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2-[(2-Aminoethoxy)Methyl]-4-(2-Chlorophenyl)-3-Ethoxycarbonyl-5-Methoxycarbonyl-6-Methyl-1,4-Dihydropyridine Benzenesulfonate

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    HS Code

    384741

    Chemical Name 2-[(2-Aminoethoxy)Methyl]-4-(2-Chlorophenyl)-3-Ethoxycarbonyl-5-Methoxycarbonyl-6-Methyl-1,4-Dihydropyridine Benzenesulfonate

    As an accredited 2-[(2-Aminoethoxy)Methyl]-4-(2-Chlorophenyl)-3-Ethoxycarbonyl-5-Methoxycarbonyl-6-Methyl-1,4-Dihydropyridine Benzenesulfonate factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing 1kg of 2-[(2 - Aminoethoxy)Methyl]-... benzenesulfonate in resealable chemical - grade bags.
    Storage Store 2-[(2 - Aminoethoxy)Methyl]-4-(2 - Chlorophenyl)-3 - Ethoxycarbonyl - 5 - Methoxycarbonyl - 6 - Methyl - 1,4 - Dihydropyridine Benzenesulfonate in a tightly sealed container. Place it in a cool, dry area away from heat sources and direct sunlight. Avoid storing near substances that may react with it, to maintain its chemical integrity and stability.
    Shipping The chemical 2-[(2 - Aminoethoxy)Methyl]-4-(2 - Chlorophenyl)-3 - Ethoxycarbonyl - 5 - Methoxycarbonyl - 6 - Methyl - 1,4 - Dihydropyridine Benzenesulfonate will be shipped in sealed, labeled containers, adherent to safety and regulatory protocols for chemical transport.
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    2-[(2-Aminoethoxy)Methyl]-4-(2-Chlorophenyl)-3-Ethoxycarbonyl-5-Methoxycarbonyl-6-Methyl-1,4-Dihydropyridine Benzenesulfonate
    General Information
    Historical Development
    Drug [2- (2-aminoethoxy) methyl] -4- (2-chlorophenyl) -3-ethoxycarbonyl-5-methoxy carbonyl-6-methyl-1,4-dihydropyridyl benzenesulfonate The historical evolution of the former, the beginning of pharmacy, Zhu Xian Bili studied new drugs. At that time, the understanding of the drug [2- (2-aminoethoxy) methyl] -4 - (2-chlorophenyl) -3 - ethoxycarbonyl - 5 - methoxy carbonyl - 6 - methyl - 1,4 - dihydropyridyl benzenesulfonate was still shallow.
    With the passage of time, many researchers have repeatedly explored in the laboratory, and have gone through countless attempts and failures. From the analysis of the basic chemical structure to the exploration of pharmacological properties, we have made unremitting progress. At first, the synthesis of this drug was difficult and the yield was low. However, with tenacity, the public improved the synthesis process, and finally the yield gradually increased and the quality stabilized.
    Then, in-depth pharmacological research was carried out to clarify its mechanism of action, and its efficacy in disease treatment was gradually revealed. Therefore, since the beginning of its anonymity, this drug has gradually become important in the medical community. In the course of historical evolution, it has gradually become a sharp tool for treating diseases, seeking well-being for patients, and writing an important chapter in pharmacy.
    Product Overview
    There is now a thing called 2 - [ (2 - aminoethoxy) methyl] - 4 - (2 - chlorophenyl) - 3 - ethoxycarbonyl - 5 - methoxycarbonyl - 6 - methyl - 1,4 - dihydropyridine benzenesulfonate. This is my research in chemistry. Its shape is unique and its structure is exquisite. From the perspective of chemical composition, each group is connected in an orderly manner, and the ingenious combination of aminoethoxy, chlorophenyl, ethoxycarbonyl, methoxycarbonyl and methyl groups develops its chemical properties in the structure of dihydropyridine and benzenesulfonate.
    This substance is of great significance in the field of chemical synthesis. It may provide new opportunities and possibilities for pharmaceutical research and development, material modification and other fields. I will devote my efforts to deeply explore its properties and reaction mechanism, hoping to explore its potential and contribute to the progress of chemical research, in recognition of the value and function of this chemical substance.
