念。
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引用次数: 0
Internet of Things 物联网
Pub Date : 2021-01-01 DOI: 10.4018/978-1-7998-5003-8.ch005
Vaibhav Bhatnagar, Ramesh Chandra
Internet of things (IoT) is a system of interrelated computing devices, mechanical and digital machines, objects, animals or people that are provided with unique identifiers and the ability to transfer data over a network without requiring human-to-human or human-to-computer interaction. It has three layers. First layer is data acquisition through sensors and actuators, data transferring using different devices and last is data analysis with different analytic techniques. In this chapter, a conceptual overview of internet of things is mentioned. Different sensors and actuators which are responsible for data acquiring are described with their specification. Networking devices which are responsible for transferring data from sensors to server are also described with their applications. Data analytics techniques like descriptive, predictive, and perspective are also explained. Internet of things is now proven as boon for agriculture development. In the last section, different techniques are explained that are used in information and communication technique-enabled agriculture practices.
物联网(IoT)是一个由相互关联的计算设备、机械和数字机器、物体、动物或人组成的系统,这些设备具有唯一标识符,并且能够通过网络传输数据,而不需要人与人或人机交互。它有三层。第一层是通过传感器和执行器进行数据采集,使用不同的设备进行数据传输,最后是使用不同的分析技术进行数据分析。在本章中,对物联网的概念进行了概述。描述了负责数据采集的不同传感器和执行器及其规格。负责将数据从传感器传输到服务器的网络设备也描述了它们的应用。数据分析技术,如描述性,预测性和透视图也进行了解释。物联网已经成为农业发展的福音。在最后一节中,解释了在信息和通信技术支持的农业实践中使用的不同技术。
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引用次数: 0
Eco-Friendly Energy Processes and Technologies for Achieving Sustainable Development 实现可持续发展的生态友好型能源过程和技术
Pub Date : 2021-01-01 DOI: 10.4018/978-1-7998-4915-5
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引用次数: 0
Forest Fire Danger Prediction Using Deterministic-Probabilistic Approach 基于确定性-概率方法的森林火险预测
Pub Date : 2021-01-01 DOI: 10.4018/978-1-7998-7250-4
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引用次数: 2
Handbook of Research on Waste Diversion and Minimization Technologies for the Industrial Sector 工业部门废物转移和最小化技术研究手册
Pub Date : 2021-01-01 DOI: 10.4018/978-1-7998-4921-6
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引用次数: 3
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