Battery extended environmental knowledge

By introducing the life cycle assessment method and entropy weight method to quantify environmental load, a multilevel index evaluation system was …

Life cycle environmental impact assessment for battery-powered …

By introducing the life cycle assessment method and entropy weight method to quantify environmental load, a multilevel index evaluation system was …

Waste batteries: producer responsibility

Battery producers are responsible for minimising harmful effects of waste batteries on the environment, by: improving the design of new batteries – you must follow ''placing on the market ...

EV batteries hurt the environment. Gas cars are still worse

EV batteries hurt the environment. Gas cars are still worse

What determines the batteries recycling behavior of e-bike citizens in Guangzhou?: Integrating place identity and environmental …

As battery life is related to the long-term operating costs of users, it is a key parameter to measure quality. Extending battery life reduces the environmental impact of battery life [7, 56]. The life of e-bike batteries is …

Extended producer responsibility and eco‐design changes: perspectives from China

Corporate Social Responsibility and Environmental Management : a journal focused on the social & environmental accountability of business in the context of sustainability Abstract The concept of extended producer responsibility (EPR) has been incorporated into environmental policy by a growing number of governments.

Beyond the EVent horizon: Battery waste, recycling, and sustainability in the United Kingdom electric vehicle transition …

UK electric vehicle battery end-of-life is set to scale significantly from 2019. • Urgent need for powerful, industrialized methods of recycling EV batteries. • Urgent need for updated environmental regulations to drive battery recovery. • …

A Review on the Recent Advances in Battery Development and …

Battery type Advantages Disadvantages Flow battery (i) Independent energy and power rating (i) Medium energy (40–70 Wh/kg) (ii) Long service life (10,000 cycles) (iii) No degradation for deep charge (iv) Negligible self-discharge Lithium-ion (i) High energy density

Environmental impact of emerging contaminants from battery waste…

Environmental impact of emerging contaminants from ...

Introduction of Extended Producer Responsibility in China

2.1 Trends of End-of-Life Vehicles (ELV) in JapanFull-scale motorization in Japan began in the late 1960s. The expansion of both the domestic market and exports due to economic growth led to a dramatic increase in …

Energy consumption of current and future production of lithium-ion and post lithium-ion battery …

Energy consumption of current and future production ...

Environmental impacts, pollution sources and …

Environmental impacts, pollution sources and pathways of ...

Does environmental knowledge and performance engender environmental …

moderates the indirect association between EP and individuals'' environmental knowledge and behavior through the mediated effect of ATT.,This research output will help extend the theory''s scope by conceptualizing its abstract ideas using research This ...

Does Extended Producer Responsibility System Promote Green Technological Innovation in China''s Power Battery …

In an effort to accelerate the advancement of green and low-carbon development, China introduced the extended producer responsibility (EPR) system in 2016, mandating producers to assume responsibility for waste recycling. Notably, power battery enterprises emerged as a primary focal point within the EPR system. Consequently, the …

Research for greener batteries | Nature Sustainability

Whether for large storage of renewable energy generation or to power electric vehicles, batteries play centre stage in a continuously evolving energy system …

Can Environmental Knowledge and Risk Perception Make a Difference? The Role of Environmental Concern and Pro-Environmental …

Sustainable consumption is one of the goals of the ''Sustainable Development Goals 2030′ set by the United Nations. The study is primarily interested in how sustainable consumption behavior can be fostered through environmental knowledge, behaviors, and attitudes. For environmental concern, the role of environmental …

Life cycle assessment of battery electric buses

1. Introduction1.1. Background Electrification of transportation is an important strategy to reduce greenhouse gas (GHG) emissions, noise, and air pollution. Norway is currently the leading global electric vehicle market (Figenbaum, 2017, Thorne et al., 2021), with 12 % of its passenger vehicle fleet being fully battery powered as of the …

42 Global Organizations Agree on Guiding Principles for Batteries …

The Global Battery Alliance outlines 10 guiding principles for a sustainable battery value chain. 42 organizations – including businesses from automotive, mining, chemicals and energy with a combined revenue of approximately a trillion dollars – have agreed on these principles.

Exploring new battery knowledge by advanced characterizing …

Benefited from new knowledge, the progress of high-capacity electroactive materials is significantly accelerated. Here, we timely review the breakthroughs in …

EPR For Battery Waste Management Rules, 2022

Introduction: Battery Waste Management Rules In this Blog, we shall discuss the new rules of battery waste management, 2022. The Ministry of Environment, Forest, and Climate Change Government of India …

A Review on the Recent Advances in Battery Development and …

For grid-scale energy storage applications including RES utility grid integration, low daily self-discharge rate, quick response time, and little environmental impact, Li-ion …

Learn About Batteries

Learn About Batteries

Environmental impacts, pollution sources and pathways of spent …

Abstract. There is a growing demand for lithium-ion batteries (LIBs) for electric transportation and to support the application of renewable energies by auxiliary energy …

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