    Physical & Chemical Properties
    2 - [ (2 - aminoethoxy) methyl] - 4 - (2 - chlorophenyl) - 3 - ethoxycarbonyl - 5 - methoxycarbonyl - 6 - methyl - 1,4 - dihydropyridyl benzenesulfonate The physical and chemical properties of this compound are particularly critical. Looking at its properties, or having specific colors and states, such as powders or crystals, the color is also different. Its melting point, boiling point and other parameters related to the transformation of the state are very important for analyzing its properties. In terms of solubility, the degree of dissolution in different solvents varies, or it is easily soluble in a certain type of organic solvent, and the dissolution in water cannot be ignored. And its stability is related to preservation and application. Under different temperature, humidity, light conditions, or chemical changes may occur, affecting its quality and efficacy. Therefore, a detailed study of the physical and chemical properties of this substance is the essence of use and survival.
    Technical Specifications & Labeling
    There is now a product named 2 - [ (2 - aminoethoxy) methyl] -4 - (2 - chlorophenyl) -3 - ethoxy carbonyl-5 - methoxy carbonyl-6 - methyl-1,4 - dihydropyridyl benzene sulfonate. The process specification and identification (commodity parameters) of this product should be studied in detail by our generation.
    The process specification, from the choice of raw materials, must be pure and free of impurities, and the ingredients should be compatible in precise proportions. The temperature, pressure and time of the reaction must be strictly adhered to. If the temperature is controlled within a certain range, the reaction should be stable and complete. The reactor also needs to be clean and well, so as to avoid impurities and bad products. In terms of
    identification (commodity parameters), its purity, geometry, and characteristics should be clearly identified in the identification. Key parameters such as molecular weight and molecular formula must be accurate. In this way, this product can be used in various fields, and it can be identified by the identification to distinguish its quality and authenticity, without the risk of misuse.
    Preparation Method
    There are currently methods for preparing 2- [ (2-aminoethoxy) methyl] -4 - (2-chlorophenyl) -3-ethoxycarbonyl-5-methoxycarbonyl-6-methyl-1,4-dihydropyridyl benzenesulfonate, as detailed below.
    The raw materials are carefully selected to ensure the quality and purity. The synthesis process is crucial, and each step of the reaction needs to be strictly controlled. Its preparation starts with a specific combination of raw materials and is advanced through multiple steps of reaction. The first step of the reaction is based on [Specific Reaction Description of Raw Materials 1]. The conditions need to be precisely regulated, and the temperature and duration are fixed. This step is aimed at building the basic structure.
    The second step reaction follows [Raw Material Specific Reaction Description 2]. After this step, the molecular structure is gradually formed. Subsequent reactions also follow the established process and follow the reaction mechanism, and each step is closely connected. During the reaction process, monitoring means are indispensable to ensure the complete transformation of each step.
    After the reaction is completed, the refining step cannot be ignored. By removing impurities and improving the purity of the product, the final target product 2 - [ (2-aminoethoxy) methyl] -4 - (2 -chlorophenyl) -3 -ethoxycarbonyl-5 -methoxycarbonyl-6 -methyl-1,4 -dihydropyridinesulfonate is obtained. This is the whole process of preparation.
    Chemical Reactions & Modifications
    The recent study of 2 - [ (2 - aminoethoxy) methyl] -4 - (2 - chlorophenyl) -3 - ethoxycarbonyl - 5 - methoxy carbonyl - 6 - methyl - 1,4 - dihydropyridyl benzene sulfonate is very important for the investigation of chemical reaction and modification. In this case, the reaction path needs to be studied in detail, the interaction between each group, or the formation of different products.
    Modification is aimed at optimizing its properties. Or change its stability to make it more stable in different environments; or adjust its activity to suit specific needs. Exploring the influence of changing conditions, such as temperature, solvent, catalyst, on the product, can clarify the best preparation method, improve the quality and yield of the product, and pave the way for its practical application.
    Synonyms & Product Names
    It has been a long time since I studied chemistry. Now it is said that it is related to a chemical product named 2 - [ (2 - Aminoethoxy) Methyl] - 4 - (2 - Chlorophenyl) - 3 - Ethoxycarbonyl - 5 - Methoxycarbonyl - 6 - Methyl - 1,4 - Dihydropyridine Benzenesulfonate. This product is also in the field of my research, and there is also a study of the same name and commercial name.
    The same name is covered by its chemical structure and properties. The statements of various scholars may be different, but they all refer to this product. The name of the business name is the name of the market, which is for easy identification and sale. In my research, I know the same name and business name, like a boat with a boat, to help me explore its nature, use, and clarify its position in the industry.
    Our researchers, examine the same name in detail, study the literature, test it in practice, and hope to get a correct solution. The analysis of business names is related to market conditions, and it cannot be ignored. The study of both is to understand the quality of this chemical product, and it is expected to progress in both learning and industry.
    Safety & Operational Standards
    2 - [ (2 - Aminoethoxy) Methyl] - 4 - (2 - Chlorophenyl) - 3 - Ethoxycarbonyl - 5 - Methoxycarbonyl - 6 - Methyl - 1,4 - Dihydropyridine Benzenesulfonate Safety and Operating Specifications
    Fu 2 - [ (2 - Aminoethoxy) Methyl] - 4 - (2 - Chlorophenyl) - 3 - Ethoxycarbonyl - 5 - Methoxycarbonyl - 6 - Methyl - 1,4 - Dihydropyridine Benzenesulfonate is an important substance in chemical research. During the experimental operation, safety bears the brunt and must abide by the norms.
    When handling this object, it is necessary to carefully investigate its physical and chemical properties. The properties, melting point, boiling point, solubility, etc. of this object are all the basis for operation. Only by understanding its properties can we predict its changes and avoid accidents.
    The experimental site should be well ventilated. Set up ventilation equipment to make harmful gases disperse quickly and avoid accumulation. And the place should be clean and neat, with a fixed place for the object, and it is forbidden to be messy to prevent accidental touch and misuse.
    The experimenter must wear protective gear. Clothing should cover the body to prevent the skin from connecting with it; wearing gloves to keep the hands safe; wearing goggles to protect the eyes from damage.
    When using this object, use a suitable device. The amount is accurate, and it cannot be increased or decreased at will. And it is sealed after taking it out to avoid long-term contact with the air, which will cause the properties to change.
    When reacting, temperature control, speed control, and pressure control are all key. According to the needs of the reaction, adjust the conditions to suit, and do not change them without authorization. Close observation of the reaction image, if there is any abnormality, it will be dealt with quickly.
    The principle of waste should not be ignored. Classified and placed, handled according to regulations, do not discard indiscriminately, and avoid polluting the environment.
    In short, in the research and operation of 2 - [ (2 - Aminoethoxy) Methyl] - 4 - (2 - Chlorophenyl) - 3 - Ethoxycarbonyl - 5 - Methoxycarbonyl - 6 - Methyl - 1,4 - Dihydropyridine Benzenesulfonate, safety is paramount, and the operation is in accordance with regulations. In this way, the experiment can be ensured smoothly and harm is avoided.
    Application Area
    There is now a product named 2 - [ (2 - aminoethoxy) methyl] -4 - (2 - chlorophenyl) -3 - ethoxy carbonyl-5 - methoxy carbonyl-6 - methyl-1,4 - dihydropyridyl benzene sulfonate. This compound has its uses in many fields.
    In the field of medicine, it may be a medicine for treating diseases. Due to its unique structure, it may play a role in specific physiological mechanisms of the human body, such as regulating the function of the cardiovascular system, helping to soothe blood vessels, make blood flow smooth, and solve cardiovascular disorders.
    In the chemical industry, it may be a raw material for synthesizing other substances. With its chemical properties, through specific reactions, materials with specific properties can be produced for use in coatings, plastics, etc., making products with better characteristics.
    This compound has a wide range of uses and has potential in both medicine and chemical industry. It should be the object of our in-depth investigation to make the best use of it and benefit the world.
    Research & Development
    I have been studying chemical substances for many years. Recently, the person I studied is 2 - [ (2 -Aminoethoxy) Methyl] -4 - (2 -Chlorophenyl) -3 -Ethoxycarbonyl-5 -Methoxycarbonyl-6 -Methyl-1,4 -Dihydropyridine Benzenesulfonate This compound is also.
    Preliminary observation of its structure, detailed investigation of the connection of each atom, in order to clarify its characteristics. Then test its physical and chemical properties, such as degree of melting and boiling, solubility, etc. And explore its reaction in different environments, hoping to obtain a good method to increase its yield.
    I am well aware that the research and development of this compound may be of great use in various fields such as medicine and chemical industry. Therefore, I study day and night, and I dare not slack off. I hope I can use my efforts to develop it with a small force, so that this compound can benefit the world.
    Toxicity Research
    I have tried to study the properties of poisons, and now discuss 2- [ (2-aminoethoxy) methyl] -4 - (2-chlorophenyl) -3 -ethoxy carbonyl-5 -methoxy carbonyl-6 -methyl-1,4 -dihydropyridylbenzenesulfonate. If you want to study its toxicity in detail, it is necessary to be careful about the health of the people.
    Observe all physical properties, distinguish toxicity, first observe its quality, analyze its composition. This product has an exquisite structure, but it is exquisite or the opportunity to hide poison. Try to test it by various methods, observe its changes in the organism. Or observe the response of the viscera after its entry into the body, the movement of qi and blood, and the change of function.
    The study of toxicity is not immediate, and it must be achieved by constant effort and careful inspection of minor changes. It is hoped that the depth of its toxicity can be understood, so as to warn those who use this product, to ensure the safety of everyone, and not to let the poison cause harm to the world.
    Future Prospects
    Sad! There is a thing called 2- [ (2-aminoethoxy) methyl] -4 - (2-chlorophenyl) -3-ethoxycarbonyl-5-methoxycarbonyl-6-methyl-1,4-dihydropyridinebenzenesulfonate. As chemical researchers, we often think about the future prospects of this thing.
    From the perspective of it, it may shine in the field of medicine. With its unique chemical structure, it may be made into a good medicine to cure various diseases and relieve the suffering of all living beings. In materials science, it may also perform miracles, assist the research and development of new materials, and promote the progress of science and technology.
    Although there may be thorns in the road ahead, we will keep the heart of exploration and move forward with determination. We hope to make unremitting efforts to develop its future and make it beneficial to the world, live up to the expectations of our researchers, and leave endless benefits for future generations.
    Where to Buy 2-[(2-Aminoethoxy)Methyl]-4-(2-Chlorophenyl)-3-Ethoxycarbonyl-5-Methoxycarbonyl-6-Methyl-1,4-Dihydropyridine Benzenesulfonate in China?
    As a trusted 2-[(2-Aminoethoxy)Methyl]-4-(2-Chlorophenyl)-3-Ethoxycarbonyl-5-Methoxycarbonyl-6-Methyl-1,4-Dihydropyridine Benzenesulfonate manufacturer, we deliver: Factory-Direct Value: Competitive pricing with no middleman markups, tailored for bulk orders and project-scale requirements. Technical Excellence: Precision-engineered solutions backed by R&D expertise, from formulation to end-to-end delivery. Whether you need industrial-grade quantities or specialized customizations, our team ensures reliability at every stage—from initial specification to post-delivery support.
    Frequently Asked Questions

    As a leading 2-[(2-Aminoethoxy)Methyl]-4-(2-Chlorophenyl)-3-Ethoxycarbonyl-5-Methoxycarbonyl-6-Methyl-1,4-Dihydropyridine Benzenesulfonate supplier, we deliver high-quality products across diverse grades to meet evolving needs, empowering global customers with safe, efficient, and compliant chemical solutions.

    What is the chemical structure of 2- [ (2-aminoethoxy) methyl] -4- (2-chlorophenyl) -3-ethoxycarbonyl-5-methoxycarbonyl-6-methyl-1,4-dihydropyridinebenzenesulfonate
    I look at this question, but I am looking for the chemical structure of an acid anhydride. There are many groups involved and it is quite complicated. Now it is time to analyze it in sequence to make sense.
    The first word "2- [ (2-hydroxyacetyl) methyl] -4- (2-chlorophenyl) -3-acetoxy-5-methoxy-6-methyl-1,4-diene", in which the groups are linked to each other to form the basic framework of this compound.
    "2-Hydroxyacetyl", which is connected to the acetyl group with a hydroxyl group, is active, and the hydroxyl group can participate in a variety of reactions, such as esterification, dehydration, etc. "Methyl" is a simple alkyl group. Although the structure is simple, it affects the spatial configuration and physical properties of the molecule. "2-Chlorophenyl", the chlorine atom is connected to the benzene ring, giving this part a special electronic effect and spatial resistance. "Acetoxy" is an ester group formed by the dehydration of acetic acid and hydroxyl, and has the commonality of esters. "Methoxy", which is connected by a methyl group and an oxygen atom, can change the polarity and electron cloud distribution of the molecule. "6-methyl", another methyl position, further affects the overall properties of the molecule. " 1,4-Diene ", containing a conjugated double bond structure, gives the molecule a special electron delocalization and reactivity.
    If this compound is an acid anhydride, it should have a structure in which two acyl groups are connected by oxygen atoms. However, it is difficult to directly obtain the exact structure of the acid anhydride from this description alone. It is necessary to know its source, synthesis path or related reactions to determine the formation of the acid anhydride structure by the reaction of any group. Or through the inverse inversion of reactions such as hydrolysis and esterification, or by referring to the transformation of similar compounds, to understand the changes of each group during the formation of acid anhydride.
    Although the chemical structure of the acid anhydride cannot be understood overnight, the analysis of each group has been a step closer to the truth. Hope for more information to solve the mystery of this chemical structure.
    What are the physical properties of 2- [ (2-aminoethoxy) methyl] -4- (2-chlorophenyl) -3-ethoxycarbonyl-5-methoxycarbonyl-6-methyl-1,4-dihydropyridinebenzenesulfonate
    "Ask about the physical properties of sulfuric acid, because sulfuric acid is very useful in industry, agriculture, medicine and other industries, and its properties must be known in detail."
    Sulfuric acid is a colorless oily liquid at room temperature, which is the manifestation of its appearance. Its density is greater than that of water, about 1.84 g/cm ³. If sulfuric acid is poured into water, it can be seen that it sinks underwater, like water and oil.
    Sulfuric acid has a high boiling point, about 338 ° C, and is not easy to volatilize. It is different from common volatile acids such as hydrochloric acid and nitric acid. And sulfuric acid is very soluble in water, and when dissolved, a large amount of heat is released. Therefore, when dissolving sulfuric acid in water, it must be poured into the water with sulfuric acid and stirred constantly. Do not do the opposite, otherwise it will be dangerous if it is hot and splashed.
    Sulfuric acid has strong water absorption, which can take away the wet water in the substance and also make the crystalline hydrate lose its crystalline water. Placed in an open container, it can absorb water vapor in the air, causing its own mass and volume to increase.
    It also has dehydration, which can remove hydrogen and oxygen elements from organic matter according to the ratio of hydrogen and oxygen atoms in water (2:1), so that the organic matter can be carbonized. If sulfuric acid is dropped on sucrose, it can be seen that the sucrose is turning black, which is a sign of dehydration.
    In summary, the color, state, density, boiling point, solubility, water absorption, dehydration, etc. of sulfuric acid are all important physical properties. In various processes and studies, it is necessary to be careful to make good use of its properties in order to obtain its benefits and avoid its harm.
    2- [ (2-Aminoethoxy) methyl] -4- (2-chlorophenyl) -3-ethoxycarbonyl-5-methoxycarbonyl-6-methyl-1,4-dihydropyridinebenzenesulfonate What are the applications in the field of medicine
    I am not talented, although I have heard that all the words in this article are related to medicine, but the chemical names mentioned are complicated, as if they are not seen in ordinary herbal books. Think of the breadth of medicine, the complexity of medicine, or the existence of new research things, it is also unknown.
    Now look at these things, such as "2 - [ (2 - hydroxyacetoxy) methyl] - 4 - (2 - furyl) - 3 - ethoxycarbonyl - 5 - methoxycarbonyl - 6 - methyl - 1,4 - dioxane". Such names have complex structures and must be extraordinary in pharmacology. In the field of medicine, such compounds may have unique capabilities.
    Or it can be used to create new agents to treat various diseases. For example, in the way of antibacterial, or it can make special drugs to fight against stubborn bacteria; in the way of antiviral, it can bring new hope to patients and help them drive away the disease. Or in the treatment of chronic diseases, it can play a key role in relieving the pain of patients, prolonging their lifespan, and increasing their health.
    However, this is all speculation, and it is really necessary for those who are skilled in pharmacology and deeply understand the way of medicine to use rigorous experiments and detailed research to determine its exact use and benefit patients all over the world.
    What is the synthesis method of 2- [ (2-aminoethoxy) methyl] -4- (2-chlorophenyl) -3-ethoxycarbonyl-5-methoxycarbonyl-6-methyl-1,4-dihydropyridinebenzenesulfonate
    To prepare 2 - [ (2 - hydroxyethyl) methyl] - 4 - (2 - chlorophenyl) - 3 - ethoxycarbonyl - 5 - methoxycarbonyl - 6 - methyl - 1,4 - diazepine acid amide, the synthesis method is as follows:
    First take a suitable starting material and react it by chemical techniques. First, the compound containing chlorophenyl is combined with a nitrogen-containing raw material with a specific substituent. This step needs to be carried out in a suitable reaction environment, such as in a specific solvent, the temperature and reaction time are controlled, so that the two meet at a precise molar ratio. With the help of catalysts, nucleophilic substitution reactions occur to generate key intermediates.
    Then, for the obtained intermediate, it is reacted with reagents containing ethoxycarbonyl and methoxycarbonyl. This reaction requires strict control of the reaction conditions, because the introduction of carbonyl groups has a significant impact on the structure and properties of the product. Or use the method of condensation reaction, by adjusting the pH, temperature and other factors, the reaction is advanced in the expected direction, and ethoxy carbonyl and methoxy carbonyl are successfully introduced.
    Furthermore, the specific groups in the intermediate product are modified. Using hydroxyl groups and methylating reagents, under appropriate reaction conditions, the introduction of methyl groups is completed to form a (2-hydroxyethyl) methyl structure. This process requires attention to the dosage of reagents and the selectivity of the reaction to prevent unnecessary side reactions from occurring.
    Finally, the overall molecular structure is adjusted and improved. Through a series of reactions, such as cyclization, the core structure of 1,4-diazepine is constructed, and the surrounding substituents are fine-tuned to achieve the exact structure of the target product. The whole synthesis process is like a craftsman's carving tool, and each step of the reaction needs to be meticulously controlled and the reaction conditions precisely controlled to obtain the target acid amide product.
    2- [ (2-Aminoethoxy) methyl] -4- (2-chlorophenyl) -3-ethoxycarbonyl-5-methoxycarbonyl-6-methyl-1,4-dihydropyridinebenzenesulfonate What are the side effects of
    The chemical names you mentioned are quite complicated. The various substances involved in this have their own characteristics and uses in chemistry, and may have various side effects.
    As far as 2- [ (2-hydroxyacetyl) methyl] -4- (2-chlorophenyl) -3-acetoxyphenyl-5-methoxyphenyl-6-methyl-1,4-dihydropyridine is concerned, this is one of the organic compounds. It is used in the field of pharmaceuticals or is a key intermediate in the synthesis of drugs.
    However, its side effects should not be underestimated. During the synthesis process, if the conditions are not precise, side reactions may occur. First, or because the selectivity of the reaction check point is not ideal, the product is impure, which not only damages the yield, but also adds to the difficulty of subsequent separation and purification. Second, the compounds, such as chlorophenyl, acetoxy and other groups, may be active in some reaction systems, or lead to additional reactions, resulting in unexpected by-products.
    Furthermore, such organic compounds, if accidentally released into the environment, are complex in structure or difficult to be degraded by the natural environment. In the ecosystem, or through the enrichment of the food chain, endangering the health of organisms. It may be toxic to aquatic organisms and interfere with the ecological balance of water bodies; in soil, or affect the activity of soil microorganisms, thereby damaging soil fertility and plant growth.
    And from the perspective of human health, if this compound is used in pharmaceuticals, its residual impurities may cause adverse reactions in the human body. Such as allergies, interfere with the normal physiological metabolism of the human body, and even have latent risks of teratogenicity and carcinogenesis.
    Therefore, in chemical research and industrial production, the reaction mechanism of compounds containing such complex structures should be carefully investigated and the reaction conditions should be strictly controlled to reduce their side effects and protect the ecological and human health